TY - JOUR
T1 - Association between precipitation and mortality due to diarrheal diseases by climate zone
T2 - A multi-country modeling study
AU - Chua, Paul L.C.
AU - Tobias, Aurelio
AU - Madaniyazi, Lina
AU - Ng, Chris Fook Sheng
AU - Phung, Vera Ling Hui
AU - Fu, Sze Hang
AU - Rodriguez, Peter S.
AU - Brown, Patrick
AU - Coelho, Micheline De Sousa Zanotti Stagliorio
AU - Saldiva, Paulo Hilario Nascimento
AU - Scovronick, Noah
AU - Deshpande, Aniruddha
AU - Salazar, Miguel Antonio S.
AU - Dorotan, Miguel Manuel C.
AU - Tantrakarnapa, Kraichat
AU - Kliengchuay, Wissanupong
AU - Abrutzky, Rosana
AU - Carrasco-Escobar, Gabriel
AU - Roye, Dominic
AU - Hales, Simon
AU - Hashizume, Masahiro
N1 - Publisher Copyright:
© 2024 Wolters Kluwer Health. All rights reserved.
PY - 2024/7/17
Y1 - 2024/7/17
N2 - Background: Precipitation could affect the transmission of diarrheal diseases. The diverse precipitation patterns across different climates might influence the degree of diarrheal risk from precipitation. This study determined the associations between precipitation and diarrheal mortality in tropical, temperate, and arid climate regions. Methods: Daily counts of diarrheal mortality and 28-day cumulative precipitation from 1997 to 2019 were analyzed across 29 locations in eight middle-income countries (Argentina, Brazil, Costa Rica, India, Peru, the Philippines, South Africa, and Thailand). A two-stage approach was employed: the first stage is conditional Poisson regression models for each location, and the second stage is meta-analysis for pooling location-specific coefficients by climate zone. Results: In tropical climates, higher precipitation increases the risk of diarrheal mortality. Under extremely wet conditions (95th percentile of 28-day cumulative precipitation), diarrheal mortality increased by 17.8% (95% confidence interval [CI] = 10.4%, 25.7%) compared with minimum-risk precipitation. For temperate and arid climates, diarrheal mortality increases in both dry and wet conditions. In extremely dry conditions (fifth percentile of 28-day cumulative precipitation), diarrheal mortality risk increases by 3.8% (95% CI = 1.2%, 6.5%) for temperate and 5.5% (95% CI = 1.0%, 10.2%) for arid climates. Similarly, under extremely wet conditions, diarrheal mortality risk increases by 2.5% (95% CI = -0.1%, 5.1%) for temperate and 4.1% (95% CI = 1.1%, 7.3%) for arid climates. Conclusions: Associations between precipitation and diarrheal mortality exhibit variations across different climate zones. It is crucial to consider climate-specific variations when generating global projections of future precipitation-related diarrheal mortality.
AB - Background: Precipitation could affect the transmission of diarrheal diseases. The diverse precipitation patterns across different climates might influence the degree of diarrheal risk from precipitation. This study determined the associations between precipitation and diarrheal mortality in tropical, temperate, and arid climate regions. Methods: Daily counts of diarrheal mortality and 28-day cumulative precipitation from 1997 to 2019 were analyzed across 29 locations in eight middle-income countries (Argentina, Brazil, Costa Rica, India, Peru, the Philippines, South Africa, and Thailand). A two-stage approach was employed: the first stage is conditional Poisson regression models for each location, and the second stage is meta-analysis for pooling location-specific coefficients by climate zone. Results: In tropical climates, higher precipitation increases the risk of diarrheal mortