Please use this identifier to cite or link to this item: https://hdl.handle.net/10216/162456
Author(s): Yang, D
Hashizume, M
Tobías, A
Honda, Y
Roye, D
Oh, J
Dang, TN
Kim, Y
Abrutzky, R
Guo, Y
Tong, S
Coelho, MDSZS
Saldiva, PHN
Lavigne, E
Correa, PM
Ortega, NV
Osorio, S
Kyselý, J
Urban, A
Orru, H
Indermitte, E
Jaakkola, J
Ryti, N
Pascal, M
Huber, V
Schneider, A
Katsouyanni, K
Analitis, A
Entezari, A
Mayvaneh, F
Goodman, P
Zeka, A
Michelozzi, P
de’Donato, F
Alahmad, B
Diaz, MH
Valencia, CDLC
Overcenco, A
Houthuijs, D
Ameling, C
Rao, S
Nunes, B
Madureira, J
Holo-Bâc, IH
Scovronick, N
Acquaotta, F
Kim, H
Lee, W
Íñiguez, C
Forsberg, B
Vicedo-Cabrera, AM
Ragettli, MS
Guo, Y-LL
Pan, SC
Li, S
Sera, F
Zanobetti, A
Schwartz, J
Armstrong, B
Gasparrini, A
Chung, Y
Title: Temporal change in minimum mortality temperature under changing climate A multicountry multicommunity observational study spanning 1986–2015
Publisher: Lippincott, Williams & Wilkins
Issue Date: 2024
Abstract: Background: The minimum mortality temperature (MMT) or MMT percentile (MMTP) is an indicator of population susceptibility to nonoptimum temperatures. MMT and MMTP change over time; however, the changing directions show region-wide heterogeneity. We examined the heterogeneity of temporal changes in MMT and MMTP across multiple communities and in multiple countries. Methods: Daily time-series data for mortality and ambient mean temperature for 699 communities in 34 countries spanning 1986–2015 were analyzed using a two-stage meta-analysis. First, a quasi-Poisson regression was employed to estimate MMT and MMTP for each community during the designated subperiods. Second, we pooled the community-specific temporally varying estimates using mixed-effects meta-regressions to examine temporal changes in MMT and MMTP in the entire study population, as well as by climate zone, geographical region, and country. Results: Temporal increases in MMT and MMTP from 19.5 °C (17.9, 21.1) to 20.3 °C (18.5, 22.0) and from the 74.5 (68.3, 80.6) to 75.0 (71.0, 78.9) percentiles in the entire population were found, respectively. Temporal change was significantly heterogeneous across geographical regions (P < 0.001). Temporal increases in MMT were observed in East Asia (linear slope [LS] = 0.91, P = 0.02) and South-East Asia (LS = 0.62, P = 0.05), whereas a temporal decrease in MMT was observed in South Europe (LS = −0.46, P = 0.05). MMTP decreased temporally in North Europe (LS = −3.45, P = 0.02) and South Europe (LS = −2.86, P = 0.05). Conclusions: The temporal change in MMT or MMTP was largely heterogeneous. Population susceptibility in terms of optimum temperature may have changed under a warming climate, albeit with large region-dependent variations. Copyright © 2024 The Authors. Published by Wolters Kluwer Health, Inc.
DOI: 10.1097/EE9.0000000000000334
URI: https://hdl.handle.net/10216/162456
Source: Environmental Epidemiology 8(5):p e334, October 2024. | DOI: 10.1097/EE9.0000000000000334
Document Type: Artigo em Revista Científica Internacional
Rights: openAccess
License: https://creativecommons.org/licenses/by/4.0/
Appears in Collections:ISPUP - Artigo em Revista Científica Internacional

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