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{{Short description|none}} <!-- "none" is preferred when the title is sufficiently descriptive; see [[WP:SDNONE]] -->
{{Short description|Science-related events during 2023}}
{{Year nav topic5|2023|science}}
{{Year nav topic5|2023|science}}
{{Use dmy dates|date=January 2020}}
{{Use dmy dates|date=January 2020}}
{{Science year nav|2023}}
{{Science year nav|2023}}

The following [[science|scientific]] events occurred in [[2023]].
The following [[science|scientific]] events occurred in [[2023]].


==Events==
==Events==

===January===
===January===
{{Main|January–March 2023 in science#January}}
{{Main|January–March 2023 in science#January}}
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**The [[National Oceanic and Atmospheric Administration|NOAA]] reports that [[greenhouse gases]] continued to increase rapidly in 2022 and that CO<sub>2</sub> levels in the atmosphere are now the highest in 4.3 million years.<ref>{{#invoke:cite news||url=https://www.noaa.gov/news-release/greenhouse-gases-continued-to-increase-rapidly-in-2022|title=Greenhouse gases continued to increase rapidly in 2022 |date=5 April 2023|work=NOAA|access-date=12 April 2023}}</ref>
**The [[National Oceanic and Atmospheric Administration|NOAA]] reports that [[greenhouse gases]] continued to increase rapidly in 2022 and that CO<sub>2</sub> levels in the atmosphere are now the highest in 4.3 million years.<ref>{{#invoke:cite news||url=https://www.noaa.gov/news-release/greenhouse-gases-continued-to-increase-rapidly-in-2022|title=Greenhouse gases continued to increase rapidly in 2022 |date=5 April 2023|work=NOAA|access-date=12 April 2023}}</ref>
**An [[umbrella review]] summarizes scientific results on the {{tooltip|extensive|associations with "18 endocrine/metabolic outcomes, 10 cardiovascular outcomes, seven cancer outcomes, and 10 other outcomes (neuropsychiatric, dental, hepatic, osteal, and allergic) were detected"}} [[Healthy diet|health]] effects of added-[[sugar]] foods and makes recommendations such as limiting sugar-sweetened beverages which are "the largest source of added sugars" and developing of [[policy]] such as [[advertising restrictions]].<!--https://edition.cnn.com/2023/04/05/health/added-free-sugars-health-effects-study-wellness/index.html--><ref>{{#invoke:cite journal||last1=Huang |first1=Yin |last2=Chen |first2=Zeyu |last3=Chen |first3=Bo |last4=Li |first4=Jinze |last5=Yuan |first5=Xiang |last6=Li |first6=Jin |last7=Wang |first7=Wen |last8=Dai |first8=Tingting |last9=Chen |first9=Hongying |last10=Wang |first10=Yan |last11=Wang |first11=Ruyi |last12=Wang |first12=Puze |last13=Guo |first13=Jianbing |last14=Dong |first14=Qiang |last15=Liu |first15=Chengfei |last16=Wei |first16=Qiang |last17=Cao |first17=Dehong |last18=Liu |first18=Liangren |title=Dietary sugar consumption and health: umbrella review |journal=BMJ |date=5 April 2023 |volume=381 |pages=e071609 |doi=10.1136/bmj-2022-071609 |pmid=37019448 |pmc=10074550 |language=en |issn=1756-1833|doi-access=free}}</ref>
**An [[umbrella review]] summarizes scientific results on the {{tooltip|extensive|associations with "18 endocrine/metabolic outcomes, 10 cardiovascular outcomes, seven cancer outcomes, and 10 other outcomes (neuropsychiatric, dental, hepatic, osteal, and allergic) were detected"}} [[Healthy diet|health]] effects of added-[[sugar]] foods and makes recommendations such as limiting sugar-sweetened beverages which are "the largest source of added sugars" and developing of [[policy]] such as [[advertising restrictions]].<!--https://edition.cnn.com/2023/04/05/health/added-free-sugars-health-effects-study-wellness/index.html--><ref>{{#invoke:cite journal||last1=Huang |first1=Yin |last2=Chen |first2=Zeyu |last3=Chen |first3=Bo |last4=Li |first4=Jinze |last5=Yuan |first5=Xiang |last6=Li |first6=Jin |last7=Wang |first7=Wen |last8=Dai |first8=Tingting |last9=Chen |first9=Hongying |last10=Wang |first10=Yan |last11=Wang |first11=Ruyi |last12=Wang |first12=Puze |last13=Guo |first13=Jianbing |last14=Dong |first14=Qiang |last15=Liu |first15=Chengfei |last16=Wei |first16=Qiang |last17=Cao |first17=Dehong |last18=Liu |first18=Liangren |title=Dietary sugar consumption and health: umbrella review |journal=BMJ |date=5 April 2023 |volume=381 |pages=e071609 |doi=10.1136/bmj-2022-071609 |pmid=37019448 |pmc=10074550 |language=en |issn=1756-1833|doi-access=free}}</ref>
*{{vanchor|6 April}} – A study shows neurons take up [[glucose]] (from food) and metabolize it by [[glycolysis]]. There was only limited research on how neurons get their energy in the context of links between [[Neuroenhancement#Dietary components and supplements|glucose metabolism and cognition]] (brain health and performance).<ref>{{#invoke:cite journal||last1=Li |first1=Huihui |last2=Guglielmetti |first2=Caroline |last3=Sei |first3=Yoshitaka J. |last4=Zilberter |first4=Misha |last5=Le Page |first5=Lydia M. |last6=Shields |first6=Lauren |last7=Yang |first7=Joyce |last8=Nguyen |first8=Kevin |last9=Tiret |first9=Brice |last10=Gao |first10=Xiao |last11=Bennett |first11=Neal |last12=Lo |first12=Iris |last13=Dayton |first13=Talya L. |last14=Kampmann |first14=Martin |last15=Huang |first15=Yadong |last16=Rathmell |first16=Jeffrey C. |last17=Heiden |first17=Matthew Vander |last18=Chaumeil |first18=Myriam M. |last19=Nakamura |first19=Ken |title=Neurons require glucose uptake and glycolysis in vivo |journal=Cell Reports |date=April 2023 |volume=42 |issue=4 |page=112335 |doi=10.1016/j.celrep.2023.112335|pmid=37027294 |pmc=10556202 |s2cid=258007887 |doi-access=free |pmc-embargo-date=October 6, 2024 }}
*{{vanchor|6 April}} – A study shows neurons take up [[glucose]] (from food) and metabolize it by [[glycolysis]]. There was only limited research on how neurons get their energy in the context of links between [[Neuroenhancement#Dietary components and supplements|glucose metabolism and cognition]] (brain health and performance).<ref>{{#invoke:cite journal||last1=Li |first1=Huihui |last2=Guglielmetti |first2=Caroline |last3=Sei |first3=Yoshitaka J. |last4=Zilberter |first4=Misha |last5=Le Page |first5=Lydia M. |last6=Shields |first6=Lauren |last7=Yang |first7=Joyce |last8=Nguyen |first8=Kevin |last9=Tiret |first9=Brice |last10=Gao |first10=Xiao |last11=Bennett |first11=Neal |last12=Lo |first12=Iris |last13=Dayton |first13=Talya L. |last14=Kampmann |first14=Martin |last15=Huang |first15=Yadong |last16=Rathmell |first16=Jeffrey C. |last17=Heiden |first17=Matthew Vander |last18=Chaumeil |first18=Myriam M. |last19=Nakamura |first19=Ken |title=Neurons require glucose uptake and glycolysis in vivo |journal=Cell Reports |date=April 2023 |volume=42 |issue=4 |page=112335 |doi=10.1016/j.celrep.2023.112335|pmid=37027294 |pmc=10556202 |s2cid=258007887 |doi-access=free }}
* Press release: {{#invoke:cite news||title="Sweet" Research Sheds Light on Glucose Metabolism in Neurons |url=https://neurosciencenews.com/glucose-neuron-metabolism-23064/ |access-date=28 May 2023 |work=[[Gladstone Institutes]] via Neuroscience News |date=20 April 2023}}</ref>
* Press release: {{#invoke:cite news||title="Sweet" Research Sheds Light on Glucose Metabolism in Neurons |url=https://neurosciencenews.com/glucose-neuron-metabolism-23064/ |access-date=28 May 2023 |work=[[Gladstone Institutes]] via Neuroscience News |date=20 April 2023}}</ref>
*{{vanchor|10 April}} – A study expands upon the role of elites' [[Sustainability|unsustainable]] consumption in urban [[Water scarcity|water crises]]. In [[Cape Town]], for example, the wealthiest 14% of the population use half of the city's water, while the poorest 62% use just a quarter.<ref>{{#invoke:cite news||url=https://www.theguardian.com/environment/2023/apr/10/swimming-pools-rich-driving-city-water-crises|title=Swimming pools of the rich driving city water crises, study says |date=10 April 2023|work=The Guardian|access-date=10 April 2023}}</ref><ref>{{#invoke:cite journal||last1=Savelli |first1=Elisa |last2=Mazzoleni |first2=Maurizio |last3=Di Baldassarre |first3=Giuliano |last4=Cloke |first4=Hannah |last5=Rusca |first5=Maria |title=Urban water crises driven by elites' unsustainable consumption |journal=[[Nature (journal)|Nature Sustainability]] |date=10 April 2023 |volume=6 |issue=8 |pages=929–940 |doi=10.1038/s41893-023-01100-0 |bibcode=2023NatSu...6..929S |s2cid=258072911 |language=en |issn=2398-9629|doi-access=free }}</ref>
*{{vanchor|10 April}} – A study expands upon the role of elites' [[Sustainability|unsustainable]] consumption in urban [[Water scarcity|water crises]]. In [[Cape Town]], for example, the wealthiest 14% of the population use half of the city's water, while the poorest 62% use just a quarter.<ref>{{#invoke:cite news||url=https://www.theguardian.com/environment/2023/apr/10/swimming-pools-rich-driving-city-water-crises|title=Swimming pools of the rich driving city water crises, study says |date=10 April 2023|work=The Guardian|access-date=10 April 2023}}</ref><ref>{{#invoke:cite journal||last1=Savelli |first1=Elisa |last2=Mazzoleni |first2=Maurizio |last3=Di Baldassarre |first3=Giuliano |last4=Cloke |first4=Hannah |last5=Rusca |first5=Maria |title=Urban water crises driven by elites' unsustainable consumption |journal=[[Nature (journal)|Nature Sustainability]] |date=10 April 2023 |volume=6 |issue=8 |pages=929–940 |doi=10.1038/s41893-023-01100-0 |bibcode=2023NatSu...6..929S |s2cid=258072911 |language=en |issn=2398-9629|doi-access=free }}</ref>
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*{{vanchor|18 April}}
*{{vanchor|18 April}}
**Astronomers conclude that "... [[Exoplanet|planets]] in the [[Circumstellar habitable zone|habitable zones of stars]] with [[Metallicity|low metallicity]] are the best targets to search for [[Life|complex life]] on land."<!--<ref name="SA-20230419">{{cite news |last=Starr |first=Michelle |title=Scientists Think They've Narrowed Down The Star Systems Most Likely to Host Life |url=https://www.sciencealert.com/scientists-think-theyve-narrowed-down-the-star-systems-most-likely-to-host-life |date=19 April 2023 |work=[[ScienceAlert]] |access-date=19 April 2023 }}</ref>--><ref name="NC-20230418">{{#invoke:cite journal||author=Shapiro, Anna V. |display-authors=et al. |title=Metal-rich stars are less suitable for the evolution of life on their planets |date=18 April 2023 |journal=[[Nature Communications]] |volume=14 |issue=1893 |page=1893 |doi=10.1038/s41467-023-37195-4 |pmid=37072387 |pmc=10113254 |bibcode=2023NatCo..14.1893S }}</ref>
**Astronomers conclude that "... [[Exoplanet|planets]] in the [[Circumstellar habitable zone|habitable zones of stars]] with [[Metallicity|low metallicity]] are the best targets to search for [[Life|complex life]] on land."<!--<ref name="SA-20230419">{{cite news |last=Starr |first=Michelle |title=Scientists Think They've Narrowed Down The Star Systems Most Likely to Host Life |url=https://www.sciencealert.com/scientists-think-theyve-narrowed-down-the-star-systems-most-likely-to-host-life |date=19 April 2023 |work=[[ScienceAlert]] |access-date=19 April 2023 }}</ref>--><ref name="NC-20230418">{{#invoke:cite journal||author=Shapiro, Anna V. |display-authors=et al. |title=Metal-rich stars are less suitable for the evolution of life on their planets |date=18 April 2023 |journal=[[Nature Communications]] |volume=14 |issue=1893 |page=1893 |doi=10.1038/s41467-023-37195-4 |pmid=37072387 |pmc=10113254 |bibcode=2023NatCo..14.1893S }}</ref>
**A university reports a study (29 Mar) affirming<ref>{{#invoke:cite journal||last1=Diagne |first1=Christophe |last2=Leroy |first2=Boris |last3=Vaissière |first3=Anne-Charlotte |last4=Gozlan |first4=Rodolphe E. |last5=Roiz |first5=David |last6=Jarić |first6=Ivan |last7=Salles |first7=Jean-Michel |last8=Bradshaw |first8=Corey J. A. |last9=Courchamp |first9=Franck |title=High and rising economic costs of biological invasions worldwide |journal=Nature |date=April 2021 |volume=592 |issue=7855 |pages=571–576 |doi=10.1038/s41586-021-03405-6 |pmid=33790468 |bibcode=2021Natur.592..571D |s2cid=256822524 |url=https://www.nature.com/articles/s41586-021-03405-6 |language=en |issn=1476-4687|url-access=subscription}}</ref> the high level of economic losses from [[biological invasion]]s, showing they have risen to the level of economic damage costs from floods or earthquakes, which are [[Economic impacts of climate change|also rising]].<ref>{{#invoke:cite journal||last1=Turbelin |first1=Anna J. |last2=Cuthbert |first2=Ross N. |last3=Essl |first3=Franz |last4=Haubrock |first4=Phillip J. |last5=Ricciardi |first5=Anthony |last6=Courchamp |first6=Franck |title=Biological invasions are as costly as natural hazards |journal=Perspectives in Ecology and Conservation |date=1 April 2023 |volume=21 |issue=2 |pages=143–150 |doi=10.1016/j.pecon.2023.03.002 |s2cid=257853902 |language=en |issn=2530-0644|doi-access=free }}
**A university reports a study (29 Mar) affirming<ref>{{#invoke:cite journal||last1=Diagne |first1=Christophe |last2=Leroy |first2=Boris |last3=Vaissière |first3=Anne-Charlotte |last4=Gozlan |first4=Rodolphe E. |last5=Roiz |first5=David |last6=Jarić |first6=Ivan |last7=Salles |first7=Jean-Michel |last8=Bradshaw |first8=Corey J. A. |last9=Courchamp |first9=Franck |title=High and rising economic costs of biological invasions worldwide |journal=Nature |date=April 2021 |volume=592 |issue=7855 |pages=571–576 |doi=10.1038/s41586-021-03405-6 |pmid=33790468 |bibcode=2021Natur.592..571D |s2cid=256822524 |url=https://www.nature.com/articles/s41586-021-03405-6 |language=en |issn=1476-4687|url-access=subscription}}</ref> the high level of economic losses from [[biological invasion]]s, showing they have risen to the level of economic damage costs from floods or earthquakes, which are [[Economic impacts of climate change|also rising]].<ref>{{#invoke:cite journal||last1=Turbelin |first1=Anna J. |last2=Cuthbert |first2=Ross N. |last3=Essl |first3=Franz |last4=Haubrock |first4=Phillip J. |last5=Ricciardi |first5=Anthony |last6=Courchamp |first6=Franck |title=Biological invasions are as costly as natural hazards |journal=Perspectives in Ecology and Conservation |date=1 April 2023 |volume=21 |issue=2 |pages=143–150 |doi=10.1016/j.pecon.2023.03.002 |s2cid=257853902 |language=en |issn=2530-0644|doi-access=free |bibcode=2023PEcoC..21..143T }}
* University press release: {{#invoke:cite news||title=Biological invasions as costly as natural disasters, study finds |url=https://phys.org/news/2023-04-biological-invasions-natural-disasters.html |access-date=27 May 2023 |work=phys.org |language=en}}</ref>
* University press release: {{#invoke:cite news||title=Biological invasions as costly as natural disasters, study finds |url=https://phys.org/news/2023-04-biological-invasions-natural-disasters.html |access-date=27 May 2023 |work=phys.org |language=en}}</ref>
*{{vanchor|19 April}}
*{{vanchor|19 April}}
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*{{vanchor|24 April}}
*{{vanchor|24 April}}
**Astronomers release close-up global images, for the first time, of the Martian moon [[Deimos (moon)|Deimos]] that were taken by the Mars [[Hope orbiter]].<ref name="SPC-20230424">{{#invoke:cite news||last=Howell |first=Elizabeth |title=This is our 1st detailed look at Mars' most mysterious moon Deimos (photos) – The debate over the moon's origin story is not over yet. |url=https://www.space.com/mars-moon-deimos-image-origin-story |date=24 April 2023 |work=[[Space.com]] |access-date=25 April 2023 }}</ref>
**Astronomers release close-up global images, for the first time, of the Martian moon [[Deimos (moon)|Deimos]] that were taken by the Mars [[Hope orbiter]].<ref name="SPC-20230424">{{#invoke:cite news||last=Howell |first=Elizabeth |title=This is our 1st detailed look at Mars' most mysterious moon Deimos (photos) – The debate over the moon's origin story is not over yet. |url=https://www.space.com/mars-moon-deimos-image-origin-story |date=24 April 2023 |work=[[Space.com]] |access-date=25 April 2023 }}</ref>
**The first review of issues identified in [[Meta (prefix)|meta]]-science of [[metascience]] is published, providing an overview of ten "questionable" practices (QMPs) in the field such as "overplaying the role of [[Replication (scientific method)|replication]] in [[science]]" and [[preregistration]] potential.<ref>{{#invoke:cite journal||last1=Rubin |first1=Mark |title=Questionable Metascience Practices |journal=Journal of Trial & Error |date=24 April 2023 |doi=10.36850/mr4 |doi-access=free |language=en}}</ref>
**The first review of issues identified in [[Meta (prefix)|meta]]-science of [[metascience]] is published, providing an overview of ten "questionable" practices (QMPs) in the field such as "overplaying the role of [[Replication (scientific method)|replication]] in [[science]]" and [[preregistration]] potential.<ref>{{#invoke:cite journal||last1=Rubin |first1=Mark |title=Questionable Metascience Practices |journal=Journal of Trial & Error |date=24 April 2023 |volume=4 |pages=5–20 |doi=10.36850/mr4 |doi-access=free |language=en}}</ref>
**A [[policy studies|policy study]] identifies reduction of [[car]] travel activity as the [[prioritization|most important]] [[transportation policy]] option in [[Climate change mitigation|reducing GHG emissions]] to levels comparable to [[carbon budget]] levels, with a "decrease car distance driven and [[car ownership]] by over 80% as compared to current levels" by 2027 being effective in "edging close to the [[Goal|designated]] carbon budget" in their case-study of London and [[electrification]] being highly insufficient.<ref>{{#invoke:cite journal||last1=Winkler |first1=Lisa |last2=Pearce |first2=Drew |last3=Nelson |first3=Jenny |last4=Babacan |first4=Oytun |title=The effect of sustainable mobility transition policies on cumulative urban transport emissions and energy demand |journal=Nature Communications |date=24 April 2023 |volume=14 |issue=1 |page=2357 |doi=10.1038/s41467-023-37728-x |pmid=37095105 |pmc=10125996 |bibcode=2023NatCo..14.2357W |language=en |issn=2041-1723|doi-access=free}}</ref> On 20 April, an international study indicates that the contemporary domestic policy-proposal of a [[Speed limits in Germany|general speed limit on highways in Germany]], the only large country in the world without such, for a quick GHG emissions reduction would also be economically beneficial. It points to a [[Climate justice|climate change mitigation law]] (KSG) that mandated emission reductions in this sector<!--https://www.heise.de/news/Studie-zum-Tempolimit-Normalfahrer-subventionieren-Raser-8975820.html--><ref>{{#invoke:cite journal||last1=Gössling |first1=Stefan |last2=Kees |first2=Jessica |last3=Litman |first3=Todd |last4=Humpe |first4=Andreas |title=The economic cost of a 130 kph speed limit in Germany |journal=Ecological Economics |date=1 July 2023 |volume=209 |page=107850 |doi=10.1016/j.ecolecon.2023.107850 |language=en |issn=0921-8009|doi-access=free|bibcode=2023EcoEc.20907850G }}</ref> that was changed in 2023 so as to remove these obligations.<ref>{{#invoke:cite news||title=Volker Wissing muss kein Klimasofortprogramm vorlegen |url=https://www.zeit.de/politik/deutschland/2023-04/bundesverkehrsminister-volker-wissing-kein-klima-sofortprogramm |access-date=28 May 2023 |work=Zeit}}</ref>
**A [[policy studies|policy study]] identifies reduction of [[car]] travel activity as the [[prioritization|most important]] [[transportation policy]] option in [[Climate change mitigation|reducing GHG emissions]] to levels comparable to [[carbon budget]] levels, with a "decrease car distance driven and [[car ownership]] by over 80% as compared to current levels" by 2027 being effective in "edging close to the [[Goal|designated]] carbon budget" in their case-study of London and [[electrification]] being highly insufficient.<ref>{{#invoke:cite journal||last1=Winkler |first1=Lisa |last2=Pearce |first2=Drew |last3=Nelson |first3=Jenny |last4=Babacan |first4=Oytun |title=The effect of sustainable mobility transition policies on cumulative urban transport emissions and energy demand |journal=Nature Communications |date=24 April 2023 |volume=14 |issue=1 |page=2357 |doi=10.1038/s41467-023-37728-x |pmid=37095105 |pmc=10125996 |bibcode=2023NatCo..14.2357W |language=en |issn=2041-1723|doi-access=free}}</ref> On 20 April, an international study indicates that the contemporary domestic policy-proposal of a [[Speed limits in Germany|general speed limit on highways in Germany]], the only large country in the world without such, for a quick GHG emissions reduction would also be economically beneficial. It points to a [[Climate justice|climate change mitigation law]] (KSG) that mandated emission reductions in this sector<!--https://www.heise.de/news/Studie-zum-Tempolimit-Normalfahrer-subventionieren-Raser-8975820.html--><ref>{{#invoke:cite journal||last1=Gössling |first1=Stefan |last2=Kees |first2=Jessica |last3=Litman |first3=Todd |last4=Humpe |first4=Andreas |title=The economic cost of a 130 kph speed limit in Germany |journal=Ecological Economics |date=1 July 2023 |volume=209 |page=107850 |doi=10.1016/j.ecolecon.2023.107850 |language=en |issn=0921-8009|doi-access=free|bibcode=2023EcoEc.20907850G }}</ref> that was changed in 2023 so as to remove these obligations.<ref>{{#invoke:cite news||title=Volker Wissing muss kein Klimasofortprogramm vorlegen |url=https://www.zeit.de/politik/deutschland/2023-04/bundesverkehrsminister-volker-wissing-kein-klima-sofortprogramm |access-date=28 May 2023 |work=Zeit}}</ref>
*{{vanchor|25 April}}
*{{vanchor|25 April}}
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**The first-ever global assessment of [[Retreat of glaciers since 1850|glacier mass loss]] from satellite [[Radar altimeter|radar altimetry]] is published. It shows that glaciers lost 2,720 gigatonnes of ice, about 2% of their volume, between 2010 and 2020.<ref>{{#invoke:cite news||date=26 April 2023 |title=Glacier Mass Loss Between 2010 and 2020 Dominated by Atmospheric Forcing |journal=[[Geophysical Research Letters]] |doi=10.1029/2023GL102954 |last1=Jakob |first1=Livia |last2=Gourmelen |first2=Noel |volume=50 |issue=8 |doi-access=free}}</ref>
**The first-ever global assessment of [[Retreat of glaciers since 1850|glacier mass loss]] from satellite [[Radar altimeter|radar altimetry]] is published. It shows that glaciers lost 2,720 gigatonnes of ice, about 2% of their volume, between 2010 and 2020.<ref>{{#invoke:cite news||date=26 April 2023 |title=Glacier Mass Loss Between 2010 and 2020 Dominated by Atmospheric Forcing |journal=[[Geophysical Research Letters]] |doi=10.1029/2023GL102954 |last1=Jakob |first1=Livia |last2=Gourmelen |first2=Noel |volume=50 |issue=8 |doi-access=free}}</ref>
*{{vanchor|28 April}} – Progress in [[Artificial intelligence|AI software]]:
*{{vanchor|28 April}} – Progress in [[Artificial intelligence|AI software]]:
**[[ChatGPT]] is shown to outperform human doctors in responding to online medical questions when measured on quality and empathy by "a team of licensed health care professionals",<!--<ref>{{Cite news |date=28 April 2023 |title=AI has better 'bedside manner' than some doctors, study finds |work=The Guardian |url=https://www.theguardian.com/technology/2023/apr/28/ai-has-better-bedside-manner-than-some-doctors-study-finds |access-date=29 April 2023}}</ref>--><ref>{{#invoke:cite journal||last1=Ayers |first1=John W. |last2=Poliak |first2=Adam |last3=Dredze |first3=Mark |last4=Leas |first4=Eric C. |last5=Zhu |first5=Zechariah |last6=Kelley |first6=Jessica B. |last7=Faix |first7=Dennis J. |last8=Goodman |first8=Aaron M. |last9=Longhurst |first9=Christopher A. |last10=Hogarth |first10=Michael |last11=Smith |first11=Davey M. |title=Comparing Physician and Artificial Intelligence Chatbot Responses to Patient Questions Posted to a Public Social Media Forum |journal=JAMA Internal Medicine |date=28 April 2023 |volume=183 |issue=6 |pages=589–596 |doi=10.1001/jamainternmed.2023.1838 |pmid=37115527 |pmc=10148230 |issn=2168-6106|url=https://www.researchgate.net/publication/370374478 |pmc-embargo-date=April 28, 2024 }}</ref> albeit the chatbot may have previously been trained with these [[reddit]] [[question and answer website|question and answers threads]].
**[[ChatGPT]] is shown to outperform human doctors in responding to online medical questions when measured on quality and empathy by "a team of licensed health care professionals",<!--<ref>{{Cite news |date=28 April 2023 |title=AI has better 'bedside manner' than some doctors, study finds |work=The Guardian |url=https://www.theguardian.com/technology/2023/apr/28/ai-has-better-bedside-manner-than-some-doctors-study-finds |access-date=29 April 2023}}</ref>--><ref>{{#invoke:cite journal||last1=Ayers |first1=John W. |last2=Poliak |first2=Adam |last3=Dredze |first3=Mark |last4=Leas |first4=Eric C. |last5=Zhu |first5=Zechariah |last6=Kelley |first6=Jessica B. |last7=Faix |first7=Dennis J. |last8=Goodman |first8=Aaron M. |last9=Longhurst |first9=Christopher A. |last10=Hogarth |first10=Michael |last11=Smith |first11=Davey M. |title=Comparing Physician and Artificial Intelligence Chatbot Responses to Patient Questions Posted to a Public Social Media Forum |journal=JAMA Internal Medicine |date=28 April 2023 |volume=183 |issue=6 |pages=589–596 |doi=10.1001/jamainternmed.2023.1838 |pmid=37115527 |pmc=10148230 |issn=2168-6106|url=https://www.researchgate.net/publication/370374478 }}</ref> albeit the chatbot may have previously been trained with these [[reddit]] [[question and answer website|question and answers threads]].
**Further [[Large language model|LLM]] developments during what has been called an "[[AI boom]]" include: local or [[free and open source software|open source]] versions of [[LLaMA]] which was [[Internet leak|leaked]] in March,<ref>{{#invoke:cite news||last1=Edwards |first1=Benj |title=You can now run a GPT-3-level AI model on your laptop, phone, and Raspberry Pi |url=https://arstechnica.com/information-technology/2023/03/you-can-now-run-a-gpt-3-level-ai-model-on-your-laptop-phone-and-raspberry-pi/ |work=Ars Technica |date=13 March 2023 |language=en-us}}</ref><ref>{{#invoke:cite news||title=RedPajama replicates LLaMA dataset to build open source, state-of-the-art LLMs |url=https://venturebeat.com/ai/redpajama-replicates-llama-to-build-open-source-state-of-the-art-llms/ |access-date=28 May 2023 |work=VentureBeat |date=18 April 2023}}</ref><ref>{{#invoke:cite news||last1=Metz |first1=Cade |last2=Isaac |first2=Mike |title=In Battle Over A.I., Meta Decides to Give Away Its Crown Jewels |url=https://www.nytimes.com/2023/05/18/technology/ai-meta-open-source.html |access-date=28 May 2023 |work=The New York Times |date=18 May 2023}}</ref> news outlets report on GPT4-based [[Auto-GPT]] that given natural language commands uses the Internet and other tools in attempts to understand and achieve its tasks with unclear or so-far little practicality,<ref>{{#invoke:cite news||title=What is Auto-GPT? Everything to know about the next powerful AI tool |url=https://www.zdnet.com/article/what-is-auto-gpt-everything-to-know-about-the-next-powerful-ai-tool/ |access-date=28 May 2023 |work=ZDNET |language=en}}</ref> a systematic evaluation of answers from four "generative search engines" suggests their outputs "appear informative, but frequently contain unsupported statements and inaccurate citations",<ref>{{cite arXiv |title=Evaluating Verifiability in Generative Search Engines |eprint=2304.09848 |last1=Liu |first1=Nelson F. |last2=Zhang |first2=Tianyi |last3=Liang |first3=Percy |year=2023 |class=cs.CL }}</ref> a multi-modal open source tool for understanding and generating speech,<ref>{{cite arXiv |title=AudioGPT: Understanding and Generating Speech, Music, Sound, and Talking Head |eprint=2304.12995 |last1=Huang |first1=Rongjie |last2=Li |first2=Mingze |last3=Yang |first3=Dongchao |last4=Shi |first4=Jiatong |last5=Chang |first5=Xuankai |last6=Ye |first6=Zhenhui |last7=Wu |first7=Yuning |last8=Hong |first8=Zhiqing |last9=Huang |first9=Jiawei |last10=Liu |first10=Jinglin |last11=Ren |first11=Yi |last12=Zhao |first12=Zhou |last13=Watanabe |first13=Shinji |year=2023 |class=cs.CL }}</ref> a data scientist argues<!--in the journal Nature and with large public attention--> that "researchers need to collaborate to develop open-source LLMs that are [[Explainable artificial intelligence|transparent]]" and independent,<ref>{{#invoke:cite journal||last1=Spirling |first1=Arthur |title=Why open-source generative AI models are an ethical way forward for science |journal=Nature |page=413 |language=en |doi=10.1038/d41586-023-01295-4 |date=18 April 2023|volume=616 |issue=7957 |pmid=37072520 |bibcode=2023Natur.616..413S |s2cid=258183146 |doi-access=free }}</ref> [[Stability AI]] launches an open source LLM.<ref>{{#invoke:cite news||last1=Roth |first1=Emma |title=Stability AI announces new open-source large language model |url=https://www.theverge.com/2023/4/19/23689883/stability-ai-open-source-large-language-model-stablelm |access-date=28 May 2023 |work=The Verge |date=19 April 2023}}</ref>
**Further [[Large language model|LLM]] developments during what has been called an "[[AI boom]]" include: local or [[free and open source software|open source]] versions of [[LLaMA]] which was [[Internet leak|leaked]] in March,<ref>{{#invoke:cite news||last1=Edwards |first1=Benj |title=You can now run a GPT-3-level AI model on your laptop, phone, and Raspberry Pi |url=https://arstechnica.com/information-technology/2023/03/you-can-now-run-a-gpt-3-level-ai-model-on-your-laptop-phone-and-raspberry-pi/ |work=Ars Technica |date=13 March 2023 |language=en-us}}</ref><ref>{{#invoke:cite news||title=RedPajama replicates LLaMA dataset to build open source, state-of-the-art LLMs |url=https://venturebeat.com/ai/redpajama-replicates-llama-to-build-open-source-state-of-the-art-llms/ |access-date=28 May 2023 |work=VentureBeat |date=18 April 2023}}</ref><ref>{{#invoke:cite news||last1=Metz |first1=Cade |last2=Isaac |first2=Mike |title=In Battle Over A.I., Meta Decides to Give Away Its Crown Jewels |url=https://www.nytimes.com/2023/05/18/technology/ai-meta-open-source.html |access-date=28 May 2023 |work=The New York Times |date=18 May 2023}}</ref> news outlets report on GPT4-based [[Auto-GPT]] that given natural language commands uses the Internet and other tools in attempts to understand and achieve its tasks with unclear or so-far little practicality,<ref>{{#invoke:cite news||title=What is Auto-GPT? Everything to know about the next powerful AI tool |url=https://www.zdnet.com/article/what-is-auto-gpt-everything-to-know-about-the-next-powerful-ai-tool/ |access-date=28 May 2023 |work=ZDNET |language=en}}</ref> a systematic evaluation of answers from four "generative search engines" suggests their outputs "appear informative, but frequently contain unsupported statements and inaccurate citations",<ref>{{cite arXiv |title=Evaluating Verifiability in Generative Search Engines |eprint=2304.09848 |last1=Liu |first1=Nelson F. |last2=Zhang |first2=Tianyi |last3=Liang |first3=Percy |year=2023 |class=cs.CL }}</ref> a multi-modal open source tool for understanding and generating speech,<ref>{{cite arXiv |title=AudioGPT: Understanding and Generating Speech, Music, Sound, and Talking Head |eprint=2304.12995 |last1=Huang |first1=Rongjie |last2=Li |first2=Mingze |last3=Yang |first3=Dongchao |last4=Shi |first4=Jiatong |last5=Chang |first5=Xuankai |last6=Ye |first6=Zhenhui |last7=Wu |first7=Yuning |last8=Hong |first8=Zhiqing |last9=Huang |first9=Jiawei |last10=Liu |first10=Jinglin |last11=Ren |first11=Yi |last12=Zhao |first12=Zhou |last13=Watanabe |first13=Shinji |year=2023 |class=cs.CL }}</ref> a data scientist argues<!--in the journal Nature and with large public attention--> that "researchers need to collaborate to develop open-source LLMs that are [[Explainable artificial intelligence|transparent]]" and independent,<ref>{{#invoke:cite journal||last1=Spirling |first1=Arthur |title=Why open-source generative AI models are an ethical way forward for science |journal=Nature |page=413 |language=en |doi=10.1038/d41586-023-01295-4 |date=18 April 2023|volume=616 |issue=7957 |pmid=37072520 |bibcode=2023Natur.616..413S |s2cid=258183146 |doi-access=free }}</ref> [[Stability AI]] launches an open source LLM.<ref>{{#invoke:cite news||last1=Roth |first1=Emma |title=Stability AI announces new open-source large language model |url=https://www.theverge.com/2023/4/19/23689883/stability-ai-open-source-large-language-model-stablelm |access-date=28 May 2023 |work=The Verge |date=19 April 2023}}</ref>
**On 12 April, researchers demonstrate an '{{vanchor|AI scientist}}' that can create of models of natural phenomena from knowledge [[axiom]]s and experimental data, showing the software can rediscover {{tooltip|physical laws|e.g. "Kepler's third law of planetary motion, Einstein's relativistic time-dilation law, and Langmuir's theory of adsorption"}} using logical reasoning and few data points.<ref>{{#invoke:cite news||last1=Sorokina |first1=Olsy |title='AI scientist' brings us a step closer to the age of machine-generated scientific discovery |url=https://www.cbc.ca/radio/quirks/artificial-intelligence-ai-scientist-1.6811085 |access-date=28 May 2023 |work=CBC}}</ref><ref>{{#invoke:cite journal||last1=Cornelio |first1=Cristina |last2=Dash |first2=Sanjeeb |last3=Austel |first3=Vernon |last4=Josephson |first4=Tyler R. |last5=Goncalves |first5=Joao |last6=Clarkson |first6=Kenneth L. |last7=Megiddo |first7=Nimrod |last8=El Khadir |first8=Bachir |last9=Horesh |first9=Lior |title=Combining data and theory for derivable scientific discovery with AI-Descartes |journal=Nature Communications |date=12 April 2023 |volume=14 |issue=1 |page=1777 |doi=10.1038/s41467-023-37236-y |pmid=37045814 |pmc=10097814 |bibcode=2023NatCo..14.1777C |language=en |issn=2041-1723|doi-access=free}}</ref>
**On 12 April, researchers demonstrate an '{{vanchor|AI scientist}}' that can create of models of natural phenomena from knowledge [[axiom]]s and experimental data, showing the software can rediscover {{tooltip|physical laws|e.g. "Kepler's third law of planetary motion, Einstein's relativistic time-dilation law, and Langmuir's theory of adsorption"}} using logical reasoning and few data points.<ref>{{#invoke:cite news||last1=Sorokina |first1=Olsy |title='AI scientist' brings us a step closer to the age of machine-generated scientific discovery |url=https://www.cbc.ca/radio/quirks/artificial-intelligence-ai-scientist-1.6811085 |access-date=28 May 2023 |work=CBC}}</ref><ref>{{#invoke:cite journal||last1=Cornelio |first1=Cristina |last2=Dash |first2=Sanjeeb |last3=Austel |first3=Vernon |last4=Josephson |first4=Tyler R. |last5=Goncalves |first5=Joao |last6=Clarkson |first6=Kenneth L. |last7=Megiddo |first7=Nimrod |last8=El Khadir |first8=Bachir |last9=Horesh |first9=Lior |title=Combining data and theory for derivable scientific discovery with AI-Descartes |journal=Nature Communications |date=12 April 2023 |volume=14 |issue=1 |page=1777 |doi=10.1038/s41467-023-37236-y |pmid=37045814 |pmc=10097814 |bibcode=2023NatCo..14.1777C |language=en |issn=2041-1723|doi-access=free}}</ref>
*{{vanchor|Therapeutics_April|text=Promising results of therapeutic candidates are reported}}: a review suggests {{tooltip|daily|(not bulk or burst)}} vitamin D<sub>3</sub> [[Diet and cancer#Other|may reduce cancer mortality]] by around 12% (31 Mar),<ref>{{#invoke:cite journal||last1=Kuznia |first1=Sabine |last2=Zhu |display-authors=et al. |title=Efficacy of vitamin D3 supplementation on cancer mortality: Systematic review and individual patient data meta-analysis of randomised controlled trials |journal=Ageing Research Reviews |date=1 June 2023 |volume=87 |page=101923 |doi=10.1016/j.arr.2023.101923 |pmid=37004841 |pmc=10214278 |language=en |issn=1568-1637}}</ref> review of [[phototherapy|experimental phototherapies]] against dementia cognitive decline (5 Apr),<ref>{{#invoke:cite journal||last1=Lu |first1=Xinlian |last2=Liu |first2=Chengyu |last3=Shao |first3=Feng |title=Phototherapy improves cognitive function in dementia: A systematic review and meta-analysis |journal=Brain and Behavior |date=May 2023 |volume=13 |issue=5 |pages=e2952 |doi=10.1002/brb3.2952 |pmid=37017012 |pmc=10176000 |s2cid=257953666 |language=en |issn=2162-3279}}</ref> mice-tested ''[[L. reuteri]]''-and-[[tryptophan]]-diet for [[checkpoint inhibitor]] potentiation (6 Apr),<ref>{{#invoke:cite journal||last1=Bender |first1=Mackenzie J. |last2=McPherson |first2=Alex C. |display-authors=et al. |title=Dietary tryptophan metabolite released by intratumoral Lactobacillus reuteri facilitates immune checkpoint inhibitor treatment |journal=Cell |date=April 2023 |volume=186 |issue=9 |pages=1846–1862.e26 |doi=10.1016/j.cell.2023.03.011|pmid=37028428 |pmc=10148916 |pmc-embargo-date=April 27, 2024 }}</ref> doxycycline [[post-exposure prophylaxis]] against [[Sexually transmitted infection|STIs]] (6 Apr), an engineered probiotic against [[Alcohol and health|alcohol-induced damage]] (11 Apr),<ref>{{#invoke:cite journal||last1=Jiang |first1=Xiaoxiao |last2=Yan |first2=Chunlong |last3=Zhang |first3=Hanlin |last4=Chen |first4=Li |last5=Jiang |first5=Rui |last6=Zheng |first6=Kexin |last7=Jin |first7=Wanzhu |last8=Ma |first8=Huijuan |last9=Liu |first9=Xiaomeng |last10=Dong |first10=Meng |title=Oral Probiotic Expressing Human Ethanol Dehydrogenase Attenuates Damage Caused by Acute Alcohol Consumption in Mice |journal=Microbiology Spectrum |date=11 April 2023 |volume=11 |issue=3 |pages=e0429422 |doi=10.1128/spectrum.04294-22 |pmid=37039510 |pmc=10269551 |language=en |issn=2165-0497}}</ref> phase 2 trialed [[AXA1125]] against [[long COVID]] fatigue (14 Apr),<ref>{{#invoke:cite journal||last1=Finnigan |first1=Lucy E.M. |last2=Cassar |first2=Mark Philip |display-authors=et al. |title=Efficacy and tolerability of an endogenous metabolic modulator (AXA1125) in fatigue-predominant long COVID: a single-centre, double-blind, randomised controlled phase 2a pilot study |journal=eClinicalMedicine |date=May 2023 |volume=59 |page=101946 |doi=10.1016/j.eclinm.2023.101946|pmid=37223439 |pmc=10102537 }}</ref> review finds cranberry products useful against [[urinary tract infection|UTIs]] in women (17 Apr),<ref>{{#invoke:cite journal||last1=Williams |first1=Gabrielle |last2=Stothart |first2=Christopher I |last3=Hahn |first3=Deirdre |last4=Stephens |first4=Jacqueline H |last5=Craig |first5=Jonathan C |last6=Hodson |first6=Elisabeth M |title=Cranberries for preventing urinary tract infections |journal=Cochrane Database of Systematic Reviews |date=10 November 2023 |volume=2023 |issue=11 |pages=CD001321 |doi=10.1002/14651858.CD001321.pub7 |pmid=37947276 |pmc=10636779 |pmc-embargo-date=November 10, 2024 |s2cid=265102780 |language=en}}</ref> and macaques-tested low-intensity focus ultrasound delivery of [[Adeno-associated virus|AAV]] into brain regions against brain diseases (19 Apr).<ref>{{#invoke:cite journal||last1=Blesa |first1=Javier |last2=Pineda-Pardo |first2=José A. |display-authors=et al. |title=BBB opening with focused ultrasound in nonhuman primates and Parkinson's disease patients: Targeted AAV vector delivery and PET imaging |journal=Science Advances |date=21 April 2023 |volume=9 |issue=16 |pages=eadf4888 |doi=10.1126/sciadv.adf4888 |pmid=37075119 |pmc=10115413 |bibcode=2023SciA....9F4888B |s2cid=258238740 |language=en |issn=2375-2548}}</ref> Progress in screening: an [[Alpha-synuclein|α-synuclein]] [[Seed amplification assay|SAA]] ([[assay]]) against Parkinson's disease (12 Apr),<ref>{{#invoke:cite journal||last1=Siderowf |first1=Andrew |last2=Concha-Marambio |first2=Luis |display-authors=et al. |title=Assessment of heterogeneity among participants in the Parkinson's Progression Markers Initiative cohort using α-synuclein seed amplification: a cross-sectional study |journal=The Lancet Neurology |date=May 2023 |volume=22 |issue=5 |pages=407–417 |doi=10.1016/S1474-4422(23)00109-6|pmid=37059509 |pmc=10627170 |s2cid=258083747 }}</ref> and exogenously administered bioengineered sensors that amplify urinary cancer biomarkers for detection (24 Apr).<ref>{{#invoke:cite journal||last1=Hao |first1=Liangliang |last2=Zhao |first2=Renee T. |last3=Welch |first3=Nicole L. |last4=Tan |first4=Edward Kah Wei |last5=Zhong |first5=Qian |last6=Harzallah |first6=Nour Saida |last7=Ngambenjawong |first7=Chayanon |last8=Ko |first8=Henry |last9=Fleming |first9=Heather E. |last10=Sabeti |first10=Pardis C. |last11=Bhatia |first11=Sangeeta N. |title=CRISPR-Cas-amplified urinary biomarkers for multiplexed and portable cancer diagnostics |journal=Nature Nanotechnology |date=24 April 2023 |volume=18 |issue=7 |pages=798–807 |doi=10.1038/s41565-023-01372-9 |pmid=37095220 |pmc=10359190 |bibcode=2023NatNa..18..798H |language=en |issn=1748-3395|doi-access=free}}</ref>
*{{vanchor|Therapeutics_April|text=Promising results of therapeutic candidates are reported}}: a review suggests {{tooltip|daily|(not bulk or burst)}} vitamin D<sub>3</sub> [[Diet and cancer#Other|may reduce cancer mortality]] by around 12% (31 Mar),<ref>{{#invoke:cite journal||last1=Kuznia |first1=Sabine |last2=Zhu |display-authors=et al. |title=Efficacy of vitamin D3 supplementation on cancer mortality: Systematic review and individual patient data meta-analysis of randomised controlled trials |journal=Ageing Research Reviews |date=1 June 2023 |volume=87 |page=101923 |doi=10.1016/j.arr.2023.101923 |pmid=37004841 |pmc=10214278 |language=en |issn=1568-1637}}</ref> review of [[phototherapy|experimental phototherapies]] against dementia cognitive decline (5 Apr),<ref>{{#invoke:cite journal||last1=Lu |first1=Xinlian |last2=Liu |first2=Chengyu |last3=Shao |first3=Feng |title=Phototherapy improves cognitive function in dementia: A systematic review and meta-analysis |journal=Brain and Behavior |date=May 2023 |volume=13 |issue=5 |pages=e2952 |doi=10.1002/brb3.2952 |pmid=37017012 |pmc=10176000 |s2cid=257953666 |language=en |issn=2162-3279}}</ref> mice-tested ''[[L. reuteri]]''-and-[[tryptophan]]-diet for [[checkpoint inhibitor]] potentiation (6 Apr),<ref>{{#invoke:cite journal||last1=Bender |first1=Mackenzie J. |last2=McPherson |first2=Alex C. |display-authors=et al. |title=Dietary tryptophan metabolite released by intratumoral Lactobacillus reuteri facilitates immune checkpoint inhibitor treatment |journal=Cell |date=April 2023 |volume=186 |issue=9 |pages=1846–1862.e26 |doi=10.1016/j.cell.2023.03.011|pmid=37028428 |pmc=10148916 }}</ref> doxycycline [[post-exposure prophylaxis]] against [[Sexually transmitted infection|STIs]] (6 Apr), an engineered probiotic against [[Alcohol and health|alcohol-induced damage]] (11 Apr),<ref>{{#invoke:cite journal||last1=Jiang |first1=Xiaoxiao |last2=Yan |first2=Chunlong |last3=Zhang |first3=Hanlin |last4=Chen |first4=Li |last5=Jiang |first5=Rui |last6=Zheng |first6=Kexin |last7=Jin |first7=Wanzhu |last8=Ma |first8=Huijuan |last9=Liu |first9=Xiaomeng |last10=Dong |first10=Meng |title=Oral Probiotic Expressing Human Ethanol Dehydrogenase Attenuates Damage Caused by Acute Alcohol Consumption in Mice |journal=Microbiology Spectrum |date=11 April 2023 |volume=11 |issue=3 |pages=e0429422 |doi=10.1128/spectrum.04294-22 |pmid=37039510 |pmc=10269551 |language=en |issn=2165-0497}}</ref> phase 2 trialed [[AXA1125]] against [[long COVID]] fatigue (14 Apr),<ref>{{#invoke:cite journal||last1=Finnigan |first1=Lucy E.M. |last2=Cassar |first2=Mark Philip |display-authors=et al. |title=Efficacy and tolerability of an endogenous metabolic modulator (AXA1125) in fatigue-predominant long COVID: a single-centre, double-blind, randomised controlled phase 2a pilot study |journal=eClinicalMedicine |date=May 2023 |volume=59 |page=101946 |doi=10.1016/j.eclinm.2023.101946|pmid=37223439 |pmc=10102537 }}</ref> review finds cranberry products useful against [[urinary tract infection|UTIs]] in women (17 Apr) (but is not suggested for older people, those have trouble emptying their bladder, or people who are pregnant<ref>{{Cite journal |last1=Williams |first1=Gabrielle |last2=Stothart |first2=Christopher I. |last3=Hahn |first3=Deirdre |last4=Stephens |first4=Jacqueline H. |last5=Craig |first5=Jonathan C. |last6=Hodson |first6=Elisabeth M. |date=2023-11-10 |title=Cranberries for preventing urinary tract infections |journal=The Cochrane Database of Systematic Reviews |volume=2023 |issue=11 |pages=CD001321 |doi=10.1002/14651858.CD001321.pub7 |issn=1469-493X |pmc=10636779 |pmid=37947276|pmc-embargo-date=November 10, 2024 }}</ref>),<ref>{{#invoke:cite journal||last1=Williams |first1=Gabrielle |last2=Stothart |first2=Christopher I |last3=Hahn |first3=Deirdre |last4=Stephens |first4=Jacqueline H |last5=Craig |first5=Jonathan C |last6=Hodson |first6=Elisabeth M |title=Cranberries for preventing urinary tract infections |journal=Cochrane Database of Systematic Reviews |date=10 November 2023 |volume=2023 |issue=11 |pages=CD001321 |doi=10.1002/14651858.CD001321.pub7 |pmid=37947276 |pmc=10636779 |pmc-embargo-date=November 10, 2024 |s2cid=265102780 |language=en}}</ref> and macaques-tested low-intensity focus ultrasound delivery of [[Adeno-associated virus|AAV]] into brain regions against brain diseases (19 Apr).<ref>{{#invoke:cite journal||last1=Blesa |first1=Javier |last2=Pineda-Pardo |first2=José A. |display-authors=et al. |title=BBB opening with focused ultrasound in nonhuman primates and Parkinson's disease patients: Targeted AAV vector delivery and PET imaging |journal=Science Advances |date=21 April 2023 |volume=9 |issue=16 |pages=eadf4888 |doi=10.1126/sciadv.adf4888 |pmid=37075119 |pmc=10115413 |bibcode=2023SciA....9F4888B |s2cid=258238740 |language=en |issn=2375-2548}}</ref> Progress in screening: an [[Alpha-synuclein|α-synuclein]] [[Seed amplification assay|SAA]] ([[assay]]) against Parkinson's disease (12 Apr),<ref>{{#invoke:cite journal||last1=Siderowf |first1=Andrew |last2=Concha-Marambio |first2=Luis |display-authors=et al. |title=Assessment of heterogeneity among participants in the Parkinson's Progression Markers Initiative cohort using α-synuclein seed amplification: a cross-sectional study |journal=The Lancet Neurology |date=May 2023 |volume=22 |issue=5 |pages=407–417 |doi=10.1016/S1474-4422(23)00109-6|pmid=37059509 |pmc=10627170 |s2cid=258083747 }}</ref> and exogenously administered bioengineered sensors that amplify urinary cancer biomarkers for detection (24 Apr).<ref>{{#invoke:cite journal||last1=Hao |first1=Liangliang |last2=Zhao |first2=Renee T. |last3=Welch |first3=Nicole L. |last4=Tan |first4=Edward Kah Wei |last5=Zhong |first5=Qian |last6=Harzallah |first6=Nour Saida |last7=Ngambenjawong |first7=Chayanon |last8=Ko |first8=Henry |last9=Fleming |first9=Heather E. |last10=Sabeti |first10=Pardis C. |last11=Bhatia |first11=Sangeeta N. |title=CRISPR-Cas-amplified urinary biomarkers for multiplexed and portable cancer diagnostics |journal=Nature Nanotechnology |date=24 April 2023 |volume=18 |issue=7 |pages=798–807 |doi=10.1038/s41565-023-01372-9 |pmid=37095220 |pmc=10359190 |bibcode=2023NatNa..18..798H |language=en |issn=1748-3395|doi-access=free}}</ref>
*{{vanchor|Innovations_April|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: a laser-using drone-based [[methane plume]] localization method,<ref>{{#invoke:cite news||title=Drohnen: Lasergestütztes System spürt Methangas-Lecks auf |url=https://www.heise.de/news/Drohnen-spueren-lasergestuetzt-umweltschaedliche-Gaslecks-auf-8965737.html |access-date=28 May 2023 |work=heise online |date=17 April 2023 |language=de}}</ref><ref>{{#invoke:cite journal||last1=Soskind |first1=Michael G. |last2=Li |first2=Nathan P. |last3=Moore |first3=Daniel P. |last4=Chen |first4=Yifeng |last5=Wendt |first5=Lars P. |last6=McSpiritt |first6=James |last7=Zondlo |first7=Mark A. |last8=Wysocki |first8=Gerard |title=Stationary and drone-assisted methane plume localization with dispersion spectroscopy |journal=Remote Sensing of Environment |date=1 May 2023 |volume=289 |page=113513 |doi=10.1016/j.rse.2023.113513 |bibcode=2023RSEnv.28913513S |s2cid=257320852 |language=en |issn=0034-4257|doi-access=free }}</ref> approval of the first [[yeast]]-based cow-free dairy ([[Remilk]]),<ref>{{#invoke:cite news||last1=Singer |first1=Peter |title=The Meat Paradox |url=https://www.theatlantic.com/ideas/archive/2023/05/vegetarian-vegan-eating-meat-consumption-animal-welfare/674150/ |access-date=28 May 2023 |work=The Atlantic |date=24 May 2023 |language=en}}</ref> a [[Tor browser]]-equivalent [[Web browser]] for [[Internet privacy|privacy]]-protected browsing when using a [[VPN]] ([[Mullvad#Browser|Mullvad browser]]),<ref>{{#invoke:cite news||last1=Clark |first1=Mitchell |title=The Tor Project's new privacy-focused browser doesn't use the Tor network |url=https://www.theverge.com/2023/4/3/23665477/mullvad-browser-tor-vpn-privacy-browser |access-date=28 May 2023 |work=The Verge |date=3 April 2023}}</ref><ref>{{#invoke:cite news||title=New Privacy-Focused Browser Aims to Protect Your Data Online |url=https://www.cnet.com/tech/services-and-software/new-privacy-focused-browser-aims-to-protect-your-data-online/ |access-date=28 May 2023 |work=CNET |language=en}}</ref><ref>{{#invoke:cite news||title=Want a more secure browser that's not Tor? Check out Mullvad |url=https://www.zdnet.com/home-and-office/work-life/want-a-more-secure-browser-thats-not-tor-check-out-mullvad/ |access-date=28 May 2023 |work=ZDNET |language=en}}</ref> a [[concentrated solar energy|concentrated solar]]-to-[[green hydrogen|hydrogen]] device approaching viability,<ref>{{#invoke:cite news||title=Concentrated solar reactor generates unprecedented amounts of hydrogen |url=https://physicsworld.com/a/concentrated-solar-reactor-generates-unprecedented-amounts-of-hydrogen/ |access-date=28 May 2023 |work=Physics World |date=18 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Holmes-Gentle |first1=Isaac |last2=Tembhurne |first2=Saurabh |last3=Suter |first3=Clemens |last4=Haussener |first4=Sophia |title=Kilowatt-scale solar hydrogen production system using a concentrated integrated photoelectrochemical device |journal=Nature Energy |date=10 April 2023 |volume=8 |issue=6 |pages=586–596 |doi=10.1038/s41560-023-01247-2 |bibcode=2023NatEn...8..586H |language=en |issn=2058-7546|doi-access=free}}</ref> a method for fat tissue [[cultured meat]],<ref>{{#invoke:cite news||last1=Bryce |first1=Emma |title=Lab-grown meat gets a key missing ingredient: 3D Fat. |url=https://www.anthropocenemagazine.org/2023/04/in-a-big-step-forward-lab-grown-meat-gets-a-key-ingredient-3d-fat/ |access-date=28 May 2023 |date=21 April 2023}}</ref><ref>{{#invoke:cite journal||last1=Yuen Jr |first1=John Se Kit |last2=Saad |first2=Michael K |last3=Xiang |first3=Ning |last4=Barrick |first4=Brigid M |last5=DiCindio |first5=Hailey |last6=Li |first6=Chunmei |last7=Zhang |first7=Sabrina W |last8=Rittenberg |first8=Miriam |last9=Lew |first9=Emily T |last10=Zhang |first10=Kevin Lin |last11=Leung |first11=Glenn |last12=Pietropinto |first12=Jaymie A |last13=Kaplan |first13=David L |author13-link=David L. Kaplan (engineer)|title=Aggregating in vitro-grown adipocytes to produce macroscale cell-cultured fat tissue with tunable lipid compositions for food applications |journal=eLife |date=4 April 2023 |volume=12 |pages=e82120 |doi=10.7554/eLife.82120 |pmid=37014056 |pmc=10072877 |issn=2050-084X|doi-access=free}}</ref> [[flexible electronics|flexible]] [[organic solar cell]]s on [[High-altitude balloon|balloons]] in the 35&nbsp;km [[stratosphere]].<ref>{{#invoke:cite news||title=Using flexible organic solar cells in the stratosphere |url=https://techxplore.com/news/2023-04-flexible-solar-cells-stratosphere.html |access-date=28 May 2023 |work=Science China Press via techxplore.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Xu |first1=Zihan |last2=Xu |first2=Guoning |last3=Luo |first3=Qun |last4=Han |first4=Yunfei |last5=Tang |first5=Yu |last6=Miao |first6=Ying |last7=Li |first7=Yongxiang |last8=Qin |first8=Jian |last9=Guo |first9=Jingbo |last10=Zha |first10=Wusong |last11=Gong |first11=Chao |last12=Lu |first12=Kun |last13=Zhang |first13=Jianqi |last14=Wei |first14=Zhixiang |last15=Cai |first15=Rong |last16=Yang |first16=Yanchu |last17=Li |first17=Zhaojie |last18=Ma |first18=Chang-Qi |title=''In situ'' performance and stability tests of large-area flexible polymer solar cells in the 35-km stratospheric environment |journal=National Science Review |date=15 December 2022 |volume=10 |issue=4 |pages=nwac285 |doi=10.1093/nsr/nwac285 |pmid=36960222 |pmc=10029844 |issn=2095-5138|doi-access=free}}</ref>
*{{vanchor|Innovations_April|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: a laser-using drone-based [[methane plume]] localization method,<ref>{{#invoke:cite news||title=Drohnen: Lasergestütztes System spürt Methangas-Lecks auf |url=https://www.heise.de/news/Drohnen-spueren-lasergestuetzt-umweltschaedliche-Gaslecks-auf-8965737.html |access-date=28 May 2023 |work=heise online |date=17 April 2023 |language=de}}</ref><ref>{{#invoke:cite journal||last1=Soskind |first1=Michael G. |last2=Li |first2=Nathan P. |last3=Moore |first3=Daniel P. |last4=Chen |first4=Yifeng |last5=Wendt |first5=Lars P. |last6=McSpiritt |first6=James |last7=Zondlo |first7=Mark A. |last8=Wysocki |first8=Gerard |title=Stationary and drone-assisted methane plume localization with dispersion spectroscopy |journal=Remote Sensing of Environment |date=1 May 2023 |volume=289 |page=113513 |doi=10.1016/j.rse.2023.113513 |bibcode=2023RSEnv.28913513S |s2cid=257320852 |language=en |issn=0034-4257|doi-access=free }}</ref> approval of the first [[yeast]]-based cow-free dairy ([[Remilk]]),<ref>{{#invoke:cite news||last1=Singer |first1=Peter |title=The Meat Paradox |url=https://www.theatlantic.com/ideas/archive/2023/05/vegetarian-vegan-eating-meat-consumption-animal-welfare/674150/ |access-date=28 May 2023 |work=The Atlantic |date=24 May 2023 |language=en}}</ref> a [[Tor browser]]-equivalent [[Web browser]] for [[Internet privacy|privacy]]-protected browsing when using a [[VPN]] ([[Mullvad#Browser|Mullvad browser]]),<ref>{{#invoke:cite news||last1=Clark |first1=Mitchell |title=The Tor Project's new privacy-focused browser doesn't use the Tor network |url=https://www.theverge.com/2023/4/3/23665477/mullvad-browser-tor-vpn-privacy-browser |access-date=28 May 2023 |work=The Verge |date=3 April 2023}}</ref><ref>{{#invoke:cite news||title=New Privacy-Focused Browser Aims to Protect Your Data Online |url=https://www.cnet.com/tech/services-and-software/new-privacy-focused-browser-aims-to-protect-your-data-online/ |access-date=28 May 2023 |work=CNET |language=en}}</ref><ref>{{#invoke:cite news||title=Want a more secure browser that's not Tor? Check out Mullvad |url=https://www.zdnet.com/home-and-office/work-life/want-a-more-secure-browser-thats-not-tor-check-out-mullvad/ |access-date=28 May 2023 |work=ZDNET |language=en}}</ref> a [[concentrated solar energy|concentrated solar]]-to-[[green hydrogen|hydrogen]] device approaching viability,<ref>{{#invoke:cite news||title=Concentrated solar reactor generates unprecedented amounts of hydrogen |url=https://physicsworld.com/a/concentrated-solar-reactor-generates-unprecedented-amounts-of-hydrogen/ |access-date=28 May 2023 |work=Physics World |date=18 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Holmes-Gentle |first1=Isaac |last2=Tembhurne |first2=Saurabh |last3=Suter |first3=Clemens |last4=Haussener |first4=Sophia |title=Kilowatt-scale solar hydrogen production system using a concentrated integrated photoelectrochemical device |journal=Nature Energy |date=10 April 2023 |volume=8 |issue=6 |pages=586–596 |doi=10.1038/s41560-023-01247-2 |bibcode=2023NatEn...8..586H |language=en |issn=2058-7546|doi-access=free}}</ref> a method for fat tissue [[cultured meat]],<ref>{{#invoke:cite news||last1=Bryce |first1=Emma |title=Lab-grown meat gets a key missing ingredient: 3D Fat. |url=https://www.anthropocenemagazine.org/2023/04/in-a-big-step-forward-lab-grown-meat-gets-a-key-ingredient-3d-fat/ |access-date=28 May 2023 |date=21 April 2023}}</ref><ref>{{#invoke:cite journal||last1=Yuen Jr |first1=John Se Kit |last2=Saad |first2=Michael K |last3=Xiang |first3=Ning |last4=Barrick |first4=Brigid M |last5=DiCindio |first5=Hailey |last6=Li |first6=Chunmei |last7=Zhang |first7=Sabrina W |last8=Rittenberg |first8=Miriam |last9=Lew |first9=Emily T |last10=Zhang |first10=Kevin Lin |last11=Leung |first11=Glenn |last12=Pietropinto |first12=Jaymie A |last13=Kaplan |first13=David L |author13-link=David L. Kaplan (engineer)|title=Aggregating in vitro-grown adipocytes to produce macroscale cell-cultured fat tissue with tunable lipid compositions for food applications |journal=eLife |date=4 April 2023 |volume=12 |pages=e82120 |doi=10.7554/eLife.82120 |pmid=37014056 |pmc=10072877 |issn=2050-084X|doi-access=free}}</ref> [[flexible electronics|flexible]] [[organic solar cell]]s on [[High-altitude balloon|balloons]] in the 35&nbsp;km [[stratosphere]].<ref>{{#invoke:cite news||title=Using flexible organic solar cells in the stratosphere |url=https://techxplore.com/news/2023-04-flexible-solar-cells-stratosphere.html |access-date=28 May 2023 |work=Science China Press via techxplore.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Xu |first1=Zihan |last2=Xu |first2=Guoning |last3=Luo |first3=Qun |last4=Han |first4=Yunfei |last5=Tang |first5=Yu |last6=Miao |first6=Ying |last7=Li |first7=Yongxiang |last8=Qin |first8=Jian |last9=Guo |first9=Jingbo |last10=Zha |first10=Wusong |last11=Gong |first11=Chao |last12=Lu |first12=Kun |last13=Zhang |first13=Jianqi |last14=Wei |first14=Zhixiang |last15=Cai |first15=Rong |last16=Yang |first16=Yanchu |last17=Li |first17=Zhaojie |last18=Ma |first18=Chang-Qi |title=''In situ'' performance and stability tests of large-area flexible polymer solar cells in the 35-km stratospheric environment |journal=National Science Review |date=15 December 2022 |volume=10 |issue=4 |pages=nwac285 |doi=10.1093/nsr/nwac285 |pmid=36960222 |pmc=10029844 |issn=2095-5138|doi-access=free}}</ref>


