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  3. Extreme Temperatures and Stroke Mortality: Evidence From a Multi-Country Analysis.
 

Extreme Temperatures and Stroke Mortality: Evidence From a Multi-Country Analysis.

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BORIS DOI
10.48350/197030
Publisher DOI
10.1161/STROKEAHA.123.045751
PubMed ID
38776169
Description
BACKGROUND

Extreme temperatures contribute significantly to global mortality. While previous studies on temperature and stroke-specific outcomes presented conflicting results, these studies were predominantly limited to single-city or single-country analyses. Their findings are difficult to synthesize due to variations in methodologies and exposure definitions.

METHODS

Within the Multi-Country Multi-City Network, we built a new mortality database for ischemic and hemorrhagic stroke. Applying a unified analysis protocol, we conducted a multinational case-crossover study on the relationship between extreme temperatures and stroke. In the first stage, we fitted a conditional quasi-Poisson regression for daily mortality counts with distributed lag nonlinear models for temperature exposure separately for each city. In the second stage, the cumulative risk from each city was pooled using mixed-effect meta-analyses, accounting for clustering of cities with similar features. We compared temperature-stroke associations across country-level gross domestic product per capita. We computed excess deaths in each city that are attributable to the 2.5% hottest and coldest of days based on each city's temperature distribution.

RESULTS

We collected data for a total of 3 443 969 ischemic strokes and 2 454 267 hemorrhagic stroke deaths from 522 cities in 25 countries. For every 1000 ischemic stroke deaths, we found that extreme cold and hot days contributed 9.1 (95% empirical CI, 8.6-9.4) and 2.2 (95% empirical CI, 1.9-2.4) excess deaths, respectively. For every 1000 hemorrhagic stroke deaths, extreme cold and hot days contributed 11.2 (95% empirical CI, 10.9-11.4) and 0.7 (95% empirical CI, 0.5-0.8) excess deaths, respectively. We found that countries with low gross domestic product per capita were at higher risk of heat-related hemorrhagic stroke mortality than countries with high gross domestic product per capita (P=0.02).

CONCLUSIONS

Both extreme cold and hot temperatures are associated with an increased risk of dying from ischemic and hemorrhagic strokes. As climate change continues to exacerbate these extreme temperatures, interventional strategies are needed to mitigate impacts on stroke mortality, particularly in low-income countries.
Date of Publication
2024-07
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
300 Social sciences, sociology & anthropology > 360 Social problems & social services
Keyword(s)
climate change extreme cold hemorrhagic stroke ischemic stroke temperature
Language(s)
en
Contributor(s)
Alahmad, Barrak
Khraishah, Haitham
Kamineni, Meghana
Royé, Dominic
Papatheodorou, Stefania I
Vicedo Cabrera, Ana Maria
Institut für Sozial- und Präventivmedizin (ISPM) - Climate Change & Health
Institut für Sozial- und Präventivmedizin (ISPM)
Guo, Yuming
Lavigne, Eric
Armstrong, Ben
Sera, Francesco
Bernstein, Aaron S
Zanobetti, Antonella
Garshick, Eric
Schwartz, Joel
Bell, Michelle L
Al-Mulla, Fahd
Koutrakis, Petros
Gasparrini, Antonio
Additional Credits
Institut für Sozial- und Präventivmedizin (ISPM) - Climate Change & Health
Series
Stroke
Publisher
Lippincott Williams & Wilkins
ISSN
0039-2499
Access(Rights)
restricted
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