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Showing 1–14 of 14 results
Advanced filters: Author: Jerry Hastings Clear advanced filters
  • Sea levels during the last interglacial stage (about 125 kyr ago) are known to have been higher than today, and may serve as a partial analogue for anthropogenic warming scenarios. However, because local sea levels differ from global sea level, accurately reconstructing past global sea level requires an integrated analysis of globally distributed data sets. An extensive compilation of local sea level indicators and a statistical approach are now used to estimate global sea level during the last interglacial.

    • Robert E. Kopp
    • Frederik J. Simons
    • Michael Oppenheimer
    Research
    Nature
    Volume: 462, P: 863-867
  • An analysis of 24,202 critical cases of COVID-19 identifies potentially druggable targets in inflammatory signalling (JAK1), monocyte–macrophage activation and endothelial permeability (PDE4A), immunometabolism (SLC2A5 and AK5), and host factors required for viral entry and replication (TMPRSS2 and RAB2A).

    • Erola Pairo-Castineira
    • Konrad Rawlik
    • J. Kenneth Baillie
    ResearchOpen Access
    Nature
    Volume: 617, P: 764-768
  • Disentangling the various pathways by which climate change may drive community shifts in real-world ecosystems is challenging. Here the authors apply a trend attribution approach to a large dataset from the MASTIF database to assess the contribution of direct and indirect effects of climate on tree fecundity in North America, finding that the latter dominate trends by affecting tree growth and size and thereby fecundity.

    • James S. Clark
    • Robert Andrus
    • Roman Zlotin
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-11
  • Dimethyl fumarate (DMF) is an anti-inflammatory drug proposed as a treatment for COVID19. Here the results are reported from a randomised trial testing DMF treatment in 713 patients hospitalised with COVID-19. DMF was not associated with any improvement in day 5 outcomes.

    • Peter Sandercock
    • Janet Darbyshire
    • Martin J. Landray
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-13
  • Deep space exploration missions will require new technologies that can support astronaut health systems, as well as biological monitoring and research systems that can function independently from Earth-based mission control centres. A NASA workshop explored how artificial intelligence advances could help address these challenges and, in this second of two Review articles based on the findings from the workshop, the intersection between artificial intelligence and space biology is discussed.

    • Lauren M. Sanders
    • Ryan T. Scott
    • Sylvain V. Costes
    Reviews
    Nature Machine Intelligence
    Volume: 5, P: 208-219
  • Deep-space exploration missions require new technologies that can support astronaut health systems as well as biological monitoring and research systems that can function independently from Earth-based mission control centres. A NASA workshop explored how artificial intelligence advances could help address these challenges and, in this first of two Review articles based on the findings from the workshop, a vision for autonomous biomonitoring and precision space health is discussed.

    • Ryan T. Scott
    • Lauren M. Sanders
    • Sylvain V. Costes
    Reviews
    Nature Machine Intelligence
    Volume: 5, P: 196-207