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[[File:3TMRI.jpg|thumb|1 May: A new non-invasive [[brain-reading]] method for "[[semantic]] decoding" based on [[fMRI]] is demonstrated.]]
[[File:3TMRI.jpg|thumb|1 May: A new non-invasive [[brain-reading]] method for "[[semantic]] decoding" based on [[fMRI]] is demonstrated.]]
*{{vanchor|1 May}}
*{{vanchor|1 May}}
**A new [[brain-reading]] method for "[[semantic]] decoding" is demonstrated. The non-invasive system, based on 16 hours of [[fMRI]] data per participant and a [[Transformer (machine learning model)|transformer]], is able to translate a person's neural activity into a continuous stream of text.<ref>{{#invoke:cite news||date=1 May 2023 |title=AI Brain Activity Decoder Can Translate Thoughts Into Written Words |work=IFL Science |url=https://www.iflscience.com/ai-brain-activity-decoder-can-translate-thoughts-into-written-words-68686 |access-date=2 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Tang |first1=Jerry |last2=LeBel |first2=Amanda |last3=Jain |first3=Shailee |last4=Huth |first4=Alexander G. |title=Semantic reconstruction of continuous language from non-invasive brain recordings |journal=Nature Neuroscience |date=May 2023 |volume=26 |issue=5 |pages=858–866 |doi=10.1038/s41593-023-01304-9 |pmid=37127759 |language=en |issn=1546-1726|biorxiv=10.1101/2022.09.29.509744|s2cid=252684880 }}</ref>
**A new [[brain-reading]] method for "[[semantic]] decoding" is demonstrated. The non-invasive system, based on 16 hours of [[fMRI]] data per participant and a [[Transformer (machine learning model)|transformer]], is able to translate a person's neural activity into a continuous stream of text.<ref>{{#invoke:cite news||date=1 May 2023 |title=AI Brain Activity Decoder Can Translate Thoughts Into Written Words |work=IFL Science |url=https://www.iflscience.com/ai-brain-activity-decoder-can-translate-thoughts-into-written-words-68686 |access-date=2 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Tang |first1=Jerry |last2=LeBel |first2=Amanda |last3=Jain |first3=Shailee |last4=Huth |first4=Alexander G. |title=Semantic reconstruction of continuous language from non-invasive brain recordings |journal=Nature Neuroscience |date=May 2023 |volume=26 |issue=5 |pages=858–866 |doi=10.1038/s41593-023-01304-9 |pmid=37127759 |pmc=11304553 |language=en |issn=1546-1726|biorxiv=10.1101/2022.09.29.509744|s2cid=252684880 }}</ref>
**News outlets report the {{Tooltip|first|other studies investigated detectability of distant civilizations and detectability of life on Earth; detectability of life (biosignatures) is distinct from detectability of civilizations (technosignatures); modelling is distinct from rough estimates (from ~2011)}} study (6 Feb) modelling contemporary [[Detecting Earth from distant star-based systems|detectability of human civilization from afar]] which suggests {{Tooltip|overall radio-leakage from mobile towers|which is direction dependent with periodic changes as Earth rotates}} would still be too weak to be detectable with humanity's {{Tooltip|next-generation|here "next generation radio telescopes" referred to radio telescopes planned or under construction at the time "such as the Square Kilometre Array (SKA)"}} radio telescopes from {{Tooltip|three|HD 95735, Barnard's star, and Alpha Centauri A; all located within 10 light-years}} of Earth's current closest nearby star-systems.<ref>{{#invoke:cite news||last1=Palmer |first1=Sarah |title=New research suggests alien life could detect Earth's radio waves |url=https://www.euronews.com/next/2023/05/04/scientists-believe-extraterrestrials-might-be-able-to-detect-life-on-earth-from-our-radio- |access-date=22 June 2023 |work=euronews |date=4 May 2023 |language=en}}</ref><ref name="10.1093/mnras/stad378">{{#invoke:cite journal||last1=Saide |first1=Ramiro C |last2=Garrett |first2=M A |last3=Heeralall-Issur |first3=N |title=Simulation of the Earth's radio-leakage from mobile towers as seen from selected nearby stellar systems |journal=Monthly Notices of the Royal Astronomical Society |date=21 April 2023 |volume=522 |issue=2 |pages=2393–2402 |doi=10.1093/mnras/stad378|arxiv=2304.13779 }}
**News outlets report the {{Tooltip|first|other studies investigated detectability of distant civilizations and detectability of life on Earth; detectability of life (biosignatures) is distinct from detectability of civilizations (technosignatures); modelling is distinct from rough estimates (from ~2011)}} study (6 Feb) modelling contemporary [[Detecting Earth from distant star-based systems|detectability of human civilization from afar]] which suggests {{Tooltip|overall radio-leakage from mobile towers|which is direction dependent with periodic changes as Earth rotates}} would still be too weak to be detectable with humanity's {{Tooltip|next-generation|here "next generation radio telescopes" referred to radio telescopes planned or under construction at the time "such as the Square Kilometre Array (SKA)"}} radio telescopes from {{Tooltip|three|HD 95735, Barnard's star, and Alpha Centauri A; all located within 10 light-years}} of Earth's current closest nearby star-systems.<ref>{{#invoke:cite news||last1=Palmer |first1=Sarah |title=New research suggests alien life could detect Earth's radio waves |url=https://www.euronews.com/next/2023/05/04/scientists-believe-extraterrestrials-might-be-able-to-detect-life-on-earth-from-our-radio- |access-date=22 June 2023 |work=euronews |date=4 May 2023 |language=en}}</ref><ref name="10.1093/mnras/stad378">{{#invoke:cite journal||last1=Saide |first1=Ramiro C |last2=Garrett |first2=M A |last3=Heeralall-Issur |first3=N |title=Simulation of the Earth's radio-leakage from mobile towers as seen from selected nearby stellar systems |journal=Monthly Notices of the Royal Astronomical Society |date=21 April 2023 |volume=522 |issue=2 |pages=2393–2402 |doi=10.1093/mnras/stad378|doi-access=free |arxiv=2304.13779 }}
* First news report about the study: {{#invoke:cite news||last1=Koberlein |first1=Brian |title=Aliens Could Map Earth From its Mobile Phone Towers |url=https://www.universetoday.com/161156/aliens-could-map-earth-from-its-mobile-phone-towers/ |access-date=22 June 2023 |work=Universe Today |date=1 May 2023}}</ref> [[Radar]] systems are not yet included in their model,<ref name="10.1093/mnras/stad378"/> while radar emissions during – and possibly since<ref>{{#invoke:cite journal||last1=Loeb |first1=Abraham |last2=Zaldarriaga |first2=Matias |title=Eavesdropping on radio broadcasts from galactic civilizations with upcoming observatories for redshifted 21 cm radiation |journal=Journal of Cosmology and Astroparticle Physics |date=22 January 2007 |volume=2007 |issue=1 |page=020 |doi=10.1088/1475-7516/2007/01/020 |issn=1475-7516|arxiv=astro-ph/0610377|bibcode=2007JCAP...01..020L |s2cid=119398714 }}</ref> – the Cold War are thought to be the first most detectable cue by which hypothetical extraterrestrials could [[Technosignature|detect humanity]].<ref>{{#invoke:cite journal||title=The benefits and harm of transmitting into space |journal=Space Policy |date=1 February 2013 |volume=29 |issue=1 |pages=40–48 |doi=10.1016/j.spacepol.2012.11.006 |url=https://www.sciencedirect.com/science/article/abs/pii/S0265964612001361 |access-date=9 April 2021 |language=en |issn=0265-9646|arxiv=1207.5540 |last1=Haqq-Misra |first1=Jacob |last2=Busch |first2=Michael W. |last3=Som |first3=Sanjoy M. |last4=Baum |first4=Seth D. |bibcode=2013SpPol..29...40H |s2cid=7070311 }}</ref><ref>{{#invoke:cite book||last1=Sullivan |first1=W. T. III |title=Strategies for the Search for Life in the Universe |chapter=Radio Leakage and Eavesdropping |series=Astrophysics and Space Science Library |date=1980 |volume=83 |pages=227–239 |doi=10.1007/978-94-009-9115-6_20 |bibcode=1980ASSL...83..227S |isbn=978-90-277-1226-4 |chapter-url=https://ui.adsabs.harvard.edu/abs/1980ASSL...83..227S/abstract |access-date=9 April 2021}}</ref>
* First news report about the study: {{#invoke:cite news||last1=Koberlein |first1=Brian |title=Aliens Could Map Earth From its Mobile Phone Towers |url=https://www.universetoday.com/161156/aliens-could-map-earth-from-its-mobile-phone-towers/ |access-date=22 June 2023 |work=Universe Today |date=1 May 2023}}</ref> [[Radar]] systems are not yet included in their model,<ref name="10.1093/mnras/stad378"/> while radar emissions during – and possibly since<ref>{{#invoke:cite journal||last1=Loeb |first1=Abraham |last2=Zaldarriaga |first2=Matias |title=Eavesdropping on radio broadcasts from galactic civilizations with upcoming observatories for redshifted 21 cm radiation |journal=Journal of Cosmology and Astroparticle Physics |date=22 January 2007 |volume=2007 |issue=1 |page=020 |doi=10.1088/1475-7516/2007/01/020 |issn=1475-7516|arxiv=astro-ph/0610377|bibcode=2007JCAP...01..020L |s2cid=119398714 }}</ref> – the Cold War are thought to be the first most detectable cue by which hypothetical extraterrestrials could [[Technosignature|detect humanity]].<ref>{{#invoke:cite journal||title=The benefits and harm of transmitting into space |journal=Space Policy |date=1 February 2013 |volume=29 |issue=1 |pages=40–48 |doi=10.1016/j.spacepol.2012.11.006 |url=https://www.sciencedirect.com/science/article/abs/pii/S0265964612001361 |access-date=9 April 2021 |language=en |issn=0265-9646|arxiv=1207.5540 |last1=Haqq-Misra |first1=Jacob |last2=Busch |first2=Michael W. |last3=Som |first3=Sanjoy M. |last4=Baum |first4=Seth D. |bibcode=2013SpPol..29...40H |s2cid=7070311 }}</ref><ref>{{#invoke:cite book||last1=Sullivan |first1=W. T. III |title=Strategies for the Search for Life in the Universe |chapter=Radio Leakage and Eavesdropping |series=Astrophysics and Space Science Library |date=1980 |volume=83 |pages=227–239 |doi=10.1007/978-94-009-9115-6_20 |bibcode=1980ASSL...83..227S |isbn=978-90-277-1226-4 |chapter-url=https://ui.adsabs.harvard.edu/abs/1980ASSL...83..227S/abstract |access-date=9 April 2021}}</ref>
**The second study, after one from early 2022 with similar results,<ref>{{#invoke:cite journal||last1=Vicente |first1=Raul |last2=Rizzuto |first2=Michael |last3=Sarica |first3=Can |last4=Yamamoto |first4=Kazuaki |last5=Sadr |first5=Mohammed |last6=Khajuria |first6=Tarun |last7=Fatehi |first7=Mostafa |last8=Moien-Afshari |first8=Farzad |last9=Haw |first9=Charles S. |last10=Llinas |first10=Rodolfo R. |last11=Lozano |first11=Andres M. |last12=Neimat |first12=Joseph S. |last13=Zemmar |first13=Ajmal |title=Enhanced Interplay of Neuronal Coherence and Coupling in the Dying Human Brain |journal=Frontiers in Aging Neuroscience |date=2022 |volume=14 |page=813531 |doi=10.3389/fnagi.2022.813531 |pmid=35273490 |pmc=8902637 |issn=1663-4365|doi-access=free}}</ref> about [[EEG]] {{tooltip|data|(EEG neural correlates)}} of dying humans finds a surge of [[gamma wave]]s and increased functional connectivities<!--[[Large-scale brain network]]--> in two of four patients. It provides data and analysis about [[Consciousness#Scientific study|the brain process of dying]] (terminal [[Death|loss]] of [[sentience]] and life) and [[Near-death experience#Near-death studies|near-death experiences]].<ref>{{#invoke:cite news||last1=Devlin |first1=Hannah |title=People in comas showed 'conscious-like' brain activity as they died, study says |url=https://www.theguardian.com/society/2023/may/01/people-in-comas-showed-conscious-like-brain-activity-as-they-died-study-says |access-date=23 June 2023 |work=The Guardian |date=1 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Xu |first1=Gang |last2=Mihaylova |first2=Temenuzhka |last3=Li |first3=Duan |last4=Tian |first4=Fangyun |last5=Farrehi |first5=Peter M. |last6=Parent |first6=Jack M. |last7=Mashour |first7=George A. |last8=Wang |first8=Michael M. |last9=Borjigin |first9=Jimo |title=Surge of neurophysiological coupling and connectivity of gamma oscillations in the dying human brain |journal=Proceedings of the National Academy of Sciences |date=9 May 2023 |volume=120 |issue=19 |pages=e2216268120 |doi=10.1073/pnas.2216268120 |pmid=37126719 |pmc=10175832 |bibcode=2023PNAS..12016268X |language=en |issn=0027-8424|doi-access=free}}</ref>
**The second study, after one from early 2022 with similar results,<ref>{{#invoke:cite journal||last1=Vicente |first1=Raul |last2=Rizzuto |first2=Michael |last3=Sarica |first3=Can |last4=Yamamoto |first4=Kazuaki |last5=Sadr |first5=Mohammed |last6=Khajuria |first6=Tarun |last7=Fatehi |first7=Mostafa |last8=Moien-Afshari |first8=Farzad |last9=Haw |first9=Charles S. |last10=Llinas |first10=Rodolfo R. |last11=Lozano |first11=Andres M. |last12=Neimat |first12=Joseph S. |last13=Zemmar |first13=Ajmal |title=Enhanced Interplay of Neuronal Coherence and Coupling in the Dying Human Brain |journal=Frontiers in Aging Neuroscience |date=2022 |volume=14 |page=813531 |doi=10.3389/fnagi.2022.813531 |pmid=35273490 |pmc=8902637 |issn=1663-4365|doi-access=free}}</ref> about [[EEG]] {{tooltip|data|(EEG neural correlates)}} of dying humans finds a surge of [[gamma wave]]s and increased functional connectivities<!--[[Large-scale brain network]]--> in two of four patients. It provides data and analysis about [[Consciousness#Scientific study|the brain process of dying]] (terminal [[Death|loss]] of [[sentience]] and life) and [[Near-death experience#Near-death studies|near-death experiences]].<ref>{{#invoke:cite news||last1=Devlin |first1=Hannah |title=People in comas showed 'conscious-like' brain activity as they died, study says |url=https://www.theguardian.com/society/2023/may/01/people-in-comas-showed-conscious-like-brain-activity-as-they-died-study-says |access-date=23 June 2023 |work=The Guardian |date=1 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Xu |first1=Gang |last2=Mihaylova |first2=Temenuzhka |last3=Li |first3=Duan |last4=Tian |first4=Fangyun |last5=Farrehi |first5=Peter M. |last6=Parent |first6=Jack M. |last7=Mashour |first7=George A. |last8=Wang |first8=Michael M. |last9=Borjigin |first9=Jimo |title=Surge of neurophysiological coupling and connectivity of gamma oscillations in the dying human brain |journal=Proceedings of the National Academy of Sciences |date=9 May 2023 |volume=120 |issue=19 |pages=e2216268120 |doi=10.1073/pnas.2216268120 |pmid=37126719 |pmc=10175832 |bibcode=2023PNAS..12016268X |language=en |issn=0027-8424|doi-access=free}}</ref>
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**A single-molecule [[valve]] is demonstrated, a breakthrough in [[nanofluidics|nanoscale control of fluids]].<ref>{{#invoke:cite journal||last1=Kawagishi |first1=Hiroto |last2=Funano |first2=Shun-ichi |last3=Tanaka |first3=Yo |last4=Xu |first4=Yan |title=Flexible Glass-Based Hybrid Nanofluidic Device to Enable the Active Regulation of Single-Molecule Flows |journal=Nano Letters |date=22 March 2023 |volume=23 |issue=6 |pages=2210–2218 |doi=10.1021/acs.nanolett.2c04807 |pmid=36879391 |pmc=10804405 |bibcode=2023NanoL..23.2210K |s2cid=257376494 |language=en |issn=1530-6984}}
**A single-molecule [[valve]] is demonstrated, a breakthrough in [[nanofluidics|nanoscale control of fluids]].<ref>{{#invoke:cite journal||last1=Kawagishi |first1=Hiroto |last2=Funano |first2=Shun-ichi |last3=Tanaka |first3=Yo |last4=Xu |first4=Yan |title=Flexible Glass-Based Hybrid Nanofluidic Device to Enable the Active Regulation of Single-Molecule Flows |journal=Nano Letters |date=22 March 2023 |volume=23 |issue=6 |pages=2210–2218 |doi=10.1021/acs.nanolett.2c04807 |pmid=36879391 |pmc=10804405 |bibcode=2023NanoL..23.2210K |s2cid=257376494 |language=en |issn=1530-6984}}
* University press release: {{#invoke:cite news||date=2 May 2023 |title=Single-Molecule Valve: A Breakthrough in Nanoscale Control |work=[[Osaka Metropolitan University]] |url=https://www.omu.ac.jp/en/info/research-news/entry-27753.html |access-date=8 May 2023}}</ref>
* University press release: {{#invoke:cite news||date=2 May 2023 |title=Single-Molecule Valve: A Breakthrough in Nanoscale Control |work=[[Osaka Metropolitan University]] |url=https://www.omu.ac.jp/en/info/research-news/entry-27753.html |access-date=8 May 2023}}</ref>
**Scientists report [[Neuroenhancement#Early childhood|economic factors of neurology or mental health and cognition]] during [[child development]]: association of low [[income]] with brain structure and [[hippocampus|hippocampal]] volume, stronger associations in U.S. states with higher [[cost of living]], and {{Tooltip|lower associations|"in high cost of living states that provide more generous cash benefits for low-income families, socioeconomic disparities in hippocampal volume were reduced by 34%, such that the association of family income with hippocampal volume resembled that in the lowest cost of living states"}} for stronger [[social safety net]]s for [[Economic inequality#Effects|low-income-affected people]].<ref>{{#invoke:cite news||last1=Hassanein |first1=Nada |title=Kids' brains may develop better in states with more generous safety net programs, study finds |url=https://eu.usatoday.com/story/news/health/2023/05/08/anti-poverty-programs-children-brain-development-health/70179467007/ |access-date=25 June 2023 |work=USA TODAY}}</ref><ref>{{#invoke:cite journal||last1=Weissman |first1=David G. |last2=Hatzenbuehler |first2=Mark L. |last3=Cikara |first3=Mina |last4=Barch |first4=Deanna M. |last5=McLaughlin |first5=Katie A. |title=State-level macro-economic factors moderate the association of low income with brain structure and mental health in U.S. children |journal=Nature Communications |date=2 May 2023 |volume=14 |issue=1 |page=2085 |doi=10.1038/s41467-023-37778-1 |pmid=37130880 |pmc=10154403 |bibcode=2023NatCo..14.2085W |language=en |issn=2041-1723|doi-access=free}}</ref>
**Scientists report [[Neuroenhancement#Early childhood|economic factors of neurology or mental health and cognition]]{{Broken anchor|date=2024-06-06|bot=User:Cewbot/log/20201008/configuration|target_link=Neuroenhancement#Early childhood|reason= The anchor (Early childhood) [[Special:Diff/1193040114|has been deleted]].}} during [[child development]]: association of low [[income]] with brain structure and [[hippocampus|hippocampal]] volume, stronger associations in U.S. states with higher [[cost of living]], and {{Tooltip|lower associations|"in high cost of living states that provide more generous cash benefits for low-income families, socioeconomic disparities in hippocampal volume were reduced by 34%, such that the association of family income with hippocampal volume resembled that in the lowest cost of living states"}} for stronger [[social safety net]]s for [[Economic inequality#Effects|low-income-affected people]].<ref>{{#invoke:cite news||last1=Hassanein |first1=Nada |title=Kids' brains may develop better in states with more generous safety net programs, study finds |url=https://eu.usatoday.com/story/news/health/2023/05/08/anti-poverty-programs-children-brain-development-health/70179467007/ |access-date=25 June 2023 |work=USA TODAY}}</ref><ref>{{#invoke:cite journal||last1=Weissman |first1=David G. |last2=Hatzenbuehler |first2=Mark L. |last3=Cikara |first3=Mina |last4=Barch |first4=Deanna M. |last5=McLaughlin |first5=Katie A. |title=State-level macro-economic factors moderate the association of low income with brain structure and mental health in U.S. children |journal=Nature Communications |date=2 May 2023 |volume=14 |issue=1 |page=2085 |doi=10.1038/s41467-023-37778-1 |pmid=37130880 |pmc=10154403 |bibcode=2023NatCo..14.2085W |language=en |issn=2041-1723|doi-access=free}}</ref>
[[File:Fomalhaut_Dusty_Debris_Disk_(MIRI_Compass_Image).png|thumb|[[#8 May|8 May]]: Infrared view of three asteroid belts around the star Fomalhaut.]]
[[File:Fomalhaut_Dusty_Debris_Disk_(MIRI_Compass_Image).png|thumb|[[#8 May|8 May]]: Infrared view of three asteroid belts around the star Fomalhaut.]]
[[File:Best_models_for_the_human_evolutionary_origins_%E2%80%93_a_weakly_structured_stem_best_describes_two-locus_statistics.webp|thumb|[[#17 May|17 May]]: A more complex model of [[human evolution]].]]
[[File:Best_models_for_the_human_evolutionary_origins_%E2%80%93_a_weakly_structured_stem_best_describes_two-locus_statistics.webp|thumb|[[#17 May|17 May]]: A more complex model of [[human evolution]].]]
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*{{vanchor|10 May}}
*{{vanchor|10 May}}
**A rough draft of the human "[[pan-genome]]" is presented, consisting of 47 [[human genome|genomes]] from a cohort of [[Human variability#Genetic factors|genetically diverse]] individuals. This aims to improve medical research by building on the earlier [[Human Genome Project]].<ref>{{#invoke:cite news||date=10 May 2023 |title=More diverse gene map could lead to better treatments |work=BBC News |url=https://www.bbc.co.uk/news/science-environment-65539594 |access-date=10 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Liao |first1=Wen-Wei |last2=Asri |first2=Mobin |last3=Ebler |first3=Jana |display-authors=et al. |title=A draft human pangenome reference |journal=Nature |date=May 2023 |volume=617 |issue=7960 |pages=312–324 |doi=10.1038/s41586-023-05896-x |pmid=37165242 |pmc=10172123 |bibcode=2023Natur.617..312L |language=en |issn=1476-4687|doi-access=free}}</ref>
**A rough draft of the human "[[pan-genome]]" is presented, consisting of 47 [[human genome|genomes]] from a cohort of [[Human variability#Genetic factors|genetically diverse]] individuals. This aims to improve medical research by building on the earlier [[Human Genome Project]].<ref>{{#invoke:cite news||date=10 May 2023 |title=More diverse gene map could lead to better treatments |work=BBC News |url=https://www.bbc.co.uk/news/science-environment-65539594 |access-date=10 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Liao |first1=Wen-Wei |last2=Asri |first2=Mobin |last3=Ebler |first3=Jana |display-authors=et al. |title=A draft human pangenome reference |journal=Nature |date=May 2023 |volume=617 |issue=7960 |pages=312–324 |doi=10.1038/s41586-023-05896-x |pmid=37165242 |pmc=10172123 |bibcode=2023Natur.617..312L |language=en |issn=1476-4687|doi-access=free}}</ref>
**Scientists demonstrate with [[experimental evolution]] how [[Multicellular organism#Experimental evolution|macroscopic multicellularity]] could have [[Abiogenesis|emerged]] on Earth.<ref>{{#invoke:cite news||last1=Yong |first1=Ed |title=One of Evolution's Biggest Moments Was Re-created in a Year |url=https://www.theatlantic.com/science/archive/2023/05/multicellular-organism-evolution-yeast-experiment/674030/ |access-date=23 June 2023 |work=The Atlantic |date=12 May 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Bozdag |first1=G. Ozan |last2=Zamani-Dahaj |first2=Seyed Alireza |last3=Day |first3=Thomas C. |last4=Kahn |first4=Penelope C. |last5=Burnetti |first5=Anthony J. |last6=Lac |first6=Dung T. |last7=Tong |first7=Kai |last8=Conlin |first8=Peter L. |last9=Balwani |first9=Aishwarya H. |last10=Dyer |first10=Eva L. |last11=Yunker |first11=Peter J. |last12=Ratcliff |first12=William C. |title=De novo evolution of macroscopic multicellularity |journal=Nature |date=10 May 2023 |volume=617 |issue=7962 |pages=747–754 |doi=10.1038/s41586-023-06052-1 |pmid=37165189 |pmc=10425966 |bibcode=2023Natur.617..747B |language=en |biorxiv=10.1101/2021.08.03.454982 |s2cid=236953093 |issn=0028-0836 |pmc-embargo-date=May 10, 2024 }}</ref>
**Scientists demonstrate with [[experimental evolution]] how [[Multicellular organism#Experimental evolution|macroscopic multicellularity]] could have [[Abiogenesis|emerged]] on Earth.<ref>{{#invoke:cite news||last1=Yong |first1=Ed |title=One of Evolution's Biggest Moments Was Re-created in a Year |url=https://www.theatlantic.com/science/archive/2023/05/multicellular-organism-evolution-yeast-experiment/674030/ |access-date=23 June 2023 |work=The Atlantic |date=12 May 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Bozdag |first1=G. Ozan |last2=Zamani-Dahaj |first2=Seyed Alireza |last3=Day |first3=Thomas C. |last4=Kahn |first4=Penelope C. |last5=Burnetti |first5=Anthony J. |last6=Lac |first6=Dung T. |last7=Tong |first7=Kai |last8=Conlin |first8=Peter L. |last9=Balwani |first9=Aishwarya H. |last10=Dyer |first10=Eva L. |last11=Yunker |first11=Peter J. |last12=Ratcliff |first12=William C. |title=De novo evolution of macroscopic multicellularity |journal=Nature |date=10 May 2023 |volume=617 |issue=7962 |pages=747–754 |doi=10.1038/s41586-023-06052-1 |pmid=37165189 |pmc=10425966 |bibcode=2023Natur.617..747B |language=en |biorxiv=10.1101/2021.08.03.454982 |s2cid=236953093 |issn=0028-0836 }}</ref>
*{{vanchor|11 May}} – The discovery of 62 new [[moons of Saturn]] is reported, taking its total confirmed number to 145 and overtaking Jupiter.<ref>{{#invoke:cite news||date=11 May 2023 |title=Saturn now leads moon race with 62 newly discovered moons |work=UBC Science |url=https://science.ubc.ca/news/saturn-now-leads-moon-race-62-newly-discovered-satellites |access-date=19 May 2023}}</ref><ref>{{#invoke:cite news||date=12 May 2023 |title=New Discoveries Double Number of "Irregular" Saturn Moons, Bringing Total Count to 145 |work=Sky & Telescope |url=https://skyandtelescope.org/astronomy-news/new-observations-double-saturns-irregular-moons/ |access-date=19 May 2023}}</ref>
*{{vanchor|11 May}} – The discovery of 62 new [[moons of Saturn]] is reported, taking its total confirmed number to 145 and overtaking Jupiter.<ref>{{#invoke:cite news||date=11 May 2023 |title=Saturn now leads moon race with 62 newly discovered moons |work=UBC Science |url=https://science.ubc.ca/news/saturn-now-leads-moon-race-62-newly-discovered-satellites |access-date=19 May 2023}}</ref><ref>{{#invoke:cite news||date=12 May 2023 |title=New Discoveries Double Number of "Irregular" Saturn Moons, Bringing Total Count to 145 |work=Sky & Telescope |url=https://skyandtelescope.org/astronomy-news/new-observations-double-saturns-irregular-moons/ |access-date=19 May 2023}}</ref>
*{{vanchor|15 May}}
*{{vanchor|15 May}}
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*{{vanchor|22 May}} – A study quantifies "the human [[cost]] of global warming", showing [[Climate change mitigation|current policies]] "leading to around 2.7 °C global warming could by 2080–2100 leave one-third (22–39%)" of people outside their climate [[Ecological niche|niche]] {{Crossreference|(see also [[April–June 2020 in science#May|4 May 2020]])}} – humans' long-time range of mean annual temperatures to which their [[physiology]] may have largely adapted to. It indicates meeting the [[Paris Agreement|1.5 °C goal]] would decrease the population exposed to unprecedented heat ~5-fold and ties itself to earlier research by initially noting that quantifying the [[social cost of carbon]] in monetary terms, as related or [[Economic analysis of climate change|economics]] studies tend to do, may be inadequate.<ref>{{#invoke:cite news||last1=Subramaniam |first1=Tara |title=Global temperature rise could see billions live in places where human life doesn't flourish, study says |url=https://edition.cnn.com/2023/05/23/asia/global-warming-billions-dangerous-climate-heat-report-intl-hnk/index.html |access-date=23 June 2023 |work=CNN |date=23 May 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Lenton |first1=Timothy M. |last2=Xu |first2=Chi |last3=Abrams |first3=Jesse F. |last4=Ghadiali |first4=Ashish |last5=Loriani |first5=Sina |last6=Sakschewski |first6=Boris |last7=Zimm |first7=Caroline |last8=Ebi |first8=Kristie L. |last9=Dunn |first9=Robert R. |last10=Svenning |first10=Jens-Christian |last11=Scheffer |first11=Marten |title=Quantifying the human cost of global warming |journal=Nature Sustainability |date=22 May 2023 |volume=6 |issue=10 |pages=1237–1247 |doi=10.1038/s41893-023-01132-6 |bibcode=2023NatSu...6.1237L |language=en |issn=2398-9629|doi-access=free|hdl=10871/132650 |hdl-access=free }}</ref>
*{{vanchor|22 May}} – A study quantifies "the human [[cost]] of global warming", showing [[Climate change mitigation|current policies]] "leading to around 2.7 °C global warming could by 2080–2100 leave one-third (22–39%)" of people outside their climate [[Ecological niche|niche]] {{Crossreference|(see also [[April–June 2020 in science#May|4 May 2020]])}} – humans' long-time range of mean annual temperatures to which their [[physiology]] may have largely adapted to. It indicates meeting the [[Paris Agreement|1.5 °C goal]] would decrease the population exposed to unprecedented heat ~5-fold and ties itself to earlier research by initially noting that quantifying the [[social cost of carbon]] in monetary terms, as related or [[Economic analysis of climate change|economics]] studies tend to do, may be inadequate.<ref>{{#invoke:cite news||last1=Subramaniam |first1=Tara |title=Global temperature rise could see billions live in places where human life doesn't flourish, study says |url=https://edition.cnn.com/2023/05/23/asia/global-warming-billions-dangerous-climate-heat-report-intl-hnk/index.html |access-date=23 June 2023 |work=CNN |date=23 May 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Lenton |first1=Timothy M. |last2=Xu |first2=Chi |last3=Abrams |first3=Jesse F. |last4=Ghadiali |first4=Ashish |last5=Loriani |first5=Sina |last6=Sakschewski |first6=Boris |last7=Zimm |first7=Caroline |last8=Ebi |first8=Kristie L. |last9=Dunn |first9=Robert R. |last10=Svenning |first10=Jens-Christian |last11=Scheffer |first11=Marten |title=Quantifying the human cost of global warming |journal=Nature Sustainability |date=22 May 2023 |volume=6 |issue=10 |pages=1237–1247 |doi=10.1038/s41893-023-01132-6 |bibcode=2023NatSu...6.1237L |language=en |issn=2398-9629|doi-access=free|hdl=10871/132650 |hdl-access=free }}</ref>
*{{vanchor|23 May}}
*{{vanchor|23 May}}
**Using the [[Hubble Space Telescope]] and [[Gaia spacecraft]], an analysis of proper motions of the closest known [[globular cluster]], [[Messier 4]], reveals an excess mass of roughly 800 solar masses in the center. This appears to not be extended, and could thus be the best kinematic evidence for an [[intermediate-mass black hole]] (even if an unusually compact cluster of compact objects, white dwarfs, neutron stars or stellar-mass black holes cannot be completely discounted).<ref name="Vitral+23">{{#invoke:cite journal||last=Vitral|first=E.|display-authors=etal|title=An elusive dark central mass in the globular cluster M4|journal=Monthly Notices of the Royal Astronomical Society|date=2023|volume=522|issue=4 |pages=5740–5757|doi=10.1093/mnras/stad1068|arxiv =2305.12702 |bibcode = 2023MNRAS.522.5740V }}</ref><ref name="NASAV23">{{#invoke:cite news||date=23 May 2023|title=NASA's Hubble Hunts for Intermediate-Sized Black Hole Close to Home | url=https://www.nasa.gov/feature/goddard/2023/nasas-hubble-hunts-for-intermediate-sized-black-hole-close-to-home/ |work=NASA|access-date=23 May 2023}}</ref>
**Using the [[Hubble Space Telescope]] and [[Gaia spacecraft]], an analysis of proper motions of the closest known [[globular cluster]], [[Messier 4]], reveals an excess mass of roughly 800 solar masses in the center. This appears to not be extended, and could thus be the best kinematic evidence for an [[intermediate-mass black hole]] (even if an unusually compact cluster of compact objects, white dwarfs, neutron stars or stellar-mass black holes cannot be completely discounted).<ref name="Vitral+23">{{#invoke:cite journal||last=Vitral|first=E.|display-authors=etal|title=An elusive dark central mass in the globular cluster M4|journal=Monthly Notices of the Royal Astronomical Society|date=2023|volume=522|issue=4 |pages=5740–5757|doi=10.1093/mnras/stad1068|doi-access=free |arxiv =2305.12702 |bibcode = 2023MNRAS.522.5740V }}</ref><ref name="NASAV23">{{#invoke:cite news||date=23 May 2023|title=NASA's Hubble Hunts for Intermediate-Sized Black Hole Close to Home | url=https://www.nasa.gov/feature/goddard/2023/nasas-hubble-hunts-for-intermediate-sized-black-hole-close-to-home/ |work=NASA|access-date=23 May 2023}}</ref>
**A study identifies plastic [[chopping board]]s as a substantial source of ingested [[microplastic]]s.<ref>{{#invoke:cite journal||last1=Yadav |first1=Himani |last2=Khan |first2=Md Rakib Hasan |last3=Quadir |first3=Mohiuddin |last4=Rusch |first4=Kelly A. |last5=Mondal |first5=Partho Pritom |last6=Orr |first6=Megan |last7=Xu |first7=Elvis Genbo |last8=Iskander |first8=Syeed Md |title=Cutting Boards: An Overlooked Source of Microplastics in Human Food? |journal=Environmental Science & Technology |date=6 June 2023 |volume=57 |issue=22 |pages=8225–8235 |doi=10.1021/acs.est.3c00924 |pmid=37220346 |bibcode=2023EnST...57.8225Y |s2cid=258865015 |language=en |issn=0013-936X}}</ref> Researchers show [[plastic recycling]] facilities are a major source of [[Water pollution#Solid waste and plastics|microplastic water pollution]] (1 May).<ref>{{#invoke:cite news||last1=McVeigh |first1=Karen |title=Recycling can release huge quantities of microplastics, study finds |url=https://www.theguardian.com/environment/2023/may/23/recycling-can-release-huge-quantities-of-microplastics-study-finds |access-date=23 June 2023 |work=The Guardian |date=23 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Brown |first1=Erina |last2=MacDonald |first2=Anna |last3=Allen |first3=Steve |last4=Allen |first4=Deonie |title=The potential for a plastic recycling facility to release microplastic pollution and possible filtration remediation effectiveness |journal=Journal of Hazardous Materials Advances |date=1 May 2023 |volume=10 |page=100309 |doi=10.1016/j.hazadv.2023.100309 |language=en |issn=2772-4166|doi-access=free}}</ref>
**A study identifies plastic [[chopping board]]s as a substantial source of ingested [[microplastic]]s.<ref>{{#invoke:cite journal||last1=Yadav |first1=Himani |last2=Khan |first2=Md Rakib Hasan |last3=Quadir |first3=Mohiuddin |last4=Rusch |first4=Kelly A. |last5=Mondal |first5=Partho Pritom |last6=Orr |first6=Megan |last7=Xu |first7=Elvis Genbo |last8=Iskander |first8=Syeed Md |title=Cutting Boards: An Overlooked Source of Microplastics in Human Food? |journal=Environmental Science & Technology |date=6 June 2023 |volume=57 |issue=22 |pages=8225–8235 |doi=10.1021/acs.est.3c00924 |pmid=37220346 |bibcode=2023EnST...57.8225Y |s2cid=258865015 |language=en |issn=0013-936X}}</ref> Researchers show [[plastic recycling]] facilities are a major source of [[Water pollution#Solid waste and plastics|microplastic water pollution]] (1 May).<ref>{{#invoke:cite news||last1=McVeigh |first1=Karen |title=Recycling can release huge quantities of microplastics, study finds |url=https://www.theguardian.com/environment/2023/may/23/recycling-can-release-huge-quantities-of-microplastics-study-finds |access-date=23 June 2023 |work=The Guardian |date=23 May 2023}}</ref><ref>{{#invoke:cite journal||last1=Brown |first1=Erina |last2=MacDonald |first2=Anna |last3=Allen |first3=Steve |last4=Allen |first4=Deonie |title=The potential for a plastic recycling facility to release microplastic pollution and possible filtration remediation effectiveness |journal=Journal of Hazardous Materials Advances |date=1 May 2023 |volume=10 |page=100309 |doi=10.1016/j.hazadv.2023.100309 |language=en |issn=2772-4166|doi-access=free|bibcode=2023JHzMA..1000309B }}</ref>
**Computational neuroscientists show that people with [[Neuroscience of intelligence|higher intelligence scores]] in [[Human Connectome Project|HCP]] cognitive tests took more time to [[problem-solving|solve difficult problems]] and that their higher synchrony [[Connectome|between brain areas]] allowed for better integration of evidence (or progress) from preceding [[working memory]] sub-problem processing. Reducing<!--{{unclear|Reducing after personalization or only reduced}}--> synchrony in "[[Computational model|avatar]]" [[computational neuroscience|simulations]], that were adjusted and tuned {{tooltip|towards personalization|According to the study, functional connectivity became "almost indistinguishable from their empirical counterparts"}}, "led [[decision-making]] circuits to quickly [[Jumping to conclusions|jump]] to conclusions". Their codified results may be useful for an understanding of cognition [[Bio-inspired computing#Unclear Brain mechanism cognition|to replicate or imitate in bio-inspired computing]].<!--https://www.mdr.de/wissen/schneller-denken-intelligente-gehirne-arbeiten-langsamer-100.html--><ref>{{#invoke:cite journal||last1=Schirner |first1=Michael |last2=Deco |first2=Gustavo |last3=Ritter |first3=Petra |title=Learning how network structure shapes decision-making for bio-inspired computing |journal=Nature Communications |date=23 May 2023 |volume=14 |issue=1 |page=2963 |doi=10.1038/s41467-023-38626-y |pmid=37221168 |pmc=10206104 |bibcode=2023NatCo..14.2963S |language=en |issn=2041-1723|doi-access=free}}
**Computational neuroscientists show that people with [[Neuroscience of intelligence|higher intelligence scores]] in [[Human Connectome Project|HCP]] cognitive tests took more time to [[problem-solving|solve difficult problems]] and that their higher synchrony [[Connectome|between brain areas]] allowed for better integration of evidence (or progress) from preceding [[working memory]] sub-problem processing. Reducing<!--{{unclear|Reducing after personalization or only reduced}}--> synchrony in "[[Computational model|avatar]]" [[computational neuroscience|simulations]], that were adjusted and tuned {{tooltip|towards personalization|According to the study, functional connectivity became "almost indistinguishable from their empirical counterparts"}}, "led [[decision-making]] circuits to quickly [[Jumping to conclusions|jump]] to conclusions". Their codified results may be useful for an understanding of cognition [[Bio-inspired computing#Unclear Brain mechanism cognition|to replicate or imitate in bio-inspired computing]].<!--https://www.mdr.de/wissen/schneller-denken-intelligente-gehirne-arbeiten-langsamer-100.html--><ref>{{#invoke:cite journal||last1=Schirner |first1=Michael |last2=Deco |first2=Gustavo |last3=Ritter |first3=Petra |title=Learning how network structure shapes decision-making for bio-inspired computing |journal=Nature Communications |date=23 May 2023 |volume=14 |issue=1 |page=2963 |doi=10.1038/s41467-023-38626-y |pmid=37221168 |pmc=10206104 |bibcode=2023NatCo..14.2963S |language=en |issn=2041-1723|doi-access=free}}
* University press release: {{#invoke:cite news||last1=Seltmann |first1=Stefanie |title=Intelligent brains take longer to solve difficult problems, shows simulation study |url=https://medicalxpress.com/news/2023-06-intelligent-brains-longer-difficult-problems.html |access-date=24 June 2023 |work=Berlin Institute of Health in der Charité via medicalxpress.com |language=en}}</ref>
* University press release: {{#invoke:cite news||last1=Seltmann |first1=Stefanie |title=Intelligent brains take longer to solve difficult problems, shows simulation study |url=https://medicalxpress.com/news/2023-06-intelligent-brains-longer-difficult-problems.html |access-date=24 June 2023 |work=Berlin Institute of Health in der Charité via medicalxpress.com |language=en}}</ref>
**Researchers report trends in [[reason]]s for [[Human papillomavirus|HPV]] vaccine hesitancy during 2010–20.<!--https://www.physiciansweekly.com/more-parents-citing-safety-as-reason-for-hpv-vaccine-hesitancy/--><ref>{{#invoke:cite journal||last1=Adjei Boakye |first1=Eric |last2=Nair |first2=Mrudula |last3=Abouelella |first3=Dina K |last4=Joseph |first4=Christine L.M. |last5=Gerend |first5=Mary A. |last6=Subramaniam |first6=Divya S. |last7=Osazuwa-Peters |first7=Nosayaba |title=Trends in Reasons for Human Papillomavirus Vaccine Hesitancy: 2010–2020 |journal=Pediatrics |date=1 June 2023 |volume=151 |issue=6 |doi=10.1542/peds.2022-060410|pmid=37218460 |pmc=10233736 |pmc-embargo-date=June 1, 2024 }}</ref>
**Researchers report trends in [[reason]]s for [[Human papillomavirus|HPV]] vaccine hesitancy during 2010–20.<!--https://www.physiciansweekly.com/more-parents-citing-safety-as-reason-for-hpv-vaccine-hesitancy/--><ref>{{#invoke:cite journal||last1=Adjei Boakye |first1=Eric |last2=Nair |first2=Mrudula |last3=Abouelella |first3=Dina K |last4=Joseph |first4=Christine L.M. |last5=Gerend |first5=Mary A. |last6=Subramaniam |first6=Divya S. |last7=Osazuwa-Peters |first7=Nosayaba |title=Trends in Reasons for Human Papillomavirus Vaccine Hesitancy: 2010–2020 |journal=Pediatrics |date=1 June 2023 |volume=151 |issue=6 |doi=10.1542/peds.2022-060410|pmid=37218460 |pmc=10233736 }}</ref>
*{{vanchor|24 May}}
*{{vanchor|24 May}}
**Scientists show how gene '[[FAAH]]'-related disruption via [[CRISPR gene editing|genetic]] or [[Epigenome editing#Functional engineering|epigenome editing]] can enable [[Pain management|pain insensitivity]] {{Crossreference|(see also [[January–March 2021 in science#March|10 March 2021]])}}. Their analyses, mainly about [[long non-coding RNA]] 'FAAH-OUT', following from {{tooltip|decade-long study|Jo Cameron "was first referred to pain geneticists at UCL in 2013, after her doctor noticed that she experienced no pain after major surgeries on her hip and hand"}} of a woman who can't feel pain or anxiety, could also enable novel therapeutic developments against other neurological problems.<ref>{{#invoke:cite news||title=Biological Secrets of the Woman Who Can't Feel Pain |url=https://www.usnews.com/news/health-news/articles/2023-05-24/biological-secrets-of-the-woman-who-cant-feel-pain |access-date=22 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Mikaeili |first1=Hajar |last2=Habib |first2=Abdella M |last3=Yeung |first3=Charlix Wai-Lok |last4=Santana-Varela |first4=Sonia |last5=Luiz |first5=Ana P |last6=Panteleeva |first6=Kseniia |last7=Zuberi |first7=Sana |last8=Athanasiou-Fragkouli |first8=Alkyoni |last9=Houlden |first9=Henry |last10=Wood |first10=John N |last11=Okorokov |first11=Andrei L |last12=Cox |first12=James J |title=Molecular basis of FAAH-OUT -associated human pain insensitivity |journal=Brain |date=24 May 2023 |volume=146 |issue=9 |pages=3851–3865 |doi=10.1093/brain/awad098|pmid=37222214 |pmc=10473560 |hdl=10576/44602 |hdl-access=free }}
**Scientists show how gene '[[FAAH]]'-related disruption via [[CRISPR gene editing|genetic]] or [[Epigenome editing#Functional engineering|epigenome editing]] can enable [[Pain management|pain insensitivity]] {{Crossreference|(see also [[January–March 2021 in science#March|10 March 2021]])}}. Their analyses, mainly about [[long non-coding RNA]] 'FAAH-OUT', following from {{tooltip|decade-long study|Jo Cameron "was first referred to pain geneticists at UCL in 2013, after her doctor noticed that she experienced no pain after major surgeries on her hip and hand"}} of a woman who can't feel pain or anxiety, could also enable novel therapeutic developments against other neurological problems.<ref>{{#invoke:cite news||title=Biological Secrets of the Woman Who Can't Feel Pain |url=https://www.usnews.com/news/health-news/articles/2023-05-24/biological-secrets-of-the-woman-who-cant-feel-pain |access-date=22 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Mikaeili |first1=Hajar |last2=Habib |first2=Abdella M |last3=Yeung |first3=Charlix Wai-Lok |last4=Santana-Varela |first4=Sonia |last5=Luiz |first5=Ana P |last6=Panteleeva |first6=Kseniia |last7=Zuberi |first7=Sana |last8=Athanasiou-Fragkouli |first8=Alkyoni |last9=Houlden |first9=Henry |last10=Wood |first10=John N |last11=Okorokov |first11=Andrei L |last12=Cox |first12=James J |title=Molecular basis of FAAH-OUT -associated human pain insensitivity |journal=Brain |date=24 May 2023 |volume=146 |issue=9 |pages=3851–3865 |doi=10.1093/brain/awad098|pmid=37222214 |pmc=10473560 |hdl=10576/44602 |hdl-access=free }}
Line 153: Line 155:
**The first [[X-ray]] of a single [[atom]] is reported.<ref>{{#invoke:cite news||date=31 May 2023 |title=Scientists' report world's first X-ray of a single atom|work=[[Ohio University]] via Phys.org|url=https://phys.org/news/2023-05-scientists-world-x-ray-atom.html |access-date=2 June 2023}}</ref>
**The first [[X-ray]] of a single [[atom]] is reported.<ref>{{#invoke:cite news||date=31 May 2023 |title=Scientists' report world's first X-ray of a single atom|work=[[Ohio University]] via Phys.org|url=https://phys.org/news/2023-05-scientists-world-x-ray-atom.html |access-date=2 June 2023}}</ref>
**An international study, using modelling and literature assessment, codifies, integrates into and quantifies "safe and just [[planetary boundaries|Earth system boundaries]]" (ESBs) with the context of [[Earth system]] stability and minimization of human harm. They expand upon earlier boundary frameworks by incorporating concepts such as <!--[[Environmental justice-->intra- and [[intergenerational justice]], propose that their framework may better enable a [[Evidence-based policy|quantitative foundation]] for safeguarding the [[global commons]], and report many of the ESBs are already exceeded.<ref>{{#invoke:cite news||last1=Bisset |first1=Victoria |last2=Francis |first2=Ellen |title=Scientists ran a health check on the Earth — and the results are worrying |url=https://www.washingtonpost.com/science/2023/06/02/earth-commission-climate-pollution-limits/ |access-date=22 June 2023 |newspaper=Washington Post |date=2 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Rockström |first1=Johan |last2=Gupta |first2=Joyeeta |display-authors=et al. |title=Safe and just Earth system boundaries |journal=Nature |date=31 May 2023 |volume=619 |issue=7968 |pages=102–111 |doi=10.1038/s41586-023-06083-8 |pmid=37258676 |pmc=10322705 |bibcode=2023Natur.619..102R |language=en |issn=1476-4687|doi-access=free}}</ref>
**An international study, using modelling and literature assessment, codifies, integrates into and quantifies "safe and just [[planetary boundaries|Earth system boundaries]]" (ESBs) with the context of [[Earth system]] stability and minimization of human harm. They expand upon earlier boundary frameworks by incorporating concepts such as <!--[[Environmental justice-->intra- and [[intergenerational justice]], propose that their framework may better enable a [[Evidence-based policy|quantitative foundation]] for safeguarding the [[global commons]], and report many of the ESBs are already exceeded.<ref>{{#invoke:cite news||last1=Bisset |first1=Victoria |last2=Francis |first2=Ellen |title=Scientists ran a health check on the Earth — and the results are worrying |url=https://www.washingtonpost.com/science/2023/06/02/earth-commission-climate-pollution-limits/ |access-date=22 June 2023 |newspaper=Washington Post |date=2 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Rockström |first1=Johan |last2=Gupta |first2=Joyeeta |display-authors=et al. |title=Safe and just Earth system boundaries |journal=Nature |date=31 May 2023 |volume=619 |issue=7968 |pages=102–111 |doi=10.1038/s41586-023-06083-8 |pmid=37258676 |pmc=10322705 |bibcode=2023Natur.619..102R |language=en |issn=1476-4687|doi-access=free}}</ref>
*[[Health services research|Healthcare systems related results]] are published:{{globalize inline|date=June 2023}} large increases in [[medication cost|medication prices]] via sustained decrease in their use can cause poorer disease control (8 May),<ref>{{#invoke:cite journal||last1=Ly |first1=Dan P. |last2=Giuriato |first2=Mia A. |last3=Song |first3=Zirui |title=Changes in Prescription Drug and Health Care Use Over 9 Years After the Large Drug Price Increase for Colchicine |journal=JAMA Internal Medicine |date=8 May 2023 |volume=183 |issue=7 |pages=670–676 |doi=10.1001/jamainternmed.2023.0898|pmid=37155179 |pmc=10167599 |pmc-embargo-date=May 8, 2024 }}</ref> widespread implementation of the particular Alzheimer's disease therapeutic solution [[lecanemab]] may [[Medication cost|increase annual U.S. Medicare spending]] by $2.0 to $5.1 billion (11 May),<ref>{{#invoke:cite journal||last1=Arbanas |first1=Julia Cave |last2=Damberg |first2=Cheryl L. |last3=Leng |first3=Mei |last4=Harawa |first4=Nina |last5=Sarkisian |first5=Catherine A. |last6=Landon |first6=Bruce E. |last7=Mafi |first7=John N. |title=Estimated Annual Spending on Lecanemab and Its Ancillary Costs in the US Medicare Program |journal=JAMA Internal Medicine |date=11 May 2023 |volume=183 |issue=8 |pages=885–889 |doi=10.1001/jamainternmed.2023.1749 |pmid=37167598 |pmc=10176174 |issn=2168-6106 |pmc-embargo-date=May 11, 2024 }}
*[[Health services research|Healthcare systems related results]] are published:{{globalize inline|date=June 2023}} large increases in [[medication cost|medication prices]] via sustained decrease in their use can cause poorer disease control (8 May),<ref>{{#invoke:cite journal||last1=Ly |first1=Dan P. |last2=Giuriato |first2=Mia A. |last3=Song |first3=Zirui |title=Changes in Prescription Drug and Health Care Use Over 9 Years After the Large Drug Price Increase for Colchicine |journal=JAMA Internal Medicine |date=8 May 2023 |volume=183 |issue=7 |pages=670–676 |doi=10.1001/jamainternmed.2023.0898|pmid=37155179 |pmc=10167599 }}</ref> widespread implementation of the particular Alzheimer's disease therapeutic solution [[lecanemab]] may [[Medication cost|increase annual U.S. Medicare spending]] by $2.0 to $5.1 billion (11 May),<ref>{{#invoke:cite journal||last1=Arbanas |first1=Julia Cave |last2=Damberg |first2=Cheryl L. |last3=Leng |first3=Mei |last4=Harawa |first4=Nina |last5=Sarkisian |first5=Catherine A. |last6=Landon |first6=Bruce E. |last7=Mafi |first7=John N. |title=Estimated Annual Spending on Lecanemab and Its Ancillary Costs in the US Medicare Program |journal=JAMA Internal Medicine |date=11 May 2023 |volume=183 |issue=8 |pages=885–889 |doi=10.1001/jamainternmed.2023.1749 |pmid=37167598 |pmc=10176174 |issn=2168-6106 }}
* News article about the study: {{#invoke:cite news||last1=Gotkine |first1=Elana |title=Medicare spending would increase $2.0 to $5.1 billion with lecanemab, say researchers |url=https://medicalxpress.com/news/2023-05-medicare-billion-lecanemab.html |access-date=25 June 2023 |work=medicalxpress.com |language=en}}</ref> mailed [[human papillomavirus|HPV]] self-collection <!--Medical test-->[[self-collection kit|kits]] with <!--[[Telehealth|-->scheduling assistance can lead to greater uptake of [[cervical cancer screening]] (11 May),<ref>{{#invoke:cite journal||last1=Pretsch |first1=Peyton K |last2=Spees |first2=Lisa P |last3=Brewer |first3=Noel T |last4=Hudgens |first4=Michael G |last5=Sanusi |first5=Busola |last6=Rohner |first6=Eliane |last7=Miller |first7=Elyse |last8=Jackson |first8=Sarah L |last9=Barclay |first9=Lynn |last10=Carter |first10=Alicia |last11=Wheeler |first11=Stephanie B |last12=Smith |first12=Jennifer S |title=Effect of HPV self-collection kits on cervical cancer screening uptake among under-screened women from low-income US backgrounds (MBMT-3): a phase 3, open-label, randomised controlled trial |journal=The Lancet Public Health |date=June 2023 |volume=8 |issue=6 |pages=e411–e421 |doi=10.1016/S2468-2667(23)00076-2|pmid=37182529 |pmc=10283467 }}</ref> cost-related medication nonadherence occurs in approximately 1 in 5 older adults in the U.S. in 2022 (18 May),<ref>{{#invoke:cite journal||last1=Dusetzina |first1=Stacie B. |last2=Besaw |first2=Robert J. |last3=Whitmore |first3=Christine C. |last4=Mattingly |first4=T. Joseph II |last5=Sinaiko |first5=Anna D. |last6=Keating |first6=Nancy L. |last7=Everson |first7=Jordan |title=Cost-Related Medication Nonadherence and Desire for Medication Cost Information Among Adults Aged 65 Years and Older in the US in 2022 |journal=JAMA Network Open |date=18 May 2023 |volume=6 |issue=5 |pages=e2314211 |doi=10.1001/jamanetworkopen.2023.14211 |pmid=37200029 |pmc=10196872 |issn=2574-3805|doi-access=free}}</ref> and a [[QALY]]-based [[health economics]] study evaluates the cost-effectiveness of U.S. population-wide [[screening (medicine)|screening]] for [[Chronic kidney disease|CKD]] (23 May).<ref>{{#invoke:cite journal||last1=Cusick |first1=Marika M. |last2=Tisdale |first2=Rebecca L. |last3=Chertow |first3=Glenn M. |last4=Owens |first4=Douglas K. |last5=Goldhaber-Fiebert |first5=Jeremy D. |title=Population-Wide Screening for Chronic Kidney Disease: A Cost-Effectiveness Analysis |journal=Annals of Internal Medicine |date=June 2023 |volume=176 |issue=6 |pages=788–797 |doi=10.7326/M22-3228 |pmid=37216661 |s2cid=258834225 |language=en |issn=0003-4819}}</ref>
* News article about the study: {{#invoke:cite news||last1=Gotkine |first1=Elana |title=Medicare spending would increase $2.0 to $5.1 billion with lecanemab, say researchers |url=https://medicalxpress.com/news/2023-05-medicare-billion-lecanemab.html |access-date=25 June 2023 |work=medicalxpress.com |language=en}}</ref> mailed [[human papillomavirus|HPV]] self-collection <!--Medical test-->[[self-collection kit|kits]] with <!--[[Telehealth|-->scheduling assistance can lead to greater uptake of [[cervical cancer screening]] (11 May),<ref>{{#invoke:cite journal||last1=Pretsch |first1=Peyton K |last2=Spees |first2=Lisa P |last3=Brewer |first3=Noel T |last4=Hudgens |first4=Michael G |last5=Sanusi |first5=Busola |last6=Rohner |first6=Eliane |last7=Miller |first7=Elyse |last8=Jackson |first8=Sarah L |last9=Barclay |first9=Lynn |last10=Carter |first10=Alicia |last11=Wheeler |first11=Stephanie B |last12=Smith |first12=Jennifer S |title=Effect of HPV self-collection kits on cervical cancer screening uptake among under-screened women from low-income US backgrounds (MBMT-3): a phase 3, open-label, randomised controlled trial |journal=The Lancet Public Health |date=June 2023 |volume=8 |issue=6 |pages=e411–e421 |doi=10.1016/S2468-2667(23)00076-2|pmid=37182529 |pmc=10283467 }}</ref> cost-related medication nonadherence occurs in approximately 1 in 5 older adults in the U.S. in 2022 (18 May),<ref>{{#invoke:cite journal||last1=Dusetzina |first1=Stacie B. |last2=Besaw |first2=Robert J. |last3=Whitmore |first3=Christine C. |last4=Mattingly |first4=T. Joseph II |last5=Sinaiko |first5=Anna D. |last6=Keating |first6=Nancy L. |last7=Everson |first7=Jordan |title=Cost-Related Medication Nonadherence and Desire for Medication Cost Information Among Adults Aged 65 Years and Older in the US in 2022 |journal=JAMA Network Open |date=18 May 2023 |volume=6 |issue=5 |pages=e2314211 |doi=10.1001/jamanetworkopen.2023.14211 |pmid=37200029 |pmc=10196872 |issn=2574-3805|doi-access=free}}</ref> and a [[QALY]]-based [[health economics]] study evaluates the cost-effectiveness of U.S. population-wide [[screening (medicine)|screening]] for [[Chronic kidney disease|CKD]] (23 May).<ref>{{#invoke:cite journal||last1=Cusick |first1=Marika M. |last2=Tisdale |first2=Rebecca L. |last3=Chertow |first3=Glenn M. |last4=Owens |first4=Douglas K. |last5=Goldhaber-Fiebert |first5=Jeremy D. |title=Population-Wide Screening for Chronic Kidney Disease: A Cost-Effectiveness Analysis |journal=Annals of Internal Medicine |date=June 2023 |volume=176 |issue=6 |pages=788–797 |doi=10.7326/M22-3228 |pmid=37216661 |pmc=11091494 |s2cid=258834225 |language=en |issn=0003-4819}}</ref>
*Research on potential current [[Hazard|public risk sources]] is published: the common [[Dibutyl phthalate|DBP]] and [[Bisphenol AF|BPAF]] appear to have "substantial impact on the integrity of the sperm nucleus and DNA structure" in mice via [[oxidative stress]] (5 May),<ref>{{#invoke:cite journal||last1=Hug |first1=Elisa |last2=Villeneuve |first2=Pauline |last3=Bravard |first3=Stephanie |last4=Chorfa |first4=Areski |last5=Damon-Soubeyrand |first5=Christelle |last6=Somkuti |first6=Stephen G. |last7=Moazamian |first7=Aron |last8=Aitken |first8=R. John |last9=Gharagozloo |first9=Parviz |last10=Drevet |first10=Joël R. |last11=Saez |first11=Fabrice |title=Loss of Nuclear/DNA Integrity in Mouse Epididymal Spermatozoa after Short-Term Exposure to Low Doses of Dibutyl Phthalate or Bisphenol AF and Its Mitigation by Oral Antioxidant Supplementation |journal=Antioxidants |date=May 2023 |volume=12 |issue=5 |page=1046 |doi=10.3390/antiox12051046 |pmid=37237912 |pmc=10215174 |language=en |issn=2076-3921|doi-access=free}}</ref> a preliminary study contextualizes "[[Digital media use and mental health|time spent on social media]]" as one of the "least influential factors in adolescent mental health" (8 May),<ref>{{#invoke:cite journal||last1=Panayiotou |first1=Margarita |last2=Black |first2=Louise |last3=Carmichael-Murphy |first3=Parise |last4=Qualter |first4=Pamela |last5=Humphrey |first5=Neil |title=Time spent on social media among the least influential factors in adolescent mental health: preliminary results from a panel network analysis |journal=Nature Mental Health |date=May 2023 |volume=1 |issue=5 |pages=316–326 |doi=10.1038/s44220-023-00063-7 |s2cid=258570463 |url=https://www.nature.com/articles/s44220-023-00063-7 |language=en |issn=2731-6076}}</ref> ubiquitous environmental contaminant [[Trichloroethylene|TCE]] appears to be a risk factor for [[Parkinson's disease]] (PD) (15 May),<ref>{{#invoke:cite journal||last1=Goldman |first1=Samuel M. |last2=Weaver |first2=Frances M. |last3=Stroupe |first3=Kevin T. |last4=Cao |first4=Lishan |last5=Gonzalez |first5=Beverly |last6=Colletta |first6=Kalea |last7=Brown |first7=Ethan G. |last8=Tanner |first8=Caroline M. |title=Risk of Parkinson Disease Among Service Members at Marine Corps Base Camp Lejeune |journal=JAMA Neurology |date=15 May 2023 |volume=80 |issue=7 |pages=673–681 |doi=10.1001/jamaneurol.2023.1168 |pmid=37184848 |pmc=10186205 |issn=2168-6149|url=https://jamanetwork.com/journals/jamaneurology/article-abstract/2805037|url-access=subscription |pmc-embargo-date=May 15, 2024 }}
*Research on potential current [[Hazard|public risk sources]] is published: the common [[Dibutyl phthalate|DBP]] and [[Bisphenol AF|BPAF]] appear to have "substantial impact on the integrity of the sperm nucleus and DNA structure" in mice via [[oxidative stress]] (5 May),<ref>{{#invoke:cite journal||last1=Hug |first1=Elisa |last2=Villeneuve |first2=Pauline |last3=Bravard |first3=Stephanie |last4=Chorfa |first4=Areski |last5=Damon-Soubeyrand |first5=Christelle |last6=Somkuti |first6=Stephen G. |last7=Moazamian |first7=Aron |last8=Aitken |first8=R. John |last9=Gharagozloo |first9=Parviz |last10=Drevet |first10=Joël R. |last11=Saez |first11=Fabrice |title=Loss of Nuclear/DNA Integrity in Mouse Epididymal Spermatozoa after Short-Term Exposure to Low Doses of Dibutyl Phthalate or Bisphenol AF and Its Mitigation by Oral Antioxidant Supplementation |journal=Antioxidants |date=May 2023 |volume=12 |issue=5 |page=1046 |doi=10.3390/antiox12051046 |pmid=37237912 |pmc=10215174 |language=en |issn=2076-3921|doi-access=free}}</ref> a preliminary study contextualizes "[[Digital media use and mental health|time spent on social media]]" as one of the "least influential factors in adolescent mental health" (8 May),<ref>{{#invoke:cite journal||last1=Panayiotou |first1=Margarita |last2=Black |first2=Louise |last3=Carmichael-Murphy |first3=Parise |last4=Qualter |first4=Pamela |last5=Humphrey |first5=Neil |title=Time spent on social media among the least influential factors in adolescent mental health: preliminary results from a panel network analysis |journal=Nature Mental Health |date=May 2023 |volume=1 |issue=5 |pages=316–326 |doi=10.1038/s44220-023-00063-7 |s2cid=258570463 |url=https://www.nature.com/articles/s44220-023-00063-7 |language=en |issn=2731-6076}}</ref> ubiquitous environmental contaminant [[Trichloroethylene|TCE]] appears to be a risk factor for [[Parkinson's disease]] (PD) (15 May),<ref>{{#invoke:cite journal||last1=Goldman |first1=Samuel M. |last2=Weaver |first2=Frances M. |last3=Stroupe |first3=Kevin T. |last4=Cao |first4=Lishan |last5=Gonzalez |first5=Beverly |last6=Colletta |first6=Kalea |last7=Brown |first7=Ethan G. |last8=Tanner |first8=Caroline M. |title=Risk of Parkinson Disease Among Service Members at Marine Corps Base Camp Lejeune |journal=JAMA Neurology |date=15 May 2023 |volume=80 |issue=7 |pages=673–681 |doi=10.1001/jamaneurol.2023.1168 |pmid=37184848 |pmc=10186205 |issn=2168-6149|url=https://jamanetwork.com/journals/jamaneurology/article-abstract/2805037|url-access=subscription }}
* News article about the study: {{#invoke:cite news||last1=Christensen |first1=Jen |title=Veterans exposed to chemical at Camp Lejeune faced a 70% higher Parkinson's risk, study says |url=https://edition.cnn.com/2023/05/15/health/camp-lejeune-parkinsons-tce/index.html |access-date=25 June 2023 |work=CNN |date=15 May 2023 |language=en}}</ref> various [[pesticides and health|pesticides]] are identified as potential risk factors for PD (16 May),<ref>{{#invoke:cite journal||last1=Paul |first1=Kimberly C. |last2=Krolewski |first2=Richard C. |last3=Lucumi Moreno |first3=Edinson |last4=Blank |first4=Jack |last5=Holton |first5=Kristina M. |last6=Ahfeldt |first6=Tim |last7=Furlong |first7=Melissa |last8=Yu |first8=Yu |last9=Cockburn |first9=Myles |last10=Thompson |first10=Laura K. |last11=Kreymerman |first11=Alexander |last12=Ricci-Blair |first12=Elisabeth M. |last13=Li |first13=Yu Jun |last14=Patel |first14=Heer B. |last15=Lee |first15=Richard T. |last16=Bronstein |first16=Jeff |last17=Rubin |first17=Lee L. |last18=Khurana |first18=Vikram |last19=Ritz |first19=Beate |title=A pesticide and iPSC dopaminergic neuron screen identifies and classifies Parkinson-relevant pesticides |journal=Nature Communications |date=16 May 2023 |volume=14 |issue=1 |page=2803 |doi=10.1038/s41467-023-38215-z |pmid=37193692 |pmc=10188516 |bibcode=2023NatCo..14.2803P |language=en |issn=2041-1723|doi-access=free}}
* News article about the study: {{#invoke:cite news||last1=Christensen |first1=Jen |title=Veterans exposed to chemical at Camp Lejeune faced a 70% higher Parkinson's risk, study says |url=https://edition.cnn.com/2023/05/15/health/camp-lejeune-parkinsons-tce/index.html |access-date=25 June 2023 |work=CNN |date=15 May 2023 |language=en}}</ref> various [[pesticides and health|pesticides]] are identified as potential risk factors for PD (16 May),<ref>{{#invoke:cite journal||last1=Paul |first1=Kimberly C. |last2=Krolewski |first2=Richard C. |last3=Lucumi Moreno |first3=Edinson |last4=Blank |first4=Jack |last5=Holton |first5=Kristina M. |last6=Ahfeldt |first6=Tim |last7=Furlong |first7=Melissa |last8=Yu |first8=Yu |last9=Cockburn |first9=Myles |last10=Thompson |first10=Laura K. |last11=Kreymerman |first11=Alexander |last12=Ricci-Blair |first12=Elisabeth M. |last13=Li |first13=Yu Jun |last14=Patel |first14=Heer B. |last15=Lee |first15=Richard T. |last16=Bronstein |first16=Jeff |last17=Rubin |first17=Lee L. |last18=Khurana |first18=Vikram |last19=Ritz |first19=Beate |title=A pesticide and iPSC dopaminergic neuron screen identifies and classifies Parkinson-relevant pesticides |journal=Nature Communications |date=16 May 2023 |volume=14 |issue=1 |page=2803 |doi=10.1038/s41467-023-38215-z |pmid=37193692 |pmc=10188516 |bibcode=2023NatCo..14.2803P |language=en |issn=2041-1723|doi-access=free}}
* News article about the study: {{#invoke:cite news||title=At Least 10 Pesticides Could Have Links to Parkinson's |url=https://www.usnews.com/news/health-news/articles/2023-05-19/at-least-10-pesticides-could-have-links-to-parkinsons |access-date=25 June 2023}}</ref> researchers demonstrate a two [[zero-day vulnerability|zero-day vulnerabilities]]-based quick low-cost method – "BrutePrint" – for [[Mobile security|bypassing common smartphones']] [[fingerprint authentication]] (18 May),<ref>{{#invoke:cite news||last1=Goodin |first1=Dan |title=Here's how long it takes new BrutePrint attack to unlock 10 different smartphones |url=https://arstechnica.com/information-technology/2023/05/hackers-can-brute-force-fingerprint-authentication-of-android-devices/ |access-date=25 June 2023 |work=Ars Technica |date=22 May 2023 |language=en-us}}</ref><ref>{{cite arXiv |last1=Chen |first1=Yu |last2=He |first2=Yiling |title=BrutePrint: Expose Smartphone Fingerprint Authentication to Brute-force Attack |year=2023 |class=cs.CR |eprint=2305.10791 }}</ref> and common [[sucralose]] impurity sucralose-6-acetate appears to be [[genotoxic|DNA damaging]] with sucralose-sweetened drinks potentially far exceeding the threshold of toxicological concern (29 May).<ref>{{#invoke:cite journal||last1=Schiffman |first1=Susan S. |last2=Scholl |first2=Elizabeth H. |last3=Furey |first3=Terrence S. |last4=Nagle |first4=H. Troy |title=Toxicological and pharmacokinetic properties of sucralose-6-acetate and its parent sucralose: in vitro screening assays |journal=Journal of Toxicology and Environmental Health, Part B |date=29 May 2023 |volume=26 |issue=6 |pages=307–341 |doi=10.1080/10937404.2023.2213903 |pmid=37246822 |bibcode=2023JTEHB..26..307S |s2cid=258959574 |language=en |issn=1093-7404|doi-access=free }}
* News article about the study: {{#invoke:cite news||title=At Least 10 Pesticides Could Have Links to Parkinson's |url=https://www.usnews.com/news/health-news/articles/2023-05-19/at-least-10-pesticides-could-have-links-to-parkinsons |access-date=25 June 2023}}</ref> researchers demonstrate a two [[zero-day vulnerability|zero-day vulnerabilities]]-based quick low-cost method – "BrutePrint" – for [[Mobile security|bypassing common smartphones']] [[fingerprint authentication]] (18 May),<ref>{{#invoke:cite news||last1=Goodin |first1=Dan |title=Here's how long it takes new BrutePrint attack to unlock 10 different smartphones |url=https://arstechnica.com/information-technology/2023/05/hackers-can-brute-force-fingerprint-authentication-of-android-devices/ |access-date=25 June 2023 |work=Ars Technica |date=22 May 2023 |language=en-us}}</ref><ref>{{cite arXiv |last1=Chen |first1=Yu |last2=He |first2=Yiling |title=BrutePrint: Expose Smartphone Fingerprint Authentication to Brute-force Attack |year=2023 |class=cs.CR |eprint=2305.10791 }}</ref> and common [[sucralose]] impurity sucralose-6-acetate appears to be [[genotoxic|DNA damaging]] with sucralose-sweetened drinks potentially far exceeding the threshold of toxicological concern (29 May).<ref>{{#invoke:cite journal||last1=Schiffman |first1=Susan S. |last2=Scholl |first2=Elizabeth H. |last3=Furey |first3=Terrence S. |last4=Nagle |first4=H. Troy |title=Toxicological and pharmacokinetic properties of sucralose-6-acetate and its parent sucralose: in vitro screening assays |journal=Journal of Toxicology and Environmental Health, Part B |date=29 May 2023 |volume=26 |issue=6 |pages=307–341 |doi=10.1080/10937404.2023.2213903 |pmid=37246822 |bibcode=2023JTEHB..26..307S |s2cid=258959574 |language=en |issn=1093-7404|doi-access=free }}
Line 162: Line 164:
* University press release: {{#invoke:cite news||title=AI could run a million microbial experiments per year |url=https://news.umich.edu/ai-could-run-a-million-microbial-experiments-per-year/ |access-date=25 June 2023 |work=University of Michigan News |date=4 May 2023}}</ref> a [[Pesticide#Alternatives|pesticide alternative]] against wheat seed loss (22 May),<ref>{{#invoke:cite news||title=Camouflaging wheat with a wheat smell could be a new approach to pest control |url=https://www.sciencenews.org/article/camouflaging-wheat-smell-pest-control |access-date=25 June 2023 |work=Science News |date=13 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Parker |first1=Finn C. G. |last2=Price |first2=Catherine J. |last3=Bytheway |first3=Jenna P. |last4=Banks |first4=Peter B. |title=Olfactory misinformation reduces wheat seed loss caused by rodent pests |journal=Nature Sustainability |date=22 May 2023 |volume=6 |issue=9 |pages=1041–1044 |doi=10.1038/s41893-023-01127-3 |bibcode=2023NatSu...6.1041P |s2cid=258856025 |language=en |issn=2398-9629|doi-access=free }}</ref> a low-cost smartphone-[[Mobile phone accessories|attachment]] (BPClip) for [[blood pressure measurement]] (29 May),<ref>{{#invoke:cite news||title=Ultra low-cost smartphone attachment measures blood pressure at home |url=https://arstechnica.com/science/2023/06/ultra-low-cost-smartphone-attachment-measures-blood-pressure-at-home |access-date=26 June 2023 |work=Ars Technica |date=16 June 2023 |language=en-us}}</ref><ref>{{#invoke:cite journal||last1=Xuan |first1=Yinan |last2=Barry |first2=Colin |last3=De Souza |first3=Jessica |last4=Wen |first4=Jessica H. |last5=Antipa |first5=Nick |last6=Moore |first6=Alison A. |last7=Wang |first7=Edward J. |title=Ultra-low-cost mechanical smartphone attachment for no-calibration blood pressure measurement |journal=Scientific Reports |date=29 May 2023 |volume=13 |issue=1 |page=8105 |doi=10.1038/s41598-023-34431-1 |pmid=37248245 |pmc=10227087 |bibcode=2023NatSR..13.8105X |language=en |issn=2045-2322|doi-access=free}}</ref> an open source [[transfer learning]]-based system (Geneformer)<ref>{{#invoke:cite web||date=2023-06-25 |title=ctheodoris/Geneformer · Hugging Face |url=https://huggingface.co/ctheodoris/Geneformer |access-date=2023-06-26 |website=huggingface.co}}</ref> for predicting how networks of interconnected human genes control or affect the function of cells (31 May).<ref>{{#invoke:cite journal||last1=Theodoris |first1=Christina V. |last2=Xiao |first2=Ling |last3=Chopra |first3=Anant |last4=Chaffin |first4=Mark D. |last5=Al Sayed |first5=Zeina R. |last6=Hill |first6=Matthew C. |last7=Mantineo |first7=Helene |last8=Brydon |first8=Elizabeth M. |last9=Zeng |first9=Zexian |last10=Liu |first10=X. Shirley |last11=Ellinor |first11=Patrick T. |title=Transfer learning enables predictions in network biology |journal=Nature |date=June 2023 |volume=618 |issue=7965 |pages=616–624 |doi=10.1038/s41586-023-06139-9 |pmid=37258680 |pmc=10949956 |bibcode=2023Natur.618..616T |s2cid=259002047 |url=https://www.researchgate.net/publication/371175364|url-access=subscription |language=en |issn=1476-4687}}
* University press release: {{#invoke:cite news||title=AI could run a million microbial experiments per year |url=https://news.umich.edu/ai-could-run-a-million-microbial-experiments-per-year/ |access-date=25 June 2023 |work=University of Michigan News |date=4 May 2023}}</ref> a [[Pesticide#Alternatives|pesticide alternative]] against wheat seed loss (22 May),<ref>{{#invoke:cite news||title=Camouflaging wheat with a wheat smell could be a new approach to pest control |url=https://www.sciencenews.org/article/camouflaging-wheat-smell-pest-control |access-date=25 June 2023 |work=Science News |date=13 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Parker |first1=Finn C. G. |last2=Price |first2=Catherine J. |last3=Bytheway |first3=Jenna P. |last4=Banks |first4=Peter B. |title=Olfactory misinformation reduces wheat seed loss caused by rodent pests |journal=Nature Sustainability |date=22 May 2023 |volume=6 |issue=9 |pages=1041–1044 |doi=10.1038/s41893-023-01127-3 |bibcode=2023NatSu...6.1041P |s2cid=258856025 |language=en |issn=2398-9629|doi-access=free }}</ref> a low-cost smartphone-[[Mobile phone accessories|attachment]] (BPClip) for [[blood pressure measurement]] (29 May),<ref>{{#invoke:cite news||title=Ultra low-cost smartphone attachment measures blood pressure at home |url=https://arstechnica.com/science/2023/06/ultra-low-cost-smartphone-attachment-measures-blood-pressure-at-home |access-date=26 June 2023 |work=Ars Technica |date=16 June 2023 |language=en-us}}</ref><ref>{{#invoke:cite journal||last1=Xuan |first1=Yinan |last2=Barry |first2=Colin |last3=De Souza |first3=Jessica |last4=Wen |first4=Jessica H. |last5=Antipa |first5=Nick |last6=Moore |first6=Alison A. |last7=Wang |first7=Edward J. |title=Ultra-low-cost mechanical smartphone attachment for no-calibration blood pressure measurement |journal=Scientific Reports |date=29 May 2023 |volume=13 |issue=1 |page=8105 |doi=10.1038/s41598-023-34431-1 |pmid=37248245 |pmc=10227087 |bibcode=2023NatSR..13.8105X |language=en |issn=2045-2322|doi-access=free}}</ref> an open source [[transfer learning]]-based system (Geneformer)<ref>{{#invoke:cite web||date=2023-06-25 |title=ctheodoris/Geneformer · Hugging Face |url=https://huggingface.co/ctheodoris/Geneformer |access-date=2023-06-26 |website=huggingface.co}}</ref> for predicting how networks of interconnected human genes control or affect the function of cells (31 May).<ref>{{#invoke:cite journal||last1=Theodoris |first1=Christina V. |last2=Xiao |first2=Ling |last3=Chopra |first3=Anant |last4=Chaffin |first4=Mark D. |last5=Al Sayed |first5=Zeina R. |last6=Hill |first6=Matthew C. |last7=Mantineo |first7=Helene |last8=Brydon |first8=Elizabeth M. |last9=Zeng |first9=Zexian |last10=Liu |first10=X. Shirley |last11=Ellinor |first11=Patrick T. |title=Transfer learning enables predictions in network biology |journal=Nature |date=June 2023 |volume=618 |issue=7965 |pages=616–624 |doi=10.1038/s41586-023-06139-9 |pmid=37258680 |pmc=10949956 |bibcode=2023Natur.618..616T |s2cid=259002047 |url=https://www.researchgate.net/publication/371175364|url-access=subscription |language=en |issn=1476-4687}}
* Lay summary: {{#invoke:cite news||last1=Williams |first1=Sarah C. P. |title=Artificial intelligence system predicts consequences of gene modifications |url=https://medicalxpress.com/news/2023-05-artificial-intelligence-consequences-gene-modifications.html |access-date=25 June 2023 |work=Gladstone Institutes via medicalxpress.com |language=en}}</ref>
* Lay summary: {{#invoke:cite news||last1=Williams |first1=Sarah C. P. |title=Artificial intelligence system predicts consequences of gene modifications |url=https://medicalxpress.com/news/2023-05-artificial-intelligence-consequences-gene-modifications.html |access-date=25 June 2023 |work=Gladstone Institutes via medicalxpress.com |language=en}}</ref>
*<!--news reports via altmetrics badge/link at the study-->Promising results of [[Therapy#By therapy composition|therapeutic]] candidates are reported: [[Phases of clinical research|phase I trialed]] ultrasound [[Blood–brain barrier|BBB]]-opening device against [[Glioblastoma|brain cancer]] (1 May),<ref>{{#invoke:cite journal||last1=Sonabend |first1=Adam M |last2=Gould |first2=Andrew |last3=Amidei |first3=Christina |last4=Ward |first4=Rachel |last5=Schmidt |first5=Karyn A |last6=Zhang |first6=Daniel Y |last7=Gomez |first7=Cristal |last8=Bebawy |first8=John F |last9=Liu |first9=Benjamin P |last10=Bouchoux |first10=Guillaume |last11=Desseaux |first11=Carole |last12=Helenowski |first12=Irene B |last13=Lukas |first13=Rimas V |last14=Dixit |first14=Karan |last15=Kumthekar |first15=Priya |last16=Arrieta |first16=Víctor A |last17=Lesniak |first17=Maciej S |last18=Carpentier |first18=Alexandre |last19=Zhang |first19=Hui |last20=Muzzio |first20=Miguel |last21=Canney |first21=Michael |last22=Stupp |first22=Roger |title=Repeated blood–brain barrier opening with an implantable ultrasound device for delivery of albumin-bound paclitaxel in patients with recurrent glioblastoma: a phase 1 trial |journal=The Lancet Oncology |date=May 2023 |volume=24 |issue=5 |pages=509–522 |doi=10.1016/S1470-2045(23)00112-2|pmid=37142373 |pmc=10256454 |pmc-embargo-date=May 1, 2024 }}</ref> phase I trialed personalized [[mRNA vaccine]] against [[pancreatic cancer]] recurrence (10 May),<ref>{{#invoke:cite journal||last1=Rojas |first1=Luis A. |last2=Sethna |first2=Zachary |last3=Soares |first3=Kevin C. |last4=Olcese |first4=Cristina |display-authors=et al. |title=Personalized RNA neoantigen vaccines stimulate T cells in pancreatic cancer |journal=Nature |date=June 2023 |volume=618 |issue=7963 |pages=144–150 |doi=10.1038/s41586-023-06063-y |pmid=37165196 |pmc=10171177 |bibcode=2023Natur.618..144R |language=en |issn=1476-4687|doi-access=free}}</ref> a novel antibiotic ([[Nourseothricin|Streptothricin F]]) against [[antibiotic resistance|ABR]] bacteria (9 May),<ref>{{#invoke:cite journal||last1=Morgan |first1=Christopher E. |last2=Kang |first2=Yoon-Suk |last3=Green |first3=Alex B. |last4=Smith |first4=Kenneth P. |last5=Dowgiallo |first5=Matthew G. |last6=Miller |first6=Brandon C. |last7=Chiaraviglio |first7=Lucius |last8=Truelson |first8=Katherine A. |last9=Zulauf |first9=Katelyn E. |last10=Rodriguez |first10=Shade |last11=Kang |first11=Anthony D. |last12=Manetsch |first12=Roman |last13=Yu |first13=Edward W. |last14=Kirby |first14=James E. |title=Streptothricin F is a bactericidal antibiotic effective against highly drug-resistant gram-negative bacteria that interacts with the 30S subunit of the 70S ribosome |journal=PLOS Biology |date=16 May 2023 |volume=21 |issue=5 |pages=e3002091 |doi=10.1371/journal.pbio.3002091 |pmid=37192172 |pmc=10187937 |language=en |issn=1545-7885|doi-access=free}}</ref> an [[Electronic skin|e-skin]] for prosthetic sensing (18 May),<ref>{{#invoke:cite journal||last1=Wang |first1=Weichen |last2=Jiang |first2=Yuanwen |last3=Zhong |first3=Donglai |last4=Zhang |first4=Zhitao |last5=Choudhury |first5=Snehashis |last6=Lai |first6=Jian-Cheng |last7=Gong |first7=Huaxin |last8=Niu |first8=Simiao |last9=Yan |first9=Xuzhou |last10=Zheng |first10=Yu |last11=Shih |first11=Chien-Chung |last12=Ning |first12=Rui |last13=Lin |first13=Qing |last14=Li |first14=Deling |last15=Kim |first15=Yun-Hi |last16=Kim |first16=Jingwan |last17=Wang |first17=Yi-Xuan |last18=Zhao |first18=Chuanzhen |last19=Xu |first19=Chengyi |last20=Ji |first20=Xiaozhou |last21=Nishio |first21=Yuya |last22=Lyu |first22=Hao |last23=Tok |first23=Jeffrey B.-H. |last24=Bao |first24=Zhenan |title=Neuromorphic sensorimotor loop embodied by monolithically integrated, low-voltage, soft e-skin |journal=Science |date=19 May 2023 |volume=380 |issue=6646 |pages=735–742 |doi=10.1126/science.ade0086 |pmid=37200416 |bibcode=2023Sci...380..735W |s2cid=258765173 |language=en |issn=0036-8075}}</ref> two-dose JYNNEOS vaccine against [[mpox]] appears ~86%<ref>{{#invoke:cite journal||last1=Dalton |first1=Alexandra F. |title=Estimated Effectiveness of JYNNEOS Vaccine in Preventing Mpox: A Multijurisdictional Case-Control Study — United States, August 19, 2022 – March 31, 2023 |journal=MMWR. Morbidity and Mortality Weekly Report |date=2023 |volume=72 |issue=20 |pages=553–558 |doi=10.15585/mmwr.mm7220a3 |pmid=37200229 |pmc=10205167 |language=en-us |issn=0149-2195}}</ref> (19 May) or ~66%<ref>{{#invoke:cite journal||last1=Deputy |first1=Nicholas P. |last2=Deckert |first2=Joseph |last3=Chard |first3=Anna N. |last4=Sandberg |first4=Neil |last5=Moulia |first5=Danielle L. |last6=Barkley |first6=Eric |last7=Dalton |first7=Alexandra F. |last8=Sweet |first8=Cory |last9=Cohn |first9=Amanda C. |last10=Little |first10=David R. |last11=Cohen |first11=Adam L. |last12=Sandmann |first12=Danessa |last13=Payne |first13=Daniel C. |last14=Gerhart |first14=Jacqueline L. |last15=Feldstein |first15=Leora R. |title=Vaccine Effectiveness of JYNNEOS against Mpox Disease in the United States |journal=New England Journal of Medicine |date=18 May 2023 |volume=388 |issue=26 |pages=2434–2443 |doi=10.1056/NEJMoa2215201 |pmid=37199451 |pmc=10962869 |pmc-embargo-date=June 29, 2024 |s2cid=258764684 |language=en |issn=0028-4793}}</ref> (18 May) effective, and a [[xenograft]]ed mice-tested pan-[[KRAS#As a therapeutic target|KRAS-inhibitor]] against cancer (31 May).<ref>{{#invoke:cite journal||last1=Kim |first1=Dongsung |last2=Herdeis |first2=Lorenz |last3=Rudolph |first3=Dorothea |last4=Zhao |first4=Yulei |last5=Böttcher |first5=Jark |last6=Vides |first6=Alberto |last7=Ayala-Santos |first7=Carlos I. |last8=Pourfarjam |first8=Yasin |last9=Cuevas-Navarro |first9=Antonio |last10=Xue |first10=Jenny Y. |last11=Mantoulidis |first11=Andreas |last12=Bröker |first12=Joachim |last13=Wunberg |first13=Tobias |last14=Schaaf |first14=Otmar |last15=Popow |first15=Johannes |last16=Wolkerstorfer |first16=Bernhard |last17=Kropatsch |first17=Katrin Gabriele |last18=Qu |first18=Rui |last19=de Stanchina |first19=Elisa |last20=Sang |first20=Ben |last21=Li |first21=Chuanchuan |last22=McConnell |first22=Darryl B. |last23=Kraut |first23=Norbert |last24=Lito |first24=Piro |title=Pan-KRAS inhibitor disables oncogenic signalling and tumour growth |journal=Nature |date=31 May 2023 |volume=619 |issue=7968 |pages=160–166 |doi=10.1038/s41586-023-06123-3 |pmid=37258666 |pmc=10322706 |bibcode=2023Natur.619..160K |language=en |issn=1476-4687|doi-access=free}}</ref>
*<!--news reports via altmetrics badge/link at the study-->Promising results of [[Therapy#By therapy composition|therapeutic]] candidates are reported: [[Phases of clinical research|phase I trialed]] ultrasound [[Blood–brain barrier|BBB]]-opening device against [[Glioblastoma|brain cancer]] (1 May),<ref>{{#invoke:cite journal||last1=Sonabend |first1=Adam M |last2=Gould |first2=Andrew |last3=Amidei |first3=Christina |last4=Ward |first4=Rachel |last5=Schmidt |first5=Karyn A |last6=Zhang |first6=Daniel Y |last7=Gomez |first7=Cristal |last8=Bebawy |first8=John F |last9=Liu |first9=Benjamin P |last10=Bouchoux |first10=Guillaume |last11=Desseaux |first11=Carole |last12=Helenowski |first12=Irene B |last13=Lukas |first13=Rimas V |last14=Dixit |first14=Karan |last15=Kumthekar |first15=Priya |last16=Arrieta |first16=Víctor A |last17=Lesniak |first17=Maciej S |last18=Carpentier |first18=Alexandre |last19=Zhang |first19=Hui |last20=Muzzio |first20=Miguel |last21=Canney |first21=Michael |last22=Stupp |first22=Roger |title=Repeated blood–brain barrier opening with an implantable ultrasound device for delivery of albumin-bound paclitaxel in patients with recurrent glioblastoma: a phase 1 trial |journal=The Lancet Oncology |date=May 2023 |volume=24 |issue=5 |pages=509–522 |doi=10.1016/S1470-2045(23)00112-2|pmid=37142373 |pmc=10256454 }}</ref> phase I trialed personalized [[mRNA vaccine]] against [[pancreatic cancer]] recurrence (10 May),<ref>{{#invoke:cite journal||last1=Rojas |first1=Luis A. |last2=Sethna |first2=Zachary |last3=Soares |first3=Kevin C. |last4=Olcese |first4=Cristina |display-authors=et al. |title=Personalized RNA neoantigen vaccines stimulate T cells in pancreatic cancer |journal=Nature |date=June 2023 |volume=618 |issue=7963 |pages=144–150 |doi=10.1038/s41586-023-06063-y |pmid=37165196 |pmc=10171177 |bibcode=2023Natur.618..144R |language=en |issn=1476-4687|doi-access=free}}</ref> a novel antibiotic ([[Nourseothricin|Streptothricin F]]) against [[antibiotic resistance|ABR]] bacteria (9 May),<ref>{{#invoke:cite journal||last1=Morgan |first1=Christopher E. |last2=Kang |first2=Yoon-Suk |last3=Green |first3=Alex B. |last4=Smith |first4=Kenneth P. |last5=Dowgiallo |first5=Matthew G. |last6=Miller |first6=Brandon C. |last7=Chiaraviglio |first7=Lucius |last8=Truelson |first8=Katherine A. |last9=Zulauf |first9=Katelyn E. |last10=Rodriguez |first10=Shade |last11=Kang |first11=Anthony D. |last12=Manetsch |first12=Roman |last13=Yu |first13=Edward W. |last14=Kirby |first14=James E. |title=Streptothricin F is a bactericidal antibiotic effective against highly drug-resistant gram-negative bacteria that interacts with the 30S subunit of the 70S ribosome |journal=PLOS Biology |date=16 May 2023 |volume=21 |issue=5 |pages=e3002091 |doi=10.1371/journal.pbio.3002091 |pmid=37192172 |pmc=10187937 |language=en |issn=1545-7885|doi-access=free}}</ref> an [[Electronic skin|e-skin]] for prosthetic sensing (18 May),<ref>{{#invoke:cite journal||last1=Wang |first1=Weichen |last2=Jiang |first2=Yuanwen |last3=Zhong |first3=Donglai |last4=Zhang |first4=Zhitao |last5=Choudhury |first5=Snehashis |last6=Lai |first6=Jian-Cheng |last7=Gong |first7=Huaxin |last8=Niu |first8=Simiao |last9=Yan |first9=Xuzhou |last10=Zheng |first10=Yu |last11=Shih |first11=Chien-Chung |last12=Ning |first12=Rui |last13=Lin |first13=Qing |last14=Li |first14=Deling |last15=Kim |first15=Yun-Hi |last16=Kim |first16=Jingwan |last17=Wang |first17=Yi-Xuan |last18=Zhao |first18=Chuanzhen |last19=Xu |first19=Chengyi |last20=Ji |first20=Xiaozhou |last21=Nishio |first21=Yuya |last22=Lyu |first22=Hao |last23=Tok |first23=Jeffrey B.-H. |last24=Bao |first24=Zhenan |title=Neuromorphic sensorimotor loop embodied by monolithically integrated, low-voltage, soft e-skin |journal=Science |date=19 May 2023 |volume=380 |issue=6646 |pages=735–742 |doi=10.1126/science.ade0086 |pmid=37200416 |bibcode=2023Sci...380..735W |s2cid=258765173 |language=en |issn=0036-8075}}</ref> two-dose JYNNEOS vaccine against [[mpox]] appears ~86%<ref>{{#invoke:cite journal||last1=Dalton |first1=Alexandra F. |title=Estimated Effectiveness of JYNNEOS Vaccine in Preventing Mpox: A Multijurisdictional Case-Control Study — United States, August 19, 2022 – March 31, 2023 |journal=MMWR. Morbidity and Mortality Weekly Report |date=2023 |volume=72 |issue=20 |pages=553–558 |doi=10.15585/mmwr.mm7220a3 |pmid=37200229 |pmc=10205167 |language=en-us |issn=0149-2195}}</ref> (19 May) or ~66%<ref>{{#invoke:cite journal||last1=Deputy |first1=Nicholas P. |last2=Deckert |first2=Joseph |last3=Chard |first3=Anna N. |last4=Sandberg |first4=Neil |last5=Moulia |first5=Danielle L. |last6=Barkley |first6=Eric |last7=Dalton |first7=Alexandra F. |last8=Sweet |first8=Cory |last9=Cohn |first9=Amanda C. |last10=Little |first10=David R. |last11=Cohen |first11=Adam L. |last12=Sandmann |first12=Danessa |last13=Payne |first13=Daniel C. |last14=Gerhart |first14=Jacqueline L. |last15=Feldstein |first15=Leora R. |title=Vaccine Effectiveness of JYNNEOS against Mpox Disease in the United States |journal=New England Journal of Medicine |date=18 May 2023 |volume=388 |issue=26 |pages=2434–2443 |doi=10.1056/NEJMoa2215201 |pmid=37199451 |pmc=10962869 |s2cid=258764684 |language=en |issn=0028-4793}}</ref> (18 May) effective, and a [[xenograft]]ed mice-tested pan-[[KRAS#As a therapeutic target|KRAS-inhibitor]] against cancer (31 May).<ref>{{#invoke:cite journal||last1=Kim |first1=Dongsung |last2=Herdeis |first2=Lorenz |last3=Rudolph |first3=Dorothea |last4=Zhao |first4=Yulei |last5=Böttcher |first5=Jark |last6=Vides |first6=Alberto |last7=Ayala-Santos |first7=Carlos I. |last8=Pourfarjam |first8=Yasin |last9=Cuevas-Navarro |first9=Antonio |last10=Xue |first10=Jenny Y. |last11=Mantoulidis |first11=Andreas |last12=Bröker |first12=Joachim |last13=Wunberg |first13=Tobias |last14=Schaaf |first14=Otmar |last15=Popow |first15=Johannes |last16=Wolkerstorfer |first16=Bernhard |last17=Kropatsch |first17=Katrin Gabriele |last18=Qu |first18=Rui |last19=de Stanchina |first19=Elisa |last20=Sang |first20=Ben |last21=Li |first21=Chuanchuan |last22=McConnell |first22=Darryl B. |last23=Kraut |first23=Norbert |last24=Lito |first24=Piro |title=Pan-KRAS inhibitor disables oncogenic signalling and tumour growth |journal=Nature |date=31 May 2023 |volume=619 |issue=7968 |pages=160–166 |doi=10.1038/s41586-023-06123-3 |pmid=37258666 |pmc=10322706 |bibcode=2023Natur.619..160K |language=en |issn=1476-4687|doi-access=free}}</ref>


