TY - JOUR
T1 - Stroke and climate change
T2 - A World Stroke Organization scientific statement
AU - Saad, Ali
AU - Khan, Maria
AU - Estol, Conrado
AU - Wasay, Mohammad
AU - Kameda, Tomoaki
AU - Ullberg, Teresa
AU - Béjot, Yannick
AU - Ozturk, Serefnur
AU - Collantes, Maria Epifania
AU - Zavaleta-Cortijo, Carol
AU - Kang, Janice
AU - Macmillan, Alexandra
AU - Kingston, Daniel G.
AU - Stephenson, Janet
AU - Reis, Jacques
AU - Ranta, Anna
N1 - Publisher Copyright:
© 2026 World Stroke Organization. This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page (https://us.sagepub.com/en-us/nam/open-access-at-sage).
PY - 2026/7
Y1 - 2026/7
N2 - Background: Climate change poses an escalating threat to global brain health and is increasingly linked to stroke incidence, outcomes, and inequities in prevention and treatment. This World Stroke Organization scientific statement summarizes current evidence on the associations between stroke and the environmental variables exacerbated by climate change, with a focus on risk and outcomes. Methods: We systematically identified and reviewed published studies assessing associations between stroke and environmental variables, including extreme temperatures, temperature variability, humidity, barometric pressure, wildfires, dust and sandstorms, and compound weather events. Air pollution, unrelated to wildfire exposure, was excluded, as a subsequent statement will focus on this. Paired reviewers screened titles and abstracts. Full texts were evaluated for study design, sample size, geographic context, and strength of evidence, with attention to impacts on vulnerable populations where data were available. Study type, exposure assignment, and strength of evidence were further confirmed by a team member with Master’s level qualification in epidemiology. Results: Most of the included studies were based on ecological designs. Cold exposure, temperature variability, and extreme thermal events were most consistently associated with increased stroke risk. Although cold effects were generally stronger than heat effects, heat effects have been increasing over time. Increased stroke incidence was also associated with low or varying barometric pressure, rapid humidity shifts, and exposure to wildfire smoke, dust, and sandstorms, particularly among older adults and those in low- and middle-income countries. Compound weather events, such as concurrent heat and humidity extremes, showed additive or synergistic effects on stroke incidence and mortality. Despite heterogeneity in definitions and methods and most evidence supporting associations rather than proving causation, the overall direction of evidence across exposures was positive, coherent, and biologically plausible. Recommendations: Advancing mitigation efforts that reduce greenhouse gas emissions is essential, since limiting further climate change directly decreases the environmental drivers of stroke risk and protects long-term population brain health, along with broader climate-related health risks. Stroke professionals and organizations can meaningfully contribute through local, regional, and global advocacy. Climate-related environmental variables already meaningfully increase stroke risk and exacerbate existing health inequities. To further counter these trends, stroke prevention and care systems should integrate climate risk awareness, patient education, and early-warning mechanisms into clinical practice and health system planning. Priority areas include targeted protection for vulnerable groups, standardized exposure metrics, longitudinal surveillance, systematized education on climate change’s impact on brain health, and expansion of research in underrepresented regions. Strengthening global collaboration and embedding climate resilience into stroke systems of care are critical for reducing both stroke-related morbidity and the wider health impacts of a climate-impacted world. This scientific statement has been reviewed and approved by the WSO Executive.
AB - Background: Climate change poses an escalating threat to global brain health and is increasingly linked to stroke incidence, outcomes, and inequities in prevention and treatment. This World Stroke Organization scientific statement summarizes current evidence on the associations between stroke and the environmental variables exacerbated by climate change, with a focus on risk and outcomes. Methods: We systematically identified and reviewed published studies assessing associations between stroke and environmental variables, including extreme temperatures, temperature variability, humidity, barometric pressure, wildfires, dust and sandstorms, and compound weather events. Air pollution, unrelated to wildfire exposure, was excluded, as a subsequent statement will focus on this. Paired reviewers screened titles and abstracts. Full texts were evaluated for study design, sample size, geographic context, and strength of evidence, with attention to impacts on vulnerable populations where data were available. Study type, exposure assignment, and strength of evidence were further confirmed by a team member with Master’s level qualification in epidemiology. Results: Most of the included studies were based on ecological designs. Cold exposure, temperature variability, and extreme thermal events were most consistently associated with increased stroke risk. Although cold effects were generally stronger than heat effects, heat effects have been increasing over time. Increased stroke incidence was also associated with low or varying barometric pressure, rapid humidity shifts, and exposure to wildfire smoke, dust, and sandstorms, particularly among older adults and those in low- and middle-income countries. Compound weather events, such as concurrent heat and humidity extremes, showed additive or synergistic effects on stroke incidence and mortality. Despite heterogeneity in definitions and methods and most evidence supporting associations rather than proving causation, the overall direction of evidence across exposures was positive, coherent, and biologically plausible. Recommendations: Advancing mitigation efforts that reduce greenhouse gas emissions is essential, since limiting further climate change directly decreases the environmental drivers of stroke risk and protects long-term population brain health, along with broader climate-related health risks. Stroke professionals and organizations can meaningfully contribute through local, regional, and global advocacy. Climate-related environmental variables already meaningfully increase stroke risk and exacerbate existing health inequities. To further counter these trends, stroke prevention and care systems should integrate climate risk awareness, patient education, and early-warning mechanisms into clinical practice and health system planning. Priority areas include targeted protection for vulnerable groups, standardized exposure metrics, longitudinal surveillance, systematized education on climate change’s impact on brain health, and expansion of research in underrepresented regions. Strengthening global collaboration and embedding climate resilience into stroke systems of care are critical for reducing both stroke-related morbidity and the wider health impacts of a climate-impacted world. This scientific statement has been reviewed and approved by the WSO Executive.
KW - Stroke
KW - atmospheric pressure
KW - barometric pressure
KW - climate change
KW - cold spell
KW - compound weather events
KW - dust storms
KW - extreme cold
KW - extreme heat
KW - extreme temperatures
KW - health equity
KW - heat wave
KW - humidity
KW - migration
KW - sandstorms
KW - social determinants of health
UR - https://www.scopus.com/pages/publications/105035649610
U2 - 10.1177/17474930261436535
DO - 10.1177/17474930261436535
M3 - Artículo de revisión
C2 - 41833557
AN - SCOPUS:105035649610
SN - 1747-4930
VL - 21
SP - 742
EP - 758
JO - International Journal of Stroke
JF - International Journal of Stroke
IS - 6
ER -