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Mortality risk attributable to wildfire-related PM2·5 pollution: a global time series study in 749 locations

363Citations signalées — pas une note de qualité
71Institutions déclarées
32Pays d’affiliation déclarés

Résumé fourni par la source

Background Many regions of the world are now facing more frequent and unprecedentedly large wildfires. However, the association between wildfire-related PM 2·5 and mortality has not been well characterised. We aimed to comprehensively assess the association between short-term exposure to wildfire-related PM 2·5 and mortality across various regions of the world. Methods For this time series study, data on daily counts of deaths for all causes, cardiovascular causes, and respiratory causes were collected from 749 cities in 43 countries and regions during 2000–16. Daily concentrations of wildfire-related PM 2·5 were estimated using the three-dimensional chemical transport model GEOS-Chem at a 0·25° × 0·25° resolution. The association between wildfire-related PM 2·5 exposure and mortality was examined using a quasi-Poisson time series model in each city considering both the current-day and lag effects, and the effect estimates were then pooled using a random-effects meta-analysis. Based on these pooled effect estimates, the population attributable fraction and relative risk (RR) of annual mortality due to acute wildfire-related PM 2·5 exposure was calculated. Findings 65·6 million all-cause deaths, 15·1 million cardiovascular deaths, and 6·8 million respiratory deaths were included in our analyses. The pooled RRs of mortality associated with each 10 μg/m 3 increase in the 3-day moving average (lag 0–2 days) of wildfire-related PM 2·5 exposure were 1·019 (95% CI 1·016–1·022) for all-cause mortality, 1·017 (1·012–1·021) for cardiovascular mortality, and 1·019 (1·013–1·025) for respiratory mortality. Overall, 0·62% (95% CI 0·48–0·75) of all-cause deaths, 0·55% (0·43–0·67) of cardiovascular deaths, and 0·64% (0·50–0·78) of respiratory deaths were annually attributable to the acute impacts of wildfire-related PM 2·5 exposure during the study period. Interpretation Short-term exposure to wildfire-related PM 2·5 was associated with increased risk of mortality. Urgent action is needed to reduce health risks from the increasing wildfires. Funding Australian Research Council, Australian National Health & Medical Research Council.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Mortality risk attributable to wildfire-related PM2·5 pollution: a global time series study in 749 locations
Date Crossref
01/09/2021
Éditeur
Elsevier BV
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.

Institutions déclarées

Sun Yat-sen UniversityNational Health Research InstitutesMonash HealthNational Taiwan University HospitalMonash UniversityNanjing University of Information Science and TechnologyQueensland University of TechnologyShanghai Jiao Tong UniversityAnhui Medical UniversityShanghai Children's Medical CenterNanjing Medical UniversityLondon School of Hygiene & Tropical MedicineYale UniversityHarvard UniversityUniversity of OuluHealth CanadaUniversity of OttawaUniversidade de São PauloOttawa Public HealthFudan UniversityUniversidade de Santiago de CompostelaCentro de Investigación Biomédica en Red de Epidemiología y Salud PúblicaCzech University of Life Sciences PragueCzech Academy of Sciences, Institute of Atmospheric PhysicsCzech Academy of SciencesHelmholtz MunichHakim Sabzevari UniversityUniversity of BernOeschger Centre for Climate Change ResearchInstitute of Social and Preventive MedicineBrunel University of LondonInstitute of Environmental Assessment and Water ResearchNagasaki UniversityNational Institute of Health Dr. Ricardo JorgeUmeå UniversityUniversitat de ValènciaNational Institute for Public Health and the EnvironmentInstituto Nacional de Salud PúblicaUniversity of Medicine and Pharmacy at Ho Chi Minh CityNational and Kapodistrian University of AthensUniversity of FlorenceUniversity of LondonUniversidad Peruana Cayetano HerediaChinese Academy of SciencesInstitute of Atmospheric PhysicsUniversity of TartuSeoul National UniversityBabeș-Bolyai Universityi3S - Instituto de Investigação e Inovação em Saúde, Universidade do PortoInstituto de SaúdeEstonian Environmental Research Center (Estonia)Swiss Tropical and Public Health InstituteUniversity of BaselThe University of TokyoSanté Publique FranceUniversidad de Los Andes, ChileEmory UniversityTechnological University DublinCouncil for Scientific and Industrial ResearchNorth-West UniversityUniversity of PretoriaUniversidad de Buenos AiresNorwegian Institute of Public HealthUniversity of TurinUniversidad de la República de UruguayUniversidad de MontevideoPotsdam Institute for Climate Impact ResearchUniversidad Pablo de OlavideUniversity of TsukubaColorado School of Public HealthUniversity of Colorado Anschutz

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Sujets associés

Air Quality and Health ImpactsClimate Change and Health ImpactsAtmospheric chemistry and aerosols

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