===June===
===June===
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*{{vanchor|29 June}} – Astronomers report using a new technique to detect, for the first time, the release of [[neutrino]]s from the [[galactic plane]] of the [[Milky Way]] [[galaxy]].<ref name="NYT-20230629">{{#invoke:cite news||last=Chang |first=Kenneth |title=Neutrinos Build a Ghostly Map of the Milky Way – Astronomers for the first time detected neutrinos that originated within our local galaxy using a new technique. |url=https://www.nytimes.com/2023/06/29/science/neutrinos-milky-way-map.html |work=[[The New York Times]] |date=29 June 2023 |url-status=live |archive-url=https://archive.today/20230629182106/https://www.nytimes.com/2023/06/29/science/neutrinos-milky-way-map.html |archive-date=29 June 2023 |access-date=30 June 2023 }}</ref><ref name="SCI-20230629">{{#invoke:cite journal||author=IceCube Collaboration |title=Observation of high-energy neutrinos from the Galactic plane |url=https://www.science.org/doi/10.1126/science.adc9818 |date=29 June 2023 |journal=[[Science (journal)|Science]] |volume=380 |issue=6652 |pages=1338–1343 |doi=10.1126/science.adc9818 |pmid=37384687 |arxiv=2307.04427 |bibcode=2023Sci...380.1338I |s2cid=259287623 |url-status=live |archive-url=https://archive.today/20230630042539/https://www.science.org/doi/10.1126/science.adc9818 |archive-date=30 June 2023 |access-date=30 June 2023 }}</ref>
*{{vanchor|29 June}} – Astronomers report using a new technique to detect, for the first time, the release of [[neutrino]]s from the [[galactic plane]] of the [[Milky Way]] [[galaxy]].<ref name="NYT-20230629">{{#invoke:cite news||last=Chang |first=Kenneth |title=Neutrinos Build a Ghostly Map of the Milky Way – Astronomers for the first time detected neutrinos that originated within our local galaxy using a new technique. |url=https://www.nytimes.com/2023/06/29/science/neutrinos-milky-way-map.html |work=[[The New York Times]] |date=29 June 2023 |url-status=live |archive-url=https://archive.today/20230629182106/https://www.nytimes.com/2023/06/29/science/neutrinos-milky-way-map.html |archive-date=29 June 2023 |access-date=30 June 2023 }}</ref><ref name="SCI-20230629">{{#invoke:cite journal||author=IceCube Collaboration |title=Observation of high-energy neutrinos from the Galactic plane |url=https://www.science.org/doi/10.1126/science.adc9818 |date=29 June 2023 |journal=[[Science (journal)|Science]] |volume=380 |issue=6652 |pages=1338–1343 |doi=10.1126/science.adc9818 |pmid=37384687 |arxiv=2307.04427 |bibcode=2023Sci...380.1338I |s2cid=259287623 |url-status=live |archive-url=https://archive.today/20230630042539/https://www.science.org/doi/10.1126/science.adc9818 |archive-date=30 June 2023 |access-date=30 June 2023 }}</ref>
*[[Hazard]] research is published: study results suggest high-temperature cooking could cause DNA damage within food (especially meat) which in turn could cause human [[DNA damage]] (1 June),<ref>{{#invoke:cite journal||last1=Jun |first1=Yong Woong |last2=Kant |first2=Melis |last3=Coskun |first3=Erdem |last4=Kato |first4=Takamitsu A. |last5=Jaruga |first5=Pawel |last6=Palafox |first6=Elizabeth |last7=Dizdaroglu |first7=Miral |last8=Kool |first8=Eric T. |title=Possible Genetic Risks from Heat-Damaged DNA in Food |journal=ACS Central Science |date=28 June 2023 |volume=9 |issue=6 |pages=1170–1179 |doi=10.1021/acscentsci.2c01247 |pmid=37396864 |pmc=10311654 |language=en |issn=2374-7943|doi-access=free}}</ref> a study concludes the Italian [[Phlegraean Fields]] could be heading towards a first eruption since 1538 (9 June),<ref>{{#invoke:cite journal||last1=Kilburn |first1=Christopher R. J. |last2=Carlino |first2=Stefano |last3=Danesi |first3=Stefania |last4=Pino |first4=Nicola Alessandro |title=Potential for rupture before eruption at Campi Flegrei caldera, Southern Italy |journal=Communications Earth & Environment |date=9 June 2023 |volume=4 |issue=1 |page=190 |doi=10.1038/s43247-023-00842-1 |bibcode=2023ComEE...4..190K |language=en |issn=2662-4435|doi-access=free}}
*[[Hazard]] research is published: study results suggest high-temperature cooking could cause DNA damage within food (especially meat) which in turn could cause human [[DNA damage]] (1 June),<ref>{{#invoke:cite journal||last1=Jun |first1=Yong Woong |last2=Kant |first2=Melis |last3=Coskun |first3=Erdem |last4=Kato |first4=Takamitsu A. |last5=Jaruga |first5=Pawel |last6=Palafox |first6=Elizabeth |last7=Dizdaroglu |first7=Miral |last8=Kool |first8=Eric T. |title=Possible Genetic Risks from Heat-Damaged DNA in Food |journal=ACS Central Science |date=28 June 2023 |volume=9 |issue=6 |pages=1170–1179 |doi=10.1021/acscentsci.2c01247 |pmid=37396864 |pmc=10311654 |language=en |issn=2374-7943|doi-access=free}}</ref> a study concludes the Italian [[Phlegraean Fields]] could be heading towards a first eruption since 1538 (9 June),<ref>{{#invoke:cite journal||last1=Kilburn |first1=Christopher R. J. |last2=Carlino |first2=Stefano |last3=Danesi |first3=Stefania |last4=Pino |first4=Nicola Alessandro |title=Potential for rupture before eruption at Campi Flegrei caldera, Southern Italy |journal=Communications Earth & Environment |date=9 June 2023 |volume=4 |issue=1 |page=190 |doi=10.1038/s43247-023-00842-1 |bibcode=2023ComEE...4..190K |language=en |issn=2662-4435|doi-access=free}}
* University press release: {{#invoke:cite news||title=Campi Flegrei volcano edges closer to possible eruption |url=https://phys.org/news/2023-06-campi-flegrei-volcano-edges-closer.html |work=University College London via phys.org |language=en}}</ref> a small team of researchers evaluates the [[credibility]] of [[Carbon neutrality|net-zero]] [[climate target]]s as currently low (9 June),<ref>{{#invoke:cite journal||last1=Rogelj |first1=Joeri |last2=Fransen |first2=Taryn |last3=den Elzen |first3=Michel G. J. |last4=Lamboll |first4=Robin D. |last5=Schumer |first5=Clea |last6=Kuramochi |first6=Takeshi |last7=Hans |first7=Frederic |last8=Mooldijk |first8=Silke |last9=Portugal-Pereira |first9=Joana |title=Credibility gap in net-zero climate targets leaves world at high risk |journal=Science |date=9 June 2023 |volume=380 |issue=6649 |pages=1014–1016 |doi=10.1126/science.adg6248 |pmid=37289874 |bibcode=2023Sci...380Q1014R |hdl=1874/429916 |s2cid=259119830 |url=https://www.researchgate.net/publication/371445005 |language=en |issn=0036-8075}}</ref> an [[American Heart Association|AHA]] review shows that exposure to [[Metal toxicity|contaminant metals]] contributes to cardiovascular diseases (12 June),<ref>{{#invoke:cite journal||last1=Lamas |first1=Gervasio A. |last2=Bhatnagar |first2=Aruni |last3=Jones |first3=Miranda R. |last4=Mann |first4=Koren K. |last5=Nasir |first5=Khurram |last6=Tellez-Plaza |first6=Maria |last7=Ujueta |first7=Francisco |last8=Navas-Acien |first8=Ana |title=Contaminant Metals as Cardiovascular Risk Factors: A Scientific Statement From the American Heart Association |journal=Journal of the American Heart Association |date=4 July 2023 |volume=12 |issue=13 |pages=e029852 |doi=10.1161/JAHA.123.029852 |pmid=37306302 |pmc=10356104 |language=en |issn=2047-9980}}</ref> a study in the context of the [[opioid epidemic]] shows males are substantially (2–3 times greater) more vulnerable to or affected by [[drug overdose]] mortality than females (15 June),<ref>{{#invoke:cite journal||last1=Butelman |first1=Eduardo R. |last2=Huang |first2=Yuefeng |last3=Epstein |first3=David H. |last4=Shaham |first4=Yavin |last5=Goldstein |first5=Rita Z. |last6=Volkow |first6=Nora D. |last7=Alia-Klein |first7=Nelly |title=Overdose mortality rates for opioids and stimulant drugs are substantially higher in men than in women: state-level analysis |journal=Neuropsychopharmacology |date=15 June 2023 |volume=48 |issue=11 |pages=1639–1647 |doi=10.1038/s41386-023-01601-8 |pmid=37316576 |pmc=10517130 |s2cid=259163503 |language=en |issn=1740-634X|doi-access=free |pmc-embargo-date=October 1, 2024 }}</ref> [[Y chromosome#Human Y chromosome|loss of Y chromosome]] can drive cancer growth (21 June),<ref>{{#invoke:cite journal||last1=Abdel-Hafiz |first1=Hany A. |last2=Schafer |first2=Johanna M. |last3=Chen |first3=Xingyu |last4=Xiao |first4=Tong |last5=Gauntner |first5=Timothy D. |last6=Li |first6=Zihai |last7=Theodorescu |first7=Dan |title=Y chromosome loss in cancer drives growth by evasion of adaptive immunity |journal=Nature |date=July 2023 |volume=619 |issue=7970 |pages=624–631 |doi=10.1038/s41586-023-06234-x |pmid=37344596 |pmc=10975863 |bibcode=2023Natur.619..624A |s2cid=259223163 |url=https://www.researchgate.net/publication/371758010 |language=en |issn=1476-4687|url-access=subscription}}</ref> a study indicates nearly 40% of U.S. females age 12 to 21 may have [[iron deficiency]] (27 June),<ref>{{#invoke:cite news||title=Almost 39 percent of young women have an iron deficiency |url=https://www.washingtonpost.com/wellness/2023/07/03/many-women-have-iron-deficiency/ |access-date=27 July 2023 |newspaper=Washington Post |date=30 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Weyand |first1=Angela C. |last2=Chaitoff |first2=Alexander |last3=Freed |first3=Gary L. |last4=Sholzberg |first4=Michelle |last5=Choi |first5=Sung Won |last6=McGann |first6=Patrick T. |title=Prevalence of Iron Deficiency and Iron-Deficiency Anemia in US Females Aged 12–21 Years, 2003–2020 |journal=JAMA |date=27 June 2023 |volume=329 |issue=24 |pages=2191–2193 |doi=10.1001/jama.2023.8020 |pmid=37367984 |pmc=10300696 |s2cid=259260967 |url=https://jamanetwork.com/journals/jama/article-abstract/2806540 |issn=0098-7484|url-access=subscription }}</ref> researchers show how [[Influenza A virus#Other animals|bird flu]] could mutate [[zoonosis|to overcome]] a human antiviral protein to [[pandemic prevention|start another pandemic]] (28 June),<ref>{{#invoke:cite journal||last1=Pinto |first1=Rute Maria |last2=Bakshi |first2=Siddharth |display-authors=et al. |title=BTN3A3 evasion promotes the zoonotic potential of influenza A viruses |journal=Nature |date=July 2023 |volume=619 |issue=7969 |pages=338–347 |doi=10.1038/s41586-023-06261-8 |pmid=37380775 |bibcode=2023Natur.619..338P |s2cid=259285952 |url=https://www.researchgate.net/publication/371944284 |language=en |issn=1476-4687|hdl=20.500.11820/9be72c3d-be80-42de-ab50-b10b094cc527 |hdl-access=free }}</ref> [[shortage]]s of medications – including some against cancer – are reported across countries,<ref>{{#invoke:cite news||last1=Virnich |first1=Birgit |title=Apotheker befürchten weiteren Mangel bei Medikamenten |url=https://www.tagesschau.de/wirtschaft/medikamenten-mangel-101.html |access-date=27 July 2023 |work=tagesschau.de |language=de}}</ref><ref>{{#invoke:cite news||title=Cancer drug shortage is forcing doctors to decide which patients get treatment |url=https://abcnews.go.com/Health/cancer-drug-shortage-forcing-doctors-decide-patients-treatment/story?id=99753886 |access-date=27 July 2023 |work=ABC News |language=en}}</ref> articles in science outlets like ''Nature'' suggest contemporary viral concerns about hypothetical [[existential risk of AI]] "plays into the tech companies' agenda" – partly in the form of 'criti-hype'<ref>{{#invoke:cite web||title=How this moment for AI will change society forever (and how it won't) |url=https://www.newscientist.com/article/mg25834352-800-how-this-moment-for-ai-will-change-society-forever-and-how-it-wont/ |website=New Scientist |access-date=27 July 2023}}</ref> – and that this "hinders effective regulation of the societal harms AI is causing right now" and in the near-future.<ref>{{#invoke:cite journal||title=Stop talking about tomorrow's AI doomsday when AI poses risks today |journal=Nature |date=27 June 2023 |volume=618 |issue=7967 |pages=885–886 |language=en |doi=10.1038/d41586-023-02094-7|pmid=37369844 |bibcode=2023Natur.618..885. |s2cid=259254557 |doi-access=free }}</ref>
* University press release: {{#invoke:cite news||title=Campi Flegrei volcano edges closer to possible eruption |url=https://phys.org/news/2023-06-campi-flegrei-volcano-edges-closer.html |work=University College London via phys.org |language=en}}</ref> a small team of researchers evaluates the [[credibility]] of [[Carbon neutrality|net-zero]] [[climate target]]s as currently low (9 June),<ref>{{#invoke:cite journal||last1=Rogelj |first1=Joeri |last2=Fransen |first2=Taryn |last3=den Elzen |first3=Michel G. J. |last4=Lamboll |first4=Robin D. |last5=Schumer |first5=Clea |last6=Kuramochi |first6=Takeshi |last7=Hans |first7=Frederic |last8=Mooldijk |first8=Silke |last9=Portugal-Pereira |first9=Joana |title=Credibility gap in net-zero climate targets leaves world at high risk |journal=Science |date=9 June 2023 |volume=380 |issue=6649 |pages=1014–1016 |doi=10.1126/science.adg6248 |pmid=37289874 |bibcode=2023Sci...380Q1014R |hdl=1874/429916 |s2cid=259119830 |url=https://www.researchgate.net/publication/371445005 |language=en |issn=0036-8075}}</ref> an [[American Heart Association|AHA]] review shows that exposure to [[Metal toxicity|contaminant metals]] contributes to cardiovascular diseases (12 June),<ref>{{#invoke:cite journal||last1=Lamas |first1=Gervasio A. |last2=Bhatnagar |first2=Aruni |last3=Jones |first3=Miranda R. |last4=Mann |first4=Koren K. |last5=Nasir |first5=Khurram |last6=Tellez-Plaza |first6=Maria |last7=Ujueta |first7=Francisco |last8=Navas-Acien |first8=Ana |title=Contaminant Metals as Cardiovascular Risk Factors: A Scientific Statement From the American Heart Association |journal=Journal of the American Heart Association |date=4 July 2023 |volume=12 |issue=13 |pages=e029852 |doi=10.1161/JAHA.123.029852 |pmid=37306302 |pmc=10356104 |language=en |issn=2047-9980}}</ref> a study in the context of the [[opioid epidemic]] shows males are substantially (2–3 times greater) more vulnerable to or affected by [[drug overdose]] mortality than females (15 June),<ref>{{#invoke:cite journal||last1=Butelman |first1=Eduardo R. |last2=Huang |first2=Yuefeng |last3=Epstein |first3=David H. |last4=Shaham |first4=Yavin |last5=Goldstein |first5=Rita Z. |last6=Volkow |first6=Nora D. |last7=Alia-Klein |first7=Nelly |title=Overdose mortality rates for opioids and stimulant drugs are substantially higher in men than in women: state-level analysis |journal=Neuropsychopharmacology |date=15 June 2023 |volume=48 |issue=11 |pages=1639–1647 |doi=10.1038/s41386-023-01601-8 |pmid=37316576 |pmc=10517130 |s2cid=259163503 |language=en |issn=1740-634X|doi-access=free }}</ref> [[Y chromosome#Human Y chromosome|loss of Y chromosome]] can drive cancer growth (21 June),<ref>{{#invoke:cite journal||last1=Abdel-Hafiz |first1=Hany A. |last2=Schafer |first2=Johanna M. |last3=Chen |first3=Xingyu |last4=Xiao |first4=Tong |last5=Gauntner |first5=Timothy D. |last6=Li |first6=Zihai |last7=Theodorescu |first7=Dan |title=Y chromosome loss in cancer drives growth by evasion of adaptive immunity |journal=Nature |date=July 2023 |volume=619 |issue=7970 |pages=624–631 |doi=10.1038/s41586-023-06234-x |pmid=37344596 |pmc=10975863 |bibcode=2023Natur.619..624A |s2cid=259223163 |url=https://www.researchgate.net/publication/371758010 |language=en |issn=1476-4687|url-access=subscription}}</ref> a study indicates nearly 40% of U.S. females age 12 to 21 may have [[iron deficiency]] (27 June),<ref>{{#invoke:cite news||title=Almost 39 percent of young women have an iron deficiency |url=https://www.washingtonpost.com/wellness/2023/07/03/many-women-have-iron-deficiency/ |access-date=27 July 2023 |newspaper=Washington Post |date=30 June 2023}}</ref><ref>{{#invoke:cite journal||last1=Weyand |first1=Angela C. |last2=Chaitoff |first2=Alexander |last3=Freed |first3=Gary L. |last4=Sholzberg |first4=Michelle |last5=Choi |first5=Sung Won |last6=McGann |first6=Patrick T. |title=Prevalence of Iron Deficiency and Iron-Deficiency Anemia in US Females Aged 12–21 Years, 2003–2020 |journal=JAMA |date=27 June 2023 |volume=329 |issue=24 |pages=2191–2193 |doi=10.1001/jama.2023.8020 |pmid=37367984 |pmc=10300696 |s2cid=259260967 |url=https://jamanetwork.com/journals/jama/article-abstract/2806540 |issn=0098-7484|url-access=subscription }}</ref> researchers show how [[Influenza A virus#Other animals|bird flu]] could mutate [[zoonosis|to overcome]] a human antiviral protein to [[pandemic prevention|start another pandemic]] (28 June),<ref>{{#invoke:cite journal||last1=Pinto |first1=Rute Maria |last2=Bakshi |first2=Siddharth |display-authors=et al. |title=BTN3A3 evasion promotes the zoonotic potential of influenza A viruses |journal=Nature |date=July 2023 |volume=619 |issue=7969 |pages=338–347 |doi=10.1038/s41586-023-06261-8 |pmid=37380775 |bibcode=2023Natur.619..338P |s2cid=259285952 |url=https://www.researchgate.net/publication/371944284 |language=en |issn=1476-4687|hdl=20.500.11820/9be72c3d-be80-42de-ab50-b10b094cc527 |hdl-access=free }}</ref> [[shortage]]s of medications – including some against cancer – are reported across countries,<ref>{{#invoke:cite news||last1=Virnich |first1=Birgit |title=Apotheker befürchten weiteren Mangel bei Medikamenten |url=https://www.tagesschau.de/wirtschaft/medikamenten-mangel-101.html |access-date=27 July 2023 |work=tagesschau.de |language=de}}</ref><ref>{{#invoke:cite news||title=Cancer drug shortage is forcing doctors to decide which patients get treatment |url=https://abcnews.go.com/Health/cancer-drug-shortage-forcing-doctors-decide-patients-treatment/story?id=99753886 |access-date=27 July 2023 |work=ABC News |language=en}}</ref> articles in science outlets like ''Nature'' suggest contemporary viral concerns about hypothetical [[existential risk of AI]] "plays into the tech companies' agenda" – partly in the form of 'criti-hype'<ref>{{#invoke:cite web||title=How this moment for AI will change society forever (and how it won't) |url=https://www.newscientist.com/article/mg25834352-800-how-this-moment-for-ai-will-change-society-forever-and-how-it-wont/ |website=New Scientist |access-date=27 July 2023}}</ref> – and that this "hinders effective regulation of the societal harms AI is causing right now" and in the near-future.<ref>{{#invoke:cite journal||title=Stop talking about tomorrow's AI doomsday when AI poses risks today |journal=Nature |date=27 June 2023 |volume=618 |issue=7967 |pages=885–886 |language=en |doi=10.1038/d41586-023-02094-7|pmid=37369844 |bibcode=2023Natur.618..885. |s2cid=259254557 |doi-access=free }}</ref>
*<!--news reports via altmetrics badge/link at the study-->Promising results of [[Therapy#By therapy composition|therapeutic]] candidates are reported: first [[Phases of clinical research|phase 3 trialed]] [[Chikungunya#Vaccine|chikungunya vaccine]] (VLA1553) (12 June),<ref>{{#invoke:cite journal||last1=Schneider |first1=Martina |last2=Narciso-Abraham |first2=Marivic |last3=Hadl |first3=Sandra |last4=McMahon |first4=Robert |last5=Toepfer |first5=Sebastian |last6=Fuchs |first6=Ulrike |last7=Hochreiter |first7=Romana |last8=Bitzer |first8=Annegret |last9=Kosulin |first9=Karin |last10=Larcher-Senn |first10=Julian |last11=Mader |first11=Robert |last12=Dubischar |first12=Katrin |last13=Zoihsl |first13=Oliver |last14=Jaramillo |first14=Juan-Carlos |last15=Eder-Lingelbach |first15=Susanne |last16=Buerger |first16=Vera |last17=Wressnigg |first17=Nina |title=Safety and immunogenicity of a single-shot live-attenuated chikungunya vaccine: a double-blind, multicentre, randomised, placebo-controlled, phase 3 trial |journal=The Lancet |date=June 2023 |volume=401 |issue=10394 |pages=2138–2147 |doi=10.1016/S0140-6736(23)00641-4|pmid=37321235 |pmc=10314240 }}</ref> mice-tested inoculation against a potential infectious contributor to [[endometriosis]] (14 June),<ref>{{#invoke:cite journal||last1=Muraoka |first1=Ayako |last2=Suzuki |first2=Miho |last3=Hamaguchi |first3=Tomonari |last4=Watanabe |first4=Shinya |last5=Iijima |first5=Kenta |last6=Murofushi |first6=Yoshiteru |last7=Shinjo |first7=Keiko |last8=Osuka |first8=Satoko |last9=Hariyama |first9=Yumi |last10=Ito |first10=Mikako |last11=Ohno |first11=Kinji |last12=Kiyono |first12=Tohru |last13=Kyo |first13=Satoru |last14=Iwase |first14=Akira |last15=Kikkawa |first15=Fumitaka |last16=Kajiyama |first16=Hiroaki |last17=Kondo |first17=Yutaka |title=Fusobacterium infection facilitates the development of endometriosis through the phenotypic transition of endometrial fibroblasts |journal=Science Translational Medicine |date=14 June 2023 |volume=15 |issue=700 |pages=eadd1531 |doi=10.1126/scitranslmed.add1531 |pmid=37315109 |s2cid=259155602 |language=en |issn=1946-6234|url=https://www.researchgate.net/publication/371573998}}</ref> new evidence regarding still-unclear<ref>{{#invoke:cite news||title=Swabbing C-section babies with mom's microbes can restore healthy bacteria |url=https://www.science.org/content/article/swabbing-c-section-babies-mom-s-microbes-can-restore-healthy-bacteria |access-date=8 August 2023 |work=Science}}</ref> [[vaginal seeding]] interventions (15 June),<ref>{{#invoke:cite journal||last1=Zhou |first1=Lepeng |last2=Qiu |first2=Wen |last3=Wang |first3=Jie |last4=Zhao |first4=Aihua |last5=Zhou |first5=Chuhui |last6=Sun |first6=Tao |last7=Xiong |first7=Ziyu |last8=Cao |first8=Peihua |last9=Shen |first9=Wei |last10=Chen |first10=Jingfen |last11=Lai |first11=Xiaolu |last12=Zhao |first12=Liu-hong |last13=Wu |first13=Yue |last14=Li |first14=Meng |last15=Qiu |first15=Feng |last16=Yu |first16=Yanhong |last17=Xu |first17=Zhenjiang Zech |last18=Zhou |first18=Hongwei |last19=Jia |first19=Wei |last20=Liao |first20=Yan |last21=Retnakaran |first21=Ravi |last22=Krewski |first22=Daniel |last23=Wen |first23=Shi Wu |last24=Clemente |first24=Jose C. |last25=Chen |first25=Tianlu |last26=Xie |first26=Ri-hua |last27=He |first27=Yan |title=Effects of vaginal microbiota transfer on the neurodevelopment and microbiome of cesarean-born infants: A blinded randomized controlled trial |journal=Cell Host & Microbe |date=July 2023 |volume=31 |issue=7 |pages=1232–1247.e5 |doi=10.1016/j.chom.2023.05.022|pmid=37327780 |s2cid=259184053 }}</ref> phase 2 trialed [[orforglipron]] against obesity (23 June),<ref>{{#invoke:cite journal||last1=Wharton |first1=Sean |last2=Blevins |first2=Thomas |last3=Connery |first3=Lisa |last4=Rosenstock |first4=Julio |last5=Raha |first5=Sohini |last6=Liu |first6=Rong |last7=Ma |first7=Xiaosu |last8=Mather |first8=Kieren J. |last9=Haupt |first9=Axel |last10=Robins |first10=Deborah |last11=Pratt |first11=Edward |last12=Kazda |first12=Christof |last13=Konig |first13=Manige |title=Daily Oral GLP-1 Receptor Agonist Orforglipron for Adults with Obesity |journal=New England Journal of Medicine |date=23 June 2023 |volume=389 |issue=10 |pages=877–888 |doi=10.1056/NEJMoa2302392 |pmid=37351564 |s2cid=259232476 |language=en |issn=0028-4793}}</ref><ref>{{#invoke:cite journal||last1=Frias |first1=Juan P |last2=Hsia |first2=Stanley |last3=Eyde |first3=Sarah |last4=Liu |first4=Rong |last5=Ma |first5=Xiaosu |last6=Konig |first6=Manige |last7=Kazda |first7=Christof |last8=Mather |first8=Kieren J |last9=Haupt |first9=Axel |last10=Pratt |first10=Edward |last11=Robins |first11=Deborah |title=Efficacy and safety of oral orforglipron in patients with type 2 diabetes: a multicentre, randomised, dose-response, phase 2 study |journal=The Lancet |date=August 2023 |volume=402 |issue=10400 |pages=472–483 |doi=10.1016/S0140-6736(23)01302-8|pmid=37369232 |s2cid=259237269 }}</ref> mice-tested gene-therapy against hearing loss (28 June).<ref>{{#invoke:cite journal||last1=Mathiesen |first1=Barbara K. |last2=Miyakoshi |first2=Leo M. |last3=Cederroth |first3=Christopher R. |last4=Tserga |first4=Evangelia |last5=Versteegh |first5=Corstiaen |last6=Bork |first6=Peter A. R.|last7=Hauglund |first7=Natalie L. |last8=Gomolka |first8=Ryszard Stefan |last9=Mori |first9=Yuki |last10=Edvall |first10=Niklas K. |last11=Rouse |first11=Stephanie |last12=Møllgård |first12=Kjeld |last13=Holt |first13=Jeffrey R. |last14=Nedergaard |first14=Maiken |last15=Canlon |first15=Barbara |title=Delivery of gene therapy through a cerebrospinal fluid conduit to rescue hearing in adult mice |journal=Science Translational Medicine |date=28 June 2023 |volume=15 |issue=702 |pages=eabq3916 |doi=10.1126/scitranslmed.abq3916 |pmid=37379370 |s2cid=259275398 |language=en |url=https://www.science.org/doi/10.1126/scitranslmed.abq3916|url-access=subscription|issn=1946-6234}}
*<!--news reports via altmetrics badge/link at the study-->Promising results of [[Therapy#By therapy composition|therapeutic]] candidates are reported: first [[Phases of clinical research|phase 3 trialed]] [[Chikungunya#Vaccine|chikungunya vaccine]] (VLA1553) (12 June),<ref>{{#invoke:cite journal||last1=Schneider |first1=Martina |last2=Narciso-Abraham |first2=Marivic |last3=Hadl |first3=Sandra |last4=McMahon |first4=Robert |last5=Toepfer |first5=Sebastian |last6=Fuchs |first6=Ulrike |last7=Hochreiter |first7=Romana |last8=Bitzer |first8=Annegret |last9=Kosulin |first9=Karin |last10=Larcher-Senn |first10=Julian |last11=Mader |first11=Robert |last12=Dubischar |first12=Katrin |last13=Zoihsl |first13=Oliver |last14=Jaramillo |first14=Juan-Carlos |last15=Eder-Lingelbach |first15=Susanne |last16=Buerger |first16=Vera |last17=Wressnigg |first17=Nina |title=Safety and immunogenicity of a single-shot live-attenuated chikungunya vaccine: a double-blind, multicentre, randomised, placebo-controlled, phase 3 trial |journal=The Lancet |date=June 2023 |volume=401 |issue=10394 |pages=2138–2147 |doi=10.1016/S0140-6736(23)00641-4|pmid=37321235 |pmc=10314240 }}</ref> mice-tested inoculation against a potential infectious contributor to [[endometriosis]] (14 June),<ref>{{#invoke:cite journal||last1=Muraoka |first1=Ayako |last2=Suzuki |first2=Miho |last3=Hamaguchi |first3=Tomonari |last4=Watanabe |first4=Shinya |last5=Iijima |first5=Kenta |last6=Murofushi |first6=Yoshiteru |last7=Shinjo |first7=Keiko |last8=Osuka |first8=Satoko |last9=Hariyama |first9=Yumi |last10=Ito |first10=Mikako |last11=Ohno |first11=Kinji |last12=Kiyono |first12=Tohru |last13=Kyo |first13=Satoru |last14=Iwase |first14=Akira |last15=Kikkawa |first15=Fumitaka |last16=Kajiyama |first16=Hiroaki |last17=Kondo |first17=Yutaka |title=Fusobacterium infection facilitates the development of endometriosis through the phenotypic transition of endometrial fibroblasts |journal=Science Translational Medicine |date=14 June 2023 |volume=15 |issue=700 |pages=eadd1531 |doi=10.1126/scitranslmed.add1531 |pmid=37315109 |s2cid=259155602 |language=en |issn=1946-6234|url=https://www.researchgate.net/publication/371573998}}</ref> new evidence regarding still-unclear<ref>{{#invoke:cite news||title=Swabbing C-section babies with mom's microbes can restore healthy bacteria |url=https://www.science.org/content/article/swabbing-c-section-babies-mom-s-microbes-can-restore-healthy-bacteria |access-date=8 August 2023 |work=Science}}</ref> [[vaginal seeding]] interventions (15 June),<ref>{{#invoke:cite journal||last1=Zhou |first1=Lepeng |last2=Qiu |first2=Wen |last3=Wang |first3=Jie |last4=Zhao |first4=Aihua |last5=Zhou |first5=Chuhui |last6=Sun |first6=Tao |last7=Xiong |first7=Ziyu |last8=Cao |first8=Peihua |last9=Shen |first9=Wei |last10=Chen |first10=Jingfen |last11=Lai |first11=Xiaolu |last12=Zhao |first12=Liu-hong |last13=Wu |first13=Yue |last14=Li |first14=Meng |last15=Qiu |first15=Feng |last16=Yu |first16=Yanhong |last17=Xu |first17=Zhenjiang Zech |last18=Zhou |first18=Hongwei |last19=Jia |first19=Wei |last20=Liao |first20=Yan |last21=Retnakaran |first21=Ravi |last22=Krewski |first22=Daniel |last23=Wen |first23=Shi Wu |last24=Clemente |first24=Jose C. |last25=Chen |first25=Tianlu |last26=Xie |first26=Ri-hua |last27=He |first27=Yan |title=Effects of vaginal microbiota transfer on the neurodevelopment and microbiome of cesarean-born infants: A blinded randomized controlled trial |journal=Cell Host & Microbe |date=July 2023 |volume=31 |issue=7 |pages=1232–1247.e5 |doi=10.1016/j.chom.2023.05.022|pmid=37327780 |s2cid=259184053 }}</ref> phase 2 trialed [[orforglipron]] against obesity (23 June),<ref>{{#invoke:cite journal||last1=Wharton |first1=Sean |last2=Blevins |first2=Thomas |last3=Connery |first3=Lisa |last4=Rosenstock |first4=Julio |last5=Raha |first5=Sohini |last6=Liu |first6=Rong |last7=Ma |first7=Xiaosu |last8=Mather |first8=Kieren J. |last9=Haupt |first9=Axel |last10=Robins |first10=Deborah |last11=Pratt |first11=Edward |last12=Kazda |first12=Christof |last13=Konig |first13=Manige |title=Daily Oral GLP-1 Receptor Agonist Orforglipron for Adults with Obesity |journal=New England Journal of Medicine |date=23 June 2023 |volume=389 |issue=10 |pages=877–888 |doi=10.1056/NEJMoa2302392 |pmid=37351564 |s2cid=259232476 |language=en |issn=0028-4793}}</ref><ref>{{#invoke:cite journal||last1=Frias |first1=Juan P |last2=Hsia |first2=Stanley |last3=Eyde |first3=Sarah |last4=Liu |first4=Rong |last5=Ma |first5=Xiaosu |last6=Konig |first6=Manige |last7=Kazda |first7=Christof |last8=Mather |first8=Kieren J |last9=Haupt |first9=Axel |last10=Pratt |first10=Edward |last11=Robins |first11=Deborah |title=Efficacy and safety of oral orforglipron in patients with type 2 diabetes: a multicentre, randomised, dose-response, phase 2 study |journal=The Lancet |date=August 2023 |volume=402 |issue=10400 |pages=472–483 |doi=10.1016/S0140-6736(23)01302-8|pmid=37369232 |s2cid=259237269 }}</ref> mice-tested gene-therapy against hearing loss (28 June).<ref>{{#invoke:cite journal||last1=Mathiesen |first1=Barbara K. |last2=Miyakoshi |first2=Leo M. |last3=Cederroth |first3=Christopher R. |last4=Tserga |first4=Evangelia |last5=Versteegh |first5=Corstiaen |last6=Bork |first6=Peter A. R.|last7=Hauglund |first7=Natalie L. |last8=Gomolka |first8=Ryszard Stefan |last9=Mori |first9=Yuki |last10=Edvall |first10=Niklas K. |last11=Rouse |first11=Stephanie |last12=Møllgård |first12=Kjeld |last13=Holt |first13=Jeffrey R. |last14=Nedergaard |first14=Maiken |last15=Canlon |first15=Barbara |title=Delivery of gene therapy through a cerebrospinal fluid conduit to rescue hearing in adult mice |journal=Science Translational Medicine |date=28 June 2023 |volume=15 |issue=702 |pages=eabq3916 |doi=10.1126/scitranslmed.abq3916 |pmid=37379370 |s2cid=259275398 |language=en |url=https://www.science.org/doi/10.1126/scitranslmed.abq3916|url-access=subscription|issn=1946-6234}}
* University press release: {{#invoke:cite news||title=An unexpected doorway into the ear opens new possibilities for hearing restoration |url=https://medicalxpress.com/news/2023-06-unexpected-doorway-ear-possibilities.html |access-date=8 August 2023 |work=University of Rochester Medical Center via medicalxpress.com |language=en}}</ref>
* University press release: {{#invoke:cite news||title=An unexpected doorway into the ear opens new possibilities for hearing restoration |url=https://medicalxpress.com/news/2023-06-unexpected-doorway-ear-possibilities.html |access-date=8 August 2023 |work=University of Rochester Medical Center via medicalxpress.com |language=en}}</ref>
* {{vanchor|Innovations_June|text=Promising [[Technological innovation|innovation]]s relating to [[Global issue|global challenges]] are [[Technology demonstration|demonstrated]]}}: an overview of "the nascent industry of [[Applications of artificial intelligence#Chemistry and biology|AI-designed drugs]]" (1 June),<ref>{{#invoke:cite journal||last1=Arnold |first1=Carrie |title=Inside the nascent industry of AI-designed drugs |journal=Nature Medicine |date=1 June 2023 |volume=29 |issue=6 |pages=1292–1295 |language=en |doi=10.1038/s41591-023-02361-0|pmid=37264208 |doi-access=free }}</ref> after [[Internet forum moderator|moderators]] of the Web content aggregation-based platform [[Reddit]] [[2023 Reddit API controversy|strike against the site's introduction]] of [[Application programming interface|API]] pricing and the ensuing closing of several mobile client apps, several novel decentralized [[free and open source software|open source]] aggregation platforms gain substantial numbers of users – most notably [[Lemmy (software)|Lemmy]] and [[ActivityPub#Notable implementations|Kbin]] which can synchronize their posts via interoperability (12 June),<ref>{{cite magazine |last1=Watercutter |first1=Angela |title=Reddit Won't Be the Same. Neither Will the Internet |url=https://www.wired.com/story/reddit-api-changes-ai-labor/ |access-date=27 July 2023 |magazine=Wired}}</ref><ref>{{#invoke:cite news||last1=Porter |first1=Jon |title=Major Reddit communities will go dark to protest threat to third-party apps |url=https://www.theverge.com/2023/6/5/23749188/reddit-subreddit-private-protest-api-changes-apollo-charges |access-date=27 July 2023 |work=The Verge |date=5 June 2023}}</ref><ref>{{#invoke:cite news||title=Lemmy and Kbin: The Best Reddit Alternatives? |url=https://www.pcmag.com/news/reddit-alternatives-lemmy-kbin |access-date=27 July 2023 |work=PCMAG |language=en}}</ref> the first upgrade of the [[Global Earthquake Model]] {{tooltip|data|its models, maps, and databases}} for disaster risk reduction is reported (13 June),<ref>{{#invoke:cite news||title=News at a glance: Long Covid treatment, global earthquake model, and deep-sea mining |url=https://www.science.org/content/article/news-glance-long-covid-treatment-global-earthquake-model-and-deep-sea-mining |access-date=27 July 2023 |work=Science |date=15 June 2023}}</ref><ref>{{#invoke:cite web||title=GEM {{!}} Press Release Embargoed |url=https://www.globalquakemodel.org/gem2023-press-release |website=GEM Foundation |access-date=27 July 2023 |language=en}}</ref> first approval for two [[cultured meat]] products in the U.S. and two of the first worldwide (21 June),<ref>{{#invoke:cite news||last1=Thompson |first1=Joanna |title=Lab-Grown Meat Approved for Sale: What You Need to Know |url=https://www.scientificamerican.com/article/lab-grown-meat-approved-for-sale-what-you-need-to-know/ |access-date=27 July 2023 |work=Scientific American |language=en}}</ref> transgenic soya beans containing pig protein (Piggy Sooy) are reported (28 June),<ref>{{#invoke:cite news||title=Soya beans made more meat-like by adding genes for pig proteins |url=https://www.newscientist.com/article/2380087-soya-beans-made-more-meat-like-by-adding-genes-for-pig-proteins/ |access-date=27 July 2023 |work=New Scientist}}</ref> a new type of [[glass]] (LionGlass) that is substantially more damage-resistant and more sustainable is reported (30 June).<ref>{{#invoke:cite news||last1=Papadopoulos |first1=Loukia |title=New glass: 10X more damage resistant and cuts carbon footprint by nearly half |url=https://interestingengineering.com/innovation/glass-10x-more-damage-resistant-cuts-carbon-footprint-half |access-date=27 July 2023 |work=interestingengineering.com |date=4 July 2023 |language=en}}</ref>
* {{vanchor|Innovations_June|text=Promising [[Technological innovation|innovation]]s relating to [[Global issue|global challenges]] are [[Technology demonstration|demonstrated]]}}: an overview of "the nascent industry of [[Applications of artificial intelligence#Chemistry and biology|AI-designed drugs]]" (1 June),<ref>{{#invoke:cite journal||last1=Arnold |first1=Carrie |title=Inside the nascent industry of AI-designed drugs |journal=Nature Medicine |date=1 June 2023 |volume=29 |issue=6 |pages=1292–1295 |language=en |doi=10.1038/s41591-023-02361-0|pmid=37264208 |doi-access=free }}</ref> after [[Internet forum moderator|moderators]] of the Web content aggregation-based platform [[Reddit]] [[2023 Reddit API controversy|strike against the site's introduction]] of [[Application programming interface|API]] pricing and the ensuing closing of several mobile client apps, several novel decentralized [[free and open source software|open source]] aggregation platforms gain substantial numbers of users – most notably [[Lemmy (software)|Lemmy]] and [[ActivityPub#Notable implementations|Kbin]] which can synchronize their posts via interoperability (12 June),<ref>{{cite magazine |last1=Watercutter |first1=Angela |title=Reddit Won't Be the Same. Neither Will the Internet |url=https://www.wired.com/story/reddit-api-changes-ai-labor/ |access-date=27 July 2023 |magazine=Wired |archive-date=26 July 2023 |archive-url=https://web.archive.org/web/20230726175452/https://www.wired.com/story/reddit-api-changes-ai-labor/ |url-status=live }}</ref><ref>{{#invoke:cite news||last1=Porter |first1=Jon |title=Major Reddit communities will go dark to protest threat to third-party apps |url=https://www.theverge.com/2023/6/5/23749188/reddit-subreddit-private-protest-api-changes-apollo-charges |access-date=27 July 2023 |work=The Verge |date=5 June 2023}}</ref><ref>{{#invoke:cite news||title=Lemmy and Kbin: The Best Reddit Alternatives? |url=https://www.pcmag.com/news/reddit-alternatives-lemmy-kbin |access-date=27 July 2023 |work=PCMAG |language=en}}</ref> the first upgrade of the [[Global Earthquake Model]] {{tooltip|data|its models, maps, and databases}} for disaster risk reduction is reported (13 June),<ref>{{#invoke:cite news||title=News at a glance: Long Covid treatment, global earthquake model, and deep-sea mining |url=https://www.science.org/content/article/news-glance-long-covid-treatment-global-earthquake-model-and-deep-sea-mining |access-date=27 July 2023 |work=Science |date=15 June 2023}}</ref><ref>{{#invoke:cite web||title=GEM {{!}} Press Release Embargoed |url=https://www.globalquakemodel.org/gem2023-press-release |website=GEM Foundation |access-date=27 July 2023 |language=en}}</ref> first approval for two [[cultured meat]] products in the U.S. and two of the first worldwide (21 June),<ref>{{#invoke:cite news||last1=Thompson |first1=Joanna |title=Lab-Grown Meat Approved for Sale: What You Need to Know |url=https://www.scientificamerican.com/article/lab-grown-meat-approved-for-sale-what-you-need-to-know/ |access-date=27 July 2023 |work=Scientific American |language=en}}</ref> transgenic soya beans containing pig protein (Piggy Sooy) are reported (28 June),<ref>{{#invoke:cite news||title=Soya beans made more meat-like by adding genes for pig proteins |url=https://www.newscientist.com/article/2380087-soya-beans-made-more-meat-like-by-adding-genes-for-pig-proteins/ |access-date=27 July 2023 |work=New Scientist}}</ref> a new type of [[glass]] (LionGlass) that is substantially more damage-resistant and more sustainable is reported (30 June).<ref>{{#invoke:cite news||last1=Papadopoulos |first1=Loukia |title=New glass: 10X more damage resistant and cuts carbon footprint by nearly half |url=https://interestingengineering.com/innovation/glass-10x-more-damage-resistant-cuts-carbon-footprint-half |access-date=27 July 2023 |work=interestingengineering.com |date=4 July 2023 |language=en}}</ref>


