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Campo DCValorIdioma
dc.creatorAlahmad, B-
dc.creatorKhraishah, H-
dc.creatorRoyé, D-
dc.creatorVicedo-Cabrera, AM-
dc.creatorGuo, Y-
dc.creatorPapatheodorou, SI-
dc.creatorAchilleos, S-
dc.creatorAcquaotta, F-
dc.creatorArmstrong, B-
dc.creatorBell, ML-
dc.creatorPan, SC-
dc.creatorde Sousa Zanotti Stagliorio Coelho, M-
dc.creatorColistro, V-
dc.creatorDang, TN-
dc.creatorVan Dung, D-
dc.creatorDe' Donato, FK-
dc.creatorEntezari, A-
dc.creatorGuo, YL-
dc.creatorHashizume, M-
dc.creatorHonda, Y-
dc.creatorIndermitte, E-
dc.creatorÍñiguez, C-
dc.creatorJaakkola, JJK-
dc.creatorKim, H-
dc.creatorLavigne, E-
dc.creatorLee, W-
dc.creatorLi, S-
dc.creatorMadureira, J-
dc.creatorMayvaneh, F-
dc.creatorOrru, H-
dc.creatorOvercenco, A-
dc.creatorRagettli, MS-
dc.creatorRyti, NRI-
dc.creatorSaldiva, PHN-
dc.creatorScovronick, N-
dc.creatorSeposo, X-
dc.creatorSera, F-
dc.creatorSilva, SP-
dc.creatorStafoggia, M-
dc.creatorTobias, A-
dc.creatorGarshick, E-
dc.creatorBernstein, AS-
dc.creatorZanobetti, A-
dc.creatorSchwartz, J-
dc.creatorGasparrini, A-
dc.creatorKoutrakis, P-
dc.date.accessioned2023-08-02T09:07:17Z-
dc.date.available2023-08-02T09:07:17Z-
dc.date.issued2022-
dc.identifier.issn0009-7322-
dc.identifier.issn1524-4539-
dc.identifier.urihttps://hdl.handle.net/10216/151552-
dc.description.abstractBackground: Cardiovascular disease is the leading cause of death worldwide. Existing studies on the association between temperatures and cardiovascular deaths have been limited in geographic zones and have generally considered associations with total cardiovascular deaths rather than cause-specific cardiovascular deaths. Methods: We used unified data collection protocols within the Multi-Country Multi-City Collaborative Network to assemble a database of daily counts of specific cardiovascular causes of death from 567 cities in 27 countries across 5 continents in overlapping periods ranging from 1979 to 2019. City-specific daily ambient temperatures were obtained from weather stations and climate reanalysis models. To investigate cardiovascular mortality associations with extreme hot and cold temperatures, we fit case-crossover models in each city and then used a mixed-effects meta-analytic framework to pool individual city estimates. Extreme temperature percentiles were compared with the minimum mortality temperature in each location. Excess deaths were calculated for a range of extreme temperature days. Results: The analyses included deaths from any cardiovascular cause (32 154  935), ischemic heart disease (11 745 880), stroke (9 351 312), heart failure (3 673 723), and arrhythmia (670 859). At extreme temperature percentiles, heat (99th percentile) and cold (1st percentile) were associated with higher risk of dying from any cardiovascular cause, ischemic heart disease, stroke, and heart failure as compared to the minimum mortality temperature, which is the temperature associated with least mortality. Across a range of extreme temperatures, hot days (above 97.5th percentile) and cold days (below 2.5th percentile) accounted for 2.2 (95% empirical CI [eCI], 2.1–2.3) and 9.1 (95% eCI, 8.9–9.2) excess deaths for every 1000 cardiovascular deaths, respectively. Heart failure was associated with the highest excess deaths proportion from extreme hot and cold days with 2.6 (95% eCI, 2.4–2.8) and 12.8 (95% eCI, 12.2–13.1) for every 1000 heart failure deaths, respectively. Conclusions: Across a large, multinational sample, exposure to extreme hot and cold temperatures was associated with a greater risk of mortality from multiple common cardiovascular conditions. The intersections between extreme temperatures and cardiovascular health need to be thoroughly characterized in the present day—and especially under a changing climate.-
dc.description.sponsorshipThis study was supported by the Kuwait Foundation for the Advancement of Science (CB21-63BO-01); the US Environmental Protection Agency (RD-835872); Harvard Chan National Institute of Environmental Health Sciences Center for Environmental Health (P01ES009825); the UK Medical Research Council (MR/R013349/1); the UK Natural Environment Research Council (NE/R009384/1); the European Union’s Horizon 2020 Project Exhaustion (820655); the Australian National Health and Medical Research Council (APP 2000581, APP 1109193, APP 1163693); the National Institute of Environmental Health Sciences–funded HERCULES Center (P30ES019776); the MCIN/AEI/10.13039/501100011033 (grant CEX2018-000794-S); the Taiwanese Ministry of Science and Technology (MOST 109–2621-M-002–021); the Environmental Restoration and Conservation Agency, Environment Research and Technology Development Fund (JPMEERF15S11412); the São Paulo Research Foundation; and Fundação para a Ciência e a Tecnlogia (SFRH/BPD/115112/2016). The funders had no role in the design and conduct of the study; collection, management, analysis, and interpretation of the data; preparation, review, or approval of the manuscript; and decision to submit the manuscript for publication. The contents are solely the responsibility of the grantees and do not necessarily represent the official views of the funding agencies. Furthermore, the funding agencies do not endorse the purchase of any commercial products or services related to this publication.-
dc.language.isoeng-
dc.publisherLippincott, Williams & Wilkins-
dc.relationinfo:eu-repo/grantAgreement/FCT/POR_NORTE/SFRH/BPD/115112/2016/PT-
dc.relation.ispartofCirculation. 2023 Jan 3;147(1):35-46. doi: 10.1161/CIRCULATIONAHA.122.061832. Epub 2022 Dec 12.-
dc.rightsopenAccess-
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/-
dc.titleAssociations Between Extreme Temperatures and Cardiovascular Cause-Specific Mortality: Results From 27 Countries-
dc.typeArtigo em Revista Científica Internacional-
dc.contributor.uportoInstituto de Saúde Pública da Universidade do Porto-
dc.identifier.doi10.1161/CIRCULATIONAHA.122.061832-
dc.relation.publisherversionhttps://www.ahajournals.org/doi/10.1161/CIRCULATIONAHA.122.061832-
Aparece nas coleções:ISPUP - Artigo em Revista Científica Internacional

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