Compound Mortality Impacts from Extreme Temperatures and the COVID-19 Pandemic
Overview
Affiliations
Extreme weather and coronavirus-type pandemics are both leading global health concerns. Until now, no study has quantified the compound health consequences of the co-occurrence of them. We estimate the mortality attributable to extreme heat and cold events, which dominate the UK health burden from weather hazards, in England and Wales in the period 2020-2022, during which the COVID-19 pandemic peaked in terms of mortality. We show that temperature-related mortality exceeded COVID-19 mortality by 8% in South West England. Combined, extreme temperatures and COVID-19 led to 19 (95% confidence interval: 16-22 in North West England) to 24 (95% confidence interval: 20-29 in Wales) excess deaths per 100,000 population during heatwaves, and 80 (95% confidence interval: 75-86 in Yorkshire and the Humber) to 127 (95% confidence interval: 123-132 in East of England) excess deaths per 100,000 population during cold snaps. These numbers are at least ~2 times higher than the previous decade. Society must increase preparedness for compound health crises such as extreme weather coinciding with pandemics.
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Batibeniz F, Seneviratne S, Jha S, Ribeiro A, Suarez Gutierrez L, Raible C Sci Rep. 2025; 15(1):1002.
PMID: 39762298 PMC: 11704295. DOI: 10.1038/s41598-024-82788-8.
He Q, Lang X, Shen H, Liu J, Zhou S, Wei J Lancet Reg Health West Pac. 2024; 53:101244.
PMID: 39686983 PMC: 11646786. DOI: 10.1016/j.lanwpc.2024.101244.
Disruption of outdoor activities caused by wildfires increases disease circulation.
Arregui-Garcia B, Ascione C, Pera A, Wang B, Stocco D, Carlson C medRxiv. 2024; .
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