===July===
===July===
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*{{vanchor|3 July}} – Researchers demonstrate [[DNA digital data storage|encoding and storing data – small images – as DNA]] without new [[DNA synthesis]] by recording light exposure into bacterial DNA via [[optogenetic]] circuits. The 'biological camera' extends chemical and electrical interface techniques.<ref>{{#invoke:cite news||last1=Ferreira |first1=Becky |title=Scientists Create 'Biological Camera' That Stores Images in DNA |url=https://www.vice.com/en/article/xgwgjn/scientists-create-biological-camera-that-stores-images-in-dna |access-date=31 August 2023 |work=Vice |date=11 July 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Lim |first1=Cheng Kai |last2=Yeoh |first2=Jing Wui |last3=Kunartama |first3=Aurelius Andrew |last4=Yew |first4=Wen Shan |last5=Poh |first5=Chueh Loo |title=A biological camera that captures and stores images directly into DNA |journal=Nature Communications |date=3 July 2023 |volume=14 |issue=1 |page=3921 |doi=10.1038/s41467-023-38876-w |pmid=37400476 |pmc=10318082 |bibcode=2023NatCo..14.3921L |language=en |issn=2041-1723|doi-access=free}}</ref>
*{{vanchor|3 July}} – Researchers demonstrate [[DNA digital data storage|encoding and storing data – small images – as DNA]] without new [[DNA synthesis]] by recording light exposure into bacterial DNA via [[optogenetic]] circuits. The 'biological camera' extends chemical and electrical interface techniques.<ref>{{#invoke:cite news||last1=Ferreira |first1=Becky |title=Scientists Create 'Biological Camera' That Stores Images in DNA |url=https://www.vice.com/en/article/xgwgjn/scientists-create-biological-camera-that-stores-images-in-dna |access-date=31 August 2023 |work=Vice |date=11 July 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Lim |first1=Cheng Kai |last2=Yeoh |first2=Jing Wui |last3=Kunartama |first3=Aurelius Andrew |last4=Yew |first4=Wen Shan |last5=Poh |first5=Chueh Loo |title=A biological camera that captures and stores images directly into DNA |journal=Nature Communications |date=3 July 2023 |volume=14 |issue=1 |page=3921 |doi=10.1038/s41467-023-38876-w |pmid=37400476 |pmc=10318082 |bibcode=2023NatCo..14.3921L |language=en |issn=2041-1723|doi-access=free}}</ref>
*{{vanchor|5 July}}
*{{vanchor|5 July}}
** Harvard astronomer [[Avi Loeb]] reports the possibility of a [[Galileo Project]] expedition having found first [[Interstellar object|interstellar material]].<ref name="NW-20230705">{{#invoke:cite news||last=Loeb |first=Avi |author-link=Avi Loeb |title=I'm a Harvard Astronomer. I Think We Found Interstellar Material |url=https://www.newsweek.com/harvard-astronomer-alien-discovery-interstellar-material-1811087 |date=5 July 2023 |work=[[Newsweek]] |url-status=live |archive-url=https://archive.today/20230707153643/https://www.newsweek.com/harvard-astronomer-alien-discovery-interstellar-material-1811087 |archive-date=7 July 2023 |access-date=7 July 2023 }}</ref>
** Harvard astronomer [[Avi Loeb]] reports the possibility of a [[Galileo project]] expedition having found first [[Interstellar object|interstellar material]].<ref name="NW-20230705">{{#invoke:cite news||last=Loeb |first=Avi |author-link=Avi Loeb |title=I'm a Harvard Astronomer. I Think We Found Interstellar Material |url=https://www.newsweek.com/harvard-astronomer-alien-discovery-interstellar-material-1811087 |date=5 July 2023 |work=[[Newsweek]] |url-status=live |archive-url=https://archive.today/20230707153643/https://www.newsweek.com/harvard-astronomer-alien-discovery-interstellar-material-1811087 |archive-date=7 July 2023 |access-date=7 July 2023 }}</ref>
** A first [[experimental evolution|evolution experiment]] of synthetic 'minimal [[Cell (biology)#Prokaryotic cells|cells]]' – [[Mycoplasma laboratorium#JCVI-syn3.0|JCVI-syn3]]B bacterial cells whose genomes were trimmed to 493 essential genes and are the smallest of any known free-living organism – shows they survive and [[mutation (biology)|mutate]] vitally with their >50% decrease in [[evolutionary fitness|fitness]] to JCVI-syn1 being regained after ~2,000 generations under accelerated [[biological evolution|evolution]]<!--, which has implications for synthetic biotechnology and understanding Promisingof evolution-->.<ref>{{#invoke:cite news||title=Half of cell's genome stripped to prove "life finds a way" |url=https://cosmosmagazine.com/science/biology/artificial-cell-genome-life-finds-a-way/ |access-date=29 August 2023 |work=cosmosmagazine.com |date=9 July 2023 |language=en-AU}}</ref><ref>{{#invoke:cite journal||last1=Moger-Reischer |first1=R. Z. |last2=Glass |first2=J. I. |last3=Wise |first3=K. S. |last4=Sun |first4=L. |last5=Bittencourt |first5=D. M. C. |last6=Lehmkuhl |first6=B. K. |last7=Schoolmaster |first7=D. R. |last8=Lynch |first8=M. |last9=Lennon |first9=J. T. |title=Evolution of a minimal cell |journal=Nature |date=August 2023 |volume=620 |issue=7972 |pages=122–127 |doi=10.1038/s41586-023-06288-x |pmid=37407813 |pmc=10396959 |bibcode=2023Natur.620..122M |language=en |issn=1476-4687|doi-access=free}}</ref>
** A first [[experimental evolution|evolution experiment]] of synthetic 'minimal [[Cell (biology)#Prokaryotic cells|cells]]' – [[Mycoplasma laboratorium#JCVI-syn3.0|JCVI-syn3]]B bacterial cells whose genomes were trimmed to 493 essential genes and are the smallest of any known free-living organism – shows they survive and [[mutation (biology)|mutate]] vitally with their >50% decrease in [[evolutionary fitness|fitness]] to JCVI-syn1 being regained after ~2,000 generations under accelerated [[biological evolution|evolution]]<!--, which has implications for synthetic biotechnology and understanding Promisingof evolution-->.<ref>{{#invoke:cite news||title=Half of cell's genome stripped to prove "life finds a way" |url=https://cosmosmagazine.com/science/biology/artificial-cell-genome-life-finds-a-way/ |access-date=29 August 2023 |work=cosmosmagazine.com |date=9 July 2023 |language=en-AU}}</ref><ref>{{#invoke:cite journal||last1=Moger-Reischer |first1=R. Z. |last2=Glass |first2=J. I. |last3=Wise |first3=K. S. |last4=Sun |first4=L. |last5=Bittencourt |first5=D. M. C. |last6=Lehmkuhl |first6=B. K. |last7=Schoolmaster |first7=D. R. |last8=Lynch |first8=M. |last9=Lennon |first9=J. T. |title=Evolution of a minimal cell |journal=Nature |date=August 2023 |volume=620 |issue=7972 |pages=122–127 |doi=10.1038/s41586-023-06288-x |pmid=37407813 |pmc=10396959 |bibcode=2023Natur.620..122M |language=en |issn=1476-4687|doi-access=free}}</ref>
* {{vanchor|6 July}} – A study indicates release of [[methane emissions|methane]] from [[Climate change in the Arctic|Arctic]] [[glacial retreat]] will result in Arctic emissions [[Climate change feedback|much higher]] than expected.<!--<ref>{{cite news |last1=Mooney |first1=Chris |title=Reeling Arctic glaciers are leaving bubbling methane in their wake, scientists warn |url=https://www.washingtonpost.com/climate-environment/2023/07/06/arctic-glacier-melt-methane-global-temperatures/ |access-date=29 August 2023 |newspaper=Washington Post |date=6 July 2023}}</ref>--><ref>{{#invoke:cite journal||last1=Kleber |first1=Gabrielle E. |last2=Hodson |first2=Andrew J. |last3=Magerl |first3=Leonard |last4=Mannerfelt |first4=Erik Schytt |last5=Bradbury |first5=Harold J. |last6=Zhu |first6=Yizhu |last7=Trimmer |first7=Mark |last8=Turchyn |first8=Alexandra V. |title=Groundwater springs formed during glacial retreat are a large source of methane in the high Arctic |journal=Nature Geoscience |date=July 2023 |volume=16 |issue=7 |pages=597–604 |doi=10.1038/s41561-023-01210-6 |bibcode=2023NatGe..16..597K |s2cid=259503680 |language=en |issn=1752-0908|doi-access=free |hdl=10037/29802 |hdl-access=free }}</ref>
* {{vanchor|6 July}} – A study indicates release of [[methane emissions|methane]] from [[Climate change in the Arctic|Arctic]] [[glacial retreat]] will result in Arctic emissions [[Climate change feedback|much higher]] than expected.<!--<ref>{{cite news |last1=Mooney |first1=Chris |title=Reeling Arctic glaciers are leaving bubbling methane in their wake, scientists warn |url=https://www.washingtonpost.com/climate-environment/2023/07/06/arctic-glacier-melt-methane-global-temperatures/ |access-date=29 August 2023 |newspaper=Washington Post |date=6 July 2023}}</ref>--><ref>{{#invoke:cite journal||last1=Kleber |first1=Gabrielle E. |last2=Hodson |first2=Andrew J. |last3=Magerl |first3=Leonard |last4=Mannerfelt |first4=Erik Schytt |last5=Bradbury |first5=Harold J. |last6=Zhu |first6=Yizhu |last7=Trimmer |first7=Mark |last8=Turchyn |first8=Alexandra V. |title=Groundwater springs formed during glacial retreat are a large source of methane in the high Arctic |journal=Nature Geoscience |date=July 2023 |volume=16 |issue=7 |pages=597–604 |doi=10.1038/s41561-023-01210-6 |bibcode=2023NatGe..16..597K |s2cid=259503680 |language=en |issn=1752-0908|doi-access=free |hdl=10037/29802 |hdl-access=free }}</ref>
[[File:The effect of genome minimization on the evolution of cell size.webp|thumb|[[#5 July|5 July]]: A first [[experimental evolution|evolution experiment]] of synthetic bacterial 'minimal [[Cell (biology)#Prokaryotic cells|cells]]' [[Mycoplasma laboratorium#JCVI-syn3.0|JCVI-syn3]]B shows "life finds a way".]]
[[File:The effect of genome minimization on the evolution of cell size.webp|thumb|[[#5 July|5 July]]: A first [[experimental evolution|evolution experiment]] of synthetic bacterial 'minimal [[Cell (biology)#Prokaryotic cells|cells]]' [[Mycoplasma laboratorium#JCVI-syn3.0|JCVI-syn3]]B shows "life finds a way".]]
*{{vanchor|10 July}}
*{{vanchor|10 July}}
**Dynamic shell formation is demonstrated experimentally for the first time. Researchers claim their technique is a feasible target for mass production of [[fusion energy]].<ref>{{#invoke:cite journal||last1=Igumenshchev |first1=I. V. |last2=Theobald |first2=W. |display-authors=et al. |title=Proof-of-Principle Experiment on the Dynamic Shell Formation for Inertial Confinement Fusion |journal=Physical Review Letters |date=7 July 2023 |volume=131 |issue=1 |page=015102 |doi=10.1103/PhysRevLett.131.015102|pmid=37478441 |bibcode=2023PhRvL.131a5102I |s2cid=259560658 }}
**Dynamic shell formation is demonstrated experimentally for the first time. Researchers claim their technique is a feasible target for mass production of [[fusion energy]].<ref>{{#invoke:cite journal||last1=Igumenshchev |first1=I. V. |last2=Theobald |first2=W. |display-authors=et al. |title=Proof-of-Principle Experiment on the Dynamic Shell Formation for Inertial Confinement Fusion |journal=Physical Review Letters |date=7 July 2023 |volume=131 |issue=1 |page=015102 |doi=10.1103/PhysRevLett.131.015102|pmid=37478441 |bibcode=2023PhRvL.131a5102I |osti=1988780 |s2cid=259560658 }}
* University press release: {{#invoke:cite news||title=New technique may help achieve mass production fusion energy |url=https://www.rochester.edu/newscenter/dynamic-shell-formation-mass-production-fusion-energy-563262/|work=[[University of Rochester]] ([[Laboratory for Laser Energetics]])|date=10 July 2023|access-date=11 July 2023}}</ref>
* University press release: {{#invoke:cite news||title=New technique may help achieve mass production fusion energy |url=https://www.rochester.edu/newscenter/dynamic-shell-formation-mass-production-fusion-energy-563262/|work=[[University of Rochester]] ([[Laboratory for Laser Energetics]])|date=10 July 2023|access-date=11 July 2023}}</ref>
**The highest [[albedo]] ever measured for an exoplanet is confirmed using data from the [[CHEOPS]] space telescope. The [[ultra-hot Neptune]] [[LTT 9779 b]] is shown to reflect 80% of incoming light from its star (compared to 75% for Venus), due to the high metal content of its clouds.<ref>{{#invoke:cite news||title=Cheops shows scorching exoplanet acts like a mirror |url=https://www.esa.int/Science_Exploration/Space_Science/Cheops/Cheops_shows_scorching_exoplanet_acts_like_a_mirror|work=ESA|date=10 July 2023|access-date=12 July 2023}}</ref>
**The highest [[albedo]] ever measured for an exoplanet is confirmed using data from the [[CHEOPS]] space telescope. The [[ultra-hot Neptune]] [[LTT 9779 b]] is shown to reflect 80% of incoming light from its star (compared to 75% for Venus), due to the high metal content of its clouds.<ref>{{#invoke:cite news||title=Cheops shows scorching exoplanet acts like a mirror |url=https://www.esa.int/Science_Exploration/Space_Science/Cheops/Cheops_shows_scorching_exoplanet_acts_like_a_mirror|work=ESA|date=10 July 2023|access-date=12 July 2023}}</ref>
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**In what could be the first global scientific analysis of [[Environmental impact of pesticides|agricultural pesticide pollution]], scientists report that of the studied third of the three million metric tons of pesticides used annually, ~10% remains [[Soil conservation|as toxic residue in soil]] while [[river]]s receive at least 730 tons where they nearly do not degrade.<ref>{{#invoke:cite news||title=Pesticides travel far and wide, endangering aquatic ecosystems |url=https://www.earth.com/news/pesticides-travel-far-and-wide-endangering-aquatic-ecosystems/ |access-date=31 August 2023 |work=Earth.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Maggi |first1=Federico |last2=Tang |first2=Fiona H. M. |last3=Tubiello |first3=Francesco N. |title=Agricultural pesticide land budget and river discharge to oceans |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1013–1017 |doi=10.1038/s41586-023-06296-x |pmid=37438527 |bibcode=2023Natur.620.1013M |s2cid=259844468 |url=https://www.researchgate.net/publication/372313018 |language=en |issn=1476-4687|url-access=subscription}}
**In what could be the first global scientific analysis of [[Environmental impact of pesticides|agricultural pesticide pollution]], scientists report that of the studied third of the three million metric tons of pesticides used annually, ~10% remains [[Soil conservation|as toxic residue in soil]] while [[river]]s receive at least 730 tons where they nearly do not degrade.<ref>{{#invoke:cite news||title=Pesticides travel far and wide, endangering aquatic ecosystems |url=https://www.earth.com/news/pesticides-travel-far-and-wide-endangering-aquatic-ecosystems/ |access-date=31 August 2023 |work=Earth.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Maggi |first1=Federico |last2=Tang |first2=Fiona H. M. |last3=Tubiello |first3=Francesco N. |title=Agricultural pesticide land budget and river discharge to oceans |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1013–1017 |doi=10.1038/s41586-023-06296-x |pmid=37438527 |bibcode=2023Natur.620.1013M |s2cid=259844468 |url=https://www.researchgate.net/publication/372313018 |language=en |issn=1476-4687|url-access=subscription}}
* University press release: {{#invoke:cite news||title=Chemical odyssey: First global analysis shows how pesticides leach into the environment |url=https://phys.org/news/2023-07-chemical-odyssey-global-analysis-pesticides.html |access-date=31 August 2023 |work=University of Sydney via phys.org |language=en}}</ref>
* University press release: {{#invoke:cite news||title=Chemical odyssey: First global analysis shows how pesticides leach into the environment |url=https://phys.org/news/2023-07-chemical-odyssey-global-analysis-pesticides.html |access-date=31 August 2023 |work=University of Sydney via phys.org |language=en}}</ref>
**A study suggests chemical alternatives to [[Life extension|age reversal]] via [[Yamanaka factors]] gene therapy are feasible {{Tooltip|via early ''[[in vitro]]''|this means those were only tested with cultured cells and have not yet been validated in an animal and via more reliable "improvements in age-related health metrics or lifespan"}} [[fibroblast]]s data.<ref>{{#invoke:cite news||last1=Sharma |first1=Sejal |title=Harvard scientist 'obsessed' with anti-aging creates a youth cocktail |url=https://interestingengineering.com/science/harvard-scientist-anti-aging-reverse-youth-chemical-cocktail |access-date=31 August 2023 |work=interestingengineering.com |date=17 July 2023}}</ref><ref>{{#invoke:cite journal||last1=Yang |first1=Jae-Hyun |last2=Petty |first2=Christopher A. |last3=Dixon-McDougall |first3=Thomas |last4=Lopez |first4=Maria Vina |last5=Tyshkovskiy |first5=Alexander |last6=Maybury-Lewis |first6=Sun |last7=Tian |first7=Xiao |last8=Ibrahim |first8=Nabilah |last9=Chen |first9=Zhili |last10=Griffin |first10=Patrick T. |last11=Arnold |first11=Matthew |last12=Li |first12=Jien |last13=Martinez |first13=Oswaldo A. |last14=Behn |first14=Alexander |last15=Rogers-Hammond |first15=Ryan |last16=Angeli |first16=Suzanne |last17=Gladyshev |first17=Vadim N. |last18=Sinclair |first18=David A.|author-link18=David A. Sinclair |title=Chemically induced reprogramming to reverse cellular aging |journal=Aging |date=12 July 2023 |volume=15 |issue=13 |pages=5966–5989 |doi=10.18632/aging.204896 |pmid=37437248 |pmc=10373966 |language=en |issn=1945-4589|doi-access=free}}</ref> On 3 July, researchers report subcutaneous administration of longevity factor [[Klotho (biology)|α-klotho]] [[Neuroenhancement|enhanced]] [[Aging brain|cognition]] in old rhesus macaques.<ref>{{cite magazine |last1=Ford |first1=Celia |title=One Shot of a Kidney Protein Gave Monkeys a Brain Boost |url=https://www.wired.com/story/one-shot-of-a-kidney-protein-gave-monkeys-a-brain-boost/ |access-date=31 August 2023 |magazine=Wired}}</ref><ref>{{#invoke:cite journal||last1=Castner |first1=Stacy A. |last2=Gupta |first2=Shweta |last3=Wang |first3=Dan |last4=Moreno |first4=Arturo J. |last5=Park |first5=Cana |last6=Chen |first6=Chen |last7=Poon |first7=Yan |last8=Groen |first8=Aaron |last9=Greenberg |first9=Kenneth |last10=David |first10=Nathaniel |last11=Boone |first11=Tom |last12=Baxter |first12=Mark G. |last13=Williams |first13=Graham V. |last14=Dubal |first14=Dena B. |title=Longevity factor klotho enhances cognition in aged nonhuman primates |journal=Nature Aging |date=August 2023 |volume=3 |issue=8 |pages=931–937 |doi=10.1038/s43587-023-00441-x |pmid=37400721 |pmc=10432271 |language=en |issn=2662-8465|doi-access=free}}</ref> On 27 July, a study shows rejuvenation effects in mice from [[Parabiosis#Aging research|heterochronic parabiosis]] endure after the joined mice are detached.<ref>{{#invoke:cite news||title=Young mouse blood extends lives of older ones while rejuvenating them |url=https://www.newscientist.com/article/2384878-young-mouse-blood-extends-lives-of-older-ones-while-rejuvenating-them/ |access-date=31 August 2023 |work=New Scientist|quote=The old mice that had been joined to the young mice ended up living six weeks longer on average than those that had been joined to other old mice, a lifespan extension of about 5 per cent. "If you could improve human lifespan by 5 per cent, that could mean an extra four or five years," [...] However, this effect is smaller than that achieved by calorie restriction, which can make mice live up to 27 per cent longer.}}</ref><ref>{{#invoke:cite journal||last1=Zhang |first1=Bohan |last2=Lee |first2=David E. |last3=Trapp |first3=Alexandre |last4=Tyshkovskiy |first4=Alexander |last5=Lu |first5=Ake T. |last6=Bareja |first6=Akshay |last7=Kerepesi |first7=Csaba |last8=McKay |first8=Lauren K. |last9=Shindyapina |first9=Anastasia V. |last10=Dmitriev |first10=Sergey E. |last11=Baht |first11=Gurpreet S. |last12=Horvath |first12=Steve |last13=Gladyshev |first13=Vadim N. |last14=White |first14=James P. |title=Multi-omic rejuvenation and lifespan extension on exposure to youthful circulation |journal=Nature Aging |date=August 2023 |volume=3 |issue=8 |pages=948–964 |doi=10.1038/s43587-023-00451-9 |pmid=37500973 |language=en |issn=2662-8465|biorxiv=10.1101/2021.11.11.468258|s2cid=260902262 }}</ref>
**A study suggests chemical alternatives to [[Life extension|age reversal]] via [[Yamanaka factors]] gene therapy are feasible {{Tooltip|via early ''[[in vitro]]''|this means those were only tested with cultured cells and have not yet been validated in an animal and via more reliable "improvements in age-related health metrics or lifespan"}} [[fibroblast]]s data.<ref>{{#invoke:cite news||last1=Sharma |first1=Sejal |title=Harvard scientist 'obsessed' with anti-aging creates a youth cocktail |url=https://interestingengineering.com/science/harvard-scientist-anti-aging-reverse-youth-chemical-cocktail |access-date=31 August 2023 |work=interestingengineering.com |date=17 July 2023}}</ref><ref>{{#invoke:cite journal||last1=Yang |first1=Jae-Hyun |last2=Petty |first2=Christopher A. |last3=Dixon-McDougall |first3=Thomas |last4=Lopez |first4=Maria Vina |last5=Tyshkovskiy |first5=Alexander |last6=Maybury-Lewis |first6=Sun |last7=Tian |first7=Xiao |last8=Ibrahim |first8=Nabilah |last9=Chen |first9=Zhili |last10=Griffin |first10=Patrick T. |last11=Arnold |first11=Matthew |last12=Li |first12=Jien |last13=Martinez |first13=Oswaldo A. |last14=Behn |first14=Alexander |last15=Rogers-Hammond |first15=Ryan |last16=Angeli |first16=Suzanne |last17=Gladyshev |first17=Vadim N. |last18=Sinclair |first18=David A.|author-link18=David A. Sinclair |title=Chemically induced reprogramming to reverse cellular aging |journal=Aging |date=12 July 2023 |volume=15 |issue=13 |pages=5966–5989 |doi=10.18632/aging.204896 |pmid=37437248 |pmc=10373966 |language=en |issn=1945-4589|doi-access=free}}</ref> On 3 July, researchers report subcutaneous administration of longevity factor [[Klotho (biology)|α-klotho]] [[Neuroenhancement|enhanced]] [[Aging brain|cognition]] in old rhesus macaques.<ref>{{cite magazine |last1=Ford |first1=Celia |title=One Shot of a Kidney Protein Gave Monkeys a Brain Boost |url=https://www.wired.com/story/one-shot-of-a-kidney-protein-gave-monkeys-a-brain-boost/ |access-date=31 August 2023 |magazine=Wired}}</ref><ref>{{#invoke:cite journal||last1=Castner |first1=Stacy A. |last2=Gupta |first2=Shweta |last3=Wang |first3=Dan |last4=Moreno |first4=Arturo J. |last5=Park |first5=Cana |last6=Chen |first6=Chen |last7=Poon |first7=Yan |last8=Groen |first8=Aaron |last9=Greenberg |first9=Kenneth |last10=David |first10=Nathaniel |last11=Boone |first11=Tom |last12=Baxter |first12=Mark G. |last13=Williams |first13=Graham V. |last14=Dubal |first14=Dena B. |title=Longevity factor klotho enhances cognition in aged nonhuman primates |journal=Nature Aging |date=August 2023 |volume=3 |issue=8 |pages=931–937 |doi=10.1038/s43587-023-00441-x |pmid=37400721 |pmc=10432271 |language=en |issn=2662-8465|doi-access=free}}</ref> On 27 July, a study shows rejuvenation effects in mice from [[Parabiosis#Aging research|heterochronic parabiosis]] endure after the joined mice are detached.<ref>{{#invoke:cite news||title=Young mouse blood extends lives of older ones while rejuvenating them |url=https://www.newscientist.com/article/2384878-young-mouse-blood-extends-lives-of-older-ones-while-rejuvenating-them/ |access-date=31 August 2023 |work=New Scientist|quote=The old mice that had been joined to the young mice ended up living six weeks longer on average than those that had been joined to other old mice, a lifespan extension of about 5 per cent. "If you could improve human lifespan by 5 per cent, that could mean an extra four or five years," [...] However, this effect is smaller than that achieved by calorie restriction, which can make mice live up to 27 per cent longer.}}</ref><ref>{{#invoke:cite journal||last1=Zhang |first1=Bohan |last2=Lee |first2=David E. |last3=Trapp |first3=Alexandre |last4=Tyshkovskiy |first4=Alexander |last5=Lu |first5=Ake T. |last6=Bareja |first6=Akshay |last7=Kerepesi |first7=Csaba |last8=McKay |first8=Lauren K. |last9=Shindyapina |first9=Anastasia V. |last10=Dmitriev |first10=Sergey E. |last11=Baht |first11=Gurpreet S. |last12=Horvath |first12=Steve |last13=Gladyshev |first13=Vadim N. |last14=White |first14=James P. |title=Multi-omic rejuvenation and lifespan extension on exposure to youthful circulation |journal=Nature Aging |date=August 2023 |volume=3 |issue=8 |pages=948–964 |doi=10.1038/s43587-023-00451-9 |pmid=37500973 |pmc=11095548 |language=en |issn=2662-8465|biorxiv=10.1101/2021.11.11.468258|s2cid=260902262 }}</ref>
[[File:Graphen.jpg|thumb|[[#18 July|18 July]]: Naturally occurring [[graphene]] is reported for the first time.]]
[[File:Graphen.jpg|thumb|[[#18 July|18 July]]: Naturally occurring [[graphene]] is reported for the first time.]]
*{{vanchor|13 July}}
*{{vanchor|13 July}}
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*{{vanchor|27 July}} – The longest known [[cryptobiosis]] in a [[nematode]] is reported, with an organism revived after 46,000 years in Siberian [[permafrost]].<ref>{{#invoke:cite news||title= Nematode resurrected from Siberian permafrost laid dormant for 46,000 years |url=https://www.eurekalert.org/news-releases/996694|work=EurekAlert!|date=27 July 2023|access-date=28 July 2023}}</ref><ref>{{#invoke:cite journal||last1=Shatilovich |first1=Anastasia |last2=Gade |first2=Vamshidhar R. |last3=Pippel |first3=Martin |last4=Hoffmeyer |first4=Tarja T. |last5=Tchesunov |first5=Alexei V. |last6=Stevens |first6=Lewis |last7=Winkler |first7=Sylke |last8=Hughes |first8=Graham M. |last9=Traikov |first9=Sofia |last10=Hiller |first10=Michael |last11=Rivkina |first11=Elizaveta |last12=Schiffer |first12=Philipp H. |last13=Myers |first13=Eugene W. |last14=Kurzchalia |first14=Teymuras V. |title=A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva |journal=PLOS Genetics |date=27 July 2023 |volume=19 |issue=7 |pages=e1010798 |doi=10.1371/journal.pgen.1010798 |pmid=37498820 |pmc=10374039 |language=en |issn=1553-7404|doi-access=free}}</ref>
*{{vanchor|27 July}} – The longest known [[cryptobiosis]] in a [[nematode]] is reported, with an organism revived after 46,000 years in Siberian [[permafrost]].<ref>{{#invoke:cite news||title= Nematode resurrected from Siberian permafrost laid dormant for 46,000 years |url=https://www.eurekalert.org/news-releases/996694|work=EurekAlert!|date=27 July 2023|access-date=28 July 2023}}</ref><ref>{{#invoke:cite journal||last1=Shatilovich |first1=Anastasia |last2=Gade |first2=Vamshidhar R. |last3=Pippel |first3=Martin |last4=Hoffmeyer |first4=Tarja T. |last5=Tchesunov |first5=Alexei V. |last6=Stevens |first6=Lewis |last7=Winkler |first7=Sylke |last8=Hughes |first8=Graham M. |last9=Traikov |first9=Sofia |last10=Hiller |first10=Michael |last11=Rivkina |first11=Elizaveta |last12=Schiffer |first12=Philipp H. |last13=Myers |first13=Eugene W. |last14=Kurzchalia |first14=Teymuras V. |title=A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva |journal=PLOS Genetics |date=27 July 2023 |volume=19 |issue=7 |pages=e1010798 |doi=10.1371/journal.pgen.1010798 |pmid=37498820 |pmc=10374039 |language=en |issn=1553-7404|doi-access=free}}</ref>
* {{vanchor|28 July}} – A [[phylogenetic]] study proposes a hybrid of the [[Farming/language dispersal hypothesis|farming]] and [[Kurgan hypothesis|steppe hypotheses]] for the origin {{tooltip|of [[Indo-European languages]]|which are spoken by almost half the world's population}}, contradicting elements of both.<ref>{{#invoke:cite news||title=Origin of Indo-European languages dates back to about 8,100 years ago, says study |url=https://www.telegraphindia.com/india/origin-of-indo-european-languages-date-back-to-about-8100-years-ago-says-study/cid/1955001 |access-date=29 August 2023 |work=www.telegraphindia.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Heggarty |first1=Paul |last2=Anderson |first2=Cormac |last3=Scarborough |first3=Matthew |last4=King |first4=Benedict |display-authors=et al. |title=Language trees with sampled ancestors support a hybrid model for the origin of Indo-European languages |journal=Science |date=28 July 2023 |volume=381 |issue=6656 |pages=eabg0818 |doi=10.1126/science.abg0818 |pmid=37499002 |hdl=10234/204329 |s2cid=260202659 |url=https://www.science.org/stoken/author-tokens/ST-1344/full |language=en |issn=0036-8075|hdl-access=free }}</ref>
* {{vanchor|28 July}} – A [[phylogenetic]] study proposes a hybrid of the [[Farming/language dispersal hypothesis|farming]] and [[Kurgan hypothesis|steppe hypotheses]] for the origin {{tooltip|of [[Indo-European languages]]|which are spoken by almost half the world's population}}, contradicting elements of both.<ref>{{#invoke:cite news||title=Origin of Indo-European languages dates back to about 8,100 years ago, says study |url=https://www.telegraphindia.com/india/origin-of-indo-european-languages-date-back-to-about-8100-years-ago-says-study/cid/1955001 |access-date=29 August 2023 |work=www.telegraphindia.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Heggarty |first1=Paul |last2=Anderson |first2=Cormac |last3=Scarborough |first3=Matthew |last4=King |first4=Benedict |display-authors=et al. |title=Language trees with sampled ancestors support a hybrid model for the origin of Indo-European languages |journal=Science |date=28 July 2023 |volume=381 |issue=6656 |pages=eabg0818 |doi=10.1126/science.abg0818 |pmid=37499002 |hdl=10234/204329 |s2cid=260202659 |url=https://www.science.org/stoken/author-tokens/ST-1344/full |language=en |issn=0036-8075|hdl-access=free }}</ref>
* {{vanchor|Hazards_July|text=[[Hazard]] research is published}}: news outlets start reporting on a study from June finding high levels of [[Per- and polyfluoroalkyl substances|PFAS]] in half of U.S. [[tap water]] (5 July),<ref>{{#invoke:cite journal||last1=Smalling |first1=Kelly L. |last2=Romanok |first2=Kristin M. |last3=Bradley |first3=Paul M. |last4=Morriss |first4=Mathew C. |last5=Gray |first5=James L. |last6=Kanagy |first6=Leslie K. |last7=Gordon |first7=Stephanie E. |last8=Williams |first8=Brianna M. |last9=Breitmeyer |first9=Sara E. |last10=Jones |first10=Daniel K. |last11=DeCicco |first11=Laura A. |last12=Eagles-Smith |first12=Collin A. |last13=Wagner |first13=Tyler |title=Per- and polyfluoroalkyl substances (PFAS) in United States tapwater: Comparison of underserved private-well and public-supply exposures and associated health implications |journal=Environment International |date=1 August 2023 |volume=178 |page=108033 |doi=10.1016/j.envint.2023.108033 |pmid=37356308 |issn=0160-4120|doi-access=free|bibcode=2023EnInt.17808033S }}</ref> an analysis of the efficacy of the [[Rotterdam Convention]] in curbing [[Regulation of chemicals|illegal trade of highly hazardous chemicals]] shows that large-scale trade of chemicals like [[tetraethyllead]] continues (10 July),<ref>{{#invoke:cite journal||last1=Zou |first1=Hongyan |last2=Wang |first2=Tao |last3=Wang |first3=Zhong-Liang |last4=Wang |first4=Zhanyun |title=Continuing large-scale global trade and illegal trade of highly hazardous chemicals |journal=Nature Sustainability |date=10 July 2023 |volume=6 |issue=11 |pages=1394–1405 |doi=10.1038/s41893-023-01158-w |bibcode=2023NatSu...6.1394Z |language=en |issn=2398-9629|doi-access=free|hdl=20.500.11850/624236 |hdl-access=free }}</ref> a researcher reports subterranean climate change [[urban heat island]]s may affect the durability of infrastructure and buildings (11 July),<ref>{{#invoke:cite journal||last1=F |first1=Alessandro |title=The silent impact of underground climate change on civil infrastructure |journal=Communications Engineering |date=11 July 2023 |volume=2 |issue=1 |page=44 |doi=10.1038/s44172-023-00092-1 |bibcode=2023CmEng...2...44R |language=en |issn=2731-3395|doi-access=free}}</ref> a study indicates [[consumer protection]]-related [[Neuroenhancement#Validation and quality control|validation and quality control]] for a set of advanced sports supplements such as [[Methylliberine|Dynamine]] is insufficient, finding most of the [[product testing|tested products]] either did not contain a detectable amount of the labeled ingredient or substantially deviated from the declared dosage (17 July),<ref>{{#invoke:cite journal||last1=Cohen |first1=Pieter A. |last2=Avula |first2=Bharathi |last3=Katragunta |first3=Kumar |last4=Travis |first4=John C. |last5=Khan |first5=Ikhlas |title=Presence and Quantity of Botanical Ingredients With Purported Performance-Enhancing Properties in Sports Supplements |journal=JAMA Network Open |date=17 July 2023 |volume=6 |issue=7 |pages=e2323879 |doi=10.1001/jamanetworkopen.2023.23879|pmid=37459101 |pmc=10352857 }}</ref> a study for the first time determines a [[wet-bulb temperature]] threshold where it may be [[Human physiology|physiologically]] too hot for daily activity by young healthy adults due to an increase [[Cardiovascular drift|in cardiovascular strain]], showing this limit is crossed at a lower temperature than thought previously (20 July),<ref>{{#invoke:cite journal||last1=Cottle |first1=Rachel M. |last2=Fisher |first2=Kat G. |last3=Wolf |first3=S. Tony |last4=Kenney |first4=W. Larry |title=Onset of cardiovascular drift during progressive heat stress in young adults (PSU HEAT project) |journal=Journal of Applied Physiology |date=1 August 2023 |volume=135 |issue=2 |pages=292–299 |doi=10.1152/japplphysiol.00222.2023 |pmid=37348014 |pmc=10393325 |language=en |issn=8750-7587 |pmc-embargo-date=August 1, 2024 }}</ref> researchers elaborate in a scientific journal why they conclude that "new nuclear is a costly and dangerous distraction" in [[climate change mitigation]] (21 July),<ref>{{#invoke:cite journal||last1=Haywood |first1=Luke |last2=Leroutier |first2=Marion |last3=Pietzcker |first3=Robert |title=Why investing in new nuclear plants is bad for the climate |journal=Joule |date=August 2023 |volume=7 |issue=8 |pages=1675–1678 |doi=10.1016/j.joule.2023.07.006|s2cid=260082260 |doi-access=free }}</ref> a study affirms recent findings that suggest revived ancient pathogens from either potential lab-leaks or from permafrost thawing [[Pandemic prevention#Climate change|represent significant risks]] (27 July),<ref>{{#invoke:cite journal||last1=Strona |first1=Giovanni |last2=Bradshaw |first2=Corey J. A. |last3=Cardoso |first3=Pedro |last4=Gotelli |first4=Nicholas J. |last5=Guillaume |first5=Frédéric |last6=Manca |first6=Federica |last7=Mustonen |first7=Ville |last8=Zaman |first8=Luis |title=Time-travelling pathogens and their risk to ecological communities |journal=PLOS Computational Biology |date=27 July 2023 |volume=19 |issue=7 |pages=e1011268 |doi=10.1371/journal.pcbi.1011268 |pmid=37498846 |pmc=10374110 |bibcode=2023PLSCB..19E1268S |language=en |issn=1553-7358|doi-access=free}}</ref> scientists provide data about the genetic basis of induced [[parthenogenesis]] in sexually reproducing [[Drosophila melanogaster|fruit flies]] which could inform [[pest control]] (28 July).<ref>{{#invoke:cite journal||last1=Sperling |first1=Alexis L. |last2=Fabian |first2=Daniel K. |last3=Garrison |first3=Erik |last4=Glover |first4=David M. |title=A genetic basis for facultative parthenogenesis in Drosophila |journal=Current Biology |date=July 2023 |volume=33 |issue=17 |pages=3545–3560.e13 |doi=10.1016/j.cub.2023.07.006|pmid=37516115 |doi-access=free|bibcode=2023CBio...33E3545S }}</ref>
* {{vanchor|Hazards_July|text=[[Hazard]] research is published}}: news outlets start reporting on a study from June finding high levels of [[Per- and polyfluoroalkyl substances|PFAS]] in half of U.S. [[tap water]] (5 July),<ref>{{#invoke:cite journal||last1=Smalling |first1=Kelly L. |last2=Romanok |first2=Kristin M. |last3=Bradley |first3=Paul M. |last4=Morriss |first4=Mathew C. |last5=Gray |first5=James L. |last6=Kanagy |first6=Leslie K. |last7=Gordon |first7=Stephanie E. |last8=Williams |first8=Brianna M. |last9=Breitmeyer |first9=Sara E. |last10=Jones |first10=Daniel K. |last11=DeCicco |first11=Laura A. |last12=Eagles-Smith |first12=Collin A. |last13=Wagner |first13=Tyler |title=Per- and polyfluoroalkyl substances (PFAS) in United States tapwater: Comparison of underserved private-well and public-supply exposures and associated health implications |journal=Environment International |date=1 August 2023 |volume=178 |page=108033 |doi=10.1016/j.envint.2023.108033 |pmid=37356308 |issn=0160-4120|doi-access=free|bibcode=2023EnInt.17808033S }}</ref> an analysis of the efficacy of the [[Rotterdam Convention]] in curbing [[Regulation of chemicals|illegal trade of highly hazardous chemicals]] shows that large-scale trade of chemicals like [[tetraethyllead]] continues (10 July),<ref>{{#invoke:cite journal||last1=Zou |first1=Hongyan |last2=Wang |first2=Tao |last3=Wang |first3=Zhong-Liang |last4=Wang |first4=Zhanyun |title=Continuing large-scale global trade and illegal trade of highly hazardous chemicals |journal=Nature Sustainability |date=10 July 2023 |volume=6 |issue=11 |pages=1394–1405 |doi=10.1038/s41893-023-01158-w |bibcode=2023NatSu...6.1394Z |language=en |issn=2398-9629|doi-access=free|hdl=20.500.11850/624236 |hdl-access=free }}</ref> a researcher reports subterranean climate change [[urban heat island]]s may affect the durability of infrastructure and buildings (11 July),<ref>{{#invoke:cite journal||last1=F |first1=Alessandro |title=The silent impact of underground climate change on civil infrastructure |journal=Communications Engineering |date=11 July 2023 |volume=2 |issue=1 |page=44 |doi=10.1038/s44172-023-00092-1 |bibcode=2023CmEng...2...44R |language=en |issn=2731-3395|doi-access=free}}</ref> a study indicates [[consumer protection]]-related [[Neuroenhancement#Validation and quality control|validation and quality control]] for a set of advanced sports supplements such as [[Methylliberine|Dynamine]] is insufficient, finding most of the [[product testing|tested products]] either did not contain a detectable amount of the labeled ingredient or substantially deviated from the declared dosage (17 July),<ref>{{#invoke:cite journal||last1=Cohen |first1=Pieter A. |last2=Avula |first2=Bharathi |last3=Katragunta |first3=Kumar |last4=Travis |first4=John C. |last5=Khan |first5=Ikhlas |title=Presence and Quantity of Botanical Ingredients With Purported Performance-Enhancing Properties in Sports Supplements |journal=JAMA Network Open |date=17 July 2023 |volume=6 |issue=7 |pages=e2323879 |doi=10.1001/jamanetworkopen.2023.23879|pmid=37459101 |pmc=10352857 }}</ref> a study for the first time determines a [[wet-bulb temperature]] threshold where it may be [[Human physiology|physiologically]] too hot for daily activity by young healthy adults due to an increase [[Cardiovascular drift|in cardiovascular strain]], showing this limit is crossed at a lower temperature than thought previously (20 July),<ref>{{#invoke:cite journal||last1=Cottle |first1=Rachel M. |last2=Fisher |first2=Kat G. |last3=Wolf |first3=S. Tony |last4=Kenney |first4=W. Larry |title=Onset of cardiovascular drift during progressive heat stress in young adults (PSU HEAT project) |journal=Journal of Applied Physiology |date=1 August 2023 |volume=135 |issue=2 |pages=292–299 |doi=10.1152/japplphysiol.00222.2023 |pmid=37348014 |pmc=10393325 |language=en |issn=8750-7587 }}</ref> researchers elaborate in a scientific journal why they conclude that "new nuclear is a costly and dangerous distraction" in [[climate change mitigation]] (21 July),<ref>{{#invoke:cite journal||last1=Haywood |first1=Luke |last2=Leroutier |first2=Marion |last3=Pietzcker |first3=Robert |title=Why investing in new nuclear plants is bad for the climate |journal=Joule |date=August 2023 |volume=7 |issue=8 |pages=1675–1678 |doi=10.1016/j.joule.2023.07.006|s2cid=260082260 |doi-access=free |bibcode=2023Joule...7.1675H }}</ref> a study affirms recent findings that suggest revived ancient pathogens from either potential lab-leaks or from permafrost thawing [[Pandemic prevention#Climate change|represent significant risks]] (27 July),<ref>{{#invoke:cite journal||last1=Strona |first1=Giovanni |last2=Bradshaw |first2=Corey J. A. |last3=Cardoso |first3=Pedro |last4=Gotelli |first4=Nicholas J. |last5=Guillaume |first5=Frédéric |last6=Manca |first6=Federica |last7=Mustonen |first7=Ville |last8=Zaman |first8=Luis |title=Time-travelling pathogens and their risk to ecological communities |journal=PLOS Computational Biology |date=27 July 2023 |volume=19 |issue=7 |pages=e1011268 |doi=10.1371/journal.pcbi.1011268 |pmid=37498846 |pmc=10374110 |bibcode=2023PLSCB..19E1268S |language=en |issn=1553-7358|doi-access=free}}</ref> scientists provide data about the genetic basis of induced [[parthenogenesis]] in sexually reproducing [[Drosophila melanogaster|fruit flies]] which could inform [[pest control]] (28 July).<ref>{{#invoke:cite journal||last1=Sperling |first1=Alexis L. |last2=Fabian |first2=Daniel K. |last3=Garrison |first3=Erik |last4=Glover |first4=David M. |title=A genetic basis for facultative parthenogenesis in Drosophila |journal=Current Biology |date=July 2023 |volume=33 |issue=17 |pages=3545–3560.e13 |doi=10.1016/j.cub.2023.07.006|pmid=37516115 |doi-access=free|pmc=11044649 |bibcode=2023CBio...33E3545S }}</ref>
*{{vanchor|Innovations_July|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: a viable real-time pathogen air quality (pAQ) [[Biosensor#Pathogen detection|sensor]] is demonstrated (10 July),<ref>{{#invoke:cite journal||last1=Puthussery |first1=Joseph V. |last2=Ghumra |first2=Dishit P. |last3=McBrearty |first3=Kevin R. |last4=Doherty |first4=Brookelyn M. |last5=Sumlin |first5=Benjamin J. |last6=Sarabandi |first6=Amirhossein |last7=Mandal |first7=Anushka Garg |last8=Shetty |first8=Nishit J. |last9=Gardiner |first9=Woodrow D. |last10=Magrecki |first10=Jordan P. |last11=Brody |first11=David L. |last12=Esparza |first12=Thomas J. |last13=Bricker |first13=Traci L. |last14=Boon |first14=Adrianus C. M. |last15=Yuede |first15=Carla M. |last16=Cirrito |first16=John R. |last17=Chakrabarty |first17=Rajan K. |title=Real-time environmental surveillance of SARS-CoV-2 aerosols |journal=Nature Communications |date=10 July 2023 |volume=14 |issue=1 |page=3692 |doi=10.1038/s41467-023-39419-z |pmid=37429842 |pmc=10333287 |bibcode=2023NatCo..14.3692P |language=en |issn=2041-1723|doi-access=free}}</ref> a performant [[free and open source software|open source]] AI software for protein [[Generative artificial intelligence|design]] (RFdiffusion) is introduced (11 July),<ref>{{#invoke:cite journal||last1=Watson |first1=Joseph L. |last2=Juergens |first2=David |last3=Bennett |first3=Nathaniel R. |last4=Trippe |first4=Brian L. |last5=Yim |first5=Jason |last6=Eisenach |first6=Helen E. |last7=Ahern |first7=Woody |last8=Borst |first8=Andrew J. |last9=Ragotte |first9=Robert J. |last10=Milles |first10=Lukas F. |last11=Wicky |first11=Basile I. M. |last12=Hanikel |first12=Nikita |last13=Pellock |first13=Samuel J. |last14=Courbet |first14=Alexis |last15=Sheffler |first15=William |last16=Wang |first16=Jue |last17=Venkatesh |first17=Preetham |last18=Sappington |first18=Isaac |last19=Torres |first19=Susana Vázquez |last20=Lauko |first20=Anna |last21=De Bortoli |first21=Valentin |last22=Mathieu |first22=Emile |last23=Ovchinnikov |first23=Sergey |last24=Barzilay |first24=Regina |last25=Jaakkola |first25=Tommi S. |last26=DiMaio |first26=Frank |last27=Baek |first27=Minkyung |last28=Baker |first28=David |title=De novo design of protein structure and function with RFdiffusion |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1089–1100 |doi=10.1038/s41586-023-06415-8 |pmid=37433327 |pmc=10468394 |bibcode=2023Natur.620.1089W |language=en |issn=1476-4687|doi-access=free}}</ref> [[metascience|metaresearchers]] show that AI trained with study-author-networks data could generate scientifically promising "alien" hypotheses that would likely not be considered otherwise (13 July),<ref>{{#invoke:cite journal||last1=Sourati |first1=Jamshid |last2=Evans |first2=James A. |title=Accelerating science with human-aware artificial intelligence |journal=Nature Human Behaviour |date=13 July 2023 |volume=7 |issue=10 |pages=1682–1696 |doi=10.1038/s41562-023-01648-z |pmid=37443269 |language=en |issn=2397-3374|arxiv=2306.01495|s2cid=259064119 }}</ref> a study affirms that [[Kernel (neurotechnology company)#Kernel Flow|novel]] [[Wearable technology#Headgear|wearable]] more accessible [[Functional near-infrared spectroscopy#Time domain|TD-fNIRS]] headgear can be used instead of stationary [[fMRI]] with new findings about [[Consciousness#Altered states|neurological]] [[Psychedelic drug#Pharmacology|effects of psychedelics]] (19 July),<ref>{{#invoke:cite journal||last1=Castillo |first1=Adelaida |last2=Dubois |first2=Julien |last3=Field |first3=Ryan M. |last4=Fishburn |first4=Frank |last5=Gundran |first5=Andrew |last6=Ho |first6=Wilson C. |last7=Jawhar |first7=Sami |last8=Kates-Harbeck |first8=Julian |last9=M. Aghajan |first9=Zahra |last10=Miller |first10=Naomi |last11=Perdue |first11=Katherine L. |last12=Phillips |first12=Jake |last13=Ryan |first13=Wesley C. |last14=Shafiei |first14=Mahdi |last15=Scholkmann |first15=Felix |last16=Taylor |first16=Moriah |title=Measuring acute effects of subanesthetic ketamine on cerebrovascular hemodynamics in humans using TD-fNIRS |journal=Scientific Reports |date=19 July 2023 |volume=13 |issue=1 |page=11665 |doi=10.1038/s41598-023-38258-8 |pmid=37468572 |pmc=10356754 |bibcode=2023NatSR..1311665C |language=en |issn=2045-2322|doi-access=free}}</ref> researchers demonstrate a DNA-sequencing-based technique to more effectively curb illegal sealife trade at warehouses and boats (19 July),<ref>{{#invoke:cite journal||last1=Prasetyo |first1=Andhika P. |last2=Murray |first2=Joanna M. |last3=Kurniawan |first3=Muh. Firdaus A. K. |last4=Sales |first4=Naiara G. |last5=McDevitt |first5=Allan D. |last6=Mariani |first6=Stefano |title=Shark-dust: Application of high-throughput DNA sequencing of processing residues for trade monitoring of threatened sharks and rays |journal=Conservation Letters |date=19 July 2023 |volume=16 |issue=5 |doi=10.1111/conl.12971 |language=en |issn=1755-263X|doi-access=free}}</ref> a study provides an overview and living review of open source [[Large language model|LLMs]], assessing the levels of openness of their differentiated elements and reviewing the risks of relying on proprietary software or the importance of [[open-source artificial intelligence|open source AI]] (19 July),<ref>{{#invoke:cite book||last1=Liesenfeld |first1=Andreas |last2=Lopez |first2=Alianda |last3=Dingemanse |first3=Mark |title=Proceedings of the 5th International Conference on Conversational User Interfaces |chapter=Opening up ChatGPT: Tracking openness, transparency, and accountability in instruction-tuned text generators |date=19 July 2023 |pages=1–6 |doi=10.1145/3571884.3604316 |publisher=ACM |language=en|arxiv=2307.05532|isbn=979-8-4007-0014-9 |s2cid=259837343 }}
*{{vanchor|Innovations_July|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: a viable real-time pathogen air quality (pAQ) [[Biosensor#Pathogen detection|sensor]] is demonstrated (10 July),<ref>{{#invoke:cite journal||last1=Puthussery |first1=Joseph V. |last2=Ghumra |first2=Dishit P. |last3=McBrearty |first3=Kevin R. |last4=Doherty |first4=Brookelyn M. |last5=Sumlin |first5=Benjamin J. |last6=Sarabandi |first6=Amirhossein |last7=Mandal |first7=Anushka Garg |last8=Shetty |first8=Nishit J. |last9=Gardiner |first9=Woodrow D. |last10=Magrecki |first10=Jordan P. |last11=Brody |first11=David L. |last12=Esparza |first12=Thomas J. |last13=Bricker |first13=Traci L. |last14=Boon |first14=Adrianus C. M. |last15=Yuede |first15=Carla M. |last16=Cirrito |first16=John R. |last17=Chakrabarty |first17=Rajan K. |title=Real-time environmental surveillance of SARS-CoV-2 aerosols |journal=Nature Communications |date=10 July 2023 |volume=14 |issue=1 |page=3692 |doi=10.1038/s41467-023-39419-z |pmid=37429842 |pmc=10333287 |bibcode=2023NatCo..14.3692P |language=en |issn=2041-1723|doi-access=free}}</ref> a performant [[free and open source software|open source]] AI software for protein [[Generative artificial intelligence|design]] (RFdiffusion) is introduced (11 July),<ref>{{#invoke:cite journal||last1=Watson |first1=Joseph L. |last2=Juergens |first2=David |last3=Bennett |first3=Nathaniel R. |last4=Trippe |first4=Brian L. |last5=Yim |first5=Jason |last6=Eisenach |first6=Helen E. |last7=Ahern |first7=Woody |last8=Borst |first8=Andrew J. |last9=Ragotte |first9=Robert J. |last10=Milles |first10=Lukas F. |last11=Wicky |first11=Basile I. M. |last12=Hanikel |first12=Nikita |last13=Pellock |first13=Samuel J. |last14=Courbet |first14=Alexis |last15=Sheffler |first15=William |last16=Wang |first16=Jue |last17=Venkatesh |first17=Preetham |last18=Sappington |first18=Isaac |last19=Torres |first19=Susana Vázquez |last20=Lauko |first20=Anna |last21=De Bortoli |first21=Valentin |last22=Mathieu |first22=Emile |last23=Ovchinnikov |first23=Sergey |last24=Barzilay |first24=Regina |last25=Jaakkola |first25=Tommi S. |last26=DiMaio |first26=Frank |last27=Baek |first27=Minkyung |last28=Baker |first28=David |title=De novo design of protein structure and function with RFdiffusion |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1089–1100 |doi=10.1038/s41586-023-06415-8 |pmid=37433327 |pmc=10468394 |bibcode=2023Natur.620.1089W |language=en |issn=1476-4687|doi-access=free}}</ref> [[metascience|metaresearchers]] show that AI trained with study-author-networks data could generate scientifically promising "alien" hypotheses that would likely not be considered otherwise (13 July),<ref>{{#invoke:cite journal||last1=Sourati |first1=Jamshid |last2=Evans |first2=James A. |title=Accelerating science with human-aware artificial intelligence |journal=Nature Human Behaviour |date=13 July 2023 |volume=7 |issue=10 |pages=1682–1696 |doi=10.1038/s41562-023-01648-z |pmid=37443269 |language=en |issn=2397-3374|arxiv=2306.01495|s2cid=259064119 }}</ref> a study affirms that [[Kernel (neurotechnology company)#Kernel Flow|novel]] [[Wearable technology#Headgear|wearable]] more accessible [[Functional near-infrared spectroscopy#Time domain|TD-fNIRS]] headgear can be used instead of stationary [[fMRI]] with new findings about [[Consciousness#Altered states|neurological]] [[Psychedelic drug#Pharmacology|effects of psychedelics]] (19 July),<ref>{{#invoke:cite journal||last1=Castillo |first1=Adelaida |last2=Dubois |first2=Julien |last3=Field |first3=Ryan M. |last4=Fishburn |first4=Frank |last5=Gundran |first5=Andrew |last6=Ho |first6=Wilson C. |last7=Jawhar |first7=Sami |last8=Kates-Harbeck |first8=Julian |last9=M. Aghajan |first9=Zahra |last10=Miller |first10=Naomi |last11=Perdue |first11=Katherine L. |last12=Phillips |first12=Jake |last13=Ryan |first13=Wesley C. |last14=Shafiei |first14=Mahdi |last15=Scholkmann |first15=Felix |last16=Taylor |first16=Moriah |title=Measuring acute effects of subanesthetic ketamine on cerebrovascular hemodynamics in humans using TD-fNIRS |journal=Scientific Reports |date=19 July 2023 |volume=13 |issue=1 |page=11665 |doi=10.1038/s41598-023-38258-8 |pmid=37468572 |pmc=10356754 |bibcode=2023NatSR..1311665C |language=en |issn=2045-2322|doi-access=free}}</ref> researchers demonstrate a DNA-sequencing-based technique to more effectively curb illegal sealife trade at warehouses and boats (19 July),<ref>{{#invoke:cite journal||last1=Prasetyo |first1=Andhika P. |last2=Murray |first2=Joanna M. |last3=Kurniawan |first3=Muh. Firdaus A. K. |last4=Sales |first4=Naiara G. |last5=McDevitt |first5=Allan D. |last6=Mariani |first6=Stefano |title=Shark-dust: Application of high-throughput DNA sequencing of processing residues for trade monitoring of threatened sharks and rays |journal=Conservation Letters |date=19 July 2023 |volume=16 |issue=5 |doi=10.1111/conl.12971 |language=en |issn=1755-263X|doi-access=free|bibcode=2023ConL...16E2971P }}</ref> a study provides an overview and living review of open source [[Large language model|LLMs]], assessing the levels of openness of their differentiated elements and reviewing the risks of relying on proprietary software or the importance of [[open-source artificial intelligence|open source AI]] (19 July),<ref>{{#invoke:cite book||last1=Liesenfeld |first1=Andreas |last2=Lopez |first2=Alianda |last3=Dingemanse |first3=Mark |title=Proceedings of the 5th International Conference on Conversational User Interfaces |chapter=Opening up ChatGPT: Tracking openness, transparency, and accountability in instruction-tuned text generators |date=19 July 2023 |pages=1–6 |doi=10.1145/3571884.3604316 |publisher=ACM |language=en|arxiv=2307.05532|isbn=979-8-4007-0014-9 |s2cid=259837343 }}
* {{#invoke:cite web||title=Interactive up-to-date table |url=https://opening-up-chatgpt.github.io/}}</ref> news outlets start reporting on study from June demonstrating record [[Green hydrogen#Research|solar-to-hydrogen efficiencies]] (20 July),<ref>{{#invoke:cite journal||last1=Fehr |first1=Austin M. K. |last2=Agrawal |first2=Ayush |last3=Mandani |first3=Faiz |last4=Conrad |first4=Christian L. |last5=Jiang |first5=Qi |last6=Park |first6=So Yeon |last7=Alley |first7=Olivia |last8=Li |first8=Bor |last9=Sidhik |first9=Siraj |last10=Metcalf |first10=Isaac |last11=Botello |first11=Christopher |last12=Young |first12=James L. |last13=Even |first13=Jacky |last14=Blancon |first14=Jean Christophe |last15=Deutsch |first15=Todd G. |last16=Zhu |first16=Kai |last17=Albrecht |first17=Steve |last18=Toma |first18=Francesca M. |last19=Wong |first19=Michael |last20=Mohite |first20=Aditya D. |title=Integrated halide perovskite photoelectrochemical cells with solar-driven water-splitting efficiency of 20.8% |journal=Nature Communications |date=26 June 2023 |volume=14 |issue=1 |page=3797 |doi=10.1038/s41467-023-39290-y |pmid=37365175 |pmc=10293190 |bibcode=2023NatCo..14.3797F |language=en |issn=2041-1723|doi-access=free}}</ref> [[Multimodal learning|multimodal]] biomedical [[PaLM|Med-PaLM M]] is introduced (26 July).<ref>{{cite arXiv |title=Towards Generalist Biomedical AI |eprint=2307.14334 |last1=Tu |first1=Tao |last2=Azizi |first2=Shekoofeh |last3=Driess |first3=Danny |last4=Schaekermann |first4=Mike |last5=Amin |first5=Mohamed |last6=Chang |first6=Pi-Chuan |last7=Carroll |first7=Andrew |last8=Lau |first8=Chuck |last9=Tanno |first9=Ryutaro |last10=Ktena |first10=Ira |last11=Mustafa |first11=Basil |last12=Chowdhery |first12=Aakanksha |last13=Liu |first13=Yun |last14=Kornblith |first14=Simon |last15=Fleet |first15=David |last16=Mansfield |first16=Philip |last17=Prakash |first17=Sushant |last18=Wong |first18=Renee |last19=Virmani |first19=Sunny |last20=Semturs |first20=Christopher |author21=S Sara Mahdavi |last22=Green |first22=Bradley |last23=Dominowska |first23=Ewa |author24=Blaise Aguera y Arcas |last25=Barral |first25=Joelle |last26=Webster |first26=Dale |last27=Corrado |first27=Greg S. |last28=Matias |first28=Yossi |last29=Singhal |first29=Karan |last30=Florence |first30=Pete |date=2023 |class=cs.CL |display-authors=1 }}</ref>
* {{#invoke:cite web||title=Interactive up-to-date table |url=https://opening-up-chatgpt.github.io/}}</ref> news outlets start reporting on study from June demonstrating record [[Green hydrogen#Research|solar-to-hydrogen efficiencies]] (20 July),<ref>{{#invoke:cite journal||last1=Fehr |first1=Austin M. K. |last2=Agrawal |first2=Ayush |last3=Mandani |first3=Faiz |last4=Conrad |first4=Christian L. |last5=Jiang |first5=Qi |last6=Park |first6=So Yeon |last7=Alley |first7=Olivia |last8=Li |first8=Bor |last9=Sidhik |first9=Siraj |last10=Metcalf |first10=Isaac |last11=Botello |first11=Christopher |last12=Young |first12=James L. |last13=Even |first13=Jacky |last14=Blancon |first14=Jean Christophe |last15=Deutsch |first15=Todd G. |last16=Zhu |first16=Kai |last17=Albrecht |first17=Steve |last18=Toma |first18=Francesca M. |last19=Wong |first19=Michael |last20=Mohite |first20=Aditya D. |title=Integrated halide perovskite photoelectrochemical cells with solar-driven water-splitting efficiency of 20.8% |journal=Nature Communications |date=26 June 2023 |volume=14 |issue=1 |page=3797 |doi=10.1038/s41467-023-39290-y |pmid=37365175 |pmc=10293190 |bibcode=2023NatCo..14.3797F |language=en |issn=2041-1723|doi-access=free}}</ref> [[Multimodal learning|multimodal]] biomedical [[PaLM|Med-PaLM M]] is introduced (26 July).<ref>{{cite arXiv |title=Towards Generalist Biomedical AI |eprint=2307.14334 |last1=Tu |first1=Tao |last2=Azizi |first2=Shekoofeh |last3=Driess |first3=Danny |last4=Schaekermann |first4=Mike |last5=Amin |first5=Mohamed |last6=Chang |first6=Pi-Chuan |last7=Carroll |first7=Andrew |last8=Lau |first8=Chuck |last9=Tanno |first9=Ryutaro |last10=Ktena |first10=Ira |last11=Mustafa |first11=Basil |last12=Chowdhery |first12=Aakanksha |last13=Liu |first13=Yun |last14=Kornblith |first14=Simon |last15=Fleet |first15=David |last16=Mansfield |first16=Philip |last17=Prakash |first17=Sushant |last18=Wong |first18=Renee |last19=Virmani |first19=Sunny |last20=Semturs |first20=Christopher |author21=S Sara Mahdavi |last22=Green |first22=Bradley |last23=Dominowska |first23=Ewa |author24=Blaise Aguera y Arcas |last25=Barral |first25=Joelle |last26=Webster |first26=Dale |last27=Corrado |first27=Greg S. |last28=Matias |first28=Yossi |last29=Singhal |first29=Karan |last30=Florence |first30=Pete |date=2023 |class=cs.CL |display-authors=1 }}</ref>
*<!--news reports via altmetrics badge/link at the study-->{{vanchor|Therapeutics_July|text=Promising results of health and medical research are reported}}: further<ref>{{#invoke:cite web||title=Breastfeeding 2023 |url=https://www.thelancet.com/series/Breastfeeding-2023 |publisher=The Lancet |access-date=2 September 2023}}</ref> evidence that [[Breastfeeding#Intelligence|breastfeeding]] is important for the [[Neuroenhancement#Early childhood|cognitive]] child development due to its unique ingredients (11 July),<ref>{{#invoke:cite journal||last1=Paquette |first1=Andrew F. |last2=Carbone |first2=Beatrice E. |last3=Vogel |first3=Seth |last4=Israel |first4=Erica |last5=Maria |first5=Sarah D. |last6=Patil |first6=Nikita P. |last7=Sah |first7=Saroj |last8=Chowdhury |first8=Dhrubajyoti |last9=Kondratiuk |first9=Ilona |last10=Labhart |first10=Beau |last11=Morrow |first11=Ardythe L. |last12=Phillips |first12=Shay C. |last13=Kuang |first13=Chenzhong |last14=Hondmann |first14=Dirk |last15=Pandey |first15=Neeraj |last16=Biederer |first16=Thomas |title=The human milk component myo -inositol promotes neuronal connectivity |journal=Proceedings of the National Academy of Sciences |date=25 July 2023 |volume=120 |issue=30 |pages=e2221413120 |doi=10.1073/pnas.2221413120 |pmid=37433002 |pmc=10374161 |bibcode=2023PNAS..12021413P |language=en |issn=0027-8424|doi-access=free}}</ref> trialed [[Hydroxyapatite#Use in dentistry|hydroxyapatite toothpaste]] – which can also include fluoride in addition – against caries (18 July),<ref>{{#invoke:cite journal||last1=Paszynska |first1=Elzbieta |last2=Pawinska |first2=Malgorzata |last3=Enax |first3=Joachim |last4=Meyer |first4=Frederic |last5=Schulze zur Wiesche |first5=Erik |last6=May |first6=Theodor W. |last7=Amaechi |first7=Bennett T. |last8=Limeback |first8=Hardy |last9=Hernik |first9=Amadeusz |last10=Otulakowska-Skrzynska |first10=Justyna |last11=Krahel |first11=Anna |last12=Kaminska |first12=Inga |last13=Lapinska-Antonczuk |first13=Joanna |last14=Stokowska |first14=Ewa |last15=Gawriolek |first15=Maria |title=Caries-preventing effect of a hydroxyapatite-toothpaste in adults: a 18-month double-blinded randomized clinical trial |journal=Frontiers in Public Health |date=18 July 2023 |volume=11 |doi=10.3389/fpubh.2023.1199728 |pmid=37533523 |pmc=10393266 |doi-access=free }}</ref> gene therapy eyedrops of [[Vyjuvek]], which was approved in May, against blindness (24 July),<ref>{{#invoke:cite news||title=Gene therapy eyedrops restored a boy's sight. Similar treatments could help millions |url=https://apnews.com/article/gene-therapy-blindness-rare-diseases-58f81838894dfb8568affde0b7e4d2f1 |work=AP News |date=24 July 2023 |language=en}}</ref> the second release from the global [[WikiGuidelines]], a practically oriented guideline on the diagnosis and management of [[infective endocarditis]], demonstrates a novel approach that incorporates uncertainties more than conventional [[Medical guideline|guideline reviews]] (31 July).<ref>{{#invoke:cite journal||last1=McDonald |first1=Emily G. |last2=Aggrey |first2=Gloria |last3=Tarık Aslan |first3=Abdullah |last4=Casias |first4=Michael |last5=Cortes-Penfield |first5=Nicolas |last6=Dong |first6=Mei Qin (Denise) |last7=Egbert |first7=Susan |last8=Footer |first8=Brent |last9=Isler |first9=Burcu |last10=King |first10=Madeline |last11=Maximos |first11=Mira |display-authors=et al. |title=Guidelines for Diagnosis and Management of Infective Endocarditis in Adults: A WikiGuidelines Group Consensus Statement |journal=JAMA Network Open |date=31 July 2023 |volume=6 |issue=7 |pages=e2326366 |doi=10.1001/jamanetworkopen.2023.26366 |pmid=37523190 |s2cid=262120299 |issn=2574-3805|doi-access=free }}
*<!--news reports via altmetrics badge/link at the study-->{{vanchor|Therapeutics_July|text=Promising results of health and medical research are reported}}: further<ref>{{#invoke:cite web||title=Breastfeeding 2023 |url=https://www.thelancet.com/series/Breastfeeding-2023 |publisher=The Lancet |access-date=2 September 2023}}</ref> evidence that [[Breastfeeding#Intelligence|breastfeeding]] is important for the [[Neuroenhancement#Early childhood|cognitive]] child development due to its unique ingredients (11 July),<ref>{{#invoke:cite journal||last1=Paquette |first1=Andrew F. |last2=Carbone |first2=Beatrice E. |last3=Vogel |first3=Seth |last4=Israel |first4=Erica |last5=Maria |first5=Sarah D. |last6=Patil |first6=Nikita P. |last7=Sah |first7=Saroj |last8=Chowdhury |first8=Dhrubajyoti |last9=Kondratiuk |first9=Ilona |last10=Labhart |first10=Beau |last11=Morrow |first11=Ardythe L. |last12=Phillips |first12=Shay C. |last13=Kuang |first13=Chenzhong |last14=Hondmann |first14=Dirk |last15=Pandey |first15=Neeraj |last16=Biederer |first16=Thomas |title=The human milk component myo -inositol promotes neuronal connectivity |journal=Proceedings of the National Academy of Sciences |date=25 July 2023 |volume=120 |issue=30 |pages=e2221413120 |doi=10.1073/pnas.2221413120 |pmid=37433002 |pmc=10374161 |bibcode=2023PNAS..12021413P |language=en |issn=0027-8424|doi-access=free}}</ref> trialed [[Hydroxyapatite#Use in dentistry|hydroxyapatite toothpaste]] – which can also include fluoride in addition – against caries (18 July),<ref>{{#invoke:cite journal||last1=Paszynska |first1=Elzbieta |last2=Pawinska |first2=Malgorzata |last3=Enax |first3=Joachim |last4=Meyer |first4=Frederic |last5=Schulze zur Wiesche |first5=Erik |last6=May |first6=Theodor W. |last7=Amaechi |first7=Bennett T. |last8=Limeback |first8=Hardy |last9=Hernik |first9=Amadeusz |last10=Otulakowska-Skrzynska |first10=Justyna |last11=Krahel |first11=Anna |last12=Kaminska |first12=Inga |last13=Lapinska-Antonczuk |first13=Joanna |last14=Stokowska |first14=Ewa |last15=Gawriolek |first15=Maria |title=Caries-preventing effect of a hydroxyapatite-toothpaste in adults: a 18-month double-blinded randomized clinical trial |journal=Frontiers in Public Health |date=18 July 2023 |volume=11 |doi=10.3389/fpubh.2023.1199728 |pmid=37533523 |pmc=10393266 |doi-access=free }}</ref> gene therapy eyedrops of [[Vyjuvek]], which was approved in May, against blindness (24 July),<ref>{{#invoke:cite news||title=Gene therapy eyedrops restored a boy's sight. Similar treatments could help millions |url=https://apnews.com/article/gene-therapy-blindness-rare-diseases-58f81838894dfb8568affde0b7e4d2f1 |work=AP News |date=24 July 2023 |language=en}}</ref> the second release from the global [[WikiGuidelines]], a practically oriented guideline on the diagnosis and management of [[infective endocarditis]], demonstrates a novel approach that incorporates uncertainties more than conventional [[Medical guideline|guideline reviews]] (31 July).<ref>{{#invoke:cite journal||last1=McDonald |first1=Emily G. |last2=Aggrey |first2=Gloria |last3=Tarık Aslan |first3=Abdullah |last4=Casias |first4=Michael |last5=Cortes-Penfield |first5=Nicolas |last6=Dong |first6=Mei Qin (Denise) |last7=Egbert |first7=Susan |last8=Footer |first8=Brent |last9=Isler |first9=Burcu |last10=King |first10=Madeline |last11=Maximos |first11=Mira |display-authors=et al. |title=Guidelines for Diagnosis and Management of Infective Endocarditis in Adults: A WikiGuidelines Group Consensus Statement |journal=JAMA Network Open |date=31 July 2023 |volume=6 |issue=7 |pages=e2326366 |doi=10.1001/jamanetworkopen.2023.26366 |pmid=37523190 |s2cid=262120299 |issn=2574-3805|doi-access=free }}
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**A small star called TOI-4860 is found to host an unusually large [[gas giant]], named TOI-4860 b. Astronomers believe this pair to be the lowest-mass star hosting such a high-mass planet, challenging theories of [[Nebular hypothesis|planetary formation]].<ref>{{#invoke:cite journal||last1=Triaud |first1=Amaury H M J |display-authors=et al. |title=An M dwarf accompanied by a close-in giant orbiter with SPECULOOS |journal=Monthly Notices of the Royal Astronomical Society: Letters |date=4 July 2023 |volume=525 |issue=1 |pages=L98–L104 |doi=10.1093/mnrasl/slad097 |language=en |issn=1745-3925|doi-access=free|arxiv=2308.02253 }}
**A small star called TOI-4860 is found to host an unusually large [[gas giant]], named TOI-4860 b. Astronomers believe this pair to be the lowest-mass star hosting such a high-mass planet, challenging theories of [[Nebular hypothesis|planetary formation]].<ref>{{#invoke:cite journal||last1=Triaud |first1=Amaury H M J |display-authors=et al. |title=An M dwarf accompanied by a close-in giant orbiter with SPECULOOS |journal=Monthly Notices of the Royal Astronomical Society: Letters |date=4 July 2023 |volume=525 |issue=1 |pages=L98–L104 |doi=10.1093/mnrasl/slad097 |language=en |issn=1745-3925|doi-access=free|arxiv=2308.02253 }}
* University press release: {{#invoke:cite news||title=New exoplanet discovery builds better understanding of planet formation |work=University of Birmingham |url=https://www.birmingham.ac.uk/news/2023/new-exoplanet-discovery-builds-better-understanding-of-planet-formation|date=2 August 2023|access-date=7 August 2023 }}</ref>
* University press release: {{#invoke:cite news||title=New exoplanet discovery builds better understanding of planet formation |work=University of Birmingham |url=https://www.birmingham.ac.uk/news/2023/new-exoplanet-discovery-builds-better-understanding-of-planet-formation|date=2 August 2023|access-date=7 August 2023 }}</ref>
**<!--Study from 31 July, first news report from 2 Aug-->Scientists report the discovery of an up to now unknown [[Archaic humans|ancient human]] [[hominin]] that may have lived 300,000 years ago in China.<ref name="YN-20230807">{{#invoke:cite news||last=Israely |first=Yogev |title=Remains found in China may belong to previously unknown human lineage – Scientists in eastern China examined a jawbone, fragments of a skull and various foot bones from a hominin that lived approximately 300,000 years ago; Findings suggest this particular lineage bears a closer resemblance to Homo sapiens, or modern-day humans |url=https://www.ynetnews.com/health_science/article/ryjn4f0j3 |date=7 August 2023 |work=[[YNet News]] |url-status=live |archive-url=https://archive.today/20230807160833/https://www.ynetnews.com/health_science/article/ryjn4f0j3 |archive-date=7 August 2023 |access-date=7 August 2023 }}</ref><ref name="JHE-20230901">{{#invoke:cite journal||author=Wu, Xiujie |display-authors=et al.|title=Morphological and morphometric analyses of a late Middle Pleistocene hominin mandible from Hualongdong, China |url=https://www.sciencedirect.com/science/article/abs/pii/S0047248423000908 |date=1 September 2023 |journal=[[Journal of Human Evolution]] |volume=182 |page=103411 |doi=10.1016/j.jhevol.2023.103411 |pmid=37531709 |s2cid=260407114 |url-status=live |archive-url=https://archive.today/20230807155729/https://www.sciencedirect.com/science/article/abs/pii/S0047248423000908 |archive-date=7 August 2023 |access-date=7 August 2023 }}</ref>
**<!--Study from 31 July, first news report from 2 Aug-->Scientists report the discovery of an up to now unknown [[Archaic humans|ancient human]] [[hominin]] that may have lived 300,000 years ago in China.<ref name="YN-20230807">{{#invoke:cite news||last=Israely |first=Yogev |title=Remains found in China may belong to previously unknown human lineage – Scientists in eastern China examined a jawbone, fragments of a skull and various foot bones from a hominin that lived approximately 300,000 years ago; Findings suggest this particular lineage bears a closer resemblance to Homo sapiens, or modern-day humans |url=https://www.ynetnews.com/health_science/article/ryjn4f0j3 |date=7 August 2023 |work=[[YNet News]] |url-status=live |archive-url=https://archive.today/20230807160833/https://www.ynetnews.com/health_science/article/ryjn4f0j3 |archive-date=7 August 2023 |access-date=7 August 2023 }}</ref><ref name="JHE-20230901">{{#invoke:cite journal||author=Wu, Xiujie |display-authors=et al.|title=Morphological and morphometric analyses of a late Middle Pleistocene hominin mandible from Hualongdong, China |url=https://www.sciencedirect.com/science/article/abs/pii/S0047248423000908 |date=1 September 2023 |journal=[[Journal of Human Evolution]] |volume=182 |page=103411 |doi=10.1016/j.jhevol.2023.103411 |pmid=37531709 |bibcode=2023JHumE.18203411W |s2cid=260407114 |url-status=live |archive-url=https://archive.today/20230807155729/https://www.sciencedirect.com/science/article/abs/pii/S0047248423000908 |archive-date=7 August 2023 |access-date=7 August 2023 }}</ref>
**Whale ''[[Perucetus colossus]]'' of the [[Eocene]] is shown to potentially be Earth's [[Largest and heaviest animals|heaviest-ever]] animal with 85–340 t.<ref>{{#invoke:cite news||title=The heaviest animal ever may be this ancient whale found in the Peruvian desert |url=https://apnews.com/article/ancient-whale-heaviest-animal-d4e4c1b8eb58bb0ee9702052f6adb457 |access-date=30 September 2023 |work=AP News |date=2 August 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Bianucci |first1=Giovanni |last2=Lambert |first2=Olivier |last3=Urbina |first3=Mario |last4=Merella |first4=Marco |last5=Collareta |first5=Alberto |last6=Bennion |first6=Rebecca |last7=Salas-Gismondi |first7=Rodolfo |last8=Benites-Palomino |first8=Aldo |last9=Post |first9=Klaas |last10=de Muizon |first10=Christian |last11=Bosio |first11=Giulia |last12=Di Celma |first12=Claudio |last13=Malinverno |first13=Elisa |last14=Pierantoni |first14=Pietro Paolo |last15=Villa |first15=Igor Maria |last16=Amson |first16=Eli |title=A heavyweight early whale pushes the boundaries of vertebrate morphology |journal=Nature |date=August 2023 |volume=620 |issue=7975 |pages=824–829 |doi=10.1038/s41586-023-06381-1 |pmid=37532931 |bibcode=2023Natur.620..824B |s2cid=260433513 |url=https://www.researchgate.net/publication/372854673 |language=en |issn=1476-4687|url-access=subscription}}</ref>
**Whale ''[[Perucetus colossus]]'' of the [[Eocene]] is shown to potentially be Earth's [[Largest and heaviest animals|heaviest-ever]] animal with 85–340 t.<ref>{{#invoke:cite news||title=The heaviest animal ever may be this ancient whale found in the Peruvian desert |url=https://apnews.com/article/ancient-whale-heaviest-animal-d4e4c1b8eb58bb0ee9702052f6adb457 |access-date=30 September 2023 |work=AP News |date=2 August 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Bianucci |first1=Giovanni |last2=Lambert |first2=Olivier |last3=Urbina |first3=Mario |last4=Merella |first4=Marco |last5=Collareta |first5=Alberto |last6=Bennion |first6=Rebecca |last7=Salas-Gismondi |first7=Rodolfo |last8=Benites-Palomino |first8=Aldo |last9=Post |first9=Klaas |last10=de Muizon |first10=Christian |last11=Bosio |first11=Giulia |last12=Di Celma |first12=Claudio |last13=Malinverno |first13=Elisa |last14=Pierantoni |first14=Pietro Paolo |last15=Villa |first15=Igor Maria |last16=Amson |first16=Eli |title=A heavyweight early whale pushes the boundaries of vertebrate morphology |journal=Nature |date=August 2023 |volume=620 |issue=7975 |pages=824–829 |doi=10.1038/s41586-023-06381-1 |pmid=37532931 |bibcode=2023Natur.620..824B |s2cid=260433513 |url=https://www.researchgate.net/publication/372854673 |language=en |issn=1476-4687|url-access=subscription}}</ref>
[[File:Dogxim (cropped).png|thumb|[[#3 August|3 August]]: [[Dogxim]], the first known [[Pampas fox|fox]]–[[domesticated dog|dog]] [[Hybrid (biology)|hybrid]] is reported.]]
[[File:Dogxim (cropped).png|thumb|[[#3 August|3 August]]: [[Dogxim]], the first known [[Pampas fox|fox]]–[[domesticated dog|dog]] [[Hybrid (biology)|hybrid]] is reported.]]
Line 274: Line 276:
*{{vanchor|11 August}}
*{{vanchor|11 August}}
**The rise in [[photosynthesis]] rates around the world caused by the [[Carbon dioxide in Earth's atmosphere|increase of carbon dioxide]] is found to have slowed dramatically in the 21st century, as the atmosphere has grown drier.<ref>{{#invoke:cite news||title=Study suggests rise in global photosynthesis rate due to increase in carbon dioxide has slowed |work=Phys.org|url=https://phys.org/news/2023-08-global-photosynthesis-due-carbon-dioxide.html|date=11 August 2023|access-date=12 August 2023 |first1=Bob|last1=Yirka}}</ref><ref>{{#invoke:cite journal||last1=Li |first1=Fei |last2=Xiao |first2=Jingfeng |last3=Chen |first3=Jiquan |last4=Ballantyne |first4=Ashley |last5=Jin |first5=Ke |last6=Li |first6=Bing |last7=Abraha |first7=Michael |last8=John |first8=Ranjeet |title=Global water use efficiency saturation due to increased vapor pressure deficit |journal=Science |date=11 August 2023 |volume=381 |issue=6658 |pages=672–677 |doi=10.1126/science.adf5041 |pmid=37561856 |bibcode=2023Sci...381..672L |s2cid=260776381 |url=https://www.science.org/doi/10.1126/science.adf5041 |language=en |issn=0036-8075|url-access=subscription}}</ref>
**The rise in [[photosynthesis]] rates around the world caused by the [[Carbon dioxide in Earth's atmosphere|increase of carbon dioxide]] is found to have slowed dramatically in the 21st century, as the atmosphere has grown drier.<ref>{{#invoke:cite news||title=Study suggests rise in global photosynthesis rate due to increase in carbon dioxide has slowed |work=Phys.org|url=https://phys.org/news/2023-08-global-photosynthesis-due-carbon-dioxide.html|date=11 August 2023|access-date=12 August 2023 |first1=Bob|last1=Yirka}}</ref><ref>{{#invoke:cite journal||last1=Li |first1=Fei |last2=Xiao |first2=Jingfeng |last3=Chen |first3=Jiquan |last4=Ballantyne |first4=Ashley |last5=Jin |first5=Ke |last6=Li |first6=Bing |last7=Abraha |first7=Michael |last8=John |first8=Ranjeet |title=Global water use efficiency saturation due to increased vapor pressure deficit |journal=Science |date=11 August 2023 |volume=381 |issue=6658 |pages=672–677 |doi=10.1126/science.adf5041 |pmid=37561856 |bibcode=2023Sci...381..672L |s2cid=260776381 |url=https://www.science.org/doi/10.1126/science.adf5041 |language=en |issn=0036-8075|url-access=subscription}}</ref>
**A global consortium releases two studies and a database on DNA methylation profiles across 348 mammalian species for use in [[epigenetic clock]]s. They provide various new results [[Life extension|relating to human aging and animal experiments]] as well as predictive models that can estimate mammalian tissue age or risk with high accuracy.<ref>{{#invoke:cite journal||last1=Haghani |first1=Amin |last2=Li |first2=Caesar Z. |last3=Robeck |first3=Todd R. |display-authors=et al. |title=DNA methylation networks underlying mammalian traits |journal=Science |date=11 August 2023 |volume=381 |issue=6658 |pages=eabq5693 |doi=10.1126/science.abq5693 |pmid=37561875 |issn=0036-8075|biorxiv=10.1101/2021.03.16.435708|s2cid=260776387 |url=https://www.researchgate.net/publication/373045035|hdl=20.500.11820/eaafb00f-2c73-44ba-91ec-bc9b304f0bdd |hdl-access=free }}
**A global consortium releases two studies and a database on DNA methylation profiles across 348 mammalian species for use in [[epigenetic clock]]s. They provide various new results [[Life extension|relating to human aging and animal experiments]] as well as predictive models that can estimate mammalian tissue age or risk with high accuracy.<ref>{{#invoke:cite journal||last1=Haghani |first1=Amin |last2=Li |first2=Caesar Z. |last3=Robeck |first3=Todd R. |display-authors=et al. |title=DNA methylation networks underlying mammalian traits |journal=Science |date=11 August 2023 |volume=381 |issue=6658 |pages=eabq5693 |doi=10.1126/science.abq5693 |pmid=37561875 |pmc=11180965 |issn=0036-8075|biorxiv=10.1101/2021.03.16.435708|s2cid=260776387 |url=https://www.researchgate.net/publication/373045035|hdl=20.500.11820/eaafb00f-2c73-44ba-91ec-bc9b304f0bdd |hdl-access=free }}
* University press release: {{#invoke:cite news||title=Global consortium creates database and universal 'clock' to estimate age in all mammalian tissues |url=https://medicalxpress.com/news/2023-08-global-consortium-database-universal-clock.html |access-date=5 October 2023 |work=University of California, Los Angeles via medicalxpress.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Lu |first1=A. T. |last2=Fei |first2=Z. |last3=Haghani |first3=A. |last4=Robeck |first4=T. R. |display-authors=et al. |title=Universal DNA methylation age across mammalian tissues |journal=Nature Aging |date=September 2023 |volume=3 |issue=9 |pages=1144–1166 |doi=10.1038/s43587-023-00462-6 |pmid=37563227 |pmc=10501909 |language=en |issn=2662-8465|doi-access=free}}</ref> On 16 August, a study indicates [[chest radiograph]]s evaluated using AI could be a performant biomarker for [[aging clock]]s.<!--https://www.euronews.com/next/2023/08/19/ageing-gracefully-ai-can-predict-what-your-true-age-is-and-how-long-youll-live-using-just- --><ref>{{#invoke:cite journal||last1=Mitsuyama |first1=Yasuhito |last2=Matsumoto |first2=Toshimasa |last3=Tatekawa |first3=Hiroyuki |last4=Walston |first4=Shannon L |last5=Kimura |first5=Tatsuo |last6=Yamamoto |first6=Akira |last7=Watanabe |first7=Toshio |last8=Miki |first8=Yukio |last9=Ueda |first9=Daiju |title=Chest radiography as a biomarker of ageing: artificial intelligence-based, multi-institutional model development and validation in Japan |journal=The Lancet Healthy Longevity |date=September 2023 |volume=4 |issue=9 |pages=e478–e486 |doi=10.1016/S2666-7568(23)00133-2|pmid=37597530 |doi-access=free}}</ref>
* University press release: {{#invoke:cite news||title=Global consortium creates database and universal 'clock' to estimate age in all mammalian tissues |url=https://medicalxpress.com/news/2023-08-global-consortium-database-universal-clock.html |access-date=5 October 2023 |work=University of California, Los Angeles via medicalxpress.com |language=en}}</ref><ref>{{#invoke:cite journal||last1=Lu |first1=A. T. |last2=Fei |first2=Z. |last3=Haghani |first3=A. |last4=Robeck |first4=T. R. |display-authors=et al. |title=Universal DNA methylation age across mammalian tissues |journal=Nature Aging |date=September 2023 |volume=3 |issue=9 |pages=1144–1166 |doi=10.1038/s43587-023-00462-6 |pmid=37563227 |pmc=10501909 |language=en |issn=2662-8465|doi-access=free}}</ref> On 16 August, a study indicates [[chest radiograph]]s evaluated using AI could be a performant biomarker for [[aging clock]]s.<!--https://www.euronews.com/next/2023/08/19/ageing-gracefully-ai-can-predict-what-your-true-age-is-and-how-long-youll-live-using-just- --><ref>{{#invoke:cite journal||last1=Mitsuyama |first1=Yasuhito |last2=Matsumoto |first2=Toshimasa |last3=Tatekawa |first3=Hiroyuki |last4=Walston |first4=Shannon L |last5=Kimura |first5=Tatsuo |last6=Yamamoto |first6=Akira |last7=Watanabe |first7=Toshio |last8=Miki |first8=Yukio |last9=Ueda |first9=Daiju |title=Chest radiography as a biomarker of ageing: artificial intelligence-based, multi-institutional model development and validation in Japan |journal=The Lancet Healthy Longevity |date=September 2023 |volume=4 |issue=9 |pages=e478–e486 |doi=10.1016/S2666-7568(23)00133-2|pmid=37597530 |doi-access=free}}</ref>
*{{vanchor|12 August}} – Amateur astronomer Hideo Nishimura announces the discovery of Comet Nishimura (officially, "[[C/2023 P1 (Nishimura)]]"), a [[long-period comet]] that may be observable in the first days of September 2023 before sunrise.<ref name="NYT-20230908">{{#invoke:cite news||last=Miller |first=Katrina |title=Don't Miss Comet Nishimura This Weekend, a Once-in-a-Lifetime View – For the next few mornings, just before sunrise, the cosmic snowball will glow green low on the horizon. |url=https://www.nytimes.com/2023/09/08/science/comet-nishimura.html |date=8 September 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20230909015534/https://www.nytimes.com/2023/09/08/science/comet-nishimura.html |archive-date=9 September 2023 |access-date=9 September 2023 }}</ref>
*{{vanchor|12 August}} – Amateur astronomer Hideo Nishimura announces the discovery of Comet Nishimura (officially, "[[C/2023 P1 (Nishimura)]]"), a [[long-period comet]] that may be observable in the first days of September 2023 before sunrise.<ref name="NYT-20230908">{{#invoke:cite news||last=Miller |first=Katrina |title=Don't Miss Comet Nishimura This Weekend, a Once-in-a-Lifetime View – For the next few mornings, just before sunrise, the cosmic snowball will glow green low on the horizon. |url=https://www.nytimes.com/2023/09/08/science/comet-nishimura.html |date=8 September 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20230909015534/https://www.nytimes.com/2023/09/08/science/comet-nishimura.html |archive-date=9 September 2023 |access-date=9 September 2023 }}</ref>
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*{{vanchor|31 August}} – Researchers report, based on genetic studies, that a [[human ancestor]] [[population bottleneck]] (from a possible 100,000 to 1,000 individuals) occurred "around 930,000 and 813,000 years ago ... lasted for about 117,000 years and brought human ancestors close to extinction."<ref name="NYT-20230831">{{#invoke:cite news||last=Zimmer |first=Carl |author-link=Carl Zimmer |title=Humanity's Ancestors Nearly Died Out, Genetic Study Suggests – The population crashed following climate change about 930,000 years ago, scientists concluded. Other experts aren't convinced by the analysis. |url=https://www.nytimes.com/2023/08/31/science/human-survival-bottleneck.html |date=31 August 2023 |work=[[the New York Times]] |url-status=live |archive-url= https://archive.today/20230831182259/https://www.nytimes.com/2023/08/31/science/human-survival-bottleneck.html |archive-date=31 August 2023 |access-date=2 September 2023 }}</ref><ref name="SCI-20230831">{{#invoke:cite journal||author=Hu, Wangjie |display-authors=et al. |title=Genomic inference of a severe human bottleneck during the Early to Middle Pleistocene transition |url=https://www.researchgate.net/publication/373553749 |date=31 August 2023 |journal=[[Science (journal)|Science]] |volume=381 |issue=6661 |pages=979–984 |doi=10.1126/science.abq7487 |pmid=37651513 |bibcode=2023Sci...381..979H |s2cid=261396309 |url-status=live |archive-url=https://archive.today/20230901024052/https://www.science.org/doi/10.1126/science.abq7487 |archive-date=1 September 2023 |access-date=2 September 2023 }}</ref>
*{{vanchor|31 August}} – Researchers report, based on genetic studies, that a [[human ancestor]] [[population bottleneck]] (from a possible 100,000 to 1,000 individuals) occurred "around 930,000 and 813,000 years ago ... lasted for about 117,000 years and brought human ancestors close to extinction."<ref name="NYT-20230831">{{#invoke:cite news||last=Zimmer |first=Carl |author-link=Carl Zimmer |title=Humanity's Ancestors Nearly Died Out, Genetic Study Suggests – The population crashed following climate change about 930,000 years ago, scientists concluded. Other experts aren't convinced by the analysis. |url=https://www.nytimes.com/2023/08/31/science/human-survival-bottleneck.html |date=31 August 2023 |work=[[the New York Times]] |url-status=live |archive-url= https://archive.today/20230831182259/https://www.nytimes.com/2023/08/31/science/human-survival-bottleneck.html |archive-date=31 August 2023 |access-date=2 September 2023 }}</ref><ref name="SCI-20230831">{{#invoke:cite journal||author=Hu, Wangjie |display-authors=et al. |title=Genomic inference of a severe human bottleneck during the Early to Middle Pleistocene transition |url=https://www.researchgate.net/publication/373553749 |date=31 August 2023 |journal=[[Science (journal)|Science]] |volume=381 |issue=6661 |pages=979–984 |doi=10.1126/science.abq7487 |pmid=37651513 |bibcode=2023Sci...381..979H |s2cid=261396309 |url-status=live |archive-url=https://archive.today/20230901024052/https://www.science.org/doi/10.1126/science.abq7487 |archive-date=1 September 2023 |access-date=2 September 2023 }}</ref>
[[File:1994- Global average temperature during June-July-August.svg|thumb|2023's June–July–August season was the warmest on record globally by a large margin, as El Niño conditions continued to develop.<ref name=Copernicus_202309>{{#invoke:cite web||title=August Climate Bulletins / Summer 2023: the hottest on record |url=https://climate.copernicus.eu/summer-2023-hottest-record |publisher=Copernicus Programme |archive-url=https://web.archive.org/web/20230908232623/https://climate.copernicus.eu/summer-2023-hottest-record |archive-date=8 September 2023 |date=6 September 2023 |url-status=live}}</ref>]]
[[File:1994- Global average temperature during June-July-August.svg|thumb|2023's June–July–August season was the warmest on record globally by a large margin, as El Niño conditions continued to develop.<ref name=Copernicus_202309>{{#invoke:cite web||title=August Climate Bulletins / Summer 2023: the hottest on record |url=https://climate.copernicus.eu/summer-2023-hottest-record |publisher=Copernicus Programme |archive-url=https://web.archive.org/web/20230908232623/https://climate.copernicus.eu/summer-2023-hottest-record |archive-date=8 September 2023 |date=6 September 2023 |url-status=live}}</ref>]]
*{{vanchor|Innovations_August|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: [[Artificial intelligence in healthcare|AI]]-supported [[mammography screening]] is demonstrated to have the potential to substantially reduce workload and to possibly improve cancer detection rates (1 Aug),<!--https://edition.cnn.com/2023/08/01/health/ai-breast-cancer-detection/index.html--><ref>{{#invoke:cite journal||last1=Lång |first1=Kristina |last2=Josefsson |first2=Viktoria |last3=Larsson |first3=Anna-Maria |last4=Larsson |first4=Stefan |last5=Högberg |first5=Charlotte |last6=Sartor |first6=Hanna |last7=Hofvind |first7=Solveig |last8=Andersson |first8=Ingvar |last9=Rosso |first9=Aldana |title=Artificial intelligence-supported screen reading versus standard double reading in the Mammography Screening with Artificial Intelligence trial (MASAI): a clinical safety analysis of a randomised, controlled, non-inferiority, single-blinded, screening accuracy study |journal=The Lancet Oncology |date=August 2023 |volume=24 |issue=8 |pages=936–944 |doi=10.1016/S1470-2045(23)00298-X |pmid=37541274 |hdl=10037/32977 |s2cid=260414569 |url=https://www.thelancet.com/journals/lanonc/article/PIIS1470-2045(23)00298-X/fulltext|url-access=subscription}}</ref> a [[scientific review|review]] outlines applications and challenges of using AI [[Metascience|to accelerate science]] (2 Aug),<!--https://www.theregister.com/2023/08/02/beyond_the_hype_ai_promises/--><ref>{{#invoke:cite journal||last1=Wang |first1=Hanchen |last2=Fu |first2=Tianfan |last3=Du |first3=Yuanqi |last4=Gao |first4=Wenhao |last5=Huang |first5=Kexin |last6=Liu |first6=Ziming |last7=Chandak |first7=Payal |last8=Liu |first8=Shengchao |last9=Van Katwyk |first9=Peter |last10=Deac |first10=Andreea |last11=Anandkumar |first11=Anima |last12=Bergen |first12=Karianne |last13=Gomes |first13=Carla P. |last14=Ho |first14=Shirley |last15=Kohli |first15=Pushmeet |last16=Lasenby |first16=Joan |last17=Leskovec |first17=Jure |last18=Liu |first18=Tie-Yan |last19=Manrai |first19=Arjun |last20=Marks |first20=Debora |last21=Ramsundar |first21=Bharath |last22=Song |first22=Le |last23=Sun |first23=Jimeng |last24=Tang |first24=Jian |last25=Veličković |first25=Petar |last26=Welling |first26=Max |last27=Zhang |first27=Linfeng |last28=Coley |first28=Connor W. |last29=Bengio |first29=Yoshua |last30=Zitnik |first30=Marinka |title=Scientific discovery in the age of artificial intelligence |journal=Nature |date=August 2023 |volume=620 |issue=7972 |pages=47–60 |doi=10.1038/s41586-023-06221-2 |pmid=37532811 |bibcode=2023Natur.620...47W |s2cid=260384616 |url=https://cs.stanford.edu/~jure/pubs/discovery-nature23.pdf |language=en |issn=1476-4687}}</ref> a low-cost method for targeted long-read [[RNA sequencing]] that could accelerate development of diagnostics and treatments (TEQUILA-seq) (8 Aug),<ref>{{#invoke:cite journal||last1=Wang |first1=Feng |last2=Xu |first2=Yang |last3=Wang |first3=Robert |last4=Zhang |first4=Beatrice |last5=Smith |first5=Noah |last6=Notaro |first6=Amber |last7=Gaerlan |first7=Samantha |last8=Kutschera |first8=Eric |last9=Kadash-Edmondson |first9=Kathryn E. |last10=Xing |first10=Yi |last11=Lin |first11=Lan |title=TEQUILA-seq: a versatile and low-cost method for targeted long-read RNA sequencing |journal=Nature Communications |date=8 August 2023 |volume=14 |issue=1 |page=4760 |doi=10.1038/s41467-023-40083-6 |pmid=37553321 |pmc=10409798 |bibcode=2023NatCo..14.4760W |language=en |issn=2041-1723|doi-access=free}}</ref> a new [[List of biological databases#Amino acid / protein databases|separate protein database]] ranks proteins based on how little is known about them (Unknome) (8 Aug),<!--https://www.wired.com/story/unknome-proteins-human-genome/--><ref>{{#invoke:cite journal||last1=Rocha |first1=João J. |last2=Jayaram |first2=Satish Arcot |last3=Stevens |first3=Tim J. |last4=Muschalik |first4=Nadine |last5=Shah |first5=Rajen D. |last6=Emran |first6=Sahar |last7=Robles |first7=Cristina |last8=Freeman |first8=Matthew |last9=Munro |first9=Sean |title=Functional unknomics: Systematic screening of conserved genes of unknown function |journal=PLOS Biology |date=8 August 2023 |volume=21 |issue=8 |pages=e3002222 |doi=10.1371/journal.pbio.3002222 |pmid=37552676 |pmc=10409296 |language=en |issn=1545-7885|doi-access=free}}</ref> the company that built the world's first hydrogen trains switches to [[Railway electrification|electric]] models since they are "cheaper to operate" (9 Aug),<ref>{{#invoke:cite news||last1=Papadopoulos |first1=Loukia |title=First adopter of hydrogen trains switches to electric models |url=https://interestingengineering.com/transportation/first-adopter-of-hydrogen-trains-switches-to-electric-models |access-date=7 October 2023 |work=interestingengineering.com |date=10 August 2023}}</ref> a [[cryopreservation]] method for extinction-threatened corals (23 Aug),<!--https://www.sciencenews.org/article/adult-coral-frozen-survive-climate-change--><ref>{{#invoke:cite journal||last1=Powell-Palm |first1=Matthew J. |last2=Henley |first2=E. Michael |last3=Consiglio |first3=Anthony N. |last4=Lager |first4=Claire |last5=Chang |first5=Brooke |last6=Perry |first6=Riley |last7=Fitzgerald |first7=Kendall |last8=Daly |first8=Jonathan |last9=Rubinsky |first9=Boris |last10=Hagedorn |first10=Mary |title=Cryopreservation and revival of Hawaiian stony corals using isochoric vitrification |journal=Nature Communications |date=23 August 2023 |volume=14 |issue=1 |page=4859 |doi=10.1038/s41467-023-40500-w |pmid=37612315 |pmc=10447501 |bibcode=2023NatCo..14.4859P |language=en |issn=2041-1723|doi-access=free}}</ref> a [[CRISPR gene editing|CRISPR]]-free [[base editing]] system without [[guide RNA]] that enables also editing [[chloroplast]] and [[mitochondrial DNA|mitochondrial]] genomes with precision (CyDENT) (28 Aug).<!--https://interestingengineering.com/innovation/chinese-scientists-report-gene-editing-tool-better-than-crispr--><ref>{{#invoke:cite journal||last1=Hu |first1=Jiacheng |last2=Sun |first2=Yu |last3=Li |first3=Boshu |last4=Liu |first4=Zhen |last5=Wang |first5=Zhiwei |last6=Gao |first6=Qiang |last7=Guo |first7=Mengyue |last8=Liu |first8=Guanwen |last9=Zhao |first9=Kevin Tianmeng |last10=Gao |first10=Caixia |title=Strand-preferred base editing of organellar and nuclear genomes using CyDENT |journal=Nature Biotechnology |date=28 August 2023 |pages=1–10 |doi=10.1038/s41587-023-01910-9 |pmid=37640945 |s2cid=261318917 |url=https://www.researchgate.net/publication/373481221 |language=en |issn=1546-1696|url-access=subscription}}
*{{vanchor|Innovations_August|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: [[Artificial intelligence in healthcare|AI]]-supported [[mammography screening]] is demonstrated to have the potential to substantially reduce workload and to possibly improve cancer detection rates (1 Aug),<!--https://edition.cnn.com/2023/08/01/health/ai-breast-cancer-detection/index.html--><ref>{{#invoke:cite journal||last1=Lång |first1=Kristina |last2=Josefsson |first2=Viktoria |last3=Larsson |first3=Anna-Maria |last4=Larsson |first4=Stefan |last5=Högberg |first5=Charlotte |last6=Sartor |first6=Hanna |last7=Hofvind |first7=Solveig |last8=Andersson |first8=Ingvar |last9=Rosso |first9=Aldana |title=Artificial intelligence-supported screen reading versus standard double reading in the Mammography Screening with Artificial Intelligence trial (MASAI): a clinical safety analysis of a randomised, controlled, non-inferiority, single-blinded, screening accuracy study |journal=The Lancet Oncology |date=August 2023 |volume=24 |issue=8 |pages=936–944 |doi=10.1016/S1470-2045(23)00298-X |pmid=37541274 |hdl=10037/32977 |s2cid=260414569 |url=https://www.thelancet.com/journals/lanonc/article/PIIS1470-2045(23)00298-X/fulltext|url-access=subscription}}</ref> a [[scientific review|review]] outlines applications and challenges of using AI [[Metascience|to accelerate science]] (2 Aug),<!--https://www.theregister.com/2023/08/02/beyond_the_hype_ai_promises/--><ref>{{#invoke:cite journal||last1=Wang |first1=Hanchen |last2=Fu |first2=Tianfan |last3=Du |first3=Yuanqi |last4=Gao |first4=Wenhao |last5=Huang |first5=Kexin |last6=Liu |first6=Ziming |last7=Chandak |first7=Payal |last8=Liu |first8=Shengchao |last9=Van Katwyk |first9=Peter |last10=Deac |first10=Andreea |last11=Anandkumar |first11=Anima |last12=Bergen |first12=Karianne |last13=Gomes |first13=Carla P. |last14=Ho |first14=Shirley |last15=Kohli |first15=Pushmeet |last16=Lasenby |first16=Joan |last17=Leskovec |first17=Jure |last18=Liu |first18=Tie-Yan |last19=Manrai |first19=Arjun |last20=Marks |first20=Debora |last21=Ramsundar |first21=Bharath |last22=Song |first22=Le |last23=Sun |first23=Jimeng |last24=Tang |first24=Jian |last25=Veličković |first25=Petar |last26=Welling |first26=Max |last27=Zhang |first27=Linfeng |last28=Coley |first28=Connor W. |last29=Bengio |first29=Yoshua |last30=Zitnik |first30=Marinka |title=Scientific discovery in the age of artificial intelligence |journal=Nature |date=August 2023 |volume=620 |issue=7972 |pages=47–60 |doi=10.1038/s41586-023-06221-2 |pmid=37532811 |bibcode=2023Natur.620...47W |s2cid=260384616 |url=https://cs.stanford.edu/~jure/pubs/discovery-nature23.pdf |language=en |issn=1476-4687}}</ref> a low-cost method for targeted long-read [[RNA sequencing]] that could accelerate development of diagnostics and treatments (TEQUILA-seq) (8 Aug),<ref>{{#invoke:cite journal||last1=Wang |first1=Feng |last2=Xu |first2=Yang |last3=Wang |first3=Robert |last4=Zhang |first4=Beatrice |last5=Smith |first5=Noah |last6=Notaro |first6=Amber |last7=Gaerlan |first7=Samantha |last8=Kutschera |first8=Eric |last9=Kadash-Edmondson |first9=Kathryn E. |last10=Xing |first10=Yi |last11=Lin |first11=Lan |title=TEQUILA-seq: a versatile and low-cost method for targeted long-read RNA sequencing |journal=Nature Communications |date=8 August 2023 |volume=14 |issue=1 |page=4760 |doi=10.1038/s41467-023-40083-6 |pmid=37553321 |pmc=10409798 |bibcode=2023NatCo..14.4760W |language=en |issn=2041-1723|doi-access=free}}</ref> a new [[List of biological databases#Amino acid / protein databases|separate protein database]] ranks proteins based on how little is known about them (Unknome) (8 Aug),<!--https://www.wired.com/story/unknome-proteins-human-genome/--><ref>{{#invoke:cite journal||last1=Rocha |first1=João J. |last2=Jayaram |first2=Satish Arcot |last3=Stevens |first3=Tim J. |last4=Muschalik |first4=Nadine |last5=Shah |first5=Rajen D. |last6=Emran |first6=Sahar |last7=Robles |first7=Cristina |last8=Freeman |first8=Matthew |last9=Munro |first9=Sean |title=Functional unknomics: Systematic screening of conserved genes of unknown function |journal=PLOS Biology |date=8 August 2023 |volume=21 |issue=8 |pages=e3002222 |doi=10.1371/journal.pbio.3002222 |pmid=37552676 |pmc=10409296 |language=en |issn=1545-7885|doi-access=free}}</ref> the company that built the world's first hydrogen trains switches to [[Railway electrification|electric]] models since they are "cheaper to operate" (9 Aug),<ref>{{#invoke:cite news||last1=Papadopoulos |first1=Loukia |title=First adopter of hydrogen trains switches to electric models |url=https://interestingengineering.com/transportation/first-adopter-of-hydrogen-trains-switches-to-electric-models |access-date=7 October 2023 |work=interestingengineering.com |date=10 August 2023}}</ref> a [[cryopreservation]] method for extinction-threatened corals (23 Aug),<!--https://www.sciencenews.org/article/adult-coral-frozen-survive-climate-change--><ref>{{#invoke:cite journal||last1=Powell-Palm |first1=Matthew J. |last2=Henley |first2=E. Michael |last3=Consiglio |first3=Anthony N. |last4=Lager |first4=Claire |last5=Chang |first5=Brooke |last6=Perry |first6=Riley |last7=Fitzgerald |first7=Kendall |last8=Daly |first8=Jonathan |last9=Rubinsky |first9=Boris |last10=Hagedorn |first10=Mary |title=Cryopreservation and revival of Hawaiian stony corals using isochoric vitrification |journal=Nature Communications |date=23 August 2023 |volume=14 |issue=1 |page=4859 |doi=10.1038/s41467-023-40500-w |pmid=37612315 |pmc=10447501 |bibcode=2023NatCo..14.4859P |language=en |issn=2041-1723|doi-access=free}}</ref> a [[CRISPR gene editing|CRISPR]]-free [[base editing]] system without [[guide RNA]] that enables also editing [[chloroplast]] and [[mitochondrial DNA|mitochondrial]] genomes with precision (CyDENT) (28 Aug).<!--https://interestingengineering.com/innovation/chinese-scientists-report-gene-editing-tool-better-than-crispr--><ref>{{#invoke:cite journal||last1=Hu |first1=Jiacheng |last2=Sun |first2=Yu |last3=Li |first3=Boshu |last4=Liu |first4=Zhen |last5=Wang |first5=Zhiwei |last6=Gao |first6=Qiang |last7=Guo |first7=Mengyue |last8=Liu |first8=Guanwen |last9=Zhao |first9=Kevin Tianmeng |last10=Gao |first10=Caixia |title=Strand-preferred base editing of organellar and nuclear genomes using CyDENT |journal=Nature Biotechnology |date=28 August 2023 |volume=42 |issue=6 |pages=936–945 |doi=10.1038/s41587-023-01910-9 |pmid=37640945 |s2cid=261318917 |url=https://www.researchgate.net/publication/373481221 |language=en |issn=1546-1696|url-access=subscription}}
* Research institute press release: {{#invoke:cite news||last1=Nannan |first1=Zhang |title=Geneticists develop novel base editors |url=https://phys.org/news/2023-08-geneticists-base-editors.html |access-date=7 October 2023 |work=Chinese Academy of Sciences via phys.org |language=en}}</ref>
* Research institute press release: {{#invoke:cite news||last1=Nannan |first1=Zhang |title=Geneticists develop novel base editors |url=https://phys.org/news/2023-08-geneticists-base-editors.html |access-date=7 October 2023 |work=Chinese Academy of Sciences via phys.org |language=en}}</ref>
* {{vanchor|Hazards_August|text=[[Hazard]] research is published}}: a study demonstrates that exposure [[Microplastics#Humans|to microplastics]] causes neurobehavioral and immunological changes in mammals (mice), varying by age (1 Aug),<!--https://www.euronews.com/next/2023/08/30/microplastics-could-be-widespread-in-organs-and-impact-behaviour-new-study-suggests--><ref>{{#invoke:cite journal||last1=Gaspar |first1=Lauren |last2=Bartman |first2=Sydney |last3=Coppotelli |first3=Giuseppe |last4=Ross |first4=Jaime M. |title=Acute Exposure to Microplastics Induced Changes in Behavior and Inflammation in Young and Old Mice |journal=International Journal of Molecular Sciences |date=January 2023 |volume=24 |issue=15 |page=12308 |doi=10.3390/ijms241512308 |pmid=37569681 |pmc=10418951 |language=en |issn=1422-0067|doi-access=free}}
* {{vanchor|Hazards_August|text=[[Hazard]] research is published}}: a study demonstrates that exposure [[Microplastics#Humans|to microplastics]] causes neurobehavioral and immunological changes in mammals (mice), varying by age (1 Aug),<!--https://www.euronews.com/next/2023/08/30/microplastics-could-be-widespread-in-organs-and-impact-behaviour-new-study-suggests--><ref>{{#invoke:cite journal||last1=Gaspar |first1=Lauren |last2=Bartman |first2=Sydney |last3=Coppotelli |first3=Giuseppe |last4=Ross |first4=Jaime M. |title=Acute Exposure to Microplastics Induced Changes in Behavior and Inflammation in Young and Old Mice |journal=International Journal of Molecular Sciences |date=January 2023 |volume=24 |issue=15 |page=12308 |doi=10.3390/ijms241512308 |pmid=37569681 |pmc=10418951 |language=en |issn=1422-0067|doi-access=free}}
* University press release: {{#invoke:cite news||title=Study finds that microplastics infiltrate all systems of body, cause behavioral changes in mice |url=https://medicalxpress.com/news/2023-08-microplastics-infiltrate-body-behavioral-mice.html |access-date=7 October 2023 |work=University of Rhode Island via medicalxpress.com |language=en}}</ref> a study shows people can't reliably detect speech deepfakes with detection for years-old AI software being at 73% (2 Aug),<!--https://cosmosmagazine.com/technology/ai/detecting-deepfake-audio-can-be-hit-and-miss-for-humans/--><ref>{{#invoke:cite journal||last1=Mai |first1=Kimberly T. |last2=Bray |first2=Sergi |last3=Davies |first3=Toby |last4=Griffin |first4=Lewis D. |title=Warning: Humans cannot reliably detect speech deepfakes |journal=PLOS ONE |date=2 August 2023 |volume=18 |issue=8 |pages=e0285333 |doi=10.1371/journal.pone.0285333 |pmid=37531336 |pmc=10395974 |arxiv=2301.07829 |bibcode=2023PLoSO..1885333M |language=en |issn=1932-6203|doi-access=free}}</ref> researchers report an unprecedented accuracy of reading [[Keystroke logging|keystrokes]] from audio of smartphone-recordings or video-chats (7 Aug),<!--https://arstechnica.com/gadgets/2023/08/type-softly-researchers-can-guess-keystrokes-by-sound-with-93-accuracy/--><ref>{{#invoke:cite book||last1=Harrison |first1=Joshua |last2=Toreini |first2=Ehsan |last3=Mehrnezhad |first3=Maryam |title=2023 IEEE European Symposium on Security and Privacy Workshops (EuroS&PW) |chapter=A Practical Deep Learning-Based Acoustic Side Channel Attack on Keyboards |date=July 2023 |pages=270–280 |doi=10.1109/EuroSPW59978.2023.00034|arxiv=2308.01074 |isbn=979-8-3503-2720-5 |s2cid=260378727 }}</ref> a global survey study of climate policy researchers finds these experts substantially doubt the prevailing [[green growth]] narrative, "underscor[ing] the importance of considering alternative post-growth perspectives" that include approaches of [[agrowth]] and [[degrowth]] (7 Aug),<!--https://www.forbes.com/sites/tilakdoshi/2023/08/25/is-degrowth-now-the-new-green-growth/--><ref>{{#invoke:cite journal||last1=King |first1=Lewis C. |last2=Savin |first2=Ivan |last3=Drews |first3=Stefan |title=Shades of green growth scepticism among climate policy researchers |journal=Nature Sustainability |date=7 August 2023 |volume=6 |issue=11 |pages=1316–1320 |doi=10.1038/s41893-023-01198-2 |bibcode=2023NatSu...6.1316K |s2cid=260176492 |url=https://ssrn.com/abstract=4516544 |language=en |issn=2398-9629}}</ref> a study investigating results from a [[Global Burden of Disease|GBD study]] finds that while age‐standardized number of cardiovascular deaths from [[Particulate matter|PM]] [[air pollution]] have declined during the past three decades, all‐age [[DALY]]s increased by 31%, reaching ~89 million years in 2019, to which [[years of potential life lost]] contributed the most with ~82 million years lost during this year (9 Aug),<!--https://us.cnn.com/2023/08/09/health/heart-problems-dying-prematurely-air-pollution/index.html--><ref>{{#invoke:cite journal||last1=Moradi |first1=Mahsa |last2=Behnoush |first2=Amir Hossein |last3=Abbasi-Kangevari |first3=Mohsen |last4=Saeedi Moghaddam |first4=Sahar |last5=Soleimani |first5=Zahra |last6=Esfahani |first6=Zahra |last7=Naderian |first7=Mohammadreza |last8=Malekpour |first8=Mohammad-Reza |last9=Rezaei |first9=Nazila |last10=Keykhaei |first10=Mohammad |last11=Khanmohammadi |first11=Shaghayegh |last12=Tavolinejad |first12=Hamed |last13=Rezaei |first13=Negar |last14=Larijani |first14=Bagher |last15=Farzadfar |first15=Farshad |title=Particulate Matter Pollution Remains a Threat for Cardiovascular Health: Findings From the Global Burden of Disease 2019 |journal=Journal of the American Heart Association |date=15 August 2023 |volume=12 |issue=16 |pages=e029375 |doi=10.1161/JAHA.123.029375 |pmid=37555373 |pmc=10492946 |language=en |issn=2047-9980}}</ref> a study indicates a third of men worldwide are infected with [[genital human papillomavirus]] which is relevant to [[cancer prevention]], long-term sequelae and vaccination (16 Aug),<!--https://www.who.int/news/item/01-09-2023-one-in-three-men-worldwide-are-infected-with-genital-human-papillomavirus--><ref>{{#invoke:cite journal||last1=Bruni |first1=Laia |last2=Albero |first2=Ginesa |last3=Rowley |first3=Jane |last4=Alemany |first4=Laia |last5=Arbyn |first5=Marc |last6=Giuliano |first6=Anna R |last7=Markowitz |first7=Lauri E |last8=Broutet |first8=Nathalie |last9=Taylor |first9=Melanie |title=Global and regional estimates of genital human papillomavirus prevalence among men: a systematic review and meta-analysis |journal=The Lancet Global Health |date=September 2023 |volume=11 |issue=9 |pages=e1345–e1362 |doi=10.1016/S2214-109X(23)00305-4|pmid=37591583 |pmc=10447222 }}</ref> a [[preprint]] confirms [[smart bulb]]s may often be one of the weakest links that can be used to [[Internet of things#Security|gain access]] to a nearby person's Wi-Fi network (17 Aug),<!--https://techxplore.com/news/2023-08-tp-link-tapo-smart-bulb-vulnerable.html--><ref>{{#invoke:cite book||last1=Bonaventura |first1=Davide |last2=Esposito |first2=Sergio |last3=Bella |first3=Giampaolo |title=Proceedings of the 20th International Conference on Security and Cryptography |chapter=Smart Bulbs can be Hacked to Hack into your Household |pages=218–229 |doi=10.5220/0012092900003555 |date=2023|arxiv=2308.09019 |isbn=978-989-758-666-8 |s2cid=259890373 }}</ref> a [[Global Burden of Disease|GBD]] study projects cure-less [[osteoarthritis]] to affect nearly one billion people by 2050 (21 Aug),<!--https://www.upi.com/Health_News/2023/08/22/billion-cases-arthritis/7281692712160/--><ref>{{#invoke:cite journal||last1=Steinmetz |first1=Jaimie D |last2=Culbreth |first2=Garland T |last3=Haile |first3=Lydia M |last4=Rafferty |first4=Quinn |display-authors=et al. |title=Global, regional, and national burden of osteoarthritis, 1990–2020 and projections to 2050: a systematic analysis for the Global Burden of Disease Study 2021 |journal=The Lancet Rheumatology |date=September 2023 |volume=5 |issue=9 |pages=e508–e522 |doi=10.1016/S2665-9913(23)00163-7|pmid=37675071 |pmc=10477960 |doi-access=free}}</ref> a study indicates that all types of [[Drinking straw|straws]], including paper straws, except for those made of stainless steel and few exceptions, expose people and their environments to [[Per- and polyfluoroalkyl substances|PFAS]] (24 Aug),<!--https://www.nbcnews.com/health/health-news/paper-bamboo-straws-contain-pfas-forever-chemicals-rcna101614--><ref>{{#invoke:cite journal||last1=Boisacq |first1=Pauline |last2=De Keuster |first2=Maarten |last3=Prinsen |first3=Els |last4=Jeong |first4=Yunsun |last5=Bervoets |first5=Lieven |last6=Eens |first6=Marcel |last7=Covaci |first7=Adrian |last8=Willems |first8=Tim |last9=Groffen |first9=Thimo |title=Assessment of poly- and perfluoroalkyl substances (PFAS) in commercially available drinking straws using targeted and suspect screening approaches |journal=Food Additives & Contaminants: Part A |date=2 September 2023 |volume=40 |issue=9 |pages=1230–1241 |doi=10.1080/19440049.2023.2240908 |pmid=37619405 |s2cid=261120750 |language=en |issn=1944-0049|doi-access=free }}</ref> a study indicates cannabis is often a source of exposure to the contaminants [[Cadmium#Biological role and research|cadmium]] and [[Lead#Biological effects|lead]] (30 Aug),<!--https://us.cnn.com/2023/08/30/health/marijuana-heavy-metals-wellness/index.html--><ref>{{#invoke:cite journal||last1=McGraw |first1=Katlyn E. |last2=Nigra |first2=Anne E. |last3=Klett |first3=Joshua |last4=Sobel |first4=Marisa |last5=Oelsner |first5=Elizabeth C. |last6=Navas-Acien |first6=Ana |last7=Hu |first7=Xin |last8=Sanchez |first8=Tiffany R. |title=Blood and Urinary Metal Levels among Exclusive Marijuana Users in NHANES (2005–2018) |journal=Environmental Health Perspectives |date=August 2023 |volume=131 |issue=8 |doi=10.1289/EHP12074 |pmid=37646523 |pmc=10467359 |language=en |issn=0091-6765}}</ref> researchers demonstrate [[Web browser extension]]s can gather passwords from input fields of many of the largest websites (30 Aug).<!--https://techxplore.com/news/2023-09-issue-chrome-extensions-access-private.html--><ref>{{cite arXiv |title=Exposing and Addressing Security Vulnerabilities in Browser Text Input Fields |eprint=2308.16321 |last1=Nayak |first1=Asmit |last2=Khandelwal |first2=Rishabh |last3=Fawaz |first3=Kassem |date=2023 |class=cs.CR }}</ref>
* University press release: {{#invoke:cite news||title=Study finds that microplastics infiltrate all systems of body, cause behavioral changes in mice |url=https://medicalxpress.com/news/2023-08-microplastics-infiltrate-body-behavioral-mice.html |access-date=7 October 2023 |work=University of Rhode Island via medicalxpress.com |language=en}}</ref> a study shows people can't reliably detect speech deepfakes with detection for years-old AI software being at 73% (2 Aug),<!--https://cosmosmagazine.com/technology/ai/detecting-deepfake-audio-can-be-hit-and-miss-for-humans/--><ref>{{#invoke:cite journal||last1=Mai |first1=Kimberly T. |last2=Bray |first2=Sergi |last3=Davies |first3=Toby |last4=Griffin |first4=Lewis D. |title=Warning: Humans cannot reliably detect speech deepfakes |journal=PLOS ONE |date=2 August 2023 |volume=18 |issue=8 |pages=e0285333 |doi=10.1371/journal.pone.0285333 |pmid=37531336 |pmc=10395974 |arxiv=2301.07829 |bibcode=2023PLoSO..1885333M |language=en |issn=1932-6203|doi-access=free}}</ref> researchers report an unprecedented accuracy of reading [[Keystroke logging|keystrokes]] from audio of smartphone-recordings or video-chats (7 Aug),<!--https://arstechnica.com/gadgets/2023/08/type-softly-researchers-can-guess-keystrokes-by-sound-with-93-accuracy/--><ref>{{#invoke:cite book||last1=Harrison |first1=Joshua |last2=Toreini |first2=Ehsan |last3=Mehrnezhad |first3=Maryam |title=2023 IEEE European Symposium on Security and Privacy Workshops (EuroS&PW) |chapter=A Practical Deep Learning-Based Acoustic Side Channel Attack on Keyboards |date=July 2023 |pages=270–280 |doi=10.1109/EuroSPW59978.2023.00034|arxiv=2308.01074 |isbn=979-8-3503-2720-5 |s2cid=260378727 }}</ref> a global survey study of climate policy researchers finds these experts substantially doubt the prevailing [[green growth]] narrative, "underscor[ing] the importance of considering alternative post-growth perspectives" that include approaches of [[agrowth]] and [[degrowth]] (7 Aug),<!--https://www.forbes.com/sites/tilakdoshi/2023/08/25/is-degrowth-now-the-new-green-growth/--><ref>{{#invoke:cite journal||last1=King |first1=Lewis C. |last2=Savin |first2=Ivan |last3=Drews |first3=Stefan |title=Shades of green growth scepticism among climate policy researchers |journal=Nature Sustainability |date=7 August 2023 |volume=6 |issue=11 |pages=1316–1320 |doi=10.1038/s41893-023-01198-2 |bibcode=2023NatSu...6.1316K |s2cid=260176492 |url=https://ssrn.com/abstract=4516544 |language=en |issn=2398-9629}}</ref> a study investigating results from a [[Global Burden of Disease|GBD study]] finds that while age-standardized number of cardiovascular deaths from [[Particulate matter|PM]] [[air pollution]] have declined during the past three decades, all-age [[DALY]]s increased by 31%, reaching ~89 million years in 2019, to which [[years of potential life lost]] contributed the most with ~82 million years lost during this year (9 Aug),<!--https://us.cnn.com/2023/08/09/health/heart-problems-dying-prematurely-air-pollution/index.html--><ref>{{#invoke:cite journal||last1=Moradi |first1=Mahsa |last2=Behnoush |first2=Amir Hossein |last3=Abbasi-Kangevari |first3=Mohsen |last4=Saeedi Moghaddam |first4=Sahar |last5=Soleimani |first5=Zahra |last6=Esfahani |first6=Zahra |last7=Naderian |first7=Mohammadreza |last8=Malekpour |first8=Mohammad-Reza |last9=Rezaei |first9=Nazila |last10=Keykhaei |first10=Mohammad |last11=Khanmohammadi |first11=Shaghayegh |last12=Tavolinejad |first12=Hamed |last13=Rezaei |first13=Negar |last14=Larijani |first14=Bagher |last15=Farzadfar |first15=Farshad |title=Particulate Matter Pollution Remains a Threat for Cardiovascular Health: Findings From the Global Burden of Disease 2019 |journal=Journal of the American Heart Association |date=15 August 2023 |volume=12 |issue=16 |pages=e029375 |doi=10.1161/JAHA.123.029375 |pmid=37555373 |pmc=10492946 |language=en |issn=2047-9980}}</ref> a study indicates a third of men worldwide are infected with [[genital human papillomavirus]] which is relevant to [[cancer prevention]], long-term sequelae and vaccination (16 Aug),<!--https://www.who.int/news/item/01-09-2023-one-in-three-men-worldwide-are-infected-with-genital-human-papillomavirus--><ref>{{#invoke:cite journal||last1=Bruni |first1=Laia |last2=Albero |first2=Ginesa |last3=Rowley |first3=Jane |last4=Alemany |first4=Laia |last5=Arbyn |first5=Marc |last6=Giuliano |first6=Anna R |last7=Markowitz |first7=Lauri E |last8=Broutet |first8=Nathalie |last9=Taylor |first9=Melanie |title=Global and regional estimates of genital human papillomavirus prevalence among men: a systematic review and meta-analysis |journal=The Lancet Global Health |date=September 2023 |volume=11 |issue=9 |pages=e1345–e1362 |doi=10.1016/S2214-109X(23)00305-4|pmid=37591583 |pmc=10447222 }}</ref> a [[preprint]] confirms [[smart bulb]]s may often be one of the weakest links that can be used to [[Internet of things#Security|gain access]] to a nearby person's Wi-Fi network (17 Aug),<!--https://techxplore.com/news/2023-08-tp-link-tapo-smart-bulb-vulnerable.html--><ref>{{#invoke:cite book||last1=Bonaventura |first1=Davide |last2=Esposito |first2=Sergio |last3=Bella |first3=Giampaolo |title=Proceedings of the 20th International Conference on Security and Cryptography |chapter=Smart Bulbs can be Hacked to Hack into your Household |pages=218–229 |doi=10.5220/0012092900003555 |date=2023|arxiv=2308.09019 |isbn=978-989-758-666-8 |s2cid=259890373 }}</ref> a [[Global Burden of Disease|GBD]] study projects cure-less [[osteoarthritis]] to affect nearly one billion people by 2050 (21 Aug),<!--https://www.upi.com/Health_News/2023/08/22/billion-cases-arthritis/7281692712160/--><ref>{{#invoke:cite journal||last1=Steinmetz |first1=Jaimie D |last2=Culbreth |first2=Garland T |last3=Haile |first3=Lydia M |last4=Rafferty |first4=Quinn |display-authors=et al. |title=Global, regional, and national burden of osteoarthritis, 1990–2020 and projections to 2050: a systematic analysis for the Global Burden of Disease Study 2021 |journal=The Lancet Rheumatology |date=September 2023 |volume=5 |issue=9 |pages=e508–e522 |doi=10.1016/S2665-9913(23)00163-7|pmid=37675071 |pmc=10477960 |doi-access=free}}</ref> a study indicates that all types of [[Drinking straw|straws]], including paper straws, except for those made of stainless steel and few exceptions, expose people and their environments to [[Per- and polyfluoroalkyl substances|PFAS]] (24 Aug),<!--https://www.nbcnews.com/health/health-news/paper-bamboo-straws-contain-pfas-forever-chemicals-rcna101614--><ref>{{#invoke:cite journal||last1=Boisacq |first1=Pauline |last2=De Keuster |first2=Maarten |last3=Prinsen |first3=Els |last4=Jeong |first4=Yunsun |last5=Bervoets |first5=Lieven |last6=Eens |first6=Marcel |last7=Covaci |first7=Adrian |last8=Willems |first8=Tim |last9=Groffen |first9=Thimo |title=Assessment of poly- and perfluoroalkyl substances (PFAS) in commercially available drinking straws using targeted and suspect screening approaches |journal=Food Additives & Contaminants: Part A |date=2 September 2023 |volume=40 |issue=9 |pages=1230–1241 |doi=10.1080/19440049.2023.2240908 |pmid=37619405 |s2cid=261120750 |language=en |issn=1944-0049|doi-access=free }}</ref> a study indicates cannabis is often a source of exposure to the contaminants [[Cadmium#Biological role and research|cadmium]] and [[Lead#Biological effects|lead]] (30 Aug),<!--https://us.cnn.com/2023/08/30/health/marijuana-heavy-metals-wellness/index.html--><ref>{{#invoke:cite journal||last1=McGraw |first1=Katlyn E. |last2=Nigra |first2=Anne E. |last3=Klett |first3=Joshua |last4=Sobel |first4=Marisa |last5=Oelsner |first5=Elizabeth C. |last6=Navas-Acien |first6=Ana |last7=Hu |first7=Xin |last8=Sanchez |first8=Tiffany R. |title=Blood and Urinary Metal Levels among Exclusive Marijuana Users in NHANES (2005–2018) |journal=Environmental Health Perspectives |date=August 2023 |volume=131 |issue=8 |doi=10.1289/EHP12074 |pmid=37646523 |pmc=10467359 |language=en |issn=0091-6765}}</ref> researchers demonstrate [[Web browser extension]]s can gather passwords from input fields of many of the largest websites (30 Aug).<!--https://techxplore.com/news/2023-09-issue-chrome-extensions-access-private.html--><ref>{{cite arXiv |title=Exposing and Addressing Security Vulnerabilities in Browser Text Input Fields |eprint=2308.16321 |last1=Nayak |first1=Asmit |last2=Khandelwal |first2=Rishabh |last3=Fawaz |first3=Kassem |date=2023 |class=cs.CR }}</ref>
*{{vanchor|Therapeutics_August|text=Promising results of health and medical research are reported}}: mice- and dogs-tested [[AOH1996]] against cancer growth and for combination with other anti-cancer agents (1 Aug),<!--https://www.science.org/content/blog-post/new-mode-cancer-treatment--><ref>{{#invoke:cite journal||last1=Gu |first1=Long |last2=Li |first2=Min |last3=Li |first3=Caroline M. |last4=Haratipour |first4=Pouya |last5=Lingeman |first5=Robert |last6=Jossart |first6=Jennifer |last7=Gutova |first7=Margarita |last8=Flores |first8=Linda |last9=Hyde |first9=Caitlyn |last10=Kenjić |first10=Nikola |last11=Li |first11=Haiqing |last12=Chung |first12=Vincent |last13=Li |first13=Hongzhi |last14=Lomenick |first14=Brett |last15=Von Hoff |first15=Daniel D. |last16=Synold |first16=Timothy W. |last17=Aboody |first17=Karen S. |last18=Liu |first18=Yilun |last19=Horne |first19=David |last20=Hickey |first20=Robert J. |last21=Perry |first21=J. Jefferson P. |last22=Malkas |first22=Linda H. |title=Small molecule targeting of transcription-replication conflict for selective chemotherapy |journal=Cell Chemical Biology |date=August 2023 |volume=30 |issue=10 |pages=1235–1247.e6 |doi=10.1016/j.chembiol.2023.07.001|pmid=37531956 |pmc=10592352 |s2cid=260397674 }}</ref> a mice-tested engineered probiotic against [[autoimmunity]] in the brain as in multiple sclerosis (9 Aug),<!--https://newatlas.com/medical/probiotic-multiple-sclerosis-therapy-gut-autoimmune/--><ref>{{#invoke:cite journal||last1=Sanmarco |first1=Liliana M. |last2=Rone |first2=Joseph M. |last3=Polonio |first3=Carolina M. |last4=Fernandez Lahore |first4=Gonzalo |last5=Giovannoni |first5=Federico |last6=Ferrara |first6=Kylynne |last7=Gutierrez-Vazquez |first7=Cristina |last8=Li |first8=Ning |last9=Sokolovska |first9=Anna |last10=Plasencia |first10=Agustin |last11=Faust Akl |first11=Camilo |last12=Nanda |first12=Payal |last13=Heck |first13=Evelin S. |last14=Li |first14=Zhaorong |last15=Lee |first15=Hong-Gyun |last16=Chao |first16=Chun-Cheih |last17=Rejano-Gordillo |first17=Claudia M. |last18=Fonseca-Castro |first18=Pedro H. |last19=Illouz |first19=Tomer |last20=Linnerbauer |first20=Mathias |last21=Kenison |first21=Jessica E. |last22=Barilla |first22=Rocky M. |last23=Farrenkopf |first23=Daniel |last24=Stevens |first24=Nikolas A. |last25=Piester |first25=Gavin |last26=Chung |first26=Elizabeth N. |last27=Dailey |first27=Lucas |last28=Kuchroo |first28=Vijay K. |last29=Hava |first29=David |last30=Wheeler |first30=Michael A. |last31=Clish |first31=Clary |last32=Nowarski |first32=Roni |last33=Balsa |first33=Eduardo |last34=Lora |first34=Jose M. |last35=Quintana |first35=Francisco J. |title=Lactate limits CNS autoimmunity by stabilizing HIF-1α in dendritic cells |journal=Nature |date=August 2023 |volume=620 |issue=7975 |pages=881–889 |doi=10.1038/s41586-023-06409-6 |pmid=37558878 |pmc=10725186 |bibcode=2023Natur.620..881S |s2cid=260773893 |url=https://www.researchgate.net/publication/373011577 |language=en |issn=1476-4687|url-access=subscription}}
*{{vanchor|Therapeutics_August|text=Promising results of health and medical research are reported}}: mice- and dogs-tested [[AOH1996]] against cancer growth and for combination with other anti-cancer agents (1 Aug),<!--https://www.science.org/content/blog-post/new-mode-cancer-treatment--><ref>{{#invoke:cite journal||last1=Gu |first1=Long |last2=Li |first2=Min |last3=Li |first3=Caroline M. |last4=Haratipour |first4=Pouya |last5=Lingeman |first5=Robert |last6=Jossart |first6=Jennifer |last7=Gutova |first7=Margarita |last8=Flores |first8=Linda |last9=Hyde |first9=Caitlyn |last10=Kenjić |first10=Nikola |last11=Li |first11=Haiqing |last12=Chung |first12=Vincent |last13=Li |first13=Hongzhi |last14=Lomenick |first14=Brett |last15=Von Hoff |first15=Daniel D. |last16=Synold |first16=Timothy W. |last17=Aboody |first17=Karen S. |last18=Liu |first18=Yilun |last19=Horne |first19=David |last20=Hickey |first20=Robert J. |last21=Perry |first21=J. Jefferson P. |last22=Malkas |first22=Linda H. |title=Small molecule targeting of transcription-replication conflict for selective chemotherapy |journal=Cell Chemical Biology |date=August 2023 |volume=30 |issue=10 |pages=1235–1247.e6 |doi=10.1016/j.chembiol.2023.07.001|pmid=37531956 |pmc=10592352 |s2cid=260397674 }}</ref> a mice-tested engineered probiotic against [[autoimmunity]] in the brain as in multiple sclerosis (9 Aug),<!--https://newatlas.com/medical/probiotic-multiple-sclerosis-therapy-gut-autoimmune/--><ref>{{#invoke:cite journal||last1=Sanmarco |first1=Liliana M. |last2=Rone |first2=Joseph M. |last3=Polonio |first3=Carolina M. |last4=Fernandez Lahore |first4=Gonzalo |last5=Giovannoni |first5=Federico |last6=Ferrara |first6=Kylynne |last7=Gutierrez-Vazquez |first7=Cristina |last8=Li |first8=Ning |last9=Sokolovska |first9=Anna |last10=Plasencia |first10=Agustin |last11=Faust Akl |first11=Camilo |last12=Nanda |first12=Payal |last13=Heck |first13=Evelin S. |last14=Li |first14=Zhaorong |last15=Lee |first15=Hong-Gyun |last16=Chao |first16=Chun-Cheih |last17=Rejano-Gordillo |first17=Claudia M. |last18=Fonseca-Castro |first18=Pedro H. |last19=Illouz |first19=Tomer |last20=Linnerbauer |first20=Mathias |last21=Kenison |first21=Jessica E. |last22=Barilla |first22=Rocky M. |last23=Farrenkopf |first23=Daniel |last24=Stevens |first24=Nikolas A. |last25=Piester |first25=Gavin |last26=Chung |first26=Elizabeth N. |last27=Dailey |first27=Lucas |last28=Kuchroo |first28=Vijay K. |last29=Hava |first29=David |last30=Wheeler |first30=Michael A. |last31=Clish |first31=Clary |last32=Nowarski |first32=Roni |last33=Balsa |first33=Eduardo |last34=Lora |first34=Jose M. |last35=Quintana |first35=Francisco J. |title=Lactate limits CNS autoimmunity by stabilizing HIF-1α in dendritic cells |journal=Nature |date=August 2023 |volume=620 |issue=7975 |pages=881–889 |doi=10.1038/s41586-023-06409-6 |pmid=37558878 |pmc=10725186 |bibcode=2023Natur.620..881S |hdl=10261/353060 |s2cid=260773893 |url=https://www.researchgate.net/publication/373011577 |language=en |issn=1476-4687|url-access=subscription}}
* Research hospital press release: {{#invoke:cite news||title=Engineered probiotic developed to treat multiple sclerosis |url=https://medicalxpress.com/news/2023-08-probiotic-multiple-sclerosis.html |access-date=7 October 2023 |work=medicalxpress.com |language=en}}</ref> mice-tested [[Genetically modified bacteria|engineered bacteria]] to detect cancer DNA (10 Aug),<!--https://cosmosmagazine.com/health/medicine/australian-american-team-engineers-cancer-detecting-bacteria/--><ref>{{#invoke:cite journal||last1=Cooper |first1=Robert M. |last2=Wright |first2=Josephine A. |last3=Ng |first3=Jia Q. |last4=Goyne |first4=Jarrad M. |last5=Suzuki |first5=Nobumi |last6=Lee |first6=Young K. |last7=Ichinose |first7=Mari |last8=Radford |first8=Georgette |last9=Ryan |first9=Feargal J. |last10=Kumar |first10=Shalni |last11=Thomas |first11=Elaine M. |last12=Vrbanac |first12=Laura |last13=Knight |first13=Rob |last14=Woods |first14=Susan L. |last15=Worthley |first15=Daniel L. |last16=Hasty |first16=Jeff |title=Engineered bacteria detect tumor DNA |journal=Science |date=11 August 2023 |volume=381 |issue=6658 |pages=682–686 |doi=10.1126/science.adf3974 |pmid=37561843 |pmc=10852993 |bibcode=2023Sci...381..682C |language=en |issn=0036-8075|biorxiv=10.1101/2021.09.10.459858|s2cid=260776388 }}</ref> a [[scientific review|review]] finds that of the compared [[Insecticide-treated mosquito net|insecticide-treated nets]] to prevent [[malaria]], [[chlorfenapyr]]-[[pyrethroid]] – or {{tooltip|PNP|Pyrethroid-non-pyrethroid}} combinations – are overall the most effective and address [[Pesticide resistance|insecticide-resistance]] (16 Aug),<ref>{{#invoke:cite journal||last1=Barker |first1=Timothy Hugh |last2=Stone |first2=Jennifer C. |last3=Hasanoff |first3=Sabira |last4=Price |first4=Carrie |last5=Kabaghe |first5=Alinune |last6=Munn |first6=Zachary |title=Effectiveness of dual active ingredient insecticide-treated nets in preventing malaria: A systematic review and meta-analysis |journal=PLOS ONE |date=16 August 2023 |volume=18 |issue=8 |pages=e0289469 |doi=10.1371/journal.pone.0289469 |pmid=37585420 |pmc=10431665 |bibcode=2023PLoSO..1889469B |language=en |issn=1932-6203|doi-access=free}}
* Research hospital press release: {{#invoke:cite news||title=Engineered probiotic developed to treat multiple sclerosis |url=https://medicalxpress.com/news/2023-08-probiotic-multiple-sclerosis.html |access-date=7 October 2023 |work=medicalxpress.com |language=en}}</ref> mice-tested [[Genetically modified bacteria|engineered bacteria]] to detect cancer DNA (10 Aug),<!--https://cosmosmagazine.com/health/medicine/australian-american-team-engineers-cancer-detecting-bacteria/--><ref>{{#invoke:cite journal||last1=Cooper |first1=Robert M. |last2=Wright |first2=Josephine A. |last3=Ng |first3=Jia Q. |last4=Goyne |first4=Jarrad M. |last5=Suzuki |first5=Nobumi |last6=Lee |first6=Young K. |last7=Ichinose |first7=Mari |last8=Radford |first8=Georgette |last9=Ryan |first9=Feargal J. |last10=Kumar |first10=Shalni |last11=Thomas |first11=Elaine M. |last12=Vrbanac |first12=Laura |last13=Knight |first13=Rob |last14=Woods |first14=Susan L. |last15=Worthley |first15=Daniel L. |last16=Hasty |first16=Jeff |title=Engineered bacteria detect tumor DNA |journal=Science |date=11 August 2023 |volume=381 |issue=6658 |pages=682–686 |doi=10.1126/science.adf3974 |pmid=37561843 |pmc=10852993 |bibcode=2023Sci...381..682C |language=en |issn=0036-8075|biorxiv=10.1101/2021.09.10.459858|s2cid=260776388 }}</ref> a [[scientific review|review]] finds that of the compared [[Insecticide-treated mosquito net|insecticide-treated nets]] to prevent [[malaria]], [[chlorfenapyr]]-[[pyrethroid]] – or {{tooltip|PNP|Pyrethroid-non-pyrethroid}} combinations – are overall the most effective and address [[Pesticide resistance|insecticide-resistance]] (16 Aug),<ref>{{#invoke:cite journal||last1=Barker |first1=Timothy Hugh |last2=Stone |first2=Jennifer C. |last3=Hasanoff |first3=Sabira |last4=Price |first4=Carrie |last5=Kabaghe |first5=Alinune |last6=Munn |first6=Zachary |title=Effectiveness of dual active ingredient insecticide-treated nets in preventing malaria: A systematic review and meta-analysis |journal=PLOS ONE |date=16 August 2023 |volume=18 |issue=8 |pages=e0289469 |doi=10.1371/journal.pone.0289469 |pmid=37585420 |pmc=10431665 |bibcode=2023PLoSO..1889469B |language=en |issn=1932-6203|doi-access=free}}
* University press release: {{#invoke:cite news||title=Research informs WHO mosquito net guideline update |url=https://medicalxpress.com/news/2023-08-mosquito-net-guideline.html |access-date=7 October 2023 |work=University of Adelaide via medicalxpress.com |language=en}}</ref> mice-tested [[clovibactin]] against antibiotic-resistant bacterial pathogens (22 Aug),<!--https://newatlas.com/medical/microbial-dark-matter-antibiotic/--><ref>{{#invoke:cite journal||last1=Shukla |first1=Rhythm |last2=Peoples |first2=Aaron J. |last3=Ludwig |first3=Kevin C. |last4=Maity |first4=Sourav |last5=Derks |first5=Maik G.N. |last6=De Benedetti |first6=Stefania |last7=Krueger |first7=Annika M. |last8=Vermeulen |first8=Bram J.A. |last9=Harbig |first9=Theresa |last10=Lavore |first10=Francesca |last11=Kumar |first11=Raj |last12=Honorato |first12=Rodrigo V. |last13=Grein |first13=Fabian |last14=Nieselt |first14=Kay |last15=Liu |first15=Yangping |last16=Bonvin |first16=Alexandre M.J.J. |last17=Baldus |first17=Marc |last18=Kubitscheck |first18=Ulrich |last19=Breukink |first19=Eefjan |last20=Achorn |first20=Catherine |last21=Nitti |first21=Anthony |last22=Schwalen |first22=Christopher J. |last23=Spoering |first23=Amy L. |last24=Ling |first24=Losee Lucy |last25=Hughes |first25=Dallas |last26=Lelli |first26=Moreno |last27=Roos |first27=Wouter H. |last28=Lewis |first28=Kim |last29=Schneider |first29=Tanja |last30=Weingarth |first30=Markus |title=An antibiotic from an uncultured bacterium binds to an immutable target |journal=Cell |date=September 2023 |volume=186 |issue=19 |pages=4059–4073.e27 |doi=10.1016/j.cell.2023.07.038|pmid=37611581 |doi-access=free}}</ref> two [[brain implant]]s achieve milestone performances in words per minute and median word error rate (23 Aug),<!--https://www.washingtonpost.com/science/2023/08/23/brain-implants-convert-speech-text/--><ref>{{#invoke:cite journal||last1=Willett |first1=Francis R. |last2=Kunz |first2=Erin M. |last3=Fan |first3=Chaofei |last4=Avansino |first4=Donald T. |last5=Wilson |first5=Guy H. |last6=Choi |first6=Eun Young |last7=Kamdar |first7=Foram |last8=Glasser |first8=Matthew F. |last9=Hochberg |first9=Leigh R. |last10=Druckmann |first10=Shaul |last11=Shenoy |first11=Krishna V. |last12=Henderson |first12=Jaimie M. |title=A high-performance speech neuroprosthesis |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1031–1036 |doi=10.1038/s41586-023-06377-x |pmid=37612500 |pmc=10468393 |bibcode=2023Natur.620.1031W |language=en |issn=1476-4687|doi-access=free}}</ref><ref>{{#invoke:cite journal||last1=Metzger |first1=Sean L. |last2=Littlejohn |first2=Kaylo T. |last3=Silva |first3=Alexander B. |last4=Moses |first4=David A. |last5=Seaton |first5=Margaret P. |last6=Wang |first6=Ran |last7=Dougherty |first7=Maximilian E. |last8=Liu |first8=Jessie R. |last9=Wu |first9=Peter |last10=Berger |first10=Michael A. |last11=Zhuravleva |first11=Inga |last12=Tu-Chan |first12=Adelyn |last13=Ganguly |first13=Karunesh |last14=Anumanchipalli |first14=Gopala K. |last15=Chang |first15=Edward F. |title=A high-performance neuroprosthesis for speech decoding and avatar control |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1037–1046 |doi=10.1038/s41586-023-06443-4 |pmid=37612505 |pmc=10826467 |bibcode=2023Natur.620.1037M |s2cid=261098775 |url=https://www.researchgate.net/publication/373341071 |language=en |issn=1476-4687|url-access=subscription}}</ref> mice-tested [[phytosterols]] – or [[cholesterol]]-imbalance-correction more broadly – against aging-associated hearing loss (24 Aug),<ref>{{#invoke:cite journal||last1=Sodero |first1=Alejandro O. |last2=Castagna |first2=Valeria C. |last3=Elorza |first3=Setiembre D. |last4=Gonzalez-Rodulfo |first4=Sara M. |last5=Paulazo |first5=María A. |last6=Ballestero |first6=Jimena A. |last7=Martin |first7=Mauricio G. |last8=Gomez-Casati |first8=María Eugenia |title=Phytosterols reverse antiretroviral-induced hearing loss, with potential implications for cochlear aging |journal=PLOS Biology |date=24 August 2023 |volume=21 |issue=8 |pages=e3002257 |doi=10.1371/journal.pbio.3002257 |pmid=37619212 |pmc=10449472 |language=en |issn=1545-7885|doi-access=free}}
* University press release: {{#invoke:cite news||title=Research informs WHO mosquito net guideline update |url=https://medicalxpress.com/news/2023-08-mosquito-net-guideline.html |access-date=7 October 2023 |work=University of Adelaide via medicalxpress.com |language=en}}</ref> mice-tested [[clovibactin]] against antibiotic-resistant bacterial pathogens (22 Aug),<!--https://newatlas.com/medical/microbial-dark-matter-antibiotic/--><ref>{{#invoke:cite journal||last1=Shukla |first1=Rhythm |last2=Peoples |first2=Aaron J. |last3=Ludwig |first3=Kevin C. |last4=Maity |first4=Sourav |last5=Derks |first5=Maik G.N. |last6=De Benedetti |first6=Stefania |last7=Krueger |first7=Annika M. |last8=Vermeulen |first8=Bram J.A. |last9=Harbig |first9=Theresa |last10=Lavore |first10=Francesca |last11=Kumar |first11=Raj |last12=Honorato |first12=Rodrigo V. |last13=Grein |first13=Fabian |last14=Nieselt |first14=Kay |last15=Liu |first15=Yangping |last16=Bonvin |first16=Alexandre M.J.J. |last17=Baldus |first17=Marc |last18=Kubitscheck |first18=Ulrich |last19=Breukink |first19=Eefjan |last20=Achorn |first20=Catherine |last21=Nitti |first21=Anthony |last22=Schwalen |first22=Christopher J. |last23=Spoering |first23=Amy L. |last24=Ling |first24=Losee Lucy |last25=Hughes |first25=Dallas |last26=Lelli |first26=Moreno |last27=Roos |first27=Wouter H. |last28=Lewis |first28=Kim |last29=Schneider |first29=Tanja |last30=Weingarth |first30=Markus |title=An antibiotic from an uncultured bacterium binds to an immutable target |journal=Cell |date=September 2023 |volume=186 |issue=19 |pages=4059–4073.e27 |doi=10.1016/j.cell.2023.07.038|pmid=37611581 |doi-access=free}}</ref> two [[brain implant]]s achieve milestone performances in words per minute and median word error rate (23 Aug),<!--https://www.washingtonpost.com/science/2023/08/23/brain-implants-convert-speech-text/--><ref>{{#invoke:cite journal||last1=Willett |first1=Francis R. |last2=Kunz |first2=Erin M. |last3=Fan |first3=Chaofei |last4=Avansino |first4=Donald T. |last5=Wilson |first5=Guy H. |last6=Choi |first6=Eun Young |last7=Kamdar |first7=Foram |last8=Glasser |first8=Matthew F. |last9=Hochberg |first9=Leigh R. |last10=Druckmann |first10=Shaul |last11=Shenoy |first11=Krishna V. |last12=Henderson |first12=Jaimie M. |title=A high-performance speech neuroprosthesis |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1031–1036 |doi=10.1038/s41586-023-06377-x |pmid=37612500 |pmc=10468393 |bibcode=2023Natur.620.1031W |language=en |issn=1476-4687|doi-access=free}}</ref><ref>{{#invoke:cite journal||last1=Metzger |first1=Sean L. |last2=Littlejohn |first2=Kaylo T. |last3=Silva |first3=Alexander B. |last4=Moses |first4=David A. |last5=Seaton |first5=Margaret P. |last6=Wang |first6=Ran |last7=Dougherty |first7=Maximilian E. |last8=Liu |first8=Jessie R. |last9=Wu |first9=Peter |last10=Berger |first10=Michael A. |last11=Zhuravleva |first11=Inga |last12=Tu-Chan |first12=Adelyn |last13=Ganguly |first13=Karunesh |last14=Anumanchipalli |first14=Gopala K. |last15=Chang |first15=Edward F. |title=A high-performance neuroprosthesis for speech decoding and avatar control |journal=Nature |date=August 2023 |volume=620 |issue=7976 |pages=1037–1046 |doi=10.1038/s41586-023-06443-4 |pmid=37612505 |pmc=10826467 |bibcode=2023Natur.620.1037M |s2cid=261098775 |url=https://www.researchgate.net/publication/373341071 |language=en |issn=1476-4687|url-access=subscription}}</ref> mice-tested [[phytosterols]] – or [[cholesterol]]-imbalance-correction more broadly – against aging-associated hearing loss (24 Aug),<ref>{{#invoke:cite journal||last1=Sodero |first1=Alejandro O. |last2=Castagna |first2=Valeria C. |last3=Elorza |first3=Setiembre D. |last4=Gonzalez-Rodulfo |first4=Sara M. |last5=Paulazo |first5=María A. |last6=Ballestero |first6=Jimena A. |last7=Martin |first7=Mauricio G. |last8=Gomez-Casati |first8=María Eugenia |title=Phytosterols reverse antiretroviral-induced hearing loss, with potential implications for cochlear aging |journal=PLOS Biology |date=24 August 2023 |volume=21 |issue=8 |pages=e3002257 |doi=10.1371/journal.pbio.3002257 |pmid=37619212 |pmc=10449472 |language=en |issn=1545-7885|doi-access=free}}
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**A new [[palm oil]] substitute called PALM-ALT is presented by researchers. The plant-based ingredient is shown to be [[Social and environmental impact of palm oil|70% better for the environment]] than conventional palm oil and is described as "the holy grail to replace it".<ref>{{#invoke:cite news||title='This could be the holy grail to replace palm oil' – research team |url=https://www.bbc.co.uk/news/uk-scotland-edinburgh-east-fife-66842496 |date=18 September 2023 |work=BBC News |access-date=18 September 2023 }}</ref><ref>{{#invoke:cite news||title=University develops a replacement for palm oil that is healthy and environmentally friendly |url=https://www.qmu.ac.uk/news-and-events/news/20230917-university-develops-a-replacement-for-palm-oil-that-is-healthy-and-environmentally-friendly/ |date=18 September 2023 |work=[[Queen Margaret University]] |access-date=18 September 2023 }}</ref>
**A new [[palm oil]] substitute called PALM-ALT is presented by researchers. The plant-based ingredient is shown to be [[Social and environmental impact of palm oil|70% better for the environment]] than conventional palm oil and is described as "the holy grail to replace it".<ref>{{#invoke:cite news||title='This could be the holy grail to replace palm oil' – research team |url=https://www.bbc.co.uk/news/uk-scotland-edinburgh-east-fife-66842496 |date=18 September 2023 |work=BBC News |access-date=18 September 2023 }}</ref><ref>{{#invoke:cite news||title=University develops a replacement for palm oil that is healthy and environmentally friendly |url=https://www.qmu.ac.uk/news-and-events/news/20230917-university-develops-a-replacement-for-palm-oil-that-is-healthy-and-environmentally-friendly/ |date=18 September 2023 |work=[[Queen Margaret University]] |access-date=18 September 2023 }}</ref>
**The [[Linac Coherent Light Source]] at the [[SLAC National Accelerator Laboratory]] is upgraded to [[SLAC National Accelerator Laboratory#LCLS-II|LCLS-II]] and successfully demonstrates its first [[X-rays]], which are fired 8,000 times faster and are 10,000 times brighter than the previous version.<ref>{{#invoke:cite news||title=SLAC fires up the world's most powerful X-ray laser: LCLS-II ushers in a new era of science |url=https://www6.slac.stanford.edu/news/2023-09-18-slac-fires-worlds-most-powerful-x-ray-laser-lcls-ii-ushers-new-era-science |date=18 September 2023 |work=SLAC |access-date=19 September 2023 }}</ref><ref>{{#invoke:cite news||title=Upgraded Linear Accelerator in California Achieves First Light, Poised to Transform X-Ray Science |url=https://gizmodo.com/upgrade-linear-accelerator-slac-lcls-ii-x-rays-1850848767 |date=18 September 2023 |work=Gizmodo |access-date=19 September 2023 }}</ref><ref>{{#invoke:cite news||title=U.S. regains the lead in friendly x-ray laser 'arms race' |url=https://www.science.org/content/article/u-s-regains-lead-friendly-x-ray-laser-arms-race |date=18 September 2023 |work=Science |access-date=19 September 2023 }}</ref>
**The [[Linac Coherent Light Source]] at the [[SLAC National Accelerator Laboratory]] is upgraded to [[SLAC National Accelerator Laboratory#LCLS-II|LCLS-II]] and successfully demonstrates its first [[X-rays]], which are fired 8,000 times faster and are 10,000 times brighter than the previous version.<ref>{{#invoke:cite news||title=SLAC fires up the world's most powerful X-ray laser: LCLS-II ushers in a new era of science |url=https://www6.slac.stanford.edu/news/2023-09-18-slac-fires-worlds-most-powerful-x-ray-laser-lcls-ii-ushers-new-era-science |date=18 September 2023 |work=SLAC |access-date=19 September 2023 }}</ref><ref>{{#invoke:cite news||title=Upgraded Linear Accelerator in California Achieves First Light, Poised to Transform X-Ray Science |url=https://gizmodo.com/upgrade-linear-accelerator-slac-lcls-ii-x-rays-1850848767 |date=18 September 2023 |work=Gizmodo |access-date=19 September 2023 }}</ref><ref>{{#invoke:cite news||title=U.S. regains the lead in friendly x-ray laser 'arms race' |url=https://www.science.org/content/article/u-s-regains-lead-friendly-x-ray-laser-arms-race |date=18 September 2023 |work=Science |access-date=19 September 2023 }}</ref>
** Scientists calculate that animal [[genera]] are going extinct at a rate 35 times faster than expected background rates over the past million years, which they say indicates the planet is experiencing a human-driven [[sixth mass extinction]] event and that it is accelerating.<!--<ref>{{cite news |last=Saric|first=Ivana |date=September 22, 2023 |title=Earth's sixth mass extinction is underway and "rapidly accelerating," study warns|url=https://www.axios.com/2023/09/22/earth-sixth-mass-extinction-wildlife|work=[[Axios (website)|Axios]] |access-date=September 23, 2023}}</ref>--><ref>{{#invoke:cite journal||last1= Ceballos|first1=Gerardo|last2=Ehrlich|first2=Paul R.|date=2023 |title=Mutilation of the tree of life via mass extinction of animal genera|journal=[[Proceedings of the National Academy of Sciences of the United States of America]]|volume=120 |issue=39 |pages=e2306987120|doi=10.1073/pnas.2306987120|pmid=37722053 |pmc=10523489 |bibcode=2023PNAS..12006987C |s2cid=262055969 }}</ref>
** Scientists calculate that animal [[genera]] are going extinct at a rate 35 times faster than expected background rates over the past million years, which they say indicates the planet is experiencing a human-driven [[sixth mass extinction]] event and that it is accelerating.<!--<ref>{{cite news |last=Saric|first=Ivana |date=September 22, 2023 |title=Earth's sixth mass extinction is underway and "rapidly accelerating", study warns|url=https://www.axios.com/2023/09/22/earth-sixth-mass-extinction-wildlife|work=[[Axios (website)|Axios]] |access-date=September 23, 2023}}</ref>--><ref>{{#invoke:cite journal||last1= Ceballos|first1=Gerardo|last2=Ehrlich|first2=Paul R.|date=2023 |title=Mutilation of the tree of life via mass extinction of animal genera|journal=[[Proceedings of the National Academy of Sciences of the United States of America]]|volume=120 |issue=39 |pages=e2306987120|doi=10.1073/pnas.2306987120|pmid=37722053 |pmc=10523489 |bibcode=2023PNAS..12006987C |s2cid=262055969 }}</ref>
**A triple-junction [[solar cell]] with [[Perovskite solar cell|perovskite]]-perovskite-silicon subcell configuration is demonstrated with an open-circuit voltage of over 2.8 V, which compares to conventional cells with values ranging between 0.7 V and 0.8 V.<ref>{{#invoke:cite journal||last1=Heydarian |first1=Maryamsadat |last2=Heydarian |first2=Minasadat |last3=Bett |first3=Alexander J. |last4=Bivour |first4=Martin |last5=Schindler |first5=Florian |last6=Hermle |first6=Martin |last7=Schubert |first7=Martin C. |last8=Schulze |first8=Patricia S. C. |last9=Borchert |first9=Juliane |last10=Glunz |first10=Stefan W. |title=Monolithic Two-Terminal Perovskite/Perovskite/Silicon Triple-Junction Solar Cells with Open Circuit Voltage >2.8 V |journal=ACS Energy Letters |date=13 October 2023 |volume=8 |issue=10 |pages=4186–4192 |doi=10.1021/acsenergylett.3c01391 |pmid=37854048 |pmc=10580312 |language=en |issn=2380-8195}}
**A triple-junction [[solar cell]] with [[Perovskite solar cell|perovskite]]-perovskite-silicon subcell configuration is demonstrated with an open-circuit voltage of over 2.8 V, which compares to conventional cells with values ranging between 0.7 V and 0.8 V.<ref>{{#invoke:cite journal||last1=Heydarian |first1=Maryamsadat |last2=Heydarian |first2=Minasadat |last3=Bett |first3=Alexander J. |last4=Bivour |first4=Martin |last5=Schindler |first5=Florian |last6=Hermle |first6=Martin |last7=Schubert |first7=Martin C. |last8=Schulze |first8=Patricia S. C. |last9=Borchert |first9=Juliane |last10=Glunz |first10=Stefan W. |title=Monolithic Two-Terminal Perovskite/Perovskite/Silicon Triple-Junction Solar Cells with Open Circuit Voltage >2.8 V |journal=ACS Energy Letters |date=13 October 2023 |volume=8 |issue=10 |pages=4186–4192 |doi=10.1021/acsenergylett.3c01391 |pmid=37854048 |pmc=10580312 |language=en |issn=2380-8195}}
* Research institute press release: {{#invoke:cite news||title=Laboratory cell demonstrates the huge potential of perovskite-based triple-junction solar cells |url=https://www.ise.fraunhofer.de/en/press-media/news/2023/Laboratory-cell-demonstrates-potential-of-perovskite-based-triple-junction-solar-cells.html |date=18 September 2023 |work=Fraunhofer ISE|access-date=23 September 2023 }}</ref>
* Research institute press release: {{#invoke:cite news||title=Laboratory cell demonstrates the huge potential of perovskite-based triple-junction solar cells |url=https://www.ise.fraunhofer.de/en/press-media/news/2023/Laboratory-cell-demonstrates-potential-of-perovskite-based-triple-junction-solar-cells.html |date=18 September 2023 |work=Fraunhofer ISE|access-date=23 September 2023 }}</ref>
* {{vanchor|19 September}}
* {{vanchor|19 September}}
**[[RNA]] is recovered from a [[Tasmanian tiger]], or thylacine, the first isolation and decoding of such molecules from an [[Lists of extinct species|extinct species]].<!--<ref>{{cite news |title=Scientists recover RNA from an extinct species for the first time |url=https://edition.cnn.com/2023/09/19/world/scientists-recover-rna-tasmanian-tiger-thylacine-scn/index.html |date=20 September 2023 |work=CNN |access-date=21 September 2023 }}</ref>--><ref>{{#invoke:cite news||title=Tasmanian tiger RNA is first to be recovered from an extinct animal |url=https://www.nature.com/articles/d41586-023-02953-3 |date=19 September 2023 |work=Nauture |access-date=21 September 2023 }}</ref><ref>{{#invoke:cite journal||last1=Mármol-Sánchez |first1=Emilio |last2=Fromm |first2=Bastian |last3=Oskolkov |first3=Nikolay |last4=Pochon |first4=Zoé |last5=Kalogeropoulos |first5=Panagiotis |last6=Eriksson |first6=Eli |last7=Biryukova |first7=Inna |last8=Sekar |first8=Vaishnovi |last9=Ersmark |first9=Erik |last10=Andersson |first10=Björn |last11=Dalén |first11=Love |last12=Friedländer |first12=Marc R. |title=Historical RNA expression profiles from the extinct Tasmanian tiger |journal=Genome Research |date=18 July 2023 |volume=33 |issue=8 |pages=1299–1316 |doi=10.1101/gr.277663.123 |pmid=37463752 |pmc=10552650 |language=en |issn=1088-9051|doi-access=free}}</ref>
**[[RNA]] is recovered from a [[Tasmanian tiger]], or thylacine, the first isolation and decoding of such molecules from an [[Lists of extinct species|extinct species]].<!--<ref>{{cite news |title=Scientists recover RNA from an extinct species for the first time |url=https://edition.cnn.com/2023/09/19/world/scientists-recover-rna-tasmanian-tiger-thylacine-scn/index.html |date=20 September 2023 |work=CNN |access-date=21 September 2023 }}</ref>--><ref>{{#invoke:cite news||title=Tasmanian tiger RNA is first to be recovered from an extinct animal |url=https://www.nature.com/articles/d41586-023-02953-3 |date=19 September 2023 |work=Nature |access-date=21 September 2023 }}</ref><ref>{{#invoke:cite journal||last1=Mármol-Sánchez |first1=Emilio |last2=Fromm |first2=Bastian |last3=Oskolkov |first3=Nikolay |last4=Pochon |first4=Zoé |last5=Kalogeropoulos |first5=Panagiotis |last6=Eriksson |first6=Eli |last7=Biryukova |first7=Inna |last8=Sekar |first8=Vaishnovi |last9=Ersmark |first9=Erik |last10=Andersson |first10=Björn |last11=Dalén |first11=Love |last12=Friedländer |first12=Marc R. |title=Historical RNA expression profiles from the extinct Tasmanian tiger |journal=Genome Research |date=18 July 2023 |volume=33 |issue=8 |pages=1299–1316 |doi=10.1101/gr.277663.123 |pmid=37463752 |pmc=10552650 |language=en |issn=1088-9051|doi-access=free}}</ref>
**The iconic genus ''[[Rafflesia]]'', which includes the [[Rafflesia arnoldii|world's largest flower]], is reported to be at risk of extinction due to habitat loss.<ref>{{#invoke:cite news||title=Researchers issue urgent call to save the world's largest flower -Rafflesia – from extinction |url=https://www.eurekalert.org/news-releases/1001991 |date=19 September 2023 |work=EurekAlert!|access-date=22 September 2023 }}</ref>
**The iconic genus ''[[Rafflesia]]'', which includes the [[Rafflesia arnoldii|world's largest flower]], is reported to be at risk of extinction due to habitat loss.<ref>{{#invoke:cite news||title=Researchers issue urgent call to save the world's largest flower -Rafflesia – from extinction |url=https://www.eurekalert.org/news-releases/1001991 |date=19 September 2023 |work=EurekAlert!|access-date=22 September 2023 }}</ref>
* {{vanchor|20 September}}
* {{vanchor|20 September}}
Line 355: Line 357:
** Physicists report studies, for the first time, supporting the notion that [[Antimatter|antimatter particles]] behave in a similar way as normal matter in a [[gravitational field]].<ref name="NYT-20230927">{{#invoke:cite news||last=Overbye |first=Dennis |author-link=Dennis Overbye |title=Nothing's the Matter With Antimatter, New Experiment Confirms – Consider it good news, physicists say: "The opposite result would have had big implications." |url=https://www.nytimes.com/2023/09/27/science/physics-universe-antimatter.html |date=27 September 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20230927154738/https://www.nytimes.com/2023/09/27/science/physics-universe-antimatter.html |archive-date=27 September 2023 |access-date=28 September 2023 }}</ref><ref name="NAT-20230927">{{#invoke:cite journal||author=Anderson, E. K. |title=Observation of the effect of gravity on the motion of antimatter |date=27 September 2023 |journal=[[Nature (journal)|Nature]] |volume=621 |issue=7980 |pages=716–722 |doi=10.1038/s41586-023-06527-1 |pmid=37758891 |pmc=10533407 |bibcode=2023Natur.621..716A |doi-access=free}}</ref>
** Physicists report studies, for the first time, supporting the notion that [[Antimatter|antimatter particles]] behave in a similar way as normal matter in a [[gravitational field]].<ref name="NYT-20230927">{{#invoke:cite news||last=Overbye |first=Dennis |author-link=Dennis Overbye |title=Nothing's the Matter With Antimatter, New Experiment Confirms – Consider it good news, physicists say: "The opposite result would have had big implications." |url=https://www.nytimes.com/2023/09/27/science/physics-universe-antimatter.html |date=27 September 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20230927154738/https://www.nytimes.com/2023/09/27/science/physics-universe-antimatter.html |archive-date=27 September 2023 |access-date=28 September 2023 }}</ref><ref name="NAT-20230927">{{#invoke:cite journal||author=Anderson, E. K. |title=Observation of the effect of gravity on the motion of antimatter |date=27 September 2023 |journal=[[Nature (journal)|Nature]] |volume=621 |issue=7980 |pages=716–722 |doi=10.1038/s41586-023-06527-1 |pmid=37758891 |pmc=10533407 |bibcode=2023Natur.621..716A |doi-access=free}}</ref>
** Astronomers report studies suggesting that the [[rings of Saturn]] may have resulted from the collision of two [[moons]] "a few hundred million years ago".<ref name="NYT-210230928">{{#invoke:cite news||last=Andrew |first=Robin George |title=Saturn's Rings May Have Formed in a Surprisingly Recent Crash of 2 Moons – Researchers completed a complex simulation that supports the idea that the giant planet's jewelry emerged hundreds of millions of years ago, not billions. |url=https://www.nytimes.com/2023/09/28/science/saturn-rings-moons-formation.html |date=28 September 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20230929044637/https://www.nytimes.com/2023/09/28/science/saturn-rings-moons-formation.html |archive-date=29 September 2023 |access-date=29 September 2023 }}</ref><ref name="TAJ-20230927">{{#invoke:cite journal||author=Teodoro, L.F.A. |display-authors=et al |title=A Recent Impact Origin of Saturn's Rings and Mid-sized Moons |date=27 September 2023 |journal=[[The Astrophysical Journal]]|volume=955 |number=2 |page=137 |doi=10.3847/1538-4357/acf4ed |arxiv=2309.15156 |bibcode=2023ApJ...955..137T |doi-access=free }}</ref>
** Astronomers report studies suggesting that the [[rings of Saturn]] may have resulted from the collision of two [[moons]] "a few hundred million years ago".<ref name="NYT-210230928">{{#invoke:cite news||last=Andrew |first=Robin George |title=Saturn's Rings May Have Formed in a Surprisingly Recent Crash of 2 Moons – Researchers completed a complex simulation that supports the idea that the giant planet's jewelry emerged hundreds of millions of years ago, not billions. |url=https://www.nytimes.com/2023/09/28/science/saturn-rings-moons-formation.html |date=28 September 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20230929044637/https://www.nytimes.com/2023/09/28/science/saturn-rings-moons-formation.html |archive-date=29 September 2023 |access-date=29 September 2023 }}</ref><ref name="TAJ-20230927">{{#invoke:cite journal||author=Teodoro, L.F.A. |display-authors=et al |title=A Recent Impact Origin of Saturn's Rings and Mid-sized Moons |date=27 September 2023 |journal=[[The Astrophysical Journal]]|volume=955 |number=2 |page=137 |doi=10.3847/1538-4357/acf4ed |arxiv=2309.15156 |bibcode=2023ApJ...955..137T |doi-access=free }}</ref>
**A breakthrough in [[desalination]] is achieved by engineers, using a solar-powered device to create freshwater at lower cost than tap water.<!--https://www.thedailybeast.com/this-low-cost-device-from-mit-de-salts-seawater-for-you-to-drink--><ref>{{#invoke:cite journal||last1=Gao |first1=Jintong |last2=Zhang |first2=Lenan |last3=You |first3=Jinfang |last4=Ye |first4=Zhanyu |last5=Zhong |first5=Yang |last6=Wang |first6=Ruzhu |last7=Wang |first7=Evelyn N. |last8=Xu |first8=Zhenyuan |title=Extreme salt-resisting multistage solar distillation with thermohaline convection |journal=Joule |date=October 2023 |volume=7 |issue=10 |pages=2274–2290 |doi=10.1016/j.joule.2023.08.012|s2cid=263177395 |doi-access=free }}
**A breakthrough in [[desalination]] is achieved by engineers, using a solar-powered device to create freshwater at lower cost than tap water.<ref>{{cite web | url=https://news.mit.edu/2023/desalination-system-could-produce-freshwater-cheaper-0927 | title=Desalination system could produce freshwater that is cheaper than tap water | date=27 September 2023 }}</ref><!--https://www.thedailybeast.com/this-low-cost-device-from-mit-de-salts-seawater-for-you-to-drink--><ref>{{#invoke:cite journal||last1=Gao |first1=Jintong |last2=Zhang |first2=Lenan |last3=You |first3=Jinfang |last4=Ye |first4=Zhanyu |last5=Zhong |first5=Yang |last6=Wang |first6=Ruzhu |last7=Wang |first7=Evelyn N. |last8=Xu |first8=Zhenyuan |title=Extreme salt-resisting multistage solar distillation with thermohaline convection |journal=Joule |date=October 2023 |volume=7 |issue=10 |pages=2274–2290 |doi=10.1016/j.joule.2023.08.012|s2cid=263177395 |doi-access=free |bibcode=2023Joule...7.2274G }}
* University press release: {{#invoke:cite news||title=Desalination system could produce freshwater that is cheaper than tap water |url=https://news.mit.edu/2023/desalination-system-could-produce-freshwater-cheaper-0927 |date=27 September 2023 |work=[[MIT]]|access-date=29 September 2023 }}</ref>
* University press release: {{#invoke:cite news||title=Desalination system could produce freshwater that is cheaper than tap water |url=https://news.mit.edu/2023/desalination-system-could-produce-freshwater-cheaper-0927 |date=27 September 2023 |work=[[MIT]]|access-date=29 September 2023 }}</ref>
* {{vanchor|Hazards_September|text=[[Hazard]] research is published}}: news outlets report on a study (29 Aug) that shows an association between consumption of [[sweetener]] [[aspartame]] during pregnancy and [[autism]] in male offspring (1 Sep),<!--https://www.news-medical.net/news/20230901/Link-between-daily-diet-soda-and-aspartame-intake-in-early-life-with-autism-in-males.aspx--><ref>{{#invoke:cite journal||last1=Fowler |first1=Sharon Parten |last2=Gimeno Ruiz de Porras |first2=David |last3=Swartz |first3=Michael D. |last4=Stigler Granados |first4=Paula |last5=Heilbrun |first5=Lynne Parsons |last6=Palmer |first6=Raymond F. |title=Daily Early-Life Exposures to Diet Soda and Aspartame Are Associated with Autism in Males: A Case-Control Study |journal=Nutrients |date=January 2023 |volume=15 |issue=17 |page=3772 |doi=10.3390/nu15173772 |pmid=37686804 |pmc=10490529 |language=en |issn=2072-6643|doi-access=free}}</ref> an analysis of [[Global Burden of Disease Study|GBD study]] data shows pre-50 early-onset cancer cases rose by ~80% in 30 years (5 Sep),<!--https://edition.cnn.com/2023/09/05/health/as-cancer-cases-rise-among-younger-adults-some-types-of-the-disease-have-higher-burden-than-others-study-finds/index.html--><ref>{{#invoke:cite journal||last1=Zhao |first1=Jianhui |last2=Xu |first2=Liying |last3=Sun |first3=Jing |last4=Song |first4=Mingyang |last5=Wang |first5=Lijuan |last6=Yuan |first6=Shuai |last7=Zhu |first7=Yingshuang |last8=Wan |first8=Zhengwei |last9=Larsson |first9=Susanna |last10=Tsilidis |first10=Konstantinos |last11=Dunlop |first11=Malcolm |last12=Campbell |first12=Harry |last13=Rudan |first13=Igor |last14=Song |first14=Peige |last15=Theodoratou |first15=Evropi |last16=Ding |first16=Kefeng |last17=Li |first17=Xue |title=Global trends in incidence, death, burden and risk factors of early-onset cancer from 1990 to 2019 |journal=BMJ Oncology |date=5 September 2023 |volume=2 |issue=1 |pages=e000049 |doi=10.1136/bmjonc-2023-000049 |s2cid=261589293 |language=en |issn=2752-7948|doi-access=free }}</ref> a study shows [[Eco-economic decoupling|decoupling]] rates in high-income countries are inadequate for [[Paris Agreement]] commitments and suggests [[post-growth]] approaches such as [[Demand#Demand reduction|demand reduction]] [[Economics of climate change mitigation#Degrowth|strategies]] and reorienting the economy (5 Sep),<!--https://www.mdr.de/wissen/Gruenes-Wachstum-bisher-eher-Greenwashing-100.html--><ref>{{#invoke:cite journal||last1=Vogel |first1=Jefim |last2=Hickel |first2=Jason |title=Is green growth happening? An empirical analysis of achieved versus Paris-compliant CO2–GDP decoupling in high-income countries |journal=The Lancet Planetary Health |date=September 2023 |volume=7 |issue=9 |pages=e759–e769 |doi=10.1016/S2542-5196(23)00174-2|pmid=37673546 |s2cid=261551290 |url=http://eprints.lse.ac.uk/120169/1/1_s2.0_S2542519623001742_main.pdf }}</ref> evidence of impacts of chronic and extreme heat exposure during pregnancy accumulates (7 Sep),<!--https://jamanetwork.com/journals/jamanetworkopen/fullarticle/2809055--><ref>{{#invoke:cite news||title=Extreme heat exposure during pregnancy can raise risk of severe delivery complications, new study finds |url=https://www.pbs.org/newshour/health/extreme-heat-exposure-during-pregnancy-can-raise-risk-of-severe-delivery-complications-new-study-finds |access-date=11 November 2023 |work=PBS NewsHour |date=10 September 2023 |language=en-us}}</ref><ref>{{#invoke:cite journal||last1=Chersich |first1=Matthew Francis |last2=Pham |first2=Minh Duc |last3=Areal |first3=Ashtyn |last4=Haghighi |first4=Marjan Mosalam |last5=Manyuchi |first5=Albert |last6=Swift |first6=Callum P. |last7=Wernecke |first7=Bianca |last8=Robinson |first8=Matthew |last9=Hetem |first9=Robyn |last10=Boeckmann |first10=Melanie |last11=Hajat |first11=Shakoor |title=Associations between high temperatures in pregnancy and risk of preterm birth, low birth weight, and stillbirths: systematic review and meta-analysis |journal=BMJ |date=4 November 2020 |volume=371 |pages=m3811 |doi=10.1136/bmj.m3811 |pmid=33148618 |pmc=7610201 |language=en |issn=1756-1833 |quote=Temperature rises with global warming could have major implications for child health.}}</ref><ref>{{#invoke:cite journal||last1=Samuels |first1=Louisa |last2=Nakstad |first2=Britt |last3=Roos |first3=Nathalie |last4=Bonell |first4=Ana |last5=Chersich |first5=Matthew |last6=Havenith |first6=George |last7=Luchters |first7=Stanley |last8=Day |first8=Louise-Tina |last9=Hirst |first9=Jane E. |last10=Singh |first10=Tanya |last11=Elliott-Sale |first11=Kirsty |last12=Hetem |first12=Robyn |last13=Part |first13=Cherie |last14=Sawry |first14=Shobna |last15=Le Roux |first15=Jean |last16=Kovats |first16=Sari |title=Physiological mechanisms of the impact of heat during pregnancy and the clinical implications: review of the evidence from an expert group meeting |journal=International Journal of Biometeorology |date=1 August 2022 |volume=66 |issue=8 |pages=1505–1513 |doi=10.1007/s00484-022-02301-6 |pmid=35554684 |pmc=9300488 |bibcode=2022IJBm...66.1505S |language=en |issn=1432-1254 |quote=Research is urgently needed to identify what causes the adverse outcomes in pregnancy related to high ambient temperatures so that the impact of climate change on pregnant women can be mitigated.}}</ref> a study shows early prevention of [[type 2 diabetes]] {{tooltip|may save many years|It found that every decade of earlier diagnosis of diabetes was associated with about 3–4 years of lower life expectancy}} of life (11 Sep),<!--https://www.upi.com/Health_News/2023/10/05/diabetes-life-span/7971696516995/--><ref>{{#invoke:cite journal||last1=Kaptoge |first1=S |last2=Seshasai |first2=Srk |display-authors=et al.|title=Life expectancy associated with different ages at diagnosis of type 2 diabetes in high-income countries: 23 million person-years of observation |journal=The Lancet Diabetes & Endocrinology |date=October 2023 |volume=11 |issue=10 |pages=731–742 |doi=10.1016/S2213-8587(23)00223-1|pmid=37708900 |pmc=7615299 |doi-access=free}}</ref> a study estimates around [[List of causes of death by rate|5 million adults died]] from cardiovascular disease due to [[Lead poisoning|lead exposure]] in 2019 (11 Sep),<!--https://medicalxpress.com/news/2023-09-poisoning-death-iq-loss-thought.html--><ref>{{#invoke:cite journal||last1=Larsen |first1=Bjorn |last2=Sánchez-Triana |first2=Ernesto |title=Global health burden and cost of lead exposure in children and adults: a health impact and economic modelling analysis |journal=The Lancet Planetary Health |date=October 2023 |volume=7 |issue=10 |pages=e831–e840 |doi=10.1016/S2542-5196(23)00166-3|pmid=37714172 |doi-access=free}}</ref> shortly after a [[scientific review|review]] about biodiversity-related harmful effects on ecosystems by non-native ant invasions (29 Jul),<!--https://phys.org/news/2023-09-invasive-ants-silent-threat-ecosystems.html--> the fifth-costliest invasive species, the [[Solenopsis invicta|red fire ant]], is reported to have established itself in the [[Climate change in Europe|warming Europe]] via colonies in [[Sicily]] (11 Sep),<!--https://cosmosmagazine.com/nature/animals/alien-ants-invade-europe-for-the-first-time/--><ref>{{#invoke:cite journal||last1=Menchetti |first1=Mattia |last2=Schifani |first2=Enrico |last3=Alicata |first3=Antonio |last4=Cardador |first4=Laura |last5=Sbrega |first5=Elisabetta |last6=Toro-Delgado |first6=Eric |last7=Vila |first7=Roger |title=The invasive ant Solenopsis invicta is established in Europe |journal=Current Biology |date=September 2023 |volume=33 |issue=17 |pages=R896–R897 |doi=10.1016/j.cub.2023.07.036|pmid=37699343 |s2cid=261688271 |doi-access=free |bibcode=2023CBio...33R.896M }}</ref><ref>{{#invoke:cite journal||last1=Tercel |first1=Maximillian P. T. G. |last2=Cuff |first2=Jordan P. |last3=Symondson |first3=William O. C. |last4=Vaughan |first4=Ian P. |title=Non-native ants drive dramatic declines in animal community diversity: A meta-analysis |journal=Insect Conservation and Diversity |date=November 2023 |volume=16 |issue=6 |pages=733–744 |doi=10.1111/icad.12672 |language=en |issn=1752-458X|doi-access=free|pmid=38505669 |pmc=10947240 }}</ref> a [[product test]]ing study shows [[Cleaning agent|cleaning products]] emit substantial amounts of [[indoor air quality|hazardous]] [[volatile organic compounds|VOCs]], such as chloroform, with the lowest quantities in green fragrance-free products (12 Sep),<!--https://medicalxpress.com/news/2023-09-products-emit-hundreds-hazardous-chemicals.html--><ref>{{#invoke:cite journal||last1=Temkin |first1=Alexis M. |last2=Geller |first2=Samara L. |last3=Swanson |first3=Sydney A. |last4=Leiba |first4=Nneka S. |last5=Naidenko |first5=Olga V. |last6=Andrews |first6=David Q. |title=Volatile organic compounds emitted by conventional and "green" cleaning products in the U.S. market |journal=Chemosphere |date=1 November 2023 |volume=341 |page=139570 |doi=10.1016/j.chemosphere.2023.139570 |pmid=37709066 |bibcode=2023Chmsp.34139570T |s2cid=261796578 |issn=0045-6535|doi-access=free }}</ref> the [[planetary boundaries]] framework assessment gets updated, incorporating freshwater change as a sixth [[Earth system]] dimension above its capacity limit (13 Sep),<!--https://us.cnn.com/2023/09/13/world/planetary-boundaries-humanity-climate/index.html--><ref>{{#invoke:cite journal||last1=Richardson |first1=Katherine |last2=Steffen |first2=Will |last3=Lucht |first3=Wolfgang |last4=Bendtsen |first4=Jørgen |last5=Cornell |first5=Sarah E. |last6=Donges |first6=Jonathan F. |last7=Drüke |first7=Markus |last8=Fetzer |first8=Ingo |last9=Bala |first9=Govindasamy |last10=von Bloh |first10=Werner |last11=Feulner |first11=Georg |last12=Fiedler |first12=Stephanie |last13=Gerten |first13=Dieter |last14=Gleeson |first14=Tom |last15=Hofmann |first15=Matthias |last16=Huiskamp |first16=Willem |last17=Kummu |first17=Matti |last18=Mohan |first18=Chinchu |last19=Nogués-Bravo |first19=David |last20=Petri |first20=Stefan |last21=Porkka |first21=Miina |last22=Rahmstorf |first22=Stefan |last23=Schaphoff |first23=Sibyll |last24=Thonicke |first24=Kirsten |last25=Tobian |first25=Arne |last26=Virkki |first26=Vili |last27=Wang-Erlandsson |first27=Lan |last28=Weber |first28=Lisa |last29=Rockström |first29=Johan |title=Earth beyond six of nine planetary boundaries |journal=Science Advances |date=15 September 2023 |volume=9 |issue=37 |pages=eadh2458 |doi=10.1126/sciadv.adh2458 |pmid=37703365 |pmc=10499318 |bibcode=2023SciA....9H2458R |language=en |issn=2375-2548}}</ref> news outlets report on a study (31 Aug) that shows daily [[aspartame]] consumption leads to heritable cognitive deficits in mice – and more broadly that the [[exposome]] of men may also affect the mental health of the next generation (19 Sep),<!--https://newatlas.com/medical/aspartame-artificial-sweetener-memory-loss/--><ref>{{#invoke:cite journal||last1=Jones |first1=Sara K. |last2=McCarthy |first2=Deirdre M. |last3=Stanwood |first3=Gregg D. |last4=Schatschneider |first4=Christopher |last5=Bhide |first5=Pradeep G. |title=Learning and memory deficits produced by aspartame are heritable via the paternal lineage |journal=Scientific Reports |date=31 August 2023 |volume=13 |issue=1 |page=14326 |doi=10.1038/s41598-023-41213-2 |pmid=37652922 |pmc=10471780 |bibcode=2023NatSR..1314326J |language=en |issn=2045-2322|doi-access=free}}</ref> a study {{tooltip|reports|"During the period 2010–2019, 2.18 billion people were exposed to at least 1 day of substantial LFS air pollution per year, with each person in the world having, on average, 9.9 days of exposure per year. These two metrics increased by 6.8% and 2.1%, respectively, compared with 2000–2009."}} an increasing global exposure to [[air pollution]] from fires (20 Sep).<!--https://cosmosmagazine.com/earth/climate/bushfire-smoke-increasing-global-public-health-concern/--><ref>{{#invoke:cite journal||last1=Xu |first1=Rongbin |last2=Ye |first2=Tingting |last3=Yue |first3=Xu |last4=Yang |first4=Zhengyu |last5=Yu |first5=Wenhua |last6=Zhang |first6=Yiwen |last7=Bell |first7=Michelle L. |last8=Morawska |first8=Lidia |last9=Yu |first9=Pei |last10=Zhang |first10=Yuxi |last11=Wu |first11=Yao |last12=Liu |first12=Yanming |last13=Johnston |first13=Fay |last14=Lei |first14=Yadong |last15=Abramson |first15=Michael J. |last16=Guo |first16=Yuming |last17=Li |first17=Shanshan |title=Global population exposure to landscape fire air pollution from 2000 to 2019 |journal=Nature |date=September 2023 |volume=621 |issue=7979 |pages=521–529 |doi=10.1038/s41586-023-06398-6 |pmid=37730866 |pmc=10511322 |bibcode=2023Natur.621..521X |language=en |issn=1476-4687|doi-access=free}}</ref>
* {{vanchor|Hazards_September|text=[[Hazard]] research is published}}: news outlets report on a study (29 Aug) that shows an association between consumption of [[sweetener]] [[aspartame]] during pregnancy and [[autism]] in male offspring (1 Sep),<!--https://www.news-medical.net/news/20230901/Link-between-daily-diet-soda-and-aspartame-intake-in-early-life-with-autism-in-males.aspx--><ref>{{#invoke:cite journal||last1=Fowler |first1=Sharon Parten |last2=Gimeno Ruiz de Porras |first2=David |last3=Swartz |first3=Michael D. |last4=Stigler Granados |first4=Paula |last5=Heilbrun |first5=Lynne Parsons |last6=Palmer |first6=Raymond F. |title=Daily Early-Life Exposures to Diet Soda and Aspartame Are Associated with Autism in Males: A Case-Control Study |journal=Nutrients |date=January 2023 |volume=15 |issue=17 |page=3772 |doi=10.3390/nu15173772 |pmid=37686804 |pmc=10490529 |language=en |issn=2072-6643|doi-access=free}}</ref> an analysis of [[Global Burden of Disease Study|GBD study]] data shows pre-50 early-onset cancer cases rose by ~80% in 30 years (5 Sep),<!--https://edition.cnn.com/2023/09/05/health/as-cancer-cases-rise-among-younger-adults-some-types-of-the-disease-have-higher-burden-than-others-study-finds/index.html--><ref>{{#invoke:cite journal||last1=Zhao |first1=Jianhui |last2=Xu |first2=Liying |last3=Sun |first3=Jing |last4=Song |first4=Mingyang |last5=Wang |first5=Lijuan |last6=Yuan |first6=Shuai |last7=Zhu |first7=Yingshuang |last8=Wan |first8=Zhengwei |last9=Larsson |first9=Susanna |last10=Tsilidis |first10=Konstantinos |last11=Dunlop |first11=Malcolm |last12=Campbell |first12=Harry |last13=Rudan |first13=Igor |last14=Song |first14=Peige |last15=Theodoratou |first15=Evropi |last16=Ding |first16=Kefeng |last17=Li |first17=Xue |title=Global trends in incidence, death, burden and risk factors of early-onset cancer from 1990 to 2019 |journal=BMJ Oncology |date=5 September 2023 |volume=2 |issue=1 |pages=e000049 |doi=10.1136/bmjonc-2023-000049 |s2cid=261589293 |language=en |issn=2752-7948|doi-access=free }}</ref> a study shows [[Eco-economic decoupling|decoupling]] rates in high-income countries are inadequate for [[Paris Agreement]] commitments and suggests [[post-growth]] approaches such as [[Demand#Demand reduction|demand reduction]] [[Economics of climate change mitigation#Degrowth|strategies]] and reorienting the economy (5 Sep),<!--https://www.mdr.de/wissen/Gruenes-Wachstum-bisher-eher-Greenwashing-100.html--><ref>{{#invoke:cite journal||last1=Vogel |first1=Jefim |last2=Hickel |first2=Jason |title=Is green growth happening? An empirical analysis of achieved versus Paris-compliant CO2–GDP decoupling in high-income countries |journal=The Lancet Planetary Health |date=September 2023 |volume=7 |issue=9 |pages=e759–e769 |doi=10.1016/S2542-5196(23)00174-2|pmid=37673546 |s2cid=261551290 |url=http://eprints.lse.ac.uk/120169/1/1_s2.0_S2542519623001742_main.pdf }}</ref> evidence of impacts of chronic and extreme heat exposure during pregnancy accumulates (7 Sep),<!--https://jamanetwork.com/journals/jamanetworkopen/fullarticle/2809055--><ref>{{#invoke:cite news||title=Extreme heat exposure during pregnancy can raise risk of severe delivery complications, new study finds |url=https://www.pbs.org/newshour/health/extreme-heat-exposure-during-pregnancy-can-raise-risk-of-severe-delivery-complications-new-study-finds |access-date=11 November 2023 |work=PBS NewsHour |date=10 September 2023 |language=en-us}}</ref><ref>{{#invoke:cite journal||last1=Chersich |first1=Matthew Francis |last2=Pham |first2=Minh Duc |last3=Areal |first3=Ashtyn |last4=Haghighi |first4=Marjan Mosalam |last5=Manyuchi |first5=Albert |last6=Swift |first6=Callum P. |last7=Wernecke |first7=Bianca |last8=Robinson |first8=Matthew |last9=Hetem |first9=Robyn |last10=Boeckmann |first10=Melanie |last11=Hajat |first11=Shakoor |title=Associations between high temperatures in pregnancy and risk of preterm birth, low birth weight, and stillbirths: systematic review and meta-analysis |journal=BMJ |date=4 November 2020 |volume=371 |pages=m3811 |doi=10.1136/bmj.m3811 |pmid=33148618 |pmc=7610201 |language=en |issn=1756-1833 |quote=Temperature rises with global warming could have major implications for child health.}}</ref><ref>{{#invoke:cite journal||last1=Samuels |first1=Louisa |last2=Nakstad |first2=Britt |last3=Roos |first3=Nathalie |last4=Bonell |first4=Ana |last5=Chersich |first5=Matthew |last6=Havenith |first6=George |last7=Luchters |first7=Stanley |last8=Day |first8=Louise-Tina |last9=Hirst |first9=Jane E. |last10=Singh |first10=Tanya |last11=Elliott-Sale |first11=Kirsty |last12=Hetem |first12=Robyn |last13=Part |first13=Cherie |last14=Sawry |first14=Shobna |last15=Le Roux |first15=Jean |last16=Kovats |first16=Sari |title=Physiological mechanisms of the impact of heat during pregnancy and the clinical implications: review of the evidence from an expert group meeting |journal=International Journal of Biometeorology |date=1 August 2022 |volume=66 |issue=8 |pages=1505–1513 |doi=10.1007/s00484-022-02301-6 |pmid=35554684 |pmc=9300488 |bibcode=2022IJBm...66.1505S |language=en |issn=1432-1254 |quote=Research is urgently needed to identify what causes the adverse outcomes in pregnancy related to high ambient temperatures so that the impact of climate change on pregnant women can be mitigated.}}</ref> a study shows early prevention of [[type 2 diabetes]] {{tooltip|may save many years|It found that every decade of earlier diagnosis of diabetes was associated with about 3–4 years of lower life expectancy}} of life (11 Sep),<!--https://www.upi.com/Health_News/2023/10/05/diabetes-life-span/7971696516995/--><ref>{{#invoke:cite journal||last1=Kaptoge |first1=S |last2=Seshasai |first2=Srk |display-authors=et al.|title=Life expectancy associated with different ages at diagnosis of type 2 diabetes in high-income countries: 23 million person-years of observation |journal=The Lancet Diabetes & Endocrinology |date=October 2023 |volume=11 |issue=10 |pages=731–742 |doi=10.1016/S2213-8587(23)00223-1|pmid=37708900 |pmc=7615299 |doi-access=free}}</ref> a study estimates around [[List of causes of death by rate|5 million adults died]] from cardiovascular disease due to [[Lead poisoning|lead exposure]] in 2019 (11 Sep),<!--https://medicalxpress.com/news/2023-09-poisoning-death-iq-loss-thought.html--><ref>{{#invoke:cite journal||last1=Larsen |first1=Bjorn |last2=Sánchez-Triana |first2=Ernesto |title=Global health burden and cost of lead exposure in children and adults: a health impact and economic modelling analysis |journal=The Lancet Planetary Health |date=October 2023 |volume=7 |issue=10 |pages=e831–e840 |doi=10.1016/S2542-5196(23)00166-3|pmid=37714172 |doi-access=free}}</ref> shortly after a [[scientific review|review]] about biodiversity-related harmful effects on ecosystems by non-native ant invasions (29 Jul),<!--https://phys.org/news/2023-09-invasive-ants-silent-threat-ecosystems.html--> the fifth-costliest invasive species, the [[Solenopsis invicta|red fire ant]], is reported to have established itself in the [[Climate change in Europe|warming Europe]] via colonies in [[Sicily]] (11 Sep),<!--https://cosmosmagazine.com/nature/animals/alien-ants-invade-europe-for-the-first-time/--><ref>{{#invoke:cite journal||last1=Menchetti |first1=Mattia |last2=Schifani |first2=Enrico |last3=Alicata |first3=Antonio |last4=Cardador |first4=Laura |last5=Sbrega |first5=Elisabetta |last6=Toro-Delgado |first6=Eric |last7=Vila |first7=Roger |title=The invasive ant Solenopsis invicta is established in Europe |journal=Current Biology |date=September 2023 |volume=33 |issue=17 |pages=R896–R897 |doi=10.1016/j.cub.2023.07.036|pmid=37699343 |s2cid=261688271 |doi-access=free |bibcode=2023CBio...33R.896M }}</ref><ref>{{#invoke:cite journal||last1=Tercel |first1=Maximillian P. T. G. |last2=Cuff |first2=Jordan P. |last3=Symondson |first3=William O. C. |last4=Vaughan |first4=Ian P. |title=Non-native ants drive dramatic declines in animal community diversity: A meta-analysis |journal=Insect Conservation and Diversity |date=November 2023 |volume=16 |issue=6 |pages=733–744 |doi=10.1111/icad.12672 |language=en |issn=1752-458X|doi-access=free|pmid=38505669 |pmc=10947240 }}</ref> a [[product test]]ing study shows [[Cleaning agent|cleaning products]] emit substantial amounts of [[indoor air quality|hazardous]] [[volatile organic compounds|VOCs]], such as chloroform, with the lowest quantities in green fragrance-free products (12 Sep),<!--https://medicalxpress.com/news/2023-09-products-emit-hundreds-hazardous-chemicals.html--><ref>{{#invoke:cite journal||last1=Temkin |first1=Alexis M. |last2=Geller |first2=Samara L. |last3=Swanson |first3=Sydney A. |last4=Leiba |first4=Nneka S. |last5=Naidenko |first5=Olga V. |last6=Andrews |first6=David Q. |title=Volatile organic compounds emitted by conventional and "green" cleaning products in the U.S. market |journal=Chemosphere |date=1 November 2023 |volume=341 |page=139570 |doi=10.1016/j.chemosphere.2023.139570 |pmid=37709066 |bibcode=2023Chmsp.34139570T |s2cid=261796578 |issn=0045-6535|doi-access=free }}</ref> the [[planetary boundaries]] framework assessment gets updated, incorporating freshwater change as a sixth [[Earth system]] dimension above its capacity limit (13 Sep),<!--https://us.cnn.com/2023/09/13/world/planetary-boundaries-humanity-climate/index.html--><ref>{{#invoke:cite journal||last1=Richardson |first1=Katherine |last2=Steffen |first2=Will |last3=Lucht |first3=Wolfgang |last4=Bendtsen |first4=Jørgen |last5=Cornell |first5=Sarah E. |last6=Donges |first6=Jonathan F. |last7=Drüke |first7=Markus |last8=Fetzer |first8=Ingo |last9=Bala |first9=Govindasamy |last10=von Bloh |first10=Werner |last11=Feulner |first11=Georg |last12=Fiedler |first12=Stephanie |last13=Gerten |first13=Dieter |last14=Gleeson |first14=Tom |last15=Hofmann |first15=Matthias |last16=Huiskamp |first16=Willem |last17=Kummu |first17=Matti |last18=Mohan |first18=Chinchu |last19=Nogués-Bravo |first19=David |last20=Petri |first20=Stefan |last21=Porkka |first21=Miina |last22=Rahmstorf |first22=Stefan |last23=Schaphoff |first23=Sibyll |last24=Thonicke |first24=Kirsten |last25=Tobian |first25=Arne |last26=Virkki |first26=Vili |last27=Wang-Erlandsson |first27=Lan |last28=Weber |first28=Lisa |last29=Rockström |first29=Johan |title=Earth beyond six of nine planetary boundaries |journal=Science Advances |date=15 September 2023 |volume=9 |issue=37 |pages=eadh2458 |doi=10.1126/sciadv.adh2458 |pmid=37703365 |pmc=10499318 |bibcode=2023SciA....9H2458R |language=en |issn=2375-2548}}</ref> news outlets report on a study (31 Aug) that shows daily [[aspartame]] consumption leads to heritable cognitive deficits in mice – and more broadly that the [[exposome]] of men may also affect the mental health of the next generation (19 Sep),<!--https://newatlas.com/medical/aspartame-artificial-sweetener-memory-loss/--><ref>{{#invoke:cite journal||last1=Jones |first1=Sara K. |last2=McCarthy |first2=Deirdre M. |last3=Stanwood |first3=Gregg D. |last4=Schatschneider |first4=Christopher |last5=Bhide |first5=Pradeep G. |title=Learning and memory deficits produced by aspartame are heritable via the paternal lineage |journal=Scientific Reports |date=31 August 2023 |volume=13 |issue=1 |page=14326 |doi=10.1038/s41598-023-41213-2 |pmid=37652922 |pmc=10471780 |bibcode=2023NatSR..1314326J |language=en |issn=2045-2322|doi-access=free}}</ref> a study {{tooltip|reports|"During the period 2010–2019, 2.18 billion people were exposed to at least 1 day of substantial LFS air pollution per year, with each person in the world having, on average, 9.9 days of exposure per year. These two metrics increased by 6.8% and 2.1%, respectively, compared with 2000–2009."}} an increasing global exposure to [[air pollution]] from fires (20 Sep).<!--https://cosmosmagazine.com/earth/climate/bushfire-smoke-increasing-global-public-health-concern/--><ref>{{#invoke:cite journal||last1=Xu |first1=Rongbin |last2=Ye |first2=Tingting |last3=Yue |first3=Xu |last4=Yang |first4=Zhengyu |last5=Yu |first5=Wenhua |last6=Zhang |first6=Yiwen |last7=Bell |first7=Michelle L. |last8=Morawska |first8=Lidia |last9=Yu |first9=Pei |last10=Zhang |first10=Yuxi |last11=Wu |first11=Yao |last12=Liu |first12=Yanming |last13=Johnston |first13=Fay |last14=Lei |first14=Yadong |last15=Abramson |first15=Michael J. |last16=Guo |first16=Yuming |last17=Li |first17=Shanshan |title=Global population exposure to landscape fire air pollution from 2000 to 2019 |journal=Nature |date=September 2023 |volume=621 |issue=7979 |pages=521–529 |doi=10.1038/s41586-023-06398-6 |pmid=37730866 |pmc=10511322 |bibcode=2023Natur.621..521X |language=en |issn=1476-4687|doi-access=free}}</ref>
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**NASA launches its ''[[Psyche (spacecraft)|Psyche]]'' mission to visit the large metallic asteroid [[16 Psyche]].<ref>{{#invoke:cite news||title=Nasa probe launches to metal asteroid Psyche|url=https://www.bbc.co.uk/news/science-environment-67099605 |date=13 October 2023 |work=BBC News|access-date=13 October 2023 }}</ref>
**NASA launches its ''[[Psyche (spacecraft)|Psyche]]'' mission to visit the large metallic asteroid [[16 Psyche]].<ref>{{#invoke:cite news||title=Nasa probe launches to metal asteroid Psyche|url=https://www.bbc.co.uk/news/science-environment-67099605 |date=13 October 2023 |work=BBC News|access-date=13 October 2023 }}</ref>
**A [[meta-analysis]] finds that three doses of a [[COVID-19 vaccine]] offer 69% effectiveness against [[long COVID]], while two doses offer 37% efficacy.<ref>{{#invoke:cite news||title=Review estimates 69% 3-dose vaccine efficacy against long COVID|url=https://www.cidrap.umn.edu/covid-19/review-estimates-69-3-dose-vaccine-efficacy-against-long-covid |date=13 October 2023 |work=University of Minnesota|access-date=15 October 2023 }}</ref><ref>{{#invoke:cite journal||last1=Marra |first1=Alexandre R. |last2=Kobayashi |first2=Takaaki |last3=Callado |first3=Gustavo Yano |last4=Pardo |first4=Isabele |last5=Gutfreund |first5=Maria Celidonio |last6=Hsieh |first6=Mariana Kim |last7=Lin |first7=Vivian |last8=Alsuhaibani |first8=Mohammed |last9=Hasegawa |first9=Shinya |last10=Tholany |first10=Joseph |last11=Perencevich |first11=Eli N. |last12=Salinas |first12=Jorge L. |last13=Edmond |first13=Michael B. |last14=Rizzo |first14=Luiz Vicente |title=The effectiveness of COVID-19 vaccine in the prevention of post-COVID conditions: a systematic literature review and meta-analysis of the latest research |journal=Antimicrobial Stewardship & Healthcare Epidemiology |date=January 2023 |volume=3 |issue=1 |pages=e168 |doi=10.1017/ash.2023.447 |pmid=38028898 |pmc=10644173 |language=en |issn=2732-494X|doi-access=free}}</ref>
**A [[meta-analysis]] finds that three doses of a [[COVID-19 vaccine]] offer 69% effectiveness against [[long COVID]], while two doses offer 37% efficacy.<ref>{{#invoke:cite news||title=Review estimates 69% 3-dose vaccine efficacy against long COVID|url=https://www.cidrap.umn.edu/covid-19/review-estimates-69-3-dose-vaccine-efficacy-against-long-covid |date=13 October 2023 |work=University of Minnesota|access-date=15 October 2023 }}</ref><ref>{{#invoke:cite journal||last1=Marra |first1=Alexandre R. |last2=Kobayashi |first2=Takaaki |last3=Callado |first3=Gustavo Yano |last4=Pardo |first4=Isabele |last5=Gutfreund |first5=Maria Celidonio |last6=Hsieh |first6=Mariana Kim |last7=Lin |first7=Vivian |last8=Alsuhaibani |first8=Mohammed |last9=Hasegawa |first9=Shinya |last10=Tholany |first10=Joseph |last11=Perencevich |first11=Eli N. |last12=Salinas |first12=Jorge L. |last13=Edmond |first13=Michael B. |last14=Rizzo |first14=Luiz Vicente |title=The effectiveness of COVID-19 vaccine in the prevention of post-COVID conditions: a systematic literature review and meta-analysis of the latest research |journal=Antimicrobial Stewardship & Healthcare Epidemiology |date=January 2023 |volume=3 |issue=1 |pages=e168 |doi=10.1017/ash.2023.447 |pmid=38028898 |pmc=10644173 |language=en |issn=2732-494X|doi-access=free}}</ref>
** 21 studies provide new insights about the human brain at the [[Brain cell|cellular]] level such as [[Transcriptomics technologies|identifying and characterizing]] differentially [[gene expression|expressed genes]] in shared cell-types in [[middle temporal gyrus|a language-associated region of the cortex]] [[Evolution of the brain#Genetic factors of recent evolution|compared]] to other apes<ref>{{#invoke:cite journal||last1=Jorstad |first1=Nikolas L. |last2=Song |first2=Janet H. T. |last3=Exposito-Alonso |first3=David |display-authors=et al. |title=Comparative transcriptomics reveals human-specific cortical features |journal=Science |date=13 October 2023 |volume=382 |issue=6667 |pages=eade9516 |doi=10.1126/science.ade9516 |pmid=37824638 |pmc=10659116 |language=en |issn=0036-8075}}</ref> and showing [[human variability]] of the expression of 150–250 genes for most cell types of profiled<!--([[gene expression profiling]] and [[whole-genome sequencing]])--> cortical tissues of 75 individuals with brain diseases.<ref>{{#invoke:cite journal||last1=Johansen |first1=Nelson |last2=Somasundaram |first2=Saroja |last3=Travaglini |first3=Kyle J. |display-authors=et al. |title=Interindividual variation in human cortical cell type abundance and expression |journal=Science |date=13 October 2023 |volume=382 |issue=6667 |pages=eadf2359 |doi=10.1126/science.adf2359 |pmid=37824649 |s2cid=263908762 |url=https://www.science.org/doi/10.1126/science.adf2359 |language=en |issn=0036-8075|url-access=subscription}}</ref><ref>{{#invoke:cite news||title=What a look at more than 3,000 kinds of cells in the human brain tells us |url=https://www.sciencenews.org/article/human-brain-cells-new-census |access-date=14 December 2023 |work=[[Science News]] |date=12 October 2023}}</ref>
** 21 studies provide new insights about the human brain at the [[Brain cell|cellular]] level such as [[Transcriptomics technologies|identifying and characterizing]] differentially [[gene expression|expressed genes]] in shared cell-types in [[middle temporal gyrus|a language-associated region of the cortex]] [[Evolution of the brain#Genetic factors of recent evolution|compared]] to other apes<ref>{{#invoke:cite journal||last1=Jorstad |first1=Nikolas L. |last2=Song |first2=Janet H. T. |last3=Exposito-Alonso |first3=David |display-authors=et al. |title=Comparative transcriptomics reveals human-specific cortical features |journal=Science |date=13 October 2023 |volume=382 |issue=6667 |pages=eade9516 |doi=10.1126/science.ade9516 |pmid=37824638 |pmc=10659116 |bibcode=2023Sci...382e9516J |language=en |issn=0036-8075}}</ref> and showing [[human variability]] of the expression of 150–250 genes for most cell types of profiled<!--([[gene expression profiling]] and [[whole-genome sequencing]])--> cortical tissues of 75 individuals with brain diseases.<ref>{{#invoke:cite journal||last1=Johansen |first1=Nelson |last2=Somasundaram |first2=Saroja |last3=Travaglini |first3=Kyle J. |display-authors=et al. |title=Interindividual variation in human cortical cell type abundance and expression |journal=Science |date=13 October 2023 |volume=382 |issue=6667 |pages=eadf2359 |doi=10.1126/science.adf2359 |pmid=37824649 |bibcode=2023Sci...382f2359J |s2cid=263908762 |url=https://www.science.org/doi/10.1126/science.adf2359 |language=en |issn=0036-8075|url-access=subscription}}</ref><ref>{{#invoke:cite news||title=What a look at more than 3,000 kinds of cells in the human brain tells us |url=https://www.sciencenews.org/article/human-brain-cells-new-census |access-date=14 December 2023 |work=[[Science News]] |date=12 October 2023}}</ref>
** A [[policy studies]] [[scientific review|review]] of 200 guidelines about AI [[AI ethics|ethics]], [[AI safety|safety]] and [[Regulation of artificial intelligence|governance]] summarizes resonating principles and common concerns, providing an evaluating situation report amid what it calls an "AI ethics [[AI boom|boom]]".<!--https://techxplore.com/news/2023-10-global-consensus-ethical-ai.html--><ref>{{#invoke:cite journal||last1=Corrêa |first1=Nicholas Kluge |last2=Galvão |first2=Camila |last3=Santos |first3=James William |last4=Del Pino |first4=Carolina |last5=Pinto |first5=Edson Pontes |last6=Barbosa |first6=Camila |last7=Massmann |first7=Diogo |last8=Mambrini |first8=Rodrigo |last9=Galvão |first9=Luiza |last10=Terem |first10=Edmund |last11=de Oliveira |first11=Nythamar |title=Worldwide AI ethics: A review of 200 guidelines and recommendations for AI governance |journal=Patterns |date=October 2023 |volume=4 |issue=10 |page=100857 |doi=10.1016/j.patter.2023.100857 |pmid=37876898 |pmc=10591196 |issn=2666-3899|doi-access=free}}</ref>
** A [[policy studies]] [[scientific review|review]] of 200 guidelines about AI [[AI ethics|ethics]], [[AI safety|safety]] and [[Regulation of artificial intelligence|governance]] summarizes resonating principles and common concerns, providing an evaluating situation report amid what it calls an "AI ethics [[AI boom|boom]]".<!--https://techxplore.com/news/2023-10-global-consensus-ethical-ai.html--><ref>{{#invoke:cite journal||last1=Corrêa |first1=Nicholas Kluge |last2=Galvão |first2=Camila |last3=Santos |first3=James William |last4=Del Pino |first4=Carolina |last5=Pinto |first5=Edson Pontes |last6=Barbosa |first6=Camila |last7=Massmann |first7=Diogo |last8=Mambrini |first8=Rodrigo |last9=Galvão |first9=Luiza |last10=Terem |first10=Edmund |last11=de Oliveira |first11=Nythamar |title=Worldwide AI ethics: A review of 200 guidelines and recommendations for AI governance |journal=Patterns |date=October 2023 |volume=4 |issue=10 |page=100857 |doi=10.1016/j.patter.2023.100857 |pmid=37876898 |pmc=10591196 |issn=2666-3899|doi-access=free}}</ref>
* {{vanchor|14 October}} – The [[Joint European Torus]] nuclear fusion laboratory conducts its final experiments after 40 years in operation.<ref>{{#invoke:cite web||first=Esme |last=Stallard |url=https://www.bbc.com/news/science-environment-67101176 |title=UK's nuclear fusion site ends experiments after 40 years |date=13 October 2023 |access-date=14 October 2023 |work=BBC News |publisher=BBC}}</ref>
* {{vanchor|14 October}} – The [[Joint European Torus]] nuclear fusion laboratory conducts its final experiments after 40 years in operation.<ref>{{#invoke:cite web||first=Esme |last=Stallard |url=https://www.bbc.com/news/science-environment-67101176 |title=UK's nuclear fusion site ends experiments after 40 years |date=13 October 2023 |access-date=14 October 2023 |work=BBC News |publisher=BBC}}</ref>
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**The coalition of research organizations and science funders behind [[Plan S]] publishes a proposal for moving [[scholarly communication]] towards [[open science]] [[Metascience|practices]] that are more transparent, [[open access|accessible]], efficient and without [[Article processing charges|author fees]].<!--https://sciencebusiness.net/news/open-science/new-wave-support-musters-push-open-access-publishing--><ref>{{#invoke:cite journal||last1=Sanderson |first1=Katharine |title=Who should pay for open-access publishing? APC alternatives emerge |journal=Nature |date=14 November 2023 |volume=623 |issue=7987 |pages=472–473 |language=en |doi=10.1038/d41586-023-03506-4|pmid=37964063 |bibcode=2023Natur.623..472S |doi-access=free }}</ref><ref>{{#invoke:cite web||title=Towards Responsible Publishing {{!}} Plan S |url=https://www.coalition-s.org/towards-responsible-publishing/ |website=www.coalition-s.org |access-date=17 December 2023}}</ref>
**The coalition of research organizations and science funders behind [[Plan S]] publishes a proposal for moving [[scholarly communication]] towards [[open science]] [[Metascience|practices]] that are more transparent, [[open access|accessible]], efficient and without [[Article processing charges|author fees]].<!--https://sciencebusiness.net/news/open-science/new-wave-support-musters-push-open-access-publishing--><ref>{{#invoke:cite journal||last1=Sanderson |first1=Katharine |title=Who should pay for open-access publishing? APC alternatives emerge |journal=Nature |date=14 November 2023 |volume=623 |issue=7987 |pages=472–473 |language=en |doi=10.1038/d41586-023-03506-4|pmid=37964063 |bibcode=2023Natur.623..472S |doi-access=free }}</ref><ref>{{#invoke:cite web||title=Towards Responsible Publishing {{!}} Plan S |url=https://www.coalition-s.org/towards-responsible-publishing/ |website=www.coalition-s.org |access-date=17 December 2023}}</ref>
* {{vanchor|Hazards_October|text=[[Hazard]] research is published}}: a study further confirms<!--https://www.independent.co.uk/climate-change/news/intolerable-heat-2-billion-people-suffering-b2427135.html--><ref>{{#invoke:cite journal||last1=Powis |first1=Carter M. |last2=Byrne |first2=David |last3=Zobel |first3=Zachary |last4=Gassert |first4=Kelly N. |last5=Lute |first5=A. C. |last6=Schwalm |first6=Christopher R. |title=Observational and model evidence together support wide-spread exposure to noncompensable heat under continued global warming |journal=Science Advances |date=8 September 2023 |volume=9 |issue=36 |pages=eadg9297 |doi=10.1126/sciadv.adg9297 |pmid=37682995 |pmc=10491292 |bibcode=2023SciA....9G9297P |language=en |issn=2375-2548}}</ref> noncompensable moist heat extremes will be beyond bounds of past human evolutionary environments [[Effects of climate change|for billions of people]] (9 Oct),<!--https://www.washingtonpost.com/weather/2023/10/09/heat-waves-increased-temperatures-climate-change/--><ref>{{#invoke:cite journal||last1=Vecellio |first1=Daniel J. |last2=Kong |first2=Qinqin |last3=Kenney |first3=W. Larry |last4=Huber |first4=Matthew |title=Greatly enhanced risk to humans as a consequence of empirically determined lower moist heat stress tolerance |journal=Proceedings of the National Academy of Sciences |date=17 October 2023 |volume=120 |issue=42 |pages=e2305427120 |doi=10.1073/pnas.2305427120 |pmid=37812703 |pmc=10589700 |bibcode=2023PNAS..12005427V |language=en |issn=0027-8424}}</ref> an analysis calls for [[health policy]] regarding unhealthy [[Nova classification#Group 4: Ultra-processed foods|ultra-processed foods]] (9 Oct),<!--https://medicalxpress.com/news/2023-10-adverse-effects-ultra-processed-foods.html--><ref>{{#invoke:cite journal||last1=Touvier |first1=Mathilde |last2=Louzada |first2=Maria Laura da Costa |last3=Mozaffarian |first3=Dariush |last4=Baker |first4=Phillip |last5=Juul |first5=Filippa |last6=Srour |first6=Bernard |title=Ultra-processed foods and cardiometabolic health: public health policies to reduce consumption cannot wait |journal=BMJ |date=9 October 2023 |volume=383 |pages=e075294 |doi=10.1136/bmj-2023-075294 |pmid=37813465 |pmc=10561017 |language=en |issn=1756-1833}}</ref> an analysis calls for action regarding the summarized [[Environmental effects of bitcoin|environmental footprint]] of [[bitcoin mining]] (9 Oct),<!--https://news.sky.com/story/bitcoin-mining-consumes-more-electricity-than-most-countries-study-suggests-12991456--><ref>{{#invoke:cite journal||last1=Chamanara |first1=Sanaz |last2=Ghaffarizadeh |first2=S. Arman |last3=Madani |first3=Kaveh |title=The Environmental Footprint of Bitcoin Mining Across the Globe: Call for Urgent Action |journal=Earth's Future |date=October 2023 |volume=11 |issue=10 |doi=10.1029/2023EF003871 |bibcode=2023EaFut..1103871C |language=en |issn=2328-4277|doi-access=free}}</ref> a global assessment of {{tooltip|risk from increasing|due to climate change and land use}} [[Pollinator decline|pollinator loss]] to crop pollination shows cocoa and coffee at high risk (12 Oct),<!--https://phys.org/news/2023-10-habitat-loss-pollinator-coffee-cocoa.html--><ref>{{#invoke:cite journal||last1=Millard |first1=Joseph |last2=Outhwaite |first2=Charlotte L. |last3=Ceaușu |first3=Silvia |last4=Carvalheiro |first4=Luísa G. |last5=da Silva e Silva |first5=Felipe Deodato |last6=Dicks |first6=Lynn V. |last7=Ollerton |first7=Jeff |last8=Newbold |first8=Tim |title=Key tropical crops at risk from pollinator loss due to climate change and land use |journal=Science Advances |date=13 October 2023 |volume=9 |issue=41 |pages=eadh0756 |doi=10.1126/sciadv.adh0756 |pmid=37824611 |pmc=10569713 |bibcode=2023SciA....9H.756M |language=en |issn=2375-2548|doi-access=free}}</ref> a training [[data poisoning]] technique, 'Nightshade', against [[generative AI]] software specific to select [[prompt engineering|prompts]] is described (20 Oct),<!--https://arstechnica.com/information-technology/2023/10/university-of-chicago-researchers-seek-to-poison-ai-art-generators-with-nightshade/--><ref>{{cite arXiv |title=Prompt-Specific Poisoning Attacks on Text-to-Image Generative Models |eprint=2310.13828 |last1=Shan |first1=Shawn |last2=Ding |first2=Wenxin |last3=Passananti |first3=Josephine |last4=Zheng |first4=Haitao |last5=Zhao |first5=Ben Y. |date=2023 |class=cs.CR }}</ref> a study indicates [[Slow-wave sleep#Problems associated with slow-wave sleep|low deep sleep percentage]] is a modifiable dementia risk factor (30 Oct).<!--https://www.cbc.ca/news/health/deep-sleep-memory-dementia-second-opinion-1.7030143--><ref>{{#invoke:cite journal||last1=Himali |first1=Jayandra J. |last2=Baril |first2=Andree-Ann |last3=Cavuoto |first3=Marina G. |last4=Yiallourou |first4=Stephanie |last5=Wiedner |first5=Crystal D. |last6=Himali |first6=Dibya |last7=DeCarli |first7=Charles |last8=Redline |first8=Susan |last9=Beiser |first9=Alexa S. |last10=Seshadri |first10=Sudha |last11=Pase |first11=Matthew P. |title=Association Between Slow-Wave Sleep Loss and Incident Dementia |journal=JAMA Neurology |date=1 December 2023 |volume=80 |issue=12 |pages=1326–1333 |doi=10.1001/jamaneurol.2023.3889 |pmid=37902739 |pmc=10616771 |s2cid=264589420 |url=https://jamanetwork.com/journals/jamaneurology/article-abstract/2810957|url-access=subscription |pmc-embargo-date=October 30, 2024 }}</ref>
* {{vanchor|Hazards_October|text=[[Hazard]] research is published}}: a study further confirms<!--https://www.independent.co.uk/climate-change/news/intolerable-heat-2-billion-people-suffering-b2427135.html--><ref>{{#invoke:cite journal||last1=Powis |first1=Carter M. |last2=Byrne |first2=David |last3=Zobel |first3=Zachary |last4=Gassert |first4=Kelly N. |last5=Lute |first5=A. C. |last6=Schwalm |first6=Christopher R. |title=Observational and model evidence together support wide-spread exposure to noncompensable heat under continued global warming |journal=Science Advances |date=8 September 2023 |volume=9 |issue=36 |pages=eadg9297 |doi=10.1126/sciadv.adg9297 |pmid=37682995 |pmc=10491292 |bibcode=2023SciA....9G9297P |language=en |issn=2375-2548}}</ref> noncompensable moist heat extremes will be beyond bounds of past human evolutionary environments [[Effects of climate change|for billions of people]] (9 Oct),<!--https://www.washingtonpost.com/weather/2023/10/09/heat-waves-increased-temperatures-climate-change/--><ref>{{#invoke:cite journal||last1=Vecellio |first1=Daniel J. |last2=Kong |first2=Qinqin |last3=Kenney |first3=W. Larry |last4=Huber |first4=Matthew |title=Greatly enhanced risk to humans as a consequence of empirically determined lower moist heat stress tolerance |journal=Proceedings of the National Academy of Sciences |date=17 October 2023 |volume=120 |issue=42 |pages=e2305427120 |doi=10.1073/pnas.2305427120 |pmid=37812703 |pmc=10589700 |bibcode=2023PNAS..12005427V |language=en |issn=0027-8424}}</ref> an analysis calls for [[health policy]] regarding unhealthy [[Nova classification#Group 4: Ultra-processed foods|ultra-processed foods]] (9 Oct),<!--https://medicalxpress.com/news/2023-10-adverse-effects-ultra-processed-foods.html--><ref>{{#invoke:cite journal||last1=Touvier |first1=Mathilde |last2=Louzada |first2=Maria Laura da Costa |last3=Mozaffarian |first3=Dariush |last4=Baker |first4=Phillip |last5=Juul |first5=Filippa |last6=Srour |first6=Bernard |title=Ultra-processed foods and cardiometabolic health: public health policies to reduce consumption cannot wait |journal=BMJ |date=9 October 2023 |volume=383 |pages=e075294 |doi=10.1136/bmj-2023-075294 |pmid=37813465 |pmc=10561017 |language=en |issn=1756-1833}}</ref> an analysis calls for action regarding the summarized [[Environmental effects of bitcoin|environmental footprint]] of [[bitcoin mining]] (9 Oct),<!--https://news.sky.com/story/bitcoin-mining-consumes-more-electricity-than-most-countries-study-suggests-12991456--><ref>{{#invoke:cite journal||last1=Chamanara |first1=Sanaz |last2=Ghaffarizadeh |first2=S. Arman |last3=Madani |first3=Kaveh |title=The Environmental Footprint of Bitcoin Mining Across the Globe: Call for Urgent Action |journal=Earth's Future |date=October 2023 |volume=11 |issue=10 |doi=10.1029/2023EF003871 |bibcode=2023EaFut..1103871C |language=en |issn=2328-4277|doi-access=free}}</ref> a global assessment of {{tooltip|risk from increasing|due to climate change and land use}} [[Pollinator decline|pollinator loss]] to crop pollination shows cocoa and coffee at high risk (12 Oct),<!--https://phys.org/news/2023-10-habitat-loss-pollinator-coffee-cocoa.html--><ref>{{#invoke:cite journal||last1=Millard |first1=Joseph |last2=Outhwaite |first2=Charlotte L. |last3=Ceaușu |first3=Silvia |last4=Carvalheiro |first4=Luísa G. |last5=da Silva e Silva |first5=Felipe Deodato |last6=Dicks |first6=Lynn V. |last7=Ollerton |first7=Jeff |last8=Newbold |first8=Tim |title=Key tropical crops at risk from pollinator loss due to climate change and land use |journal=Science Advances |date=13 October 2023 |volume=9 |issue=41 |pages=eadh0756 |doi=10.1126/sciadv.adh0756 |pmid=37824611 |pmc=10569713 |bibcode=2023SciA....9H.756M |language=en |issn=2375-2548|doi-access=free}}</ref> a training [[data poisoning]] technique, 'Nightshade', against [[generative AI]] software specific to select [[prompt engineering|prompts]] is described (20 Oct),<!--https://arstechnica.com/information-technology/2023/10/university-of-chicago-researchers-seek-to-poison-ai-art-generators-with-nightshade/--><ref>{{cite arXiv |title=Prompt-Specific Poisoning Attacks on Text-to-Image Generative Models |eprint=2310.13828 |last1=Shan |first1=Shawn |last2=Ding |first2=Wenxin |last3=Passananti |first3=Josephine |last4=Zheng |first4=Haitao |last5=Zhao |first5=Ben Y. |date=2023 |class=cs.CR }}</ref> a study indicates [[Slow-wave sleep#Problems associated with slow-wave sleep|low deep sleep percentage]] is a modifiable dementia risk factor (30 Oct).<!--https://www.cbc.ca/news/health/deep-sleep-memory-dementia-second-opinion-1.7030143--><ref>{{#invoke:cite journal||last1=Himali |first1=Jayandra J. |last2=Baril |first2=Andree-Ann |last3=Cavuoto |first3=Marina G. |last4=Yiallourou |first4=Stephanie |last5=Wiedner |first5=Crystal D. |last6=Himali |first6=Dibya |last7=DeCarli |first7=Charles |last8=Redline |first8=Susan |last9=Beiser |first9=Alexa S. |last10=Seshadri |first10=Sudha |last11=Pase |first11=Matthew P. |title=Association Between Slow-Wave Sleep Loss and Incident Dementia |journal=JAMA Neurology |date=1 December 2023 |volume=80 |issue=12 |pages=1326–1333 |doi=10.1001/jamaneurol.2023.3889 |pmid=37902739 |pmc=10616771 |s2cid=264589420 |url=https://jamanetwork.com/journals/jamaneurology/article-abstract/2810957|url-access=subscription |pmc-embargo-date=October 30, 2024 }}</ref>
*{{vanchor|Innovations_October|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: researchers release [[Artificial intelligence in Wikimedia projects|an AI system]], SIDE, to improve source-quality and [[Reliability of Wikipedia|reliability]] of [[Wikipedia#Research use|Wikipedia]] by identifying problematic [[citation]]s and recommending better ones to editors (19 Oct),<!--https://techxplore.com/news/2023-10-ai-boost-wikipedia-reliability.html--><ref>{{#invoke:cite news||last1=Choudhury |first1=Rizwan |title=AI can spot and fix bad references in Wikipedia, study finds |url=https://interestingengineering.com/innovation/ai-can-spot-and-fix-bad-references-in-wikipedia-study-finds |access-date=17 December 2023 |work=[[Interesting Engineering]] |date=21 October 2023}}</ref><ref>{{#invoke:cite journal||last1=Petroni |first1=Fabio |last2=Broscheit |first2=Samuel |last3=Piktus |first3=Aleksandra |last4=Lewis |first4=Patrick |last5=Izacard |first5=Gautier |last6=Hosseini |first6=Lucas |last7=Dwivedi-Yu |first7=Jane |last8=Lomeli |first8=Maria |last9=Schick |first9=Timo |last10=Bevilacqua |first10=Michele |last11=Mazaré |first11=Pierre-Emmanuel |last12=Joulin |first12=Armand |last13=Grave |first13=Edouard |last14=Riedel |first14=Sebastian |title=Improving Wikipedia verifiability with AI |journal=Nature Machine Intelligence |date=October 2023 |volume=5 |issue=10 |pages=1142–1148 |doi=10.1038/s42256-023-00726-1 |language=en |issn=2522-5839|doi-access=free|arxiv=2207.06220 }}</ref> researchers demonstrate potential [[Applications of artificial intelligence|AI applications]] in science such as for research suggestion [[Metascience#Information and communications technologies|tools]] and keeping track of accelerating scientific output.<!--https://techxplore.com/news/2023-10-artificial-intelligence-future.html--><ref>{{#invoke:cite journal||last1=Krenn |first1=Mario |last2=Buffoni |first2=Lorenzo |last3=Coutinho |first3=Bruno |last4=Eppel |first4=Sagi |last5=Foster |first5=Jacob Gates |last6=Gritsevskiy |first6=Andrew |last7=Lee |first7=Harlin |last8=Lu |first8=Yichao |last9=Moutinho |first9=João P. |last10=Sanjabi |first10=Nima |last11=Sonthalia |first11=Rishi |last12=Tran |first12=Ngoc Mai |last13=Valente |first13=Francisco |last14=Xie |first14=Yangxinyu |last15=Yu |first15=Rose |last16=Kopp |first16=Michael |title=Forecasting the future of artificial intelligence with machine learning-based link prediction in an exponentially growing knowledge network |journal=Nature Machine Intelligence |date=November 2023 |volume=5 |issue=11 |pages=1326–1335 |doi=10.1038/s42256-023-00735-0 |language=en |issn=2522-5839|doi-access=free|arxiv=2210.00881 }}</ref><ref>{{cite arXiv |title=Can large language models provide useful feedback on research papers? A large-scale empirical analysis. |eprint=2310.01783 |last1=Liang |first1=Weixin |last2=Zhang |first2=Yuhui |last3=Cao |first3=Hancheng |last4=Wang |first4=Binglu |last5=Ding |first5=Daisy |last6=Yang |first6=Xinyu |last7=Vodrahalli |first7=Kailas |last8=He |first8=Siyu |last9=Smith |first9=Daniel |last10=Yin |first10=Yian |last11=McFarland |first11=Daniel |last12=Zou |first12=James |date=2023 |class=cs.LG }}</ref><ref>{{#invoke:cite news||title=Scientists begin building AI for scientific discovery using tech behind ChatGPT |url=https://techxplore.com/news/2023-10-scientists-ai-scientific-discovery-tech.html |access-date=17 December 2023 |work=[[University of Cambridge]] via techxplore.com |language=en}}</ref>
*{{vanchor|Innovations_October|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: researchers release [[Artificial intelligence in Wikimedia projects|an AI system]], SIDE, to improve source-quality and [[Reliability of Wikipedia|reliability]] of [[Wikipedia#Research use|Wikipedia]] by identifying problematic [[citation]]s and recommending better ones to editors (19 Oct),<!--https://techxplore.com/news/2023-10-ai-boost-wikipedia-reliability.html--><ref>{{#invoke:cite news||last1=Choudhury |first1=Rizwan |title=AI can spot and fix bad references in Wikipedia, study finds |url=https://interestingengineering.com/innovation/ai-can-spot-and-fix-bad-references-in-wikipedia-study-finds |access-date=17 December 2023 |work=Interesting Engineering |date=21 October 2023}}</ref><ref>{{#invoke:cite journal||last1=Petroni |first1=Fabio |last2=Broscheit |first2=Samuel |last3=Piktus |first3=Aleksandra |last4=Lewis |first4=Patrick |last5=Izacard |first5=Gautier |last6=Hosseini |first6=Lucas |last7=Dwivedi-Yu |first7=Jane |last8=Lomeli |first8=Maria |last9=Schick |first9=Timo |last10=Bevilacqua |first10=Michele |last11=Mazaré |first11=Pierre-Emmanuel |last12=Joulin |first12=Armand |last13=Grave |first13=Edouard |last14=Riedel |first14=Sebastian |title=Improving Wikipedia verifiability with AI |journal=Nature Machine Intelligence |date=October 2023 |volume=5 |issue=10 |pages=1142–1148 |doi=10.1038/s42256-023-00726-1 |language=en |issn=2522-5839|doi-access=free|arxiv=2207.06220 }}</ref> researchers demonstrate potential [[Applications of artificial intelligence|AI applications]] in science such as for research suggestion [[Metascience#Information and communications technologies|tools]] and keeping track of accelerating scientific output.<!--https://techxplore.com/news/2023-10-artificial-intelligence-future.html--><ref>{{#invoke:cite journal||last1=Krenn |first1=Mario |last2=Buffoni |first2=Lorenzo |last3=Coutinho |first3=Bruno |last4=Eppel |first4=Sagi |last5=Foster |first5=Jacob Gates |last6=Gritsevskiy |first6=Andrew |last7=Lee |first7=Harlin |last8=Lu |first8=Yichao |last9=Moutinho |first9=João P. |last10=Sanjabi |first10=Nima |last11=Sonthalia |first11=Rishi |last12=Tran |first12=Ngoc Mai |last13=Valente |first13=Francisco |last14=Xie |first14=Yangxinyu |last15=Yu |first15=Rose |last16=Kopp |first16=Michael |title=Forecasting the future of artificial intelligence with machine learning-based link prediction in an exponentially growing knowledge network |journal=Nature Machine Intelligence |date=November 2023 |volume=5 |issue=11 |pages=1326–1335 |doi=10.1038/s42256-023-00735-0 |language=en |issn=2522-5839|doi-access=free|arxiv=2210.00881 }}</ref><ref>{{cite arXiv |title=Can large language models provide useful feedback on research papers? A large-scale empirical analysis. |eprint=2310.01783 |last1=Liang |first1=Weixin |last2=Zhang |first2=Yuhui |last3=Cao |first3=Hancheng |last4=Wang |first4=Binglu |last5=Ding |first5=Daisy |last6=Yang |first6=Xinyu |last7=Vodrahalli |first7=Kailas |last8=He |first8=Siyu |last9=Smith |first9=Daniel |last10=Yin |first10=Yian |last11=McFarland |first11=Daniel |last12=Zou |first12=James |date=2023 |class=cs.LG }}</ref><ref>{{#invoke:cite news||title=Scientists begin building AI for scientific discovery using tech behind ChatGPT |url=https://techxplore.com/news/2023-10-scientists-ai-scientific-discovery-tech.html |access-date=17 December 2023 |work=[[University of Cambridge]] via techxplore.com |language=en}}</ref>
*{{vanchor|Therapeutics_October|text=Promising results of health and medical research are reported}}: breast-cancer detection via cell-free tumor DNA in breastmilk (5 Oct),<!--https://www.nationalgeographic.com.es/ciencia/leche-materna-clave-para-diagnostico-temprano-cancer-mama_20727--><ref>{{#invoke:cite journal||last1=Saura |first1=Cristina |last2=Ortiz |first2=Carolina |last3=Matito |first3=Judit |last4=Arenas |first4=Enrique J. |last5=Suñol |first5=Anna |last6=Martín |first6=Ágatha |last7=Córdoba |first7=Octavi |last8=Martínez-Sabadell |first8=Alex |last9=García-Ruiz |first9=Itziar |last10=Miranda |first10=Ignacio |last11=Morales-Comas |first11=Clara |last12=Carrasco |first12=Estela |last13=Viaplana |first13=Cristina |last14=Peg |first14=Vicente |last15=Nuciforo |first15=Paolo |last16=Bayó-Puxan |first16=Neus |last17=Gonzalez-Medina |first17=Alberto |last18=Miquel |first18=Josep M. |last19=Gómez-Rey |first19=Marina |last20=Villacampa |first20=Guillermo |last21=Arévalo |first21=Silvia |last22=Espinosa-Bravo |first22=Martín |last23=Balmaña |first23=Judith |last24=Dienstmann |first24=Rodrigo |last25=Arribas |first25=Joaquin |last26=Tabernero |first26=Josep |last27=Vivancos |first27=Ana |last28=Sansó |first28=Miriam |title=Early-Stage Breast Cancer Detection in Breast Milk |journal=Cancer Discovery |date=5 October 2023 |volume=13 |issue=10 |pages=2180–2191 |doi=10.1158/2159-8290.cd-22-1340|pmid=37704212 |pmc=10551665 }}</ref> monkey-tested genetically edited humanized kidney [[xenotransplant]] (11 Oct),<ref>{{#invoke:cite journal||last1=Anand |first1=Ranjith P. |last2=Layer |first2=Jacob V. |display-authors=et al. |title=Design and testing of a humanized porcine donor for xenotransplantation |journal=Nature |date=October 2023 |volume=622 |issue=7982 |pages=393–401 |doi=10.1038/s41586-023-06594-4 |pmid=37821590 |pmc=10567564 |bibcode=2023Natur.622..393A |language=en |issn=1476-4687|doi-access=free}}</ref> trialed [[Electrical brain stimulation#Therapeutic applications|electrical brain stimulation]] methods against brain disorders (19 Oct),<!--https://medicalxpress.com/news/2023-10-surgery-free-brain-treatment-dementia.html--><ref>{{#invoke:cite journal||last1=Wessel |first1=Maximilian J. |last2=Beanato |first2=Elena |last3=Popa |first3=Traian |last4=Windel |first4=Fabienne |last5=Vassiliadis |first5=Pierre |last6=Menoud |first6=Pauline |last7=Beliaeva |first7=Valeriia |last8=Violante |first8=Ines R. |last9=Abderrahmane |first9=Hedjoudje |last10=Dzialecka |first10=Patrycja |last11=Park |first11=Chang-Hyun |last12=Maceira-Elvira |first12=Pablo |last13=Morishita |first13=Takuya |last14=Cassara |first14=Antonino M. |last15=Steiner |first15=Melanie |last16=Grossman |first16=Nir |last17=Neufeld |first17=Esra |last18=Hummel |first18=Friedhelm C. |title=Noninvasive theta-burst stimulation of the human striatum enhances striatal activity and motor skill learning |journal=Nature Neuroscience |date=November 2023 |volume=26 |issue=11 |pages=2005–2016 |doi=10.1038/s41593-023-01457-7 |pmid=37857774 |pmc=10620076 |language=en |issn=1546-1726|doi-access=free}}</ref><ref>{{#invoke:cite journal||last1=Violante |first1=Ines R. |last2=Alania |first2=Ketevan |last3=Cassarà |first3=Antonino M. |last4=Neufeld |first4=Esra |last5=Acerbo |first5=Emma |last6=Carron |first6=Romain |last7=Williamson |first7=Adam |last8=Kurtin |first8=Danielle L. |last9=Rhodes |first9=Edward |last10=Hampshire |first10=Adam |last11=Kuster |first11=Niels |last12=Boyden |first12=Edward S. |last13=Pascual-Leone |first13=Alvaro |last14=Grossman |first14=Nir |title=Non-invasive temporal interference electrical stimulation of the human hippocampus |journal=Nature Neuroscience |date=November 2023 |volume=26 |issue=11 |pages=1994–2004 |doi=10.1038/s41593-023-01456-8 |pmid=37857775 |pmc=10620081 |language=en |issn=1546-1726|doi-access=free}}</ref> aged-rats tested blood plasma fraction E5 from young pig blood against aging as measured {{tooltip|[[Aging brain|by cognitive function]] and organ [[biomarker (medicine)|biomarkers]]|the study did not investigate lifespan and the results may not apply to humans}} (24 Oct).<ref>{{#invoke:cite news||title=New compound from pig blood can reverse ageing in rats, study claims |url=https://www.independent.co.uk/news/science/pig-blood-compound-ageing-reverse-b2442176.html |access-date=17 December 2023 |work=The Independent |date=6 November 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Horvath |first1=Steve |author-link1=Steve Horvath |last2=Singh |first2=Kavita |last3=Raj |first3=Ken |last4=Khairnar |first4=Shraddha I. |last5=Sanghavi |first5=Akshay |last6=Shrivastava |first6=Agnivesh |last7=Zoller |first7=Joseph A. |last8=Li |first8=Caesar Z. |last9=Herenu |first9=Claudia B. |last10=Canatelli-Mallat |first10=Martina |last11=Lehmann |first11=Marianne |last12=Habazin |first12=Siniša |last13=Novokmet |first13=Mislav |last14=Vučković |first14=Frano |last15=Solberg Woods |first15=Leah C. |last16=Martinez |first16=Angel Garcia |last17=Wang |first17=Tengfei |last18=Chiavellini |first18=Priscila |last19=Levine |first19=Andrew J. |last20=Chen |first20=Hao |last21=Brooke |first21=Robert T. |last22=Gordevicius |first22=Juozas |last23=Lauc |first23=Gordan |last24=Goya |first24=Rodolfo G. |last25=Katcher |first25=Harold L. |title=Reversal of biological age in multiple rat organs by young porcine plasma fraction |journal=GeroScience |date=24 October 2023 |volume=46 |issue=1 |pages=367–394 |doi=10.1007/s11357-023-00980-6 |pmid=37875652 |language=en |issn=2509-2723|doi-access=free|pmc=10828479 }}</ref>
*{{vanchor|Therapeutics_October|text=Promising results of health and medical research are reported}}: breast-cancer detection via cell-free tumor DNA in breastmilk (5 Oct),<!--https://www.nationalgeographic.com.es/ciencia/leche-materna-clave-para-diagnostico-temprano-cancer-mama_20727--><ref>{{#invoke:cite journal||last1=Saura |first1=Cristina |last2=Ortiz |first2=Carolina |last3=Matito |first3=Judit |last4=Arenas |first4=Enrique J. |last5=Suñol |first5=Anna |last6=Martín |first6=Ágatha |last7=Córdoba |first7=Octavi |last8=Martínez-Sabadell |first8=Alex |last9=García-Ruiz |first9=Itziar |last10=Miranda |first10=Ignacio |last11=Morales-Comas |first11=Clara |last12=Carrasco |first12=Estela |last13=Viaplana |first13=Cristina |last14=Peg |first14=Vicente |last15=Nuciforo |first15=Paolo |last16=Bayó-Puxan |first16=Neus |last17=Gonzalez-Medina |first17=Alberto |last18=Miquel |first18=Josep M. |last19=Gómez-Rey |first19=Marina |last20=Villacampa |first20=Guillermo |last21=Arévalo |first21=Silvia |last22=Espinosa-Bravo |first22=Martín |last23=Balmaña |first23=Judith |last24=Dienstmann |first24=Rodrigo |last25=Arribas |first25=Joaquin |last26=Tabernero |first26=Josep |last27=Vivancos |first27=Ana |last28=Sansó |first28=Miriam |title=Early-Stage Breast Cancer Detection in Breast Milk |journal=Cancer Discovery |date=5 October 2023 |volume=13 |issue=10 |pages=2180–2191 |doi=10.1158/2159-8290.cd-22-1340|pmid=37704212 |pmc=10551665 }}</ref> monkey-tested genetically edited humanized kidney [[xenotransplant]] (11 Oct),<ref>{{#invoke:cite journal||last1=Anand |first1=Ranjith P. |last2=Layer |first2=Jacob V. |display-authors=et al. |title=Design and testing of a humanized porcine donor for xenotransplantation |journal=Nature |date=October 2023 |volume=622 |issue=7982 |pages=393–401 |doi=10.1038/s41586-023-06594-4 |pmid=37821590 |pmc=10567564 |bibcode=2023Natur.622..393A |language=en |issn=1476-4687|doi-access=free}}</ref> trialed [[Electrical brain stimulation#Therapeutic applications|electrical brain stimulation]] methods against brain disorders (19 Oct),<!--https://medicalxpress.com/news/2023-10-surgery-free-brain-treatment-dementia.html--><ref>{{#invoke:cite journal||last1=Wessel |first1=Maximilian J. |last2=Beanato |first2=Elena |last3=Popa |first3=Traian |last4=Windel |first4=Fabienne |last5=Vassiliadis |first5=Pierre |last6=Menoud |first6=Pauline |last7=Beliaeva |first7=Valeriia |last8=Violante |first8=Ines R. |last9=Abderrahmane |first9=Hedjoudje |last10=Dzialecka |first10=Patrycja |last11=Park |first11=Chang-Hyun |last12=Maceira-Elvira |first12=Pablo |last13=Morishita |first13=Takuya |last14=Cassara |first14=Antonino M. |last15=Steiner |first15=Melanie |last16=Grossman |first16=Nir |last17=Neufeld |first17=Esra |last18=Hummel |first18=Friedhelm C. |title=Noninvasive theta-burst stimulation of the human striatum enhances striatal activity and motor skill learning |journal=Nature Neuroscience |date=November 2023 |volume=26 |issue=11 |pages=2005–2016 |doi=10.1038/s41593-023-01457-7 |pmid=37857774 |pmc=10620076 |language=en |issn=1546-1726|doi-access=free}}</ref><ref>{{#invoke:cite journal||last1=Violante |first1=Ines R. |last2=Alania |first2=Ketevan |last3=Cassarà |first3=Antonino M. |last4=Neufeld |first4=Esra |last5=Acerbo |first5=Emma |last6=Carron |first6=Romain |last7=Williamson |first7=Adam |last8=Kurtin |first8=Danielle L. |last9=Rhodes |first9=Edward |last10=Hampshire |first10=Adam |last11=Kuster |first11=Niels |last12=Boyden |first12=Edward S. |last13=Pascual-Leone |first13=Alvaro |last14=Grossman |first14=Nir |title=Non-invasive temporal interference electrical stimulation of the human hippocampus |journal=Nature Neuroscience |date=November 2023 |volume=26 |issue=11 |pages=1994–2004 |doi=10.1038/s41593-023-01456-8 |pmid=37857775 |pmc=10620081 |language=en |issn=1546-1726|doi-access=free}}</ref> aged-rats tested blood plasma fraction E5 from young pig blood against aging as measured {{tooltip|[[Aging brain|by cognitive function]] and organ [[biomarker (medicine)|biomarkers]]|the study did not investigate lifespan and the results may not apply to humans}} (24 Oct).<ref>{{#invoke:cite news||title=New compound from pig blood can reverse ageing in rats, study claims |url=https://www.independent.co.uk/news/science/pig-blood-compound-ageing-reverse-b2442176.html |access-date=17 December 2023 |work=The Independent |date=6 November 2023 |language=en}}</ref><ref>{{#invoke:cite journal||last1=Horvath |first1=Steve |author-link1=Steve Horvath |last2=Singh |first2=Kavita |last3=Raj |first3=Ken |last4=Khairnar |first4=Shraddha I. |last5=Sanghavi |first5=Akshay |last6=Shrivastava |first6=Agnivesh |last7=Zoller |first7=Joseph A. |last8=Li |first8=Caesar Z. |last9=Herenu |first9=Claudia B. |last10=Canatelli-Mallat |first10=Martina |last11=Lehmann |first11=Marianne |last12=Habazin |first12=Siniša |last13=Novokmet |first13=Mislav |last14=Vučković |first14=Frano |last15=Solberg Woods |first15=Leah C. |last16=Martinez |first16=Angel Garcia |last17=Wang |first17=Tengfei |last18=Chiavellini |first18=Priscila |last19=Levine |first19=Andrew J. |last20=Chen |first20=Hao |last21=Brooke |first21=Robert T. |last22=Gordevicius |first22=Juozas |last23=Lauc |first23=Gordan |last24=Goya |first24=Rodolfo G. |last25=Katcher |first25=Harold L. |title=Reversal of biological age in multiple rat organs by young porcine plasma fraction |journal=GeroScience |date=24 October 2023 |volume=46 |issue=1 |pages=367–394 |doi=10.1007/s11357-023-00980-6 |pmid=37875652 |language=en |issn=2509-2723|doi-access=free|pmc=10828479 }}</ref>


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**[[152830 Dinkinesh|Dinkinesh]], previously thought to be a single asteroid, is revealed by NASA's ''[[Lucy (spacecraft)|Lucy]]'' probe to in fact be a binary pair.<ref>{{#invoke:cite web||url=https://www.nasa.gov/image-article/nasas-lucy-spacecraft-discovers-2nd-asteroid-during-dinkinesh-flyby/ |title=NASA's Lucy Spacecraft Discovers 2nd Asteroid During Dinkinesh Flyby |date=2 November 2023 |access-date=2 November 2023 |work=NASA }}</ref><ref name="NYT-20231102">{{#invoke:cite news||last=Miller |first=Katrina |title=NASA's Lucy Mission Set Its Sights on 1 Asteroid. It Found 2. – On its way to the Trojan swarms, the spacecraft made a pit stop at a rock named Dinkinesh — and the images it sent back revealed that this asteroid has its own moon. |url=https://www.nytimes.com/2023/11/02/science/nasa-lucy-mission-dinkinesh-asteroid.html |date=2 November 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20231102214010/https://www.nytimes.com/2023/11/02/science/nasa-lucy-mission-dinkinesh-asteroid.html |archive-date=2 November 2023 |access-date=3 November 2023 }}</ref>
**[[152830 Dinkinesh|Dinkinesh]], previously thought to be a single asteroid, is revealed by NASA's ''[[Lucy (spacecraft)|Lucy]]'' probe to in fact be a binary pair.<ref>{{#invoke:cite web||url=https://www.nasa.gov/image-article/nasas-lucy-spacecraft-discovers-2nd-asteroid-during-dinkinesh-flyby/ |title=NASA's Lucy Spacecraft Discovers 2nd Asteroid During Dinkinesh Flyby |date=2 November 2023 |access-date=2 November 2023 |work=NASA }}</ref><ref name="NYT-20231102">{{#invoke:cite news||last=Miller |first=Katrina |title=NASA's Lucy Mission Set Its Sights on 1 Asteroid. It Found 2. – On its way to the Trojan swarms, the spacecraft made a pit stop at a rock named Dinkinesh — and the images it sent back revealed that this asteroid has its own moon. |url=https://www.nytimes.com/2023/11/02/science/nasa-lucy-mission-dinkinesh-asteroid.html |date=2 November 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20231102214010/https://www.nytimes.com/2023/11/02/science/nasa-lucy-mission-dinkinesh-asteroid.html |archive-date=2 November 2023 |access-date=3 November 2023 }}</ref>
*{{vanchor|5 November}} – A new record high [[Solar-cell efficiency|efficiency]] of 33.9% is reported for a [[silicon]]-[[perovskite]] tandem solar cell. This also surpasses the [[Shockley–Queisser limit|Shockley-Quieser]] theoretical limit of 33.7% of single junction solar cells for the first time.<ref>{{#invoke:cite web||url=https://www.independent.co.uk/tech/solar-panel-world-record-perovskite-renewable-energy-b2444254.html |title=Solar panel world record smashed with 'miracle material' |date=9 November 2023 |access-date=9 November 2023 |work=The Independent}}</ref>
*{{vanchor|5 November}} – A new record high [[Solar-cell efficiency|efficiency]] of 33.9% is reported for a [[silicon]]-[[perovskite]] tandem solar cell. This also surpasses the [[Shockley–Queisser limit|Shockley-Quieser]] theoretical limit of 33.7% of single junction solar cells for the first time.<ref>{{#invoke:cite web||url=https://www.independent.co.uk/tech/solar-panel-world-record-perovskite-renewable-energy-b2444254.html |title=Solar panel world record smashed with 'miracle material' |date=9 November 2023 |access-date=9 November 2023 |work=The Independent}}</ref>
*{{vanchor|6 November}} – Scientists release the first [[connectome]] of [[neuropeptide]] [[Neuron#Nonelectrochemical signaling|signaling]] in an animal nervous system (''[[C. elegans]]'').<!--https://phys.org/news/2023-11-wireless-worm-nervous-revealed.html--><ref>{{#invoke:cite journal||last1=Ripoll-Sánchez |first1=Lidia |last2=Watteyne |first2=Jan |last3=Sun |first3=HaoSheng |last4=Fernandez |first4=Robert |last5=Taylor |first5=Seth R. |last6=Weinreb |first6=Alexis |last7=Bentley |first7=Barry L. |last8=Hammarlund |first8=Marc |last9=Miller |first9=David M. |last10=Hobert |first10=Oliver |last11=Beets |first11=Isabel |last12=Vértes |first12=Petra E. |last13=Schafer |first13=William R. |title=The neuropeptidergic connectome of C. elegans|journal=Neuron |date=November 2023 |volume=111 |issue=22 |pages=3570–3589.e5 |doi=10.1016/j.neuron.2023.09.043|doi-access=free|pmid=37935195 |pmc=7615469 }}</ref> On 1 November, a functional [[Brain mapping|atlas]] of signal propagation in 23,433 pairs of neurons across the worm's head by direct [[optogenetic]] activation is published.<ref>{{#invoke:cite journal||last1=Randi |first1=Francesco |last2=Sharma |first2=Anuj K. |last3=Dvali |first3=Sophie |last4=Leifer |first4=Andrew M. |title=Neural signal propagation atlas of Caenorhabditis elegans |journal=Nature |date=November 2023 |volume=623 |issue=7986 |pages=406–414 |doi=10.1038/s41586-023-06683-4 |language=en |issn=1476-4687|doi-access=free|pmid=37914938 |pmc=10632145 |arxiv=2208.04790 |bibcode=2023Natur.623..406R }}</ref> On 17 November, the development of fluorescent neuropeptide sensors is reported.<ref>{{#invoke:cite journal||last1=Wang |first1=Huan |last2=Qian |first2=Tongrui |last3=Zhao |first3=Yulin |last4=Zhuo |first4=Yizhou |last5=Wu |first5=Chunling |last6=Osakada |first6=Takuya |last7=Chen |first7=Peng |last8=Chen |first8=Zijun |last9=Ren |first9=Huixia |last10=Yan |first10=Yuqi |last11=Geng |first11=Lan |last12=Fu |first12=Shengwei |last13=Mei |first13=Long |last14=Li |first14=Guochuan |last15=Wu |first15=Ling |last16=Jiang |first16=Yiwen |last17=Qian |first17=Weiran |last18=Zhang |first18=Li |last19=Peng |first19=Wanling |last20=Xu |first20=Min |last21=Hu |first21=Ji |last22=Jiang |first22=Man |last23=Chen |first23=Liangyi |last24=Tang |first24=Chao |last25=Zhu |first25=Yingjie |last26=Lin |first26=Dayu |last27=Zhou |first27=Jiang-Ning |last28=Li |first28=Yulong |title=A tool kit of highly selective and sensitive genetically encoded neuropeptide sensors |journal=Science |date=17 November 2023 |volume=382 |issue=6672 |pages=eabq8173 |doi=10.1126/science.abq8173 |pmid=37972184 |url=https://www.science.org/doi/10.1126/science.abq8173 |language=en |issn=0036-8075|biorxiv=10.1101/2022.03.26.485911|s2cid=265221583 }}</ref>
*{{vanchor|6 November}} – Scientists release the first [[connectome]] of [[neuropeptide]] [[Neuron#Nonelectrochemical signaling|signaling]] in an animal nervous system (''[[C. elegans]]'').<!--https://phys.org/news/2023-11-wireless-worm-nervous-revealed.html--><ref>{{#invoke:cite journal||last1=Ripoll-Sánchez |first1=Lidia |last2=Watteyne |first2=Jan |last3=Sun |first3=HaoSheng |last4=Fernandez |first4=Robert |last5=Taylor |first5=Seth R. |last6=Weinreb |first6=Alexis |last7=Bentley |first7=Barry L. |last8=Hammarlund |first8=Marc |last9=Miller |first9=David M. |last10=Hobert |first10=Oliver |last11=Beets |first11=Isabel |last12=Vértes |first12=Petra E. |last13=Schafer |first13=William R. |title=The neuropeptidergic connectome of C. elegans|journal=Neuron |date=November 2023 |volume=111 |issue=22 |pages=3570–3589.e5 |doi=10.1016/j.neuron.2023.09.043|doi-access=free|pmid=37935195 |pmc=7615469 }}</ref> On 1 November, a functional [[Brain mapping|atlas]] of signal propagation in 23,433 pairs of neurons across the worm's head by direct [[optogenetic]] activation is published.<ref>{{#invoke:cite journal||last1=Randi |first1=Francesco |last2=Sharma |first2=Anuj K. |last3=Dvali |first3=Sophie |last4=Leifer |first4=Andrew M. |title=Neural signal propagation atlas of Caenorhabditis elegans |journal=Nature |date=November 2023 |volume=623 |issue=7986 |pages=406–414 |doi=10.1038/s41586-023-06683-4 |language=en |issn=1476-4687|doi-access=free|pmid=37914938 |pmc=10632145 |arxiv=2208.04790 |bibcode=2023Natur.623..406R }}</ref> On 17 November, the development of fluorescent neuropeptide sensors is reported.<ref>{{#invoke:cite journal||last1=Wang |first1=Huan |last2=Qian |first2=Tongrui |last3=Zhao |first3=Yulin |last4=Zhuo |first4=Yizhou |last5=Wu |first5=Chunling |last6=Osakada |first6=Takuya |last7=Chen |first7=Peng |last8=Chen |first8=Zijun |last9=Ren |first9=Huixia |last10=Yan |first10=Yuqi |last11=Geng |first11=Lan |last12=Fu |first12=Shengwei |last13=Mei |first13=Long |last14=Li |first14=Guochuan |last15=Wu |first15=Ling |last16=Jiang |first16=Yiwen |last17=Qian |first17=Weiran |last18=Zhang |first18=Li |last19=Peng |first19=Wanling |last20=Xu |first20=Min |last21=Hu |first21=Ji |last22=Jiang |first22=Man |last23=Chen |first23=Liangyi |last24=Tang |first24=Chao |last25=Zhu |first25=Yingjie |last26=Lin |first26=Dayu |last27=Zhou |first27=Jiang-Ning |last28=Li |first28=Yulong |title=A tool kit of highly selective and sensitive genetically encoded neuropeptide sensors |journal=Science |date=17 November 2023 |volume=382 |issue=6672 |pages=eabq8173 |doi=10.1126/science.abq8173 |pmid=37972184 |pmc=11205257 |bibcode=2023Sci...382q8173W |language=en |issn=0036-8075|biorxiv=10.1101/2022.03.26.485911|s2cid=265221583 }}</ref>
*{{vanchor|7 November}} – A study finds that "catastrophic ecosystem collapse" of [[List of forests in the United Kingdom|UK forests]] is likely within the next 50 years, due to a wide range of factors.<ref>{{#invoke:cite web||url=https://www.eurekalert.org/news-releases/1006933 |title=Experts predict 'catastrophic ecosystem collapse' of UK forests within the next 50 years if action not taken |date=7 November 2023 |access-date=8 November 2023 |work=[[University of Cambridge]] via EurekAlert!}}</ref><ref>{{cite journal |last1=Tew |first1=Eleanor R |last2=Ambrose-Oji |first2=Bianca |last3=Beatty |first3=Malcolm |display-authors=et al. |title=A horizon scan of issues affecting UK forest management within 50 years |journal=Forestry: An International Journal of Forest Research |date=8 November 2023 |doi=10.1093/forestry/cpad047|doi-access=free|hdl=10547/626127 |hdl-access=free }}</ref>
*{{vanchor|7 November}} – A study finds that "catastrophic ecosystem collapse" of [[List of forests in the United Kingdom|UK forests]] is likely within the next 50 years, due to a wide range of factors.<ref>{{#invoke:cite web||url=https://www.eurekalert.org/news-releases/1006933 |title=Experts predict 'catastrophic ecosystem collapse' of UK forests within the next 50 years if action not taken |date=7 November 2023 |access-date=8 November 2023 |work=[[University of Cambridge]] via EurekAlert!}}</ref><ref>{{cite journal |last1=Tew |first1=Eleanor R |last2=Ambrose-Oji |first2=Bianca |last3=Beatty |first3=Malcolm |display-authors=et al. |title=A horizon scan of issues affecting UK forest management within 50 years |journal=Forestry: An International Journal of Forest Research |date=8 November 2023 |volume=97 |issue=3 |pages=349–362 |doi=10.1093/forestry/cpad047|doi-access=free|hdl=10547/626127 |hdl-access=free }}</ref>
*{{vanchor|8 November}} – In 10 studies, researchers of the {{tooltip|[[Sc2.0]] project|The Synthetic Yeast Genome Project "aims to re-design and chemically synthesize a designer version of the Saccharomyces cerevisiae genome"}} report yeast with a half-[[synthetic genome]].<ref>{{#invoke:cite news||last1=Leslie |first1=Mitch |title=Synthetic yeast project unveils cells with 50% artificial DNA |url=https://www.science.org/content/article/synthetic-yeast-project-unveils-cells-50-artificial-dna |access-date=16 February 2024 |work=Science.org}}</ref><ref>{{#invoke:cite journal||last1=Schindler |first1=Daniel |last2=Walker |first2=Roy S.K. |last3=Jiang |first3=Shuangying |last4=Brooks |first4=Aaron N. |last5=Wang |first5=Yun |last6=Müller |first6=Carolin A. |last7=Cockram |first7=Charlotte |last8=Luo |first8=Yisha |last9=García |first9=Alicia |last10=Schraivogel |first10=Daniel |last11=Mozziconacci |first11=Julien |last12=Pena |first12=Noah |last13=Assari |first13=Mahdi |last14=Sánchez Olmos |first14=María del Carmen |last15=Zhao |first15=Yu |last16=Ballerini |first16=Alba |last17=Blount |first17=Benjamin A. |last18=Cai |first18=Jitong |last19=Ogunlana |first19=Lois |last20=Liu |first20=Wei |last21=Jönsson |first21=Katarina |last22=Abramczyk |first22=Dariusz |last23=Garcia-Ruiz |first23=Eva |last24=Turowski |first24=Tomasz W. |last25=Swidah |first25=Reem |last26=Ellis |first26=Tom |last27=Pan |first27=Tao |last28=Antequera |first28=Francisco |last29=Shen |first29=Yue |last30=Nieduszynski |first30=Conrad A. |last31=Koszul |first31=Romain |last32=Dai |first32=Junbiao |last33=Steinmetz |first33=Lars M. |last34=Boeke |first34=Jef D. |last35=Cai |first35=Yizhi |title=Design, construction, and functional characterization of a tRNA neochromosome in yeast |journal=Cell |date=November 2023 |volume=186 |issue=24 |pages=5237–5253.e22 |doi=10.1016/j.cell.2023.10.015|doi-access=free|pmid=37944512 |hdl=10261/347442 |hdl-access=free }}</ref>
*{{vanchor|8 November}} – In 10 studies, researchers of the {{tooltip|[[Sc2.0]] project|The Synthetic Yeast Genome Project "aims to re-design and chemically synthesize a designer version of the Saccharomyces cerevisiae genome"}} report yeast with a half-[[synthetic genome]].<ref>{{#invoke:cite news||last1=Leslie |first1=Mitch |title=Synthetic yeast project unveils cells with 50% artificial DNA |url=https://www.science.org/content/article/synthetic-yeast-project-unveils-cells-50-artificial-dna |access-date=16 February 2024 |work=Science.org}}</ref><ref>{{#invoke:cite journal||last1=Schindler |first1=Daniel |last2=Walker |first2=Roy S.K. |last3=Jiang |first3=Shuangying |last4=Brooks |first4=Aaron N. |last5=Wang |first5=Yun |last6=Müller |first6=Carolin A. |last7=Cockram |first7=Charlotte |last8=Luo |first8=Yisha |last9=García |first9=Alicia |last10=Schraivogel |first10=Daniel |last11=Mozziconacci |first11=Julien |last12=Pena |first12=Noah |last13=Assari |first13=Mahdi |last14=Sánchez Olmos |first14=María del Carmen |last15=Zhao |first15=Yu |last16=Ballerini |first16=Alba |last17=Blount |first17=Benjamin A. |last18=Cai |first18=Jitong |last19=Ogunlana |first19=Lois |last20=Liu |first20=Wei |last21=Jönsson |first21=Katarina |last22=Abramczyk |first22=Dariusz |last23=Garcia-Ruiz |first23=Eva |last24=Turowski |first24=Tomasz W. |last25=Swidah |first25=Reem |last26=Ellis |first26=Tom |last27=Pan |first27=Tao |last28=Antequera |first28=Francisco |last29=Shen |first29=Yue |last30=Nieduszynski |first30=Conrad A. |last31=Koszul |first31=Romain |last32=Dai |first32=Junbiao |last33=Steinmetz |first33=Lars M. |last34=Boeke |first34=Jef D. |last35=Cai |first35=Yizhi |title=Design, construction, and functional characterization of a tRNA neochromosome in yeast |journal=Cell |date=November 2023 |volume=186 |issue=24 |pages=5237–5253.e22 |doi=10.1016/j.cell.2023.10.015|doi-access=free|pmid=37944512 |hdl=10261/347442 |hdl-access=free }}</ref>
*{{vanchor|9 November}} – Surgeons report the first [[human eye]] [[Eye transplantation|transplant]]; the patient did not regain sight in the transplanted eye.<ref>{{#invoke:cite news||url=https://www.reuters.com/business/healthcare-pharmaceuticals/surgeons-new-york-announce-worlds-first-eye-transplant-2023-11-09/|title=Surgeons in New York announce world's first eye transplant|first=Nancy|last=Lapid|date=2023-11-09|access-date=2023-11-09|publisher=Reuters}}</ref><ref>{{#invoke:cite web||url=https://nyulangone.org/news/nyu-langone-health-performs-worlds-first-whole-eye-partial-face-transplant |title=NYU Langone Health Performs World's First Whole-Eye & Partial-Face Transplant |date=9 November 2023 |access-date=10 November 2023 |work=NYU Langone Health}}</ref>
*{{vanchor|9 November}} – Surgeons report the first [[human eye]] [[Eye transplantation|transplant]]; the patient did not regain sight in the transplanted eye.<ref>{{#invoke:cite news||url=https://www.reuters.com/business/healthcare-pharmaceuticals/surgeons-new-york-announce-worlds-first-eye-transplant-2023-11-09/|title=Surgeons in New York announce world's first eye transplant|first=Nancy|last=Lapid|date=2023-11-09|access-date=2023-11-09|publisher=Reuters}}</ref><ref>{{#invoke:cite web||url=https://nyulangone.org/news/nyu-langone-health-performs-worlds-first-whole-eye-partial-face-transplant |title=NYU Langone Health Performs World's First Whole-Eye & Partial-Face Transplant |date=9 November 2023 |access-date=10 November 2023 |work=NYU Langone Health}}</ref>
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**Scientists report first evidence that unfamiliar groups of nonhuman [[primate]]s, particularly [[bonobo]]s, are capable of cooperating with each other.<ref name="NYT-20231116">{{#invoke:cite news||last=Zimmer |first=Carl |author-link=Carl Zimmer |title=Scientists Find First Evidence That Groups of Apes Cooperate – Some bonobos are challenging the notion that humans are the only primates capable of group-to-group alliances. |url=https://www.nytimes.com/2023/11/16/science/bonobos-cooperation-study.html |date=16 November 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20231116194259/https://www.nytimes.com/2023/11/16/science/bonobos-cooperation-study.html |archive-date=16 November 2023 |access-date=17 November 2023 }}</ref><ref name="SCI-20231116">{{#invoke:cite journal||author=Samuni, Liran |display-authors=et al. |title=Cooperation across social borders in bonobos
**Scientists report first evidence that unfamiliar groups of nonhuman [[primate]]s, particularly [[bonobo]]s, are capable of cooperating with each other.<ref name="NYT-20231116">{{#invoke:cite news||last=Zimmer |first=Carl |author-link=Carl Zimmer |title=Scientists Find First Evidence That Groups of Apes Cooperate – Some bonobos are challenging the notion that humans are the only primates capable of group-to-group alliances. |url=https://www.nytimes.com/2023/11/16/science/bonobos-cooperation-study.html |date=16 November 2023 |work=[[The New York Times]] |url-status=live |archive-url=https://archive.today/20231116194259/https://www.nytimes.com/2023/11/16/science/bonobos-cooperation-study.html |archive-date=16 November 2023 |access-date=17 November 2023 }}</ref><ref name="SCI-20231116">{{#invoke:cite journal||author=Samuni, Liran |display-authors=et al. |title=Cooperation across social borders in bonobos
|url=https://www.science.org/doi/10.1126/science.adg0844 |date=16 November 2023 |journal=[[Science (journal)|Science]] |volume=382 |issue=6672 |pages=805–809 |doi=10.1126/science.adg0844 |pmid=37972165 |bibcode=2023Sci...382..805S |s2cid=265221570 |url-status=live |archive-url=https://archive.today/20231117125744/https://www.science.org/doi/10.1126/science.adg0844 |archive-date=17 November 2023 |access-date=17 November 2023 |url-access=subscription}}</ref>
|url=https://www.science.org/doi/10.1126/science.adg0844 |date=16 November 2023 |journal=[[Science (journal)|Science]] |volume=382 |issue=6672 |pages=805–809 |doi=10.1126/science.adg0844 |pmid=37972165 |bibcode=2023Sci...382..805S |s2cid=265221570 |url-status=live |archive-url=https://archive.today/20231117125744/https://www.science.org/doi/10.1126/science.adg0844 |archive-date=17 November 2023 |access-date=17 November 2023 |url-access=subscription}}</ref>
**The International Cryosphere Climate Initiative (ICCI) publishes its annual State of the [[Cryosphere]] Report. It warns of rapid, irreversible [[Sea level rise|sea-level rise]] from Earth's ice sheets, which could potentially reach 12–20 metres in the coming centuries.<ref>{{#invoke:cite web||url=https://www.pml.ac.uk/News/Major-new-report-confirms-just-2%C2%B0C-of-warming-will |title=Major new report confirms just 2°C of warming will trigger irreversible global damage |date=16 November 2023 |access-date=20 November 2023 |work=Plymouth Marine Laboratory}}</ref><ref>{{#invoke:cite web||url=https://iccinet.org/statecryo23/ |title=State of the Cryosphere Report 2023 |date=16 November 2023 |access-date=20 November 2023 |work=International Cryosphere Climate Initiative}}</ref>
**The International Cryosphere Climate Initiative (ICCI) publishes its annual State of the [[Cryosphere]] Report. It warns of rapid, irreversible [[Sea level rise|sea-level rise]] from Earth's ice sheets, which could potentially reach 12–20 metres in the coming centuries.<ref>{{#invoke:cite web||url=https://www.pml.ac.uk/News/Major-new-report-confirms-just-2%C2%B0C-of-warming-will |title=Major new report confirms just 2&nbsp;°C of warming will trigger irreversible global damage |date=16 November 2023 |access-date=20 November 2023 |work=Plymouth Marine Laboratory}}</ref><ref>{{#invoke:cite web||url=https://iccinet.org/statecryo23/ |title=State of the Cryosphere Report 2023 |date=16 November 2023 |access-date=20 November 2023 |work=International Cryosphere Climate Initiative}}</ref>
*{{vanchor|17 November}} – The [[global temperature record|global average temperature]] temporarily exceeds 2°C above the pre-industrial average for the first time in recorded history.<ref>{{#invoke:cite web||title=Global temperature exceeds 2°C above pre-industrial average on 17 November {{!}} Copernicus |url=https://climate.copernicus.eu/global-temperature-exceeds-2degc-above-pre-industrial-average-17-november |access-date=2023-11-24 |website=climate.copernicus.eu}}</ref>
*{{vanchor|17 November}} – The [[global temperature record|global average temperature]] temporarily exceeds 2&nbsp;°C above the pre-industrial average for the first time in recorded history.<ref>{{#invoke:cite web||title=Global temperature exceeds 2&nbsp;°C above pre-industrial average on 17 November {{!}} Copernicus |url=https://climate.copernicus.eu/global-temperature-exceeds-2degc-above-pre-industrial-average-17-november |access-date=2023-11-24 |website=climate.copernicus.eu}}</ref>
*{{vanchor|20 November}} – A study of [[censorship]] in science finds it to be often driven by scientists themselves, motivated by prosocial concerns or reputation protection.<!--https://www.insidehighered.com/news/faculty-issues/books-publishing/2023/11/29/new-paper-says-scientists-censor-research-reduce--><ref>{{#invoke:cite journal||last1=Clark |first1=Cory J. |last2=Jussim |first2=Lee |last3=Frey |first3=Komi |last4=Stevens |first4=Sean T. |last5=al-Gharbi |first5=Musa |last6=Aquino |first6=Karl |last7=Bailey |first7=J. Michael |last8=Barbaro |first8=Nicole |last9=Baumeister |first9=Roy F. |last10=Bleske-Rechek |first10=April |last11=Buss |first11=David |last12=Ceci |first12=Stephen |last13=Del Giudice |first13=Marco |last14=Ditto |first14=Peter H. |last15=Forgas |first15=Joseph P. |last16=Geary |first16=David C. |last17=Geher |first17=Glenn |last18=Haider |first18=Sarah |last19=Honeycutt |first19=Nathan |last20=Joshi |first20=Hrishikesh |last21=Krylov |first21=Anna I. |last22=Loftus |first22=Elizabeth |last23=Loury |first23=Glenn |last24=Lu |first24=Louise |last25=Macy |first25=Michael |last26=Martin |first26=Chris C. |last27=McWhorter |first27=John |last28=Miller |first28=Geoffrey |last29=Paresky |first29=Pamela |last30=Pinker |first30=Steven |last31=Reilly |first31=Wilfred |last32=Salmon |first32=Catherine |last33=Stewart-Williams |first33=Steve |last34=Tetlock |first34=Philip E. |last35=Williams |first35=Wendy M. |last36=Wilson |first36=Anne E. |last37=Winegard |first37=Bo M. |last38=Yancey |first38=George |last39=von Hippel |first39=William |title=Prosocial motives underlie scientific censorship by scientists: A perspective and research agenda |journal=Proceedings of the National Academy of Sciences |date=28 November 2023 |volume=120 |issue=48 |pages=e2301642120 |doi=10.1073/pnas.2301642120 |language=en |issn=0027-8424|doi-access=free|pmid=37983511 |pmc=10691350 |bibcode=2023PNAS..12001642C }}</ref>
*{{vanchor|20 November}} – A study of [[censorship]] in science finds it to be often driven by scientists themselves, motivated by prosocial concerns or reputation protection.<!--https://www.insidehighered.com/news/faculty-issues/books-publishing/2023/11/29/new-paper-says-scientists-censor-research-reduce--><ref>{{#invoke:cite journal||last1=Clark |first1=Cory J. |last2=Jussim |first2=Lee |last3=Frey |first3=Komi |last4=Stevens |first4=Sean T. |last5=al-Gharbi |first5=Musa |last6=Aquino |first6=Karl |last7=Bailey |first7=J. Michael |last8=Barbaro |first8=Nicole |last9=Baumeister |first9=Roy F. |last10=Bleske-Rechek |first10=April |last11=Buss |first11=David |last12=Ceci |first12=Stephen |last13=Del Giudice |first13=Marco |last14=Ditto |first14=Peter H. |last15=Forgas |first15=Joseph P. |last16=Geary |first16=David C. |last17=Geher |first17=Glenn |last18=Haider |first18=Sarah |last19=Honeycutt |first19=Nathan |last20=Joshi |first20=Hrishikesh |last21=Krylov |first21=Anna I. |last22=Loftus |first22=Elizabeth |last23=Loury |first23=Glenn |last24=Lu |first24=Louise |last25=Macy |first25=Michael |last26=Martin |first26=Chris C. |last27=McWhorter |first27=John |last28=Miller |first28=Geoffrey |last29=Paresky |first29=Pamela |last30=Pinker |first30=Steven |last31=Reilly |first31=Wilfred |last32=Salmon |first32=Catherine |last33=Stewart-Williams |first33=Steve |last34=Tetlock |first34=Philip E. |last35=Williams |first35=Wendy M. |last36=Wilson |first36=Anne E. |last37=Winegard |first37=Bo M. |last38=Yancey |first38=George |last39=von Hippel |first39=William |title=Prosocial motives underlie scientific censorship by scientists: A perspective and research agenda |journal=Proceedings of the National Academy of Sciences |date=28 November 2023 |volume=120 |issue=48 |pages=e2301642120 |doi=10.1073/pnas.2301642120 |language=en |issn=0027-8424|doi-access=free|pmid=37983511 |pmc=10691350 |bibcode=2023PNAS..12001642C }}</ref>
*{{vanchor|22 November}} – An autonomous [[excavator]] is demonstrated. Using sensors, the machine can generate 3D maps of a construction site, localising individual blocks and stones in order to build a wall.<!--<ref>{{Cite web |url=https://www.eurekalert.org/news-releases/1008799 |title=Autonomous excavator constructs a 6-meter-high dry-stone wall |date=22 November 2023 |access-date=24 November 2023 |work=EurekAlert!}}</ref>--><ref>{{#invoke:cite journal||last1=Johns |first1=Ryan Luke |last2=Wermelinger |first2=Martin |last3=Mascaro |first3=Ruben |last4=Jud |first4=Dominic |last5=Hurkxkens |first5=Ilmar |last6=Vasey |first6=Lauren |last7=Chli |first7=Margarita |last8=Gramazio |first8=Fabio |last9=Kohler |first9=Matthias |last10=Hutter |first10=Marco |title=A framework for robotic excavation and dry stone construction using on-site materials |journal=Science Robotics |date=22 November 2023 |volume=8 |issue=84 |pages=eabp9758 |doi=10.1126/scirobotics.abp9758 |pmid=37992191 |s2cid=265352198 |language=en |issn=2470-9476}}</ref>
*{{vanchor|22 November}} – An autonomous [[excavator]] is demonstrated. Using sensors, the machine can generate 3D maps of a construction site, localising individual blocks and stones in order to build a wall.<!--<ref>{{Cite web |url=https://www.eurekalert.org/news-releases/1008799 |title=Autonomous excavator constructs a 6-meter-high dry-stone wall |date=22 November 2023 |access-date=24 November 2023 |work=EurekAlert!}}</ref>--><ref>{{#invoke:cite journal||last1=Johns |first1=Ryan Luke |last2=Wermelinger |first2=Martin |last3=Mascaro |first3=Ruben |last4=Jud |first4=Dominic |last5=Hurkxkens |first5=Ilmar |last6=Vasey |first6=Lauren |last7=Chli |first7=Margarita |last8=Gramazio |first8=Fabio |last9=Kohler |first9=Matthias |last10=Hutter |first10=Marco |title=A framework for robotic excavation and dry stone construction using on-site materials |journal=Science Robotics |date=22 November 2023 |volume=8 |issue=84 |pages=eabp9758 |doi=10.1126/scirobotics.abp9758 |pmid=37992191 |s2cid=265352198 |language=en |issn=2470-9476}}</ref>
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**A trial comparing a [[Environmental impacts of animal agriculture#Meat reduction and health|healthy vegan]] and a healthy omnivorous diet [[twin study|in identical twins]] finds the former to be [[Healthy diet|substantially better]] according to cardiometabolic measures like [[LDL-C]] after 8 weeks.<!--https://edition.cnn.com/2023/11/30/health/vegan-twin-study-wellness/index.html--><ref>{{#invoke:cite journal||last1=Landry |first1=Matthew J. |last2=Ward |first2=Catherine P. |last3=Cunanan |first3=Kristen M. |last4=Durand |first4=Lindsay R. |last5=Perelman |first5=Dalia |last6=Robinson |first6=Jennifer L. |last7=Hennings |first7=Tayler |last8=Koh |first8=Linda |last9=Dant |first9=Christopher |last10=Zeitlin |first10=Amanda |last11=Ebel |first11=Emily R. |last12=Sonnenburg |first12=Erica D. |last13=Sonnenburg |first13=Justin L. |last14=Gardner |first14=Christopher D. |title=Cardiometabolic Effects of Omnivorous vs Vegan Diets in Identical Twins: A Randomized Clinical Trial |journal=JAMA Network Open |date=30 November 2023 |volume=6 |issue=11 |pages=e2344457 |doi=10.1001/jamanetworkopen.2023.44457 |issn=2574-3805|doi-access=free|pmid=38032644 |pmc=10690456 }}</ref>
**A trial comparing a [[Environmental impacts of animal agriculture#Meat reduction and health|healthy vegan]] and a healthy omnivorous diet [[twin study|in identical twins]] finds the former to be [[Healthy diet|substantially better]] according to cardiometabolic measures like [[LDL-C]] after 8 weeks.<!--https://edition.cnn.com/2023/11/30/health/vegan-twin-study-wellness/index.html--><ref>{{#invoke:cite journal||last1=Landry |first1=Matthew J. |last2=Ward |first2=Catherine P. |last3=Cunanan |first3=Kristen M. |last4=Durand |first4=Lindsay R. |last5=Perelman |first5=Dalia |last6=Robinson |first6=Jennifer L. |last7=Hennings |first7=Tayler |last8=Koh |first8=Linda |last9=Dant |first9=Christopher |last10=Zeitlin |first10=Amanda |last11=Ebel |first11=Emily R. |last12=Sonnenburg |first12=Erica D. |last13=Sonnenburg |first13=Justin L. |last14=Gardner |first14=Christopher D. |title=Cardiometabolic Effects of Omnivorous vs Vegan Diets in Identical Twins: A Randomized Clinical Trial |journal=JAMA Network Open |date=30 November 2023 |volume=6 |issue=11 |pages=e2344457 |doi=10.1001/jamanetworkopen.2023.44457 |issn=2574-3805|doi-access=free|pmid=38032644 |pmc=10690456 }}</ref>
*{{vanchor|Innovations_November|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: an efficient [[Electrocaloric effect|electrocaloric]] heat pump for [[Air conditioning#Environmental effects|sustainable cooling]] (16 Nov),<!--https://techxplore.com/news/2023-11-electrocaloric-efficient-conventional-air-conditioners.html--><ref>{{#invoke:cite journal||last1=Li |first1=Junning |last2=Torelló |first2=Alvar |last3=Kovacova |first3=Veronika |last4=Prah |first4=Uros |last5=Aravindhan |first5=Ashwath |last6=Granzow |first6=Torsten |last7=Usui |first7=Tomoyasu |last8=Hirose |first8=Sakyo |last9=Defay |first9=Emmanuel |title=High cooling performance in a double-loop electrocaloric heat pump |journal=Science |date=17 November 2023 |volume=382 |issue=6672 |pages=801–805 |doi=10.1126/science.adi5477 |pmid=37972174 |bibcode=2023Sci...382..801L |hdl=2117/398413 |s2cid=265221555 |language=en |issn=0036-8075|hdl-access=free}}</ref> taste-tested bioreactor-grown [[Cellular agriculture#Coffee|cultured coffee]] (17 Nov),<ref>{{#invoke:cite journal||last1=Aisala |first1=Heikki |last2=Kärkkäinen |first2=Elviira |last3=Jokinen |first3=Iina |last4=Seppänen-Laakso |first4=Tuulikki |last5=Rischer |first5=Heiko |title=Proof of Concept for Cell Culture-Based Coffee |journal=Journal of Agricultural and Food Chemistry |date=29 November 2023 |volume=71 |issue=47 |pages=18478–18488 |doi=10.1021/acs.jafc.3c04503 |language=en |issn=0021-8561|doi-access=free|pmid=37972222 |pmc=10690795 }}</ref> an [[Laboratory robotics#Applications|autonomous laboratory]] for synthesis of inorganic powders, the A-Lab (29 Nov),<ref>{{#invoke:cite journal||last1=Szymanski |first1=Nathan J. |last2=Rendy |first2=Bernardus |last3=Fei |first3=Yuxing |last4=Kumar |first4=Rishi E. |last5=He |first5=Tanjin |last6=Milsted |first6=David |last7=McDermott |first7=Matthew J. |last8=Gallant |first8=Max |last9=Cubuk |first9=Ekin Dogus |last10=Merchant |first10=Amil |last11=Kim |first11=Haegyeom |last12=Jain |first12=Anubhav |last13=Bartel |first13=Christopher J. |last14=Persson |first14=Kristin |last15=Zeng |first15=Yan |last16=Ceder |first16=Gerbrand |title=An autonomous laboratory for the accelerated synthesis of novel materials |journal=Nature |date=December 2023 |volume=624 |issue=7990 |pages=86–91 |doi=10.1038/s41586-023-06734-w |language=en |issn=1476-4687|doi-access=free|pmid=38030721 |pmc=10700133 |bibcode=2023Natur.624...86S }}</ref> a [[Solar power tower|solar tower]] design using [[Energy tower (downdraft)|downdraft technology]] for hot and dry weather areas that could generate twice the electricity of [[Solar updraft tower|solar updraft system]]s and operate at night, the Twin-Technology Solar System ([[Twin-Technology Solar System|TTSS]]) (30 Nov).<!--https://www.anthropocenemagazine.org/2023/12/dual-action-solar-tower-produces-power-24-7/--><ref>{{#invoke:cite journal||last1=Abdelsalam |first1=Emad |last2=Almomani |first2=Fares |last3=Ibrahim |first3=Shadwa |title=An innovative twin-technology solar system design for electricity production |journal=Energy Reports |date=1 June 2024 |volume=11 |pages=153–163 |doi=10.1016/j.egyr.2023.11.027 |issn=2352-4847|doi-access=free|bibcode=2024EnRep..11..153A }}</ref>
*{{vanchor|Innovations_November|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: an efficient [[Electrocaloric effect|electrocaloric]] heat pump for [[Air conditioning#Environmental effects|sustainable cooling]] (16 Nov),<!--https://techxplore.com/news/2023-11-electrocaloric-efficient-conventional-air-conditioners.html--><ref>{{#invoke:cite journal||last1=Li |first1=Junning |last2=Torelló |first2=Alvar |last3=Kovacova |first3=Veronika |last4=Prah |first4=Uros |last5=Aravindhan |first5=Ashwath |last6=Granzow |first6=Torsten |last7=Usui |first7=Tomoyasu |last8=Hirose |first8=Sakyo |last9=Defay |first9=Emmanuel |title=High cooling performance in a double-loop electrocaloric heat pump |journal=Science |date=17 November 2023 |volume=382 |issue=6672 |pages=801–805 |doi=10.1126/science.adi5477 |pmid=37972174 |bibcode=2023Sci...382..801L |hdl=2117/398413 |s2cid=265221555 |language=en |issn=0036-8075|hdl-access=free}}</ref> taste-tested bioreactor-grown [[Cellular agriculture#Coffee|cultured coffee]] (17 Nov),<ref>{{#invoke:cite journal||last1=Aisala |first1=Heikki |last2=Kärkkäinen |first2=Elviira |last3=Jokinen |first3=Iina |last4=Seppänen-Laakso |first4=Tuulikki |last5=Rischer |first5=Heiko |title=Proof of Concept for Cell Culture-Based Coffee |journal=Journal of Agricultural and Food Chemistry |date=29 November 2023 |volume=71 |issue=47 |pages=18478–18488 |doi=10.1021/acs.jafc.3c04503 |language=en |issn=0021-8561|doi-access=free|pmid=37972222 |pmc=10690795 }}</ref> an [[Laboratory robotics#Applications|autonomous laboratory]] for synthesis of inorganic powders, the A-Lab (29 Nov),<ref>{{#invoke:cite journal||last1=Szymanski |first1=Nathan J. |last2=Rendy |first2=Bernardus |last3=Fei |first3=Yuxing |last4=Kumar |first4=Rishi E. |last5=He |first5=Tanjin |last6=Milsted |first6=David |last7=McDermott |first7=Matthew J. |last8=Gallant |first8=Max |last9=Cubuk |first9=Ekin Dogus |last10=Merchant |first10=Amil |last11=Kim |first11=Haegyeom |last12=Jain |first12=Anubhav |last13=Bartel |first13=Christopher J. |last14=Persson |first14=Kristin |last15=Zeng |first15=Yan |last16=Ceder |first16=Gerbrand |title=An autonomous laboratory for the accelerated synthesis of novel materials |journal=Nature |date=December 2023 |volume=624 |issue=7990 |pages=86–91 |doi=10.1038/s41586-023-06734-w |language=en |issn=1476-4687|doi-access=free|pmid=38030721 |pmc=10700133 |bibcode=2023Natur.624...86S }}</ref> a [[Solar power tower|solar tower]] design using [[Energy tower (downdraft)|downdraft technology]] for hot and dry weather areas that could generate twice the electricity of [[Solar updraft tower|solar updraft system]]s and operate at night, the Twin-Technology Solar System ([[Twin-Technology Solar System|TTSS]]) (30 Nov).<!--https://www.anthropocenemagazine.org/2023/12/dual-action-solar-tower-produces-power-24-7/--><ref>{{#invoke:cite journal||last1=Abdelsalam |first1=Emad |last2=Almomani |first2=Fares |last3=Ibrahim |first3=Shadwa |title=An innovative twin-technology solar system design for electricity production |journal=Energy Reports |date=1 June 2024 |volume=11 |pages=153–163 |doi=10.1016/j.egyr.2023.11.027 |issn=2352-4847|doi-access=free|bibcode=2024EnRep..11..153A }}</ref>
*{{vanchor|Therapeutics_November|text=Promising results of health and medical research are reported}}: phase 2-trialed [[Mazdutide]] against type-2 diabetes (9 Nov),<ref>{{#invoke:cite journal||last1=Zhang |first1=Bo |last2=Cheng |first2=Zhifeng |last3=Chen |first3=Ji |last4=Zhang |first4=Xin |last5=Liu |first5=Dexue |last6=Jiang |first6=Hongwei |last7=Ma |first7=Guoqing |last8=Wang |first8=Xiaoyun |last9=Gan |first9=Shenglian |last10=Sun |first10=Juan |last11=Jin |first11=Ping |last12=Yi |first12=Jianjun |last13=Shi |first13=Bimin |last14=Ma |first14=Jianhua |last15=Ye |first15=Shandong |last16=Wang |first16=Guixia |last17=Ji |first17=Linong |last18=Gu |first18=Xuejiang |last19=Yu |first19=Ting |last20=An |first20=Pei |last21=Deng |first21=Huan |last22=Li |first22=Haoyu |last23=Li |first23=Li |last24=Ma |first24=Qingyang |last25=Qian |first25=Lei |last26=Yang |first26=Wenying |title=Efficacy and Safety of Mazdutide in Chinese Patients With Type 2 Diabetes: A Randomized, Double-Blind, Placebo-Controlled Phase 2 Trial |journal=Diabetes Care |date=1 January 2024 |volume=47 |issue=1 |pages=160–168 |doi=10.2337/dc23-1287|pmid=37943529 |pmc=10733643 }}</ref> phase 1-trialed [[lepodisiran]] against cardiovascular risk factor [[lipoprotein]] (12 Nov),<ref>{{#invoke:cite journal||last1=Nissen |first1=Steven E. |last2=Linnebjerg |first2=Helle |last3=Shen |first3=Xi |last4=Wolski |first4=Kathy |last5=Ma |first5=Xiaosu |last6=Lim |first6=Shufen |last7=Michael |first7=Laura F. |last8=Ruotolo |first8=Giacomo |last9=Gribble |first9=Grace |last10=Navar |first10=Ann Marie |last11=Nicholls |first11=Stephen J. |title=Lepodisiran, an Extended-Duration Short Interfering RNA Targeting Lipoprotein(a): A Randomized Dose-Ascending Clinical Trial |journal=JAMA |date=5 December 2023 |volume=330 |issue=21 |pages=2075–2083 |doi=10.1001/jama.2023.21835 |pmid=37952254 |pmc=10641766 |pmc-embargo-date=May 12, 2024 |issn=0098-7484}}</ref> rat-tested depot technology for sustained delivery of [[GLP-1 receptor agonist]]s against the need for frequent injections (21 Nov).<!--https://newatlas.com/medical/ozempic-glp1-slow-release-diabetes-four-months/--><ref>{{#invoke:cite journal||last1=d'Aquino |first1=Andrea I. |last2=Maikawa |first2=Caitlin L. |last3=Nguyen |first3=Leslee T. |last4=Lu |first4=Katie |last5=Hall |first5=Ian A. |last6=Jons |first6=Carolyn K. |last7=Kasse |first7=Catherine M. |last8=Yan |first8=Jerry |last9=Prossnitz |first9=Alexander N. |last10=Chang |first10=Enmian |last11=Baker |first11=Sam W. |last12=Hovgaard |first12=Lars |last13=Steensgaard |first13=Dorte B. |last14=Andersen |first14=Hanne B. |last15=Simonsen |first15=Lotte |last16=Appel |first16=Eric A. |title=Use of a biomimetic hydrogel depot technology for sustained delivery of GLP-1 receptor agonists reduces burden of diabetes management |journal=Cell Reports Medicine |date=November 2023 |volume=4 |issue=11 |page=101292 |doi=10.1016/j.xcrm.2023.101292|pmid=37992687 |pmc=10694761 }}</ref>
*{{vanchor|Therapeutics_November|text=Promising results of health and medical research are reported}}: phase 2-trialed [[Mazdutide]] against type-2 diabetes (9 Nov),<ref>{{#invoke:cite journal||last1=Zhang |first1=Bo |last2=Cheng |first2=Zhifeng |last3=Chen |first3=Ji |last4=Zhang |first4=Xin |last5=Liu |first5=Dexue |last6=Jiang |first6=Hongwei |last7=Ma |first7=Guoqing |last8=Wang |first8=Xiaoyun |last9=Gan |first9=Shenglian |last10=Sun |first10=Juan |last11=Jin |first11=Ping |last12=Yi |first12=Jianjun |last13=Shi |first13=Bimin |last14=Ma |first14=Jianhua |last15=Ye |first15=Shandong |last16=Wang |first16=Guixia |last17=Ji |first17=Linong |last18=Gu |first18=Xuejiang |last19=Yu |first19=Ting |last20=An |first20=Pei |last21=Deng |first21=Huan |last22=Li |first22=Haoyu |last23=Li |first23=Li |last24=Ma |first24=Qingyang |last25=Qian |first25=Lei |last26=Yang |first26=Wenying |title=Efficacy and Safety of Mazdutide in Chinese Patients With Type 2 Diabetes: A Randomized, Double-Blind, Placebo-Controlled Phase 2 Trial |journal=Diabetes Care |date=1 January 2024 |volume=47 |issue=1 |pages=160–168 |doi=10.2337/dc23-1287|pmid=37943529 |pmc=10733643 }}</ref> phase 1-trialed [[lepodisiran]] against cardiovascular risk factor [[lipoprotein]] (12 Nov),<ref>{{#invoke:cite journal||last1=Nissen |first1=Steven E. |last2=Linnebjerg |first2=Helle |last3=Shen |first3=Xi |last4=Wolski |first4=Kathy |last5=Ma |first5=Xiaosu |last6=Lim |first6=Shufen |last7=Michael |first7=Laura F. |last8=Ruotolo |first8=Giacomo |last9=Gribble |first9=Grace |last10=Navar |first10=Ann Marie |last11=Nicholls |first11=Stephen J. |title=Lepodisiran, an Extended-Duration Short Interfering RNA Targeting Lipoprotein(a): A Randomized Dose-Ascending Clinical Trial |journal=JAMA |date=5 December 2023 |volume=330 |issue=21 |pages=2075–2083 |doi=10.1001/jama.2023.21835 |pmid=37952254 |pmc=10641766 |issn=0098-7484}}</ref> rat-tested depot technology for sustained delivery of [[GLP-1 receptor agonist]]s against the need for frequent injections (21 Nov).<!--https://newatlas.com/medical/ozempic-glp1-slow-release-diabetes-four-months/--><ref>{{#invoke:cite journal||last1=d'Aquino |first1=Andrea I. |last2=Maikawa |first2=Caitlin L. |last3=Nguyen |first3=Leslee T. |last4=Lu |first4=Katie |last5=Hall |first5=Ian A. |last6=Jons |first6=Carolyn K. |last7=Kasse |first7=Catherine M. |last8=Yan |first8=Jerry |last9=Prossnitz |first9=Alexander N. |last10=Chang |first10=Enmian |last11=Baker |first11=Sam W. |last12=Hovgaard |first12=Lars |last13=Steensgaard |first13=Dorte B. |last14=Andersen |first14=Hanne B. |last15=Simonsen |first15=Lotte |last16=Appel |first16=Eric A. |title=Use of a biomimetic hydrogel depot technology for sustained delivery of GLP-1 receptor agonists reduces burden of diabetes management |journal=Cell Reports Medicine |date=November 2023 |volume=4 |issue=11 |page=101292 |doi=10.1016/j.xcrm.2023.101292|pmid=37992687 |pmc=10694761 }}</ref>
* {{vanchor|Hazards_November|text=[[Hazard]] research is published}}: a study indicates common [[food allergies]] are not benign but are associated with increased risk of cardiovascular mortality (9 Nov),<!--https://www.salon.com/2023/11/14/allergies-might-exacerbate-cardiovascular-illness-new-research-finds/--><ref>{{#invoke:cite journal||last1=Keet |first1=Corinne |last2=McGowan |first2=Emily C. |last3=Jacobs |first3=David |last4=Post |first4=Wendy S. |last5=Richards |first5=Nathan E. |last6=Workman |first6=Lisa J. |last7=Platts-Mills |first7=Thomas A.E. |last8=Manichaikul |first8=Ani |last9=Wilson |first9=Jeffrey M. |title=IgE to common food allergens is associated with cardiovascular mortality in the National Health and Examination Survey and the Multi-Ethnic Study of Atherosclerosis |journal=Journal of Allergy and Clinical Immunology |date=February 2024 |volume=153 |issue=2 |pages=471–478.e3 |doi=10.1016/j.jaci.2023.09.038 |pmid=37943208 |pmc=10922097 |pmc-embargo-date=February 1, 2025 |s2cid=265066269 |url=https://www.jacionline.org/article/S0091-6749(23)01251-4/fulltext|url-access=subscription}}</ref> in a commentary, scientists warn that to "reduce [[plastic pollution]] efficiently and economically, policy should prioritize regulating and reducing upstream production rather than downstream pollution cleanup" as "popularized by [[The Ocean Cleanup]]" (9 Nov),<!--https://cosmosmagazine.com/earth/sustainability/curbing-demand-for-plastics-best-way/--><ref>{{#invoke:cite journal||last1=Bergmann |first1=Melanie |last2=Arp |first2=Hans Peter H. |last3=Carney Almroth |first3=Bethanie |last4=Cowger |first4=Win |last5=Eriksen |first5=Marcus |last6=Dey |first6=Tridibesh |last7=Gündoğdu |first7=Sedat |last8=Helm |first8=Rebecca R. |last9=Krieger |first9=Anja |last10=Syberg |first10=Kristian |last11=Tekman |first11=Mine B. |last12=Thompson |first12=Richard C. |last13=Villarrubia-Gómez |first13=Patricia |last14=Warrier |first14=Anish Kumar |last15=Farrelly |first15=Trisia |title=Moving from symptom management to upstream plastics prevention: The fallacy of plastic cleanup technology |journal=One Earth |date=November 2023 |volume=6 |issue=11 |pages=1439–1442 |doi=10.1016/j.oneear.2023.10.022|doi-access=free }}</ref> [[social connectedness|social unconnectedness]] confirmed as likely substantial mortality risk factor using [[UK Biobank]] data (10 Nov),<!--https://www.newscientist.com/article/2402234-frequently-seeing-friends-and-family-may-cut-the-risk-of-early-death/--><ref>{{#invoke:cite journal||last1=Foster |first1=Hamish M. E. |last2=Gill |first2=Jason M. R. |last3=Mair |first3=Frances S. |last4=Celis-Morales |first4=Carlos A. |last5=Jani |first5=Bhautesh D. |last6=Nicholl |first6=Barbara I. |last7=Lee |first7=Duncan |last8=O'Donnell |first8=Catherine A. |title=Social connection and mortality in UK Biobank: a prospective cohort analysis |journal=BMC Medicine |date=10 November 2023 |volume=21 |issue=1 |page=384 |doi=10.1186/s12916-023-03055-7 |issn=1741-7015|doi-access=free|pmid=37946218 |pmc=10637015 }}</ref> [[nanoplastic]] pollution and consumption identified as a likely [[Parkinson's disease]] risk factor (17 Nov),<!--https://www.vice.com/en/article/k7zkm3/nanoplastics-could-be-worse-than-microplastics-and-we-know-almost-nothing-about-them--><ref>{{#invoke:cite journal||last1=Liu |first1=Zhiyong |last2=Sokratian |first2=Arpine |last3=Duda |first3=Addison M. |last4=Xu |first4=Enquan |last5=Stanhope |first5=Christina |last6=Fu |first6=Amber |last7=Strader |first7=Samuel |last8=Li |first8=Huizhong |last9=Yuan |first9=Yuan |last10=Bobay |first10=Benjamin G. |last11=Sipe |first11=Joana |last12=Bai |first12=Ketty |last13=Lundgaard |first13=Iben |last14=Liu |first14=Na |last15=Hernandez |first15=Belinda |last16=Bowes Rickman |first16=Catherine |last17=Miller |first17=Sara E. |last18=West |first18=Andrew B. |title=Anionic nanoplastic contaminants promote Parkinson's disease–associated α-synuclein aggregation |journal=Science Advances |date=17 November 2023 |volume=9 |issue=46 |pages=eadi8716 |doi=10.1126/sciadv.adi8716 |language=en |issn=2375-2548|doi-access=free|pmid=37976362 |pmc=10656074 |bibcode=2023SciA....9I8716L }}</ref> a [[scientific review|review]] cautions "robust evidence has yet to emerge that <nowiki>[</nowiki>[[air filter|air treatment]] technologies] are effective at reducing respiratory or gastrointestinal infections in real world settings" (20 Nov),<ref>{{#invoke:cite journal||last1=Brainard |first1=Julii |last2=Jones |first2=Natalia R. |last3=Swindells |first3=Isabel Catalina |last4=Archer |first4=Elizabeth J. |last5=Kolyva |first5=Anastasia |last6=Letley |first6=Charlotte |last7=Pond |first7=Katharine |last8=Lake |first8=Iain R. |last9=Hunter |first9=Paul R. |title=Effectiveness of filtering or decontaminating air to reduce or prevent respiratory infections: A systematic review |journal=Preventive Medicine |date=1 December 2023 |volume=177 |page=107774 |doi=10.1016/j.ypmed.2023.107774 |issn=0091-7435|doi-access=free|pmid=37992976 }}</ref> a [[content analysis]] of [[packaging]] marketing of infant and toddler foods in supermarkets suggests protection of young children's diets from harmful influence of food marketing is needed (28 Nov),<!--https://medicalxpress.com/news/2023-11-aussie-babies-toddlers-unhealthy-foods.html--><ref>{{#invoke:cite journal||last1=Chung |first1=Alexandra |last2=Myers |first2=Judith |last3=Skouteris |first3=Helen |last4=Backholer |first4=Kathryn |title=Front-of-pack marketing on infant and toddler foods: Targeting children and their caregivers |journal=Australian and New Zealand Journal of Public Health |date=1 December 2023 |volume=47 |issue=6 |page=100101 |doi=10.1016/j.anzjph.2023.100101 |pmid=38030442 |issn=1326-0200|doi-access=free }}</ref> a [[preprint]] suggests some [[large language model]]s have an 'extractable memorization' flaw by which training data can be extracted at affordable costs by queries (28 Nov).<!--https://www.theatlantic.com/technology/archive/2024/01/chatgpt-memorization-lawsuit/677099/--><!--<ref>{{cite news |last1=Grad |first1=Peter |title=Trick prompts ChatGPT to leak private data |url=https://techxplore.com/news/2023-12-prompts-chatgpt-leak-private.html |access-date=18 February 2024 |work=techxplore.com |language=en}}</ref>--><ref>{{cite arXiv |title=Scalable Extraction of Training Data from (Production) Language Models |eprint=2311.17035 |last1=Nasr |first1=Milad |last2=Carlini |first2=Nicholas |last3=Hayase |first3=Jonathan |last4=Jagielski |first4=Matthew |last5=Feder Cooper |first5=A. |last6=Ippolito |first6=Daphne |last7=Choquette-Choo |first7=Christopher A. |last8=Wallace |first8=Eric |last9=Tramèr |first9=Florian |last10=Lee |first10=Katherine |date=2023 |class=cs.LG }}</ref>
* {{vanchor|Hazards_November|text=[[Hazard]] research is published}}: a study indicates common [[food allergies]] are not benign but are associated with increased risk of cardiovascular mortality (9 Nov),<!--https://www.salon.com/2023/11/14/allergies-might-exacerbate-cardiovascular-illness-new-research-finds/--><ref>{{#invoke:cite journal||last1=Keet |first1=Corinne |last2=McGowan |first2=Emily C. |last3=Jacobs |first3=David |last4=Post |first4=Wendy S. |last5=Richards |first5=Nathan E. |last6=Workman |first6=Lisa J. |last7=Platts-Mills |first7=Thomas A.E. |last8=Manichaikul |first8=Ani |last9=Wilson |first9=Jeffrey M. |title=IgE to common food allergens is associated with cardiovascular mortality in the National Health and Examination Survey and the Multi-Ethnic Study of Atherosclerosis |journal=Journal of Allergy and Clinical Immunology |date=February 2024 |volume=153 |issue=2 |pages=471–478.e3 |doi=10.1016/j.jaci.2023.09.038 |pmid=37943208 |pmc=10922097 |pmc-embargo-date=February 1, 2025 |s2cid=265066269 |url=https://www.jacionline.org/article/S0091-6749(23)01251-4/fulltext|url-access=subscription}}</ref> in a commentary, scientists warn that to "reduce [[plastic pollution]] efficiently and economically, policy should prioritize regulating and reducing upstream production rather than downstream pollution cleanup" as "popularized by [[The Ocean Cleanup]]" (9 Nov),<!--https://cosmosmagazine.com/earth/sustainability/curbing-demand-for-plastics-best-way/--><ref>{{#invoke:cite journal||last1=Bergmann |first1=Melanie |last2=Arp |first2=Hans Peter H. |last3=Carney Almroth |first3=Bethanie |last4=Cowger |first4=Win |last5=Eriksen |first5=Marcus |last6=Dey |first6=Tridibesh |last7=Gündoğdu |first7=Sedat |last8=Helm |first8=Rebecca R. |last9=Krieger |first9=Anja |last10=Syberg |first10=Kristian |last11=Tekman |first11=Mine B. |last12=Thompson |first12=Richard C. |last13=Villarrubia-Gómez |first13=Patricia |last14=Warrier |first14=Anish Kumar |last15=Farrelly |first15=Trisia |title=Moving from symptom management to upstream plastics prevention: The fallacy of plastic cleanup technology |journal=One Earth |date=November 2023 |volume=6 |issue=11 |pages=1439–1442 |doi=10.1016/j.oneear.2023.10.022|doi-access=free }}</ref> [[social connectedness|social unconnectedness]] confirmed as likely substantial mortality risk factor using [[UK Biobank]] data (10 Nov),<!--https://www.newscientist.com/article/2402234-frequently-seeing-friends-and-family-may-cut-the-risk-of-early-death/--><ref>{{#invoke:cite journal||last1=Foster |first1=Hamish M. E. |last2=Gill |first2=Jason M. R. |last3=Mair |first3=Frances S. |last4=Celis-Morales |first4=Carlos A. |last5=Jani |first5=Bhautesh D. |last6=Nicholl |first6=Barbara I. |last7=Lee |first7=Duncan |last8=O'Donnell |first8=Catherine A. |title=Social connection and mortality in UK Biobank: a prospective cohort analysis |journal=BMC Medicine |date=10 November 2023 |volume=21 |issue=1 |page=384 |doi=10.1186/s12916-023-03055-7 |issn=1741-7015|doi-access=free|pmid=37946218 |pmc=10637015 }}</ref> [[nanoplastic]] pollution and consumption identified as a likely [[Parkinson's disease]] risk factor (17 Nov),<!--https://www.vice.com/en/article/k7zkm3/nanoplastics-could-be-worse-than-microplastics-and-we-know-almost-nothing-about-them--><ref>{{#invoke:cite journal||last1=Liu |first1=Zhiyong |last2=Sokratian |first2=Arpine |last3=Duda |first3=Addison M. |last4=Xu |first4=Enquan |last5=Stanhope |first5=Christina |last6=Fu |first6=Amber |last7=Strader |first7=Samuel |last8=Li |first8=Huizhong |last9=Yuan |first9=Yuan |last10=Bobay |first10=Benjamin G. |last11=Sipe |first11=Joana |last12=Bai |first12=Ketty |last13=Lundgaard |first13=Iben |last14=Liu |first14=Na |last15=Hernandez |first15=Belinda |last16=Bowes Rickman |first16=Catherine |last17=Miller |first17=Sara E. |last18=West |first18=Andrew B. |title=Anionic nanoplastic contaminants promote Parkinson's disease–associated α-synuclein aggregation |journal=Science Advances |date=17 November 2023 |volume=9 |issue=46 |pages=eadi8716 |doi=10.1126/sciadv.adi8716 |language=en |issn=2375-2548|doi-access=free|pmid=37976362 |pmc=10656074 |bibcode=2023SciA....9I8716L }}</ref> a [[scientific review|review]] cautions "robust evidence has yet to emerge that <nowiki>[</nowiki>[[air filter|air treatment]] technologies] are effective at reducing respiratory or gastrointestinal infections in real world settings" (20 Nov),<ref>{{#invoke:cite journal||last1=Brainard |first1=Julii |last2=Jones |first2=Natalia R. |last3=Swindells |first3=Isabel Catalina |last4=Archer |first4=Elizabeth J. |last5=Kolyva |first5=Anastasia |last6=Letley |first6=Charlotte |last7=Pond |first7=Katharine |last8=Lake |first8=Iain R. |last9=Hunter |first9=Paul R. |title=Effectiveness of filtering or decontaminating air to reduce or prevent respiratory infections: A systematic review |journal=Preventive Medicine |date=1 December 2023 |volume=177 |page=107774 |doi=10.1016/j.ypmed.2023.107774 |issn=0091-7435|doi-access=free|pmid=37992976 }}</ref> a [[content analysis]] of [[packaging]] marketing of infant and toddler foods in supermarkets suggests protection of young children's diets from harmful influence of food marketing is needed (28 Nov),<!--https://medicalxpress.com/news/2023-11-aussie-babies-toddlers-unhealthy-foods.html--><ref>{{#invoke:cite journal||last1=Chung |first1=Alexandra |last2=Myers |first2=Judith |last3=Skouteris |first3=Helen |last4=Backholer |first4=Kathryn |title=Front-of-pack marketing on infant and toddler foods: Targeting children and their caregivers |journal=Australian and New Zealand Journal of Public Health |date=1 December 2023 |volume=47 |issue=6 |page=100101 |doi=10.1016/j.anzjph.2023.100101 |pmid=38030442 |issn=1326-0200|doi-access=free }}</ref> a [[preprint]] suggests some [[large language model]]s have an 'extractable memorization' flaw by which training data can be extracted at affordable costs by queries (28 Nov).<!--https://www.theatlantic.com/technology/archive/2024/01/chatgpt-memorization-lawsuit/677099/--><!--<ref>{{cite news |last1=Grad |first1=Peter |title=Trick prompts ChatGPT to leak private data |url=https://techxplore.com/news/2023-12-prompts-chatgpt-leak-private.html |access-date=18 February 2024 |work=techxplore.com |language=en}}</ref>--><ref>{{cite arXiv |title=Scalable Extraction of Training Data from (Production) Language Models |eprint=2311.17035 |last1=Nasr |first1=Milad |last2=Carlini |first2=Nicholas |last3=Hayase |first3=Jonathan |last4=Jagielski |first4=Matthew |last5=Feder Cooper |first5=A. |last6=Ippolito |first6=Daphne |last7=Choquette-Choo |first7=Christopher A. |last8=Wallace |first8=Eric |last9=Tramèr |first9=Florian |last10=Lee |first10=Katherine |date=2023 |class=cs.LG }}</ref>


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*{{vanchor|6 December}}
*{{vanchor|6 December}}
**Scientists, for the first time, report a recently discovered area on the current planet [[Earth]], particularly in the [[Puna de Atacama]] territory of [[South America]], which may be similar to ancient Earth, and the related environment of the [[Earliest known life forms|first life forms on Earth]] – as well as – similar to possibly hospitable conditions on the planet [[Mars]] during earlier Martian times.<ref name="CU-20231206">{{#invoke:cite news||last=Strain |first=Daniel |title=Deep within an inhospitable desert, a window to first life on Earth |url=https://www.colorado.edu/today/2023/12/06/deep-within-inhospitable-desert-window-first-life-earth |date=6 December 2023 |work=[[University of Colorado]] |url-status=live |archive-url=https://archive.today/20231230225404/https://www.colorado.edu/today/2023/12/06/deep-within-inhospitable-desert-window-first-life-earth |archive-date=30 December 2023 |access-date=30 December 2023 }}</ref>
**Scientists, for the first time, report a recently discovered area on the current planet [[Earth]], particularly in the [[Puna de Atacama]] territory of [[South America]], which may be similar to ancient Earth, and the related environment of the [[Earliest known life forms|first life forms on Earth]] – as well as – similar to possibly hospitable conditions on the planet [[Mars]] during earlier Martian times.<ref name="CU-20231206">{{#invoke:cite news||last=Strain |first=Daniel |title=Deep within an inhospitable desert, a window to first life on Earth |url=https://www.colorado.edu/today/2023/12/06/deep-within-inhospitable-desert-window-first-life-earth |date=6 December 2023 |work=[[University of Colorado]] |url-status=live |archive-url=https://archive.today/20231230225404/https://www.colorado.edu/today/2023/12/06/deep-within-inhospitable-desert-window-first-life-earth |archive-date=30 December 2023 |access-date=30 December 2023 }}</ref>
**[[Google DeepMind]] announces its [[Gemini (language model)|Gemini]] multimodal language model, which it claims has advanced "reasoning capabilities" and can outperform [[GPT-4]] on a variety of tasks.<ref>{{#invoke:cite web||url=https://blog.google/technology/ai/google-gemini-ai/|title=Introducing Gemini: our largest and most capable AI model|date=6 December 2023|website=Google}}</ref><ref>{{#invoke:cite web||url=https://deepmind.google/technologies/gemini/|title=Gemini - Google DeepMind|website=deepmind.google}}</ref><ref>{{#invoke:cite news||url=https://www.bbc.com/news/technology-67630454|title=Google claims new Gemini AI 'thinks more carefully'|date=6 December 2023|via=www.bbc.co.uk}}</ref><ref>{{cite arXiv |title=Gemini: A Family of Highly Capable Multimodal Models |eprint=2312.11805 |last1=Team |first1=Gemini |last2=Anil |first2=Rohan |last3=Borgeaud |first3=Sebastian |last4=Wu |first4=Yonghui |last5=Alayrac |first5=Jean-Baptiste |last6=Yu |first6=Jiahui |last7=Soricut |first7=Radu |last8=Schalkwyk |first8=Johan |last9=Dai |first9=Andrew M. |last10=Hauth |first10=Anja |last11=Millican |first11=Katie |last12=Silver |first12=David |last13=Petrov |first13=Slav |last14=Johnson |first14=Melvin |last15=Antonoglou |first15=Ioannis |last16=Schrittwieser |first16=Julian |last17=Glaese |first17=Amelia |last18=Chen |first18=Jilin |last19=Pitler |first19=Emily |last20=Lillicrap |first20=Timothy |last21=Lazaridou |first21=Angeliki |last22=Firat |first22=Orhan |last23=Molloy |first23=James |last24=Isard |first24=Michael |last25=Barham |first25=Paul R. |last26=Hennigan |first26=Tom |last27=Lee |first27=Benjamin |last28=Viola |first28=Fabio |last29=Reynolds |first29=Malcolm |last30=Xu |first30=Yuanzhong |date=2023 |class=cs.CL |display-authors=1 }}</ref>
**[[Google DeepMind]] announces its [[Gemini (language model)|Gemini]] multimodal language model, which it claims has advanced "reasoning capabilities" and can outperform [[GPT-4]] on a variety of tasks.<ref>{{#invoke:cite web||url=https://blog.google/technology/ai/google-gemini-ai/|title=Introducing Gemini: our largest and most capable AI model|date=6 December 2023|website=Google}}</ref><ref>{{#invoke:cite web||url=https://deepmind.google/technologies/gemini/|title=Gemini - Google DeepMind|website=deepmind.google|date=14 May 2024 }}</ref><ref>{{#invoke:cite news||url=https://www.bbc.com/news/technology-67630454|title=Google claims new Gemini AI 'thinks more carefully'|date=6 December 2023|via=www.bbc.co.uk}}</ref><ref>{{cite arXiv |title=Gemini: A Family of Highly Capable Multimodal Models |eprint=2312.11805 |last1=Team |first1=Gemini |last2=Anil |first2=Rohan |last3=Borgeaud |first3=Sebastian |last4=Wu |first4=Yonghui |last5=Alayrac |first5=Jean-Baptiste |last6=Yu |first6=Jiahui |last7=Soricut |first7=Radu |last8=Schalkwyk |first8=Johan |last9=Dai |first9=Andrew M. |last10=Hauth |first10=Anja |last11=Millican |first11=Katie |last12=Silver |first12=David |last13=Petrov |first13=Slav |last14=Johnson |first14=Melvin |last15=Antonoglou |first15=Ioannis |last16=Schrittwieser |first16=Julian |last17=Glaese |first17=Amelia |last18=Chen |first18=Jilin |last19=Pitler |first19=Emily |last20=Lillicrap |first20=Timothy |last21=Lazaridou |first21=Angeliki |last22=Firat |first22=Orhan |last23=Molloy |first23=James |last24=Isard |first24=Michael |last25=Barham |first25=Paul R. |last26=Hennigan |first26=Tom |last27=Lee |first27=Benjamin |last28=Viola |first28=Fabio |last29=Reynolds |first29=Malcolm |last30=Xu |first30=Yuanzhong |date=2023 |class=cs.CL |display-authors=1 }}</ref>
*{{vanchor|7 December}}
*{{vanchor|7 December}}
**A gene therapy based on three [[Transcription factor|transcription factors]], Oct4, Sox2, and Klf4 (OSK), is shown to provide sustained vision recovery in mice affected by [[glaucoma]].<ref>{{#invoke:cite journal||title=Sustained Vision Recovery by OSK Gene Therapy in a Mouse Model of Glaucoma|date=7 December 2023|journal=Cellular Reprogramming|doi=10.1089/cell.2023.0074 |last1=Karg |first1=Margarete M. |last2=Lu |first2=Yuancheng Ryan |last3=Refaian |first3=Nasrin |last4=Cameron |first4=James |last5=Hoffmann |first5=Emma |last6=Hoppe |first6=Cindy |last7=Shirahama |first7=Shintaro |last8=Shah |first8=Madhura |last9=Krasniqi |first9=Drenushe |last10=Krishnan |first10=Anitha |last11=Shrestha |first11=Maleeka |last12=Guo |first12=Yinjie |last13=Cermak |first13=Jennifer M. |last14=Walthier |first14=Michel |last15=Broniowska |first15=Kasia |last16=Rosenzweig-Lipson |first16=Sharon |last17=Gregory-Ksander |first17=Meredith |last18=Sinclair |first18=David A. |last19=Ksander |first19=Bruce R. |volume=25 |issue=6 |pages=288–299 |pmid=38060815 |pmc=10739681 |s2cid=266122553 |pmc-embargo-date=December 1, 2024 }}</ref>
**A gene therapy based on three [[Transcription factor|transcription factors]], Oct4, Sox2, and Klf4 (OSK), is shown to provide sustained vision recovery in mice affected by [[glaucoma]].<ref>{{#invoke:cite journal||title=Sustained Vision Recovery by OSK Gene Therapy in a Mouse Model of Glaucoma|date=7 December 2023|journal=Cellular Reprogramming|doi=10.1089/cell.2023.0074 |last1=Karg |first1=Margarete M. |last2=Lu |first2=Yuancheng Ryan |last3=Refaian |first3=Nasrin |last4=Cameron |first4=James |last5=Hoffmann |first5=Emma |last6=Hoppe |first6=Cindy |last7=Shirahama |first7=Shintaro |last8=Shah |first8=Madhura |last9=Krasniqi |first9=Drenushe |last10=Krishnan |first10=Anitha |last11=Shrestha |first11=Maleeka |last12=Guo |first12=Yinjie |last13=Cermak |first13=Jennifer M. |last14=Walthier |first14=Michel |last15=Broniowska |first15=Kasia |last16=Rosenzweig-Lipson |first16=Sharon |last17=Gregory-Ksander |first17=Meredith |last18=Sinclair |first18=David A. |last19=Ksander |first19=Bruce R. |volume=25 |issue=6 |pages=288–299 |pmid=38060815 |pmc=10739681 |s2cid=266122553 |pmc-embargo-date=December 1, 2024 }}</ref>
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*19 December – [[COVID-19]]: The [[World Health Organization]] designates JN.1, part of the [[BA.2.86]] [[SARS-CoV-2]] lineage, as its own variant of interest. This follows a recent, rapid rise in case numbers around the world.<ref>{{#invoke:cite news||title=WHO designates JN.1 as separate COVID-19 variant of interest |url=https://www.cidrap.umn.edu/covid-19/who-designates-jn1-separate-covid-19-variant-interest |date=19 December 2023 |work=University of Minnesota |access-date=20 December 2023 }}</ref><ref>{{#invoke:cite news||title=NEW: COVID19 variant of interest JN.1 |url=https://worldhealthorganizationdepartmentofcommunications.cmail20.com/t/d-e-vkkjyud-jyyhcddb-f/ |date=19 December 2023 |work=WHO |access-date=20 December 2023 }}</ref>
*19 December – [[COVID-19]]: The [[World Health Organization]] designates JN.1, part of the [[BA.2.86]] [[SARS-CoV-2]] lineage, as its own variant of interest. This follows a recent, rapid rise in case numbers around the world.<ref>{{#invoke:cite news||title=WHO designates JN.1 as separate COVID-19 variant of interest |url=https://www.cidrap.umn.edu/covid-19/who-designates-jn1-separate-covid-19-variant-interest |date=19 December 2023 |work=University of Minnesota |access-date=20 December 2023 }}</ref><ref>{{#invoke:cite news||title=NEW: COVID19 variant of interest JN.1 |url=https://worldhealthorganizationdepartmentofcommunications.cmail20.com/t/d-e-vkkjyud-jyyhcddb-f/ |date=19 December 2023 |work=WHO |access-date=20 December 2023 }}</ref>
*{{vanchor|20 December}}
*{{vanchor|20 December}}
**A new class of [[antibiotic]] candidates, able to kill [[methicillin]]-resistant ''[[Staphylococcus aureus]]'' (MRSA) is [[Drug discovery#Screening|identified]] using [[deep learning]].<!--https://www.scientificamerican.com/article/new-class-of-antibiotics-discovered-using-ai/--><ref>{{#invoke:cite news||title=Using AI, MIT researchers identify a new class of antibiotic candidates |url=https://news.mit.edu/2023/using-ai-mit-researchers-identify-antibiotic-candidates-1220 |date=20 December 2023 |work=MIT |access-date=30 December 2023 }}</ref><ref>{{#invoke:cite journal||last1=Wong |first1=Felix |last2=Zheng |first2=Erica J. |last3=Valeri |first3=Jacqueline A. |last4=Donghia |first4=Nina M. |last5=Anahtar |first5=Melis N. |last6=Omori |first6=Satotaka |last7=Li |first7=Alicia |last8=Cubillos-Ruiz |first8=Andres |last9=Krishnan |first9=Aarti |last10=Jin |first10=Wengong |last11=Manson |first11=Abigail L. |last12=Friedrichs |first12=Jens |last13=Helbig |first13=Ralf |last14=Hajian |first14=Behnoush |last15=Fiejtek |first15=Dawid K. |last16=Wagner |first16=Florence F. |last17=Soutter |first17=Holly H. |last18=Earl |first18=Ashlee M. |last19=Stokes |first19=Jonathan M. |last20=Renner |first20=Lars D. |last21=Collins |first21=James J. |title=Discovery of a structural class of antibiotics with explainable deep learning |journal=Nature |date=February 2024 |volume=626 |issue=7997 |pages=177–185 |doi=10.1038/s41586-023-06887-8 |pmid=38123686 |pmc=10866013 |pmc-embargo-date=August 1, 2024 |bibcode=2024Natur.626..177W |url=https://www.mit.edu/~wongf/papers/Discovery%20of%20a%20structural%20class%20of%20antibiotics%20with%20explainable%20deep%20learning.pdf |language=en |issn=1476-4687}}</ref>
**A new class of [[antibiotic]] candidates, able to kill [[methicillin]]-resistant ''[[Staphylococcus aureus]]'' (MRSA) is [[Drug discovery#Screening|identified]] using [[deep learning]].<!--https://www.scientificamerican.com/article/new-class-of-antibiotics-discovered-using-ai/--><ref>{{#invoke:cite news||title=Using AI, MIT researchers identify a new class of antibiotic candidates |url=https://news.mit.edu/2023/using-ai-mit-researchers-identify-antibiotic-candidates-1220 |date=20 December 2023 |work=MIT |access-date=30 December 2023 }}</ref><ref>{{#invoke:cite journal||last1=Wong |first1=Felix |last2=Zheng |first2=Erica J. |last3=Valeri |first3=Jacqueline A. |last4=Donghia |first4=Nina M. |last5=Anahtar |first5=Melis N. |last6=Omori |first6=Satotaka |last7=Li |first7=Alicia |last8=Cubillos-Ruiz |first8=Andres |last9=Krishnan |first9=Aarti |last10=Jin |first10=Wengong |last11=Manson |first11=Abigail L. |last12=Friedrichs |first12=Jens |last13=Helbig |first13=Ralf |last14=Hajian |first14=Behnoush |last15=Fiejtek |first15=Dawid K. |last16=Wagner |first16=Florence F. |last17=Soutter |first17=Holly H. |last18=Earl |first18=Ashlee M. |last19=Stokes |first19=Jonathan M. |last20=Renner |first20=Lars D. |last21=Collins |first21=James J. |title=Discovery of a structural class of antibiotics with explainable deep learning |journal=Nature |date=February 2024 |volume=626 |issue=7997 |pages=177–185 |doi=10.1038/s41586-023-06887-8 |pmid=38123686 |pmc=10866013 |bibcode=2024Natur.626..177W |url=https://www.mit.edu/~wongf/papers/Discovery%20of%20a%20structural%20class%20of%20antibiotics%20with%20explainable%20deep%20learning.pdf |language=en |issn=1476-4687}}</ref>
**An experimental study reports [[Web query|online search]] to evaluate the [[Misinformation#Countermeasures|truthfulness of false news articles]] increases the probability of [[Belief#Belief studies|believing]] them, especially for those for whom [[Web search engine|search engines]] return [[Personalized search|lower-quality information]]. It suggests [[media literacy]] programs with tested strategies and solutions for identified search engines issues are needed.<!--https://www.scientificamerican.com/article/how-search-engines-boost-misinformation/--><ref>{{#invoke:cite journal||last1=Aslett |first1=Kevin |last2=Sanderson |first2=Zeve |last3=Godel |first3=William |last4=Persily |first4=Nathaniel |last5=Nagler |first5=Jonathan |last6=Tucker |first6=Joshua A. |title=Online searches to evaluate misinformation can increase its perceived veracity |journal=Nature |date=January 2024 |volume=625 |issue=7995 |pages=548–556 |doi=10.1038/s41586-023-06883-y |language=en |issn=1476-4687|doi-access=free|pmid=38123685 |pmc=10794132 |bibcode=2024Natur.625..548A }}</ref>
**An experimental study reports [[Web query|online search]] to evaluate the [[Misinformation#Countermeasures|truthfulness of false news articles]] increases the probability of [[Belief#Belief studies|believing]] them, especially for those for whom [[Web search engine|search engines]] return [[Personalized search|lower-quality information]]. It suggests [[media literacy]] programs with tested strategies and solutions for identified search engines issues are needed.<!--https://www.scientificamerican.com/article/how-search-engines-boost-misinformation/--><ref>{{#invoke:cite journal||last1=Aslett |first1=Kevin |last2=Sanderson |first2=Zeve |last3=Godel |first3=William |last4=Persily |first4=Nathaniel |last5=Nagler |first5=Jonathan |last6=Tucker |first6=Joshua A. |title=Online searches to evaluate misinformation can increase its perceived veracity |journal=Nature |date=January 2024 |volume=625 |issue=7995 |pages=548–556 |doi=10.1038/s41586-023-06883-y |language=en |issn=1476-4687|doi-access=free|pmid=38123685 |pmc=10794132 |bibcode=2024Natur.625..548A }}</ref>
*{{vanchor|28 December}} – A new model of the largest [[neutron stars]] finds an 80–90% chance that they contain [[QCD matter|quark-matter cores]].<!--<ref>{{cite news |title=Further evidence for quark-matter cores in massive neutron stars |url=https://www.helsinki.fi/en/news/human-centric-technology/further-evidence-quark-matter-cores-massive-neutron-stars |date=28 December 2023 |work=University of Helsinki |access-date=28 December 2023 }}</ref>--><ref>{{#invoke:cite journal||last1=Annala |first1=Eemeli |last2=Gorda |first2=Tyler |last3=Hirvonen |first3=Joonas |last4=Komoltsev |first4=Oleg |last5=Kurkela |first5=Aleksi |last6=Nättilä |first6=Joonas |last7=Vuorinen |first7=Aleksi |title=Strongly interacting matter exhibits deconfined behavior in massive neutron stars |journal=Nature Communications |date=19 December 2023 |volume=14 |issue=1 |page=8451 |doi=10.1038/s41467-023-44051-y |language=en |issn=2041-1723|doi-access=free|pmid=38114461 |pmc=10730725 |arxiv=2303.11356 |bibcode=2023NatCo..14.8451A }}</ref>
*{{vanchor|28 December}} – A new model of the largest [[neutron stars]] finds an 80–90% chance that they contain [[QCD matter|quark-matter cores]].<!--<ref>{{cite news |title=Further evidence for quark-matter cores in massive neutron stars |url=https://www.helsinki.fi/en/news/human-centric-technology/further-evidence-quark-matter-cores-massive-neutron-stars |date=28 December 2023 |work=University of Helsinki |access-date=28 December 2023 }}</ref>--><ref>{{#invoke:cite journal||last1=Annala |first1=Eemeli |last2=Gorda |first2=Tyler |last3=Hirvonen |first3=Joonas |last4=Komoltsev |first4=Oleg |last5=Kurkela |first5=Aleksi |last6=Nättilä |first6=Joonas |last7=Vuorinen |first7=Aleksi |title=Strongly interacting matter exhibits deconfined behavior in massive neutron stars |journal=Nature Communications |date=19 December 2023 |volume=14 |issue=1 |page=8451 |doi=10.1038/s41467-023-44051-y |language=en |issn=2041-1723|doi-access=free|pmid=38114461 |pmc=10730725 |arxiv=2303.11356 |bibcode=2023NatCo..14.8451A }}</ref>
*{{vanchor|29 December}} – A [[metascience]] study {{tooltip|estimates|It uses "publication data from WoS, OA status from Unpaywall, and annual APC prices from open data sets and historical fees retrieved via the Internet Archive Wayback Machine"}} the total amount of [[article processing charges]] paid to publish with [[open access]] in journals controlled by {{tooltip|the five large commercial publishers|Elsevier, Sage, Springer Nature, Taylor & Francis, and Wiley}} from 2015–2018 to be $1.06 billion.<ref>{{#invoke:cite journal||last1=Butler |first1=Leigh-Ann |last2=Matthias |first2=Lisa |last3=Simard |first3=Marc-André |last4=Mongeon |first4=Philippe |last5=Haustein |first5=Stefanie |title=The oligopoly's shift to open access: How the big five academic publishers profit from article processing charges |journal=Quantitative Science Studies |date=29 December 2023 |volume=4 |issue=4 |pages=778–799 |doi=10.1162/qss_a_00272|doi-access=free|hdl=1866/32063 |hdl-access=free }}</ref> On 12 December, it is reported that the number of [[Retraction in academic publishing|paper retractions]] has hit a new record of over 10,000 in 2023, with around 80% coming from journals owned by [[Hindawi (publisher)|Hindawi]], mostly special issues overseen by guest editors.<ref>{{#invoke:cite journal||last1=Van Noorden |first1=Richard |title=More than 10,000 research papers were retracted in 2023 — a new record |url=https://media.nature.com/original/magazine-assets/d41586-023-03974-8/d41586-023-03974-8.pdf |access-date=17 February 2024 |journal=Nature |date=12 December 2023 |volume=624 |issue=7992 |pages=479–481 |language=en |doi=10.1038/d41586-023-03974-8|pmid=38087103 |bibcode=2023Natur.624..479V |s2cid=266223634 }}</ref>
*{{vanchor|29 December}} – A [[metascience]] study {{tooltip|estimates|It uses "publication data from WoS, OA status from Unpaywall, and annual APC prices from open data sets and historical fees retrieved via the Internet Archive Wayback Machine"}} the total amount of [[article processing charges]] paid to publish with [[open access]] in journals controlled by {{tooltip|the five large commercial publishers|Elsevier, Sage, Springer Nature, Taylor & Francis, and Wiley}} from 2015–2018 to be $1.06 billion.<ref>{{#invoke:cite journal||last1=Butler |first1=Leigh-Ann |last2=Matthias |first2=Lisa |last3=Simard |first3=Marc-André |last4=Mongeon |first4=Philippe |last5=Haustein |first5=Stefanie |title=The oligopoly's shift to open access: How the big five academic publishers profit from article processing charges |journal=Quantitative Science Studies |date=29 December 2023 |volume=4 |issue=4 |pages=778–799 |doi=10.1162/qss_a_00272|doi-access=free|hdl=1866/32063 |hdl-access=free }}</ref> On 12 December, it is reported that the number of [[Retraction in academic publishing|paper retractions]] has hit a new record of over 10,000 in 2023, with around 80% coming from journals owned by [[Hindawi (publisher)|Hindawi]], mostly special issues overseen by guest editors.<ref>{{#invoke:cite journal||last1=Van Noorden |first1=Richard |title=More than 10,000 research papers were retracted in 2023 — a new record |url=https://media.nature.com/original/magazine-assets/d41586-023-03974-8/d41586-023-03974-8.pdf |access-date=17 February 2024 |journal=Nature |date=12 December 2023 |volume=624 |issue=7992 |pages=479–481 |language=en |doi=10.1038/d41586-023-03974-8|pmid=38087103 |bibcode=2023Natur.624..479V |s2cid=266223634 }}</ref>
*{{vanchor|Innovations_December|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: a flying [[firehose]] robot, the Dragon Firefighter (22 Dec),<!--https://www.ctvnews.ca/sci-tech/it-s-a-bird-it-s-a-plane-it-s-a-flying-firehose-robot-prototype-called-the-dragon-firefighter-1.6701132--><ref>{{#invoke:cite journal||last1=Yamauchi |first1=Yu |last2=Maezawa |first2=Yukihiro |last3=Ambe |first3=Yuichi |last4=Konyo |first4=Masashi |last5=Tadakuma |first5=Kenjiro |last6=Tadokoro |first6=Satoshi |title=Development of a remotely controllable 4 m long aerial-hose-type firefighting robot |journal=Frontiers in Robotics and AI |date=2023 |volume=10 |doi=10.3389/frobt.2023.1273676 |issn=2296-9144|doi-access=free|pmid=38187476 |pmc=10770852 }}</ref> completion of the first functional 105 meters tall more-modular Modvion [[Environmental impact of wind power#Alternative building materials|wooden wind turbine]] is reported (28 Dec).<ref>{{#invoke:cite news||title=World's tallest wooden wind turbine starts turning |url=https://www.bbc.com/news/science-environment-67718719 |work=BBC |date=28 December 2023}}</ref>
*{{vanchor|Innovations_December|text=Promising [[innovation]]s relating to [[Global issue|global challenges]] are reported}}: a flying [[firehose]] robot, the Dragon Firefighter (22 Dec),<!--https://www.ctvnews.ca/sci-tech/it-s-a-bird-it-s-a-plane-it-s-a-flying-firehose-robot-prototype-called-the-dragon-firefighter-1.6701132--><ref>{{#invoke:cite journal||last1=Yamauchi |first1=Yu |last2=Maezawa |first2=Yukihiro |last3=Ambe |first3=Yuichi |last4=Konyo |first4=Masashi |last5=Tadakuma |first5=Kenjiro |last6=Tadokoro |first6=Satoshi |title=Development of a remotely controllable 4 m long aerial-hose-type firefighting robot |journal=Frontiers in Robotics and AI |date=2023 |volume=10 |doi=10.3389/frobt.2023.1273676 |issn=2296-9144|doi-access=free|pmid=38187476 |pmc=10770852 }}</ref> completion of the first functional 105 meters tall more-modular Modvion [[Environmental impact of wind power#Alternative building materials|wooden wind turbine]] is reported (28 Dec).<ref>{{#invoke:cite news||title=World's tallest wooden wind turbine starts turning |url=https://www.bbc.com/news/science-environment-67718719 |work=BBC |date=28 December 2023}}</ref>
*{{vanchor|Therapeutics_December|text=Promising results of health and medical research are reported}}: news reports about a portable [[electroencephalogram|EEG]] [[Wearable technology#Headgear|helmet]] with significant accuracy of [[Mind reading|decoding thought words]] to text, DeWave (12 Dec),<ref>{{#invoke:cite news||title=Mind-reading AI can translate brainwaves into written text |url=https://www.newscientist.com/article/2408019-mind-reading-ai-can-translate-brainwaves-into-written-text/ |access-date=17 February 2024 |work=New Scientist}}</ref><ref>{{cite arXiv |title=DeWave: Discrete EEG Waves Encoding for Brain Dynamics to Text Translation |eprint=2309.14030 |last1=Duan |first1=Yiqun |last2=Zhou |first2=Jinzhao |last3=Wang |first3=Zhen |last4=Wang |first4=Yu-Kai |last5=Lin |first5=Chin-Teng |date=2023 |class=cs.HC }}</ref> [[Diet and cancer|carrots]] against cancer-risk (17 Dec).<!--https://www.earth.com/news/holiday-meals-indulgence-and-health-benefits-can-coexist/--><ref>{{#invoke:cite journal||last1=Ojobor |first1=Charles C. |last2=O'Brien |first2=Gerard M. |last3=Siervo |first3=Mario |last4=Ogbonnaya |first4=Chibueze |last5=Brandt |first5=Kirsten |title=Carrot intake is consistently negatively associated with cancer incidence: A systematic review and meta-analysis of prospective observational studies |journal=Critical Reviews in Food Science and Nutrition |date=17 December 2023 |pages=1–13 |doi=10.1080/10408398.2023.2287176 |language=en |issn=1040-8398|doi-access=free|pmid=38104588 }}</ref>
*{{vanchor|Therapeutics_December|text=Promising results of health and medical research are reported}}: news reports about a portable [[electroencephalogram|EEG]] [[Wearable technology#Headgear|helmet]] with significant accuracy of [[brain-reading|decoding thought words]] to text, DeWave (12 Dec),<ref>{{#invoke:cite news||title=Mind-reading AI can translate brainwaves into written text |url=https://www.newscientist.com/article/2408019-mind-reading-ai-can-translate-brainwaves-into-written-text/ |access-date=17 February 2024 |work=New Scientist}}</ref><ref>{{cite arXiv |title=DeWave: Discrete EEG Waves Encoding for Brain Dynamics to Text Translation |eprint=2309.14030 |last1=Duan |first1=Yiqun |last2=Zhou |first2=Jinzhao |last3=Wang |first3=Zhen |last4=Wang |first4=Yu-Kai |last5=Lin |first5=Chin-Teng |date=2023 |class=cs.HC }}</ref> [[Diet and cancer|carrots]] against cancer-risk (17 Dec).<!--https://www.earth.com/news/holiday-meals-indulgence-and-health-benefits-can-coexist/--><ref>{{#invoke:cite journal||last1=Ojobor |first1=Charles C. |last2=O'Brien |first2=Gerard M. |last3=Siervo |first3=Mario |last4=Ogbonnaya |first4=Chibueze |last5=Brandt |first5=Kirsten |title=Carrot intake is consistently negatively associated with cancer incidence: A systematic review and meta-analysis of prospective observational studies |journal=Critical Reviews in Food Science and Nutrition |date=17 December 2023 |pages=1–13 |doi=10.1080/10408398.2023.2287176 |language=en |issn=1040-8398|doi-access=free|pmid=38104588 }}</ref>
* {{vanchor|Hazards_December|text=[[Hazard]] research is published}}: the annual [[Global Carbon Project|Global Carbon Budget]] study finds fossil {{CO2}} emissions are still rising when if they stayed the same, the 50% likelihood to limit global warming to 1.5 °C would be exceeded around 2031 (5 Dec),<!--https://cosmosmagazine.com/earth/climate/world-poised-to-hit-1-5-degrees-a-year-earlier-than-expected-projections/--><ref>{{#invoke:cite journal||last1=Friedlingstein |first1=Pierre |last2=O'Sullivan |first2=Michael |last3=Jones |first3=Matthew W. |last4=Andrew |first4=Robbie M. |last5=Bakker |first5=Dorothee C. E. |display-authors=et al. |title=Global Carbon Budget 2023 |journal=Earth System Science Data |date=5 December 2023 |volume=15 |issue=12 |pages=5301–5369 |doi=10.5194/essd-15-5301-2023 |language=English |issn=1866-3508|doi-access=free|hdl=10871/134742 |hdl-access=free }}</ref> the genetic testing company 23andMe confirms that the [[genetic privacy]] of around 7 million customers has been violated in the [[23andMe data leak]] (5 Dec),<ref>{{#invoke:cite news||last1=Lyngaas |first1=Sean |title=Hackers access profiles of nearly 7 million 23andMe customers |url=https://edition.cnn.com/2023/12/05/tech/hackers-access-7-million-23andme-profiles/index.html |access-date=18 February 2024 |work=CNN |date=5 December 2023 |language=en}}</ref> a study using plasma proteomics [[aging clock]]s suggests nearly 20% of the population may show strongly accelerated age in one of 11 major organs, which it links to higher mortality risk (6 Dec),<!--https://www.scientificamerican.com/article/your-organs-might-be-aging-at-different-rates/--><ref>{{#invoke:cite journal||last1=Oh |first1=Hamilton Se-Hwee |last2=Rutledge |first2=Jarod |last3=Nachun |first3=Daniel |last4=Pálovics |first4=Róbert |last5=Abiose |first5=Olamide |last6=Moran-Losada |first6=Patricia |last7=Channappa |first7=Divya |last8=Urey |first8=Deniz Yagmur |last9=Kim |first9=Kate |last10=Sung |first10=Yun Ju |last11=Wang |first11=Lihua |last12=Timsina |first12=Jigyasha |last13=Western |first13=Dan |last14=Liu |first14=Menghan |last15=Kohlfeld |first15=Pat |last16=Budde |first16=John |last17=Wilson |first17=Edward N. |last18=Guen |first18=Yann |last19=Maurer |first19=Taylor M. |last20=Haney |first20=Michael |last21=Yang |first21=Andrew C. |last22=He |first22=Zihuai |last23=Greicius |first23=Michael D. |last24=Andreasson |first24=Katrin I. |last25=Sathyan |first25=Sanish |last26=Weiss |first26=Erica F. |last27=Milman |first27=Sofiya |last28=Barzilai |first28=Nir |last29=Cruchaga |first29=Carlos |last30=Wagner |first30=Anthony D. |last31=Mormino |first31=Elizabeth |last32=Lehallier |first32=Benoit |last33=Henderson |first33=Victor W. |last34=Longo |first34=Frank M. |last35=Montgomery |first35=Stephen B. |last36=Wyss-Coray |first36=Tony |title=Organ aging signatures in the plasma proteome track health and disease |journal=Nature |date=December 2023 |volume=624 |issue=7990 |pages=164–172 |doi=10.1038/s41586-023-06802-1 |language=en |issn=1476-4687|doi-access=free|pmid=38057571 |pmc=10700136 |bibcode=2023Natur.624..164O }}</ref> cumulative [[loneliness]] in mid-to-later life, a growing public health concern, is confirmed as potential substantial excess mortality risk factor with U.S. data (11 Dec),<!--https://www.toledoblade.com/a-e/culture/2024/01/15/um-research<ers-explore-cumulative-loneliness-human-mortality/stories/20240115001--><ref>{{#invoke:cite journal||last1=Yu |first1=Xuexin |last2=Cho |first2=Tsai-Chin |last3=Westrick |first3=Ashly C. |last4=Chen |first4=Chen |last5=Langa |first5=Kenneth M. |last6=Kobayashi |first6=Lindsay C. |title=Association of cumulative loneliness with all-cause mortality among middle-aged and older adults in the United States, 1996 to 2019 |journal=Proceedings of the National Academy of Sciences |date=19 December 2023 |volume=120 |issue=51 |pages=e2306819120 |doi=10.1073/pnas.2306819120 |pmid=38079549 |pmc=10743490 |bibcode=2023PNAS..12006819Y |language=en |issn=0027-8424}}</ref> news outlets report on a study (13 Oct) finding ~82% of fish samples from two [[Michigan]] watersheds exceed daily consumption limit for adults of total [[PFOS]] (12 Dec),<ref>{{#invoke:cite news||title=PFAS 'Forever Chemicals' Found in Freshwater Fish, Yet Most States Don't Warn Residents |url=https://www.scientificamerican.com/article/pfas-forever-chemicals-found-in-freshwater-fish-yet-most-states-dont-warn-residents/ |access-date=18 February 2024 |work=Scientific American |language=en}}</ref><ref>{{#invoke:cite journal||last1=Capozzi |first1=Staci L. |last2=Xia |first2=Chunjie |last3=Shuwal |first3=Matthew |last4=Zaharias Miller |first4=Gillian |last5=Gearhart |first5=Jeff |last6=Bloom |first6=Erica |last7=Gehrenkemper |first7=Lennart |last8=Venier |first8=Marta |title=From watersheds to dinner plates: Evaluating PFAS exposure through fish consumption in Southeast Michigan |journal=Chemosphere |date=1 December 2023 |volume=345 |page=140454 |doi=10.1016/j.chemosphere.2023.140454 |pmid=37839751 |bibcode=2023Chmsp.34540454C |s2cid=264118540 |url=https://www.sciencedirect.com/science/article/abs/pii/S0045653523027248 |issn=0045-6535|url-access=subscription}}</ref> a study robustifies the link between women's [[Maternal health#Prenatal health|preconception exposure]] to [[phthalates]] and lower [[fecundability]], changes in reproductive hormones, and increased inflammation using [[EAGeR trial]] data (13 Dec),<!--https://newatlas.com/health-wellbeing/phthalate-decreased-odds-pregnancy/--><ref>{{#invoke:cite journal||last1=Nobles |first1=Carrie J. |last2=Mendola |first2=Pauline |last3=Kim |first3=Keewan |last4=Pollack |first4=Anna Z. |last5=Mumford |first5=Sunni L. |last6=Perkins |first6=Neil J. |last7=Silver |first7=Robert M. |last8=Schisterman |first8=Enrique F. |title=Preconception Phthalate Exposure and Women's Reproductive Health: Pregnancy, Pregnancy Loss, and Underlying Mechanisms |journal=Environmental Health Perspectives |date=December 2023 |volume=131 |issue=12 |doi=10.1289/EHP12287 |language=en |issn=0091-6765|doi-access=free|pmid=38088888 |pmc=10718297 }}</ref> a study of meal timing using French [[NutriNet-Santé]] data indicates longer nighttime fasting periods may be superior to breakfast skipping in [[intermittent fasting]] (14 Dec),<!--https://newatlas.com/health-wellbeing/earlier-meals-lower-risk-cardiovascular-disease/--><ref>{{#invoke:cite journal||last1=Palomar-Cros |first1=Anna |last2=Andreeva |first2=Valentina A. |last3=Fezeu |first3=Léopold K. |last4=Julia |first4=Chantal |last5=Bellicha |first5=Alice |last6=Kesse-Guyot |first6=Emmanuelle |last7=Hercberg |first7=Serge |last8=Romaguera |first8=Dora |last9=Kogevinas |first9=Manolis |last10=Touvier |first10=Mathilde |last11=Srour |first11=Bernard |title=Dietary circadian rhythms and cardiovascular disease risk in the prospective NutriNet-Santé cohort |journal=Nature Communications |date=14 December 2023 |volume=14 |issue=1 |page=7899 |doi=10.1038/s41467-023-43444-3 |language=en |issn=2041-1723|doi-access=free|pmid=38097547 |pmc=10721609 |bibcode=2023NatCo..14.7899P }}</ref> one of the first [[horizon scan]] risk screening studies by region on [[invasive species]] threats identifies 40 high-risk potential invaders to [[Florida]] (14 Dec).<!--https://eu.usatoday.com/story/news/nation/2024/01/11/invasive-species-in-florida/72119813007/--><ref>{{#invoke:cite journal||last1=Lieurance |first1=Deah |last2=Canavan |first2=Susan |last3=Behringer |first3=Donald C. |last4=Kendig |first4=Amy E. |last5=Minteer |first5=Carey R. |last6=Reisinger |first6=Lindsey S. |last7=Romagosa |first7=Christina M. |last8=Flory |first8=S. Luke |last9=Lockwood |first9=Julie L. |last10=Anderson |first10=Patti J. |last11=Baker |first11=Shirley M. |last12=Bojko |first12=Jamie |last13=Bowers |first13=Kristen E. |last14=Canavan |first14=Kim |last15=Carruthers |first15=Kelly |last16=Daniel |first16=Wesley M. |last17=Gordon |first17=Doria R. |last18=Hill |first18=Jeffrey E. |last19=Howeth |first19=Jennifer G. |last20=Iannone |first20=Basil V. |last21=Jennings |first21=Lucas |last22=Gettys |first22=Lyn A. |last23=Kariuki |first23=Eutychus M. |last24=Kunzer |first24=John M. |last25=Laughinghouse |first25=H. Dail |last26=Mandrak |first26=Nicholas E. |last27=McCann |first27=Sara |last28=Morawo |first28=Tolulope |last29=Morningstar |first29=Cayla R. |last30=Neilson |first30=Matthew |last31=Petri |first31=Tabitha |last32=Pfingsten |first32=Ian A. |last33=Reed |first33=Robert N. |last34=Walters |first34=Linda J. |last35=Wanamaker |first35=Christian |title=Identifying invasive species threats, pathways, and impacts to improve biosecurity |journal=Ecosphere |date=December 2023 |volume=14 |issue=12 |doi=10.1002/ecs2.4711 |language=en |issn=2150-8925|doi-access=free|bibcode=2023Ecosp..14E4711L }}</ref>
* {{vanchor|Hazards_December|text=[[Hazard]] research is published}}: the annual [[Global Carbon Project|Global Carbon Budget]] study finds fossil {{CO2}} emissions are still rising when if they stayed the same, the 50% likelihood to limit global warming to 1.5 °C would be exceeded around 2031 (5 Dec),<!--https://cosmosmagazine.com/earth/climate/world-poised-to-hit-1-5-degrees-a-year-earlier-than-expected-projections/--><ref>{{#invoke:cite journal||last1=Friedlingstein |first1=Pierre |last2=O'Sullivan |first2=Michael |last3=Jones |first3=Matthew W. |last4=Andrew |first4=Robbie M. |last5=Bakker |first5=Dorothee C. E. |display-authors=et al. |title=Global Carbon Budget 2023 |journal=Earth System Science Data |date=5 December 2023 |volume=15 |issue=12 |pages=5301–5369 |doi=10.5194/essd-15-5301-2023 |language=English |issn=1866-3508|doi-access=free|hdl=10871/134742 |hdl-access=free }}</ref> the genetic testing company 23andMe confirms that the [[genetic privacy]] of around 7 million customers has been violated in the [[23andMe data leak]] (5 Dec),<ref>{{#invoke:cite news||last1=Lyngaas |first1=Sean |title=Hackers access profiles of nearly 7 million 23andMe customers |url=https://edition.cnn.com/2023/12/05/tech/hackers-access-7-million-23andme-profiles/index.html |access-date=18 February 2024 |work=CNN |date=5 December 2023 |language=en}}</ref> a study using plasma proteomics [[aging clock]]s suggests nearly 20% of the population may show strongly accelerated age in one of 11 major organs, which it links to higher mortality risk (6 Dec),<!--https://www.scientificamerican.com/article/your-organs-might-be-aging-at-different-rates/--><ref>{{#invoke:cite journal||last1=Oh |first1=Hamilton Se-Hwee |last2=Rutledge |first2=Jarod |last3=Nachun |first3=Daniel |last4=Pálovics |first4=Róbert |last5=Abiose |first5=Olamide |last6=Moran-Losada |first6=Patricia |last7=Channappa |first7=Divya |last8=Urey |first8=Deniz Yagmur |last9=Kim |first9=Kate |last10=Sung |first10=Yun Ju |last11=Wang |first11=Lihua |last12=Timsina |first12=Jigyasha |last13=Western |first13=Dan |last14=Liu |first14=Menghan |last15=Kohlfeld |first15=Pat |last16=Budde |first16=John |last17=Wilson |first17=Edward N. |last18=Guen |first18=Yann |last19=Maurer |first19=Taylor M. |last20=Haney |first20=Michael |last21=Yang |first21=Andrew C. |last22=He |first22=Zihuai |last23=Greicius |first23=Michael D. |last24=Andreasson |first24=Katrin I. |last25=Sathyan |first25=Sanish |last26=Weiss |first26=Erica F. |last27=Milman |first27=Sofiya |last28=Barzilai |first28=Nir |last29=Cruchaga |first29=Carlos |last30=Wagner |first30=Anthony D. |last31=Mormino |first31=Elizabeth |last32=Lehallier |first32=Benoit |last33=Henderson |first33=Victor W. |last34=Longo |first34=Frank M. |last35=Montgomery |first35=Stephen B. |last36=Wyss-Coray |first36=Tony |title=Organ aging signatures in the plasma proteome track health and disease |journal=Nature |date=December 2023 |volume=624 |issue=7990 |pages=164–172 |doi=10.1038/s41586-023-06802-1 |language=en |issn=1476-4687|doi-access=free|pmid=38057571 |pmc=10700136 |bibcode=2023Natur.624..164O }}</ref> cumulative [[loneliness]] in mid-to-later life, a growing public health concern, is confirmed as potential substantial excess mortality risk factor with U.S. data (11 Dec),<!--https://www.toledoblade.com/a-e/culture/2024/01/15/um-research<ers-explore-cumulative-loneliness-human-mortality/stories/20240115001--><ref>{{#invoke:cite journal||last1=Yu |first1=Xuexin |last2=Cho |first2=Tsai-Chin |last3=Westrick |first3=Ashly C. |last4=Chen |first4=Chen |last5=Langa |first5=Kenneth M. |last6=Kobayashi |first6=Lindsay C. |title=Association of cumulative loneliness with all-cause mortality among middle-aged and older adults in the United States, 1996 to 2019 |journal=Proceedings of the National Academy of Sciences |date=19 December 2023 |volume=120 |issue=51 |pages=e2306819120 |doi=10.1073/pnas.2306819120 |pmid=38079549 |pmc=10743490 |bibcode=2023PNAS..12006819Y |language=en |issn=0027-8424}}</ref> news outlets report on a study (13 Oct) finding ~82% of fish samples from two [[Michigan]] watersheds exceed daily consumption limit for adults of total [[PFOS]] (12 Dec),<ref>{{#invoke:cite news||title=PFAS 'Forever Chemicals' Found in Freshwater Fish, Yet Most States Don't Warn Residents |url=https://www.scientificamerican.com/article/pfas-forever-chemicals-found-in-freshwater-fish-yet-most-states-dont-warn-residents/ |access-date=18 February 2024 |work=Scientific American |language=en}}</ref><ref>{{#invoke:cite journal||last1=Capozzi |first1=Staci L. |last2=Xia |first2=Chunjie |last3=Shuwal |first3=Matthew |last4=Zaharias Miller |first4=Gillian |last5=Gearhart |first5=Jeff |last6=Bloom |first6=Erica |last7=Gehrenkemper |first7=Lennart |last8=Venier |first8=Marta |title=From watersheds to dinner plates: Evaluating PFAS exposure through fish consumption in Southeast Michigan |journal=Chemosphere |date=1 December 2023 |volume=345 |page=140454 |doi=10.1016/j.chemosphere.2023.140454 |pmid=37839751 |bibcode=2023Chmsp.34540454C |s2cid=264118540 |url=https://www.sciencedirect.com/science/article/abs/pii/S0045653523027248 |issn=0045-6535|url-access=subscription}}</ref> a study robustifies the link between women's [[Maternal health#Prenatal health|preconception exposure]] to [[phthalates]] and lower [[fecundability]], changes in reproductive hormones, and increased inflammation using [[EAGeR trial]] data (13 Dec),<!--https://newatlas.com/health-wellbeing/phthalate-decreased-odds-pregnancy/--><ref>{{#invoke:cite journal||last1=Nobles |first1=Carrie J. |last2=Mendola |first2=Pauline |last3=Kim |first3=Keewan |last4=Pollack |first4=Anna Z. |last5=Mumford |first5=Sunni L. |last6=Perkins |first6=Neil J. |last7=Silver |first7=Robert M. |last8=Schisterman |first8=Enrique F. |title=Preconception Phthalate Exposure and Women's Reproductive Health: Pregnancy, Pregnancy Loss, and Underlying Mechanisms |journal=Environmental Health Perspectives |date=December 2023 |volume=131 |issue=12 |doi=10.1289/EHP12287 |language=en |issn=0091-6765|doi-access=free|pmid=38088888 |pmc=10718297 }}</ref> a study of meal timing using French [[NutriNet-Santé]] data indicates longer nighttime fasting periods may be superior to breakfast skipping in [[intermittent fasting]] (14 Dec),<!--https://newatlas.com/health-wellbeing/earlier-meals-lower-risk-cardiovascular-disease/--><ref>{{#invoke:cite journal||last1=Palomar-Cros |first1=Anna |last2=Andreeva |first2=Valentina A. |last3=Fezeu |first3=Léopold K. |last4=Julia |first4=Chantal |last5=Bellicha |first5=Alice |last6=Kesse-Guyot |first6=Emmanuelle |last7=Hercberg |first7=Serge |last8=Romaguera |first8=Dora |last9=Kogevinas |first9=Manolis |last10=Touvier |first10=Mathilde |last11=Srour |first11=Bernard |title=Dietary circadian rhythms and cardiovascular disease risk in the prospective NutriNet-Santé cohort |journal=Nature Communications |date=14 December 2023 |volume=14 |issue=1 |page=7899 |doi=10.1038/s41467-023-43444-3 |language=en |issn=2041-1723|doi-access=free|pmid=38097547 |pmc=10721609 |bibcode=2023NatCo..14.7899P }}</ref> one of the first [[horizon scan]] risk screening studies by region on [[invasive species]] threats identifies 40 high-risk potential invaders to [[Florida]] (14 Dec).<!--https://eu.usatoday.com/story/news/nation/2024/01/11/invasive-species-in-florida/72119813007/--><ref>{{#invoke:cite journal||last1=Lieurance |first1=Deah |last2=Canavan |first2=Susan |last3=Behringer |first3=Donald C. |last4=Kendig |first4=Amy E. |last5=Minteer |first5=Carey R. |last6=Reisinger |first6=Lindsey S. |last7=Romagosa |first7=Christina M. |last8=Flory |first8=S. Luke |last9=Lockwood |first9=Julie L. |last10=Anderson |first10=Patti J. |last11=Baker |first11=Shirley M. |last12=Bojko |first12=Jamie |last13=Bowers |first13=Kristen E. |last14=Canavan |first14=Kim |last15=Carruthers |first15=Kelly |last16=Daniel |first16=Wesley M. |last17=Gordon |first17=Doria R. |last18=Hill |first18=Jeffrey E. |last19=Howeth |first19=Jennifer G. |last20=Iannone |first20=Basil V. |last21=Jennings |first21=Lucas |last22=Gettys |first22=Lyn A. |last23=Kariuki |first23=Eutychus M. |last24=Kunzer |first24=John M. |last25=Laughinghouse |first25=H. Dail |last26=Mandrak |first26=Nicholas E. |last27=McCann |first27=Sara |last28=Morawo |first28=Tolulope |last29=Morningstar |first29=Cayla R. |last30=Neilson |first30=Matthew |last31=Petri |first31=Tabitha |last32=Pfingsten |first32=Ian A. |last33=Reed |first33=Robert N. |last34=Walters |first34=Linda J. |last35=Wanamaker |first35=Christian |title=Identifying invasive species threats, pathways, and impacts to improve biosecurity |journal=Ecosphere |date=December 2023 |volume=14 |issue=12 |doi=10.1002/ecs2.4711 |language=en |issn=2150-8925|doi-access=free|bibcode=2023Ecosp..14E4711L }}</ref>


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==See also==
==See also==
{{2023 in space|state=collapsed}}
{{2023 in space|state=collapsed}}
{{Commons category|2023 in science}}
* [[:Category:Science events]]
* [[:Category:Science events]]
* [[:Category:Science timelines]]
* [[:Category:Science timelines]]
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<!--[[Category:2023-related timelines]]-->
<!--[[Category:2023-related timelines]]-->
[[Category:Science timelines by year]]
[[Category:Science timelines by year]]

[[de:2023 in der Wissenschaft und Technik]]

Latest revision as of 19:22, 20 October 2024

List of years in science (table)
+...

The following scientific events occurred in 2023.

Events

[edit]

January

[edit]

February

[edit]

March

[edit]

April

[edit]
12 April: Researchers demonstrate an 'AI scientist' that can rediscover physical laws from axioms and data.
14 April: Launch of the JUICE mission to Jupiter.
Image version of this section

May

[edit]
1 May: A new non-invasive brain-reading method for "semantic decoding" based on fMRI is demonstrated.
8 May: Infrared view of three asteroid belts around the star Fomalhaut.
17 May: A more complex model of human evolution.
22 May: 2.7 °C global warming could by 2100 leave every third outside the human climate niche (MAT ≥29 °C).
25 May: Artificial intelligence is reported to have designed a new antibiotic, effective against Acinetobacter baumannii (pictured).

June

[edit]
Reporting low Antarctic sea ice extent in mid 2023, researchers concluded that a "regime shift" may be taking place "in which previously important relationships no longer dominate sea ice variability".[200]

July

[edit]
5 July: A first evolution experiment of synthetic bacterial 'minimal cells' JCVI-syn3B shows "life finds a way".
18 July: Naturally occurring graphene is reported for the first time.
21 July: A first study investigates theories popularized in 2018 that involve jobs being viewed as objectively useless to society.
Hazard research: An analysis relating to the Rotterdam Convention shows illegal trade of highly hazardous chemicals continues.

August

[edit]
3 August: Dogxim, the first known foxdog hybrid is reported.
2023's June–July–August season was the warmest on record globally by a large margin, as El Niño conditions continued to develop.[395]

September

[edit]
11 September: NASA reports that the exoplanet K2-18b (artist's impression) may be covered in oceans of water.
September 2023 was the warmest September on record globally, with an average surface air temperature 0.5 °C above the temperature of the previous warmest September (2020).[426]
18 September: LCLS-II becomes the world's most powerful X-ray laser (illustration of an undulator, the core of a free-electron laser)
24 September: Samples from the hazardous asteroid Bennu are successfully returned to Earth.
  • 24 September – Scientists report the successful return of samples from NASA's OSIRIS-REx mission to the asteroid 101955 Bennu.[462] Shortly after the sample container was retrieved and transferred to an "airtight chamber at the Johnson Space Center in Houston, Texas", the lid on the container was opened. Scientists commented that they "found black dust and debris on the avionics deck of the OSIRIS-REx science canister" on the initial opening. Later study was planned. A news conference on the asteroid sample is scheduled for 11 October 2023.[463]
  • 25 September
    • A study on Pangaea Ultima finds that the hypothetical supercontinent will make Earth uninhabitable to most life forms in 250 million years, due to extreme temperatures and radiation.[464]
    • Biologists report the discovery of a ninth species of pangolin, a mammal which is covered with large, protective keratin scales.[465]
  • 26 September – Work begins on the seventh and final primary mirror of the Giant Magellan Telescope, which is expected to provide quadruple the image resolution of previous observatories when completed.[466]
Hazard research: the planetary boundaries framework assessment gets updated, showing a sixth limit to be transgressed.

October

[edit]
12 October: The most comprehensive cosmological simulations are reported with challenging results
13 October: Launch of NASA's Psyche mission.
31 October: The first discovery of a virus, phage MiniFlayer, that attaches to another helper virus is reported.
31 October: The coalition behind Plan S publishes a proposal to the scientific community for moving scholarly communication towards open science practices to address alleged issues in scholarly communication.

November

[edit]

December

[edit]
2023 saw the highest global average surface temperature in recorded history.[656]

Awards

[edit]

Deaths

[edit]

See also

[edit]

References

[edit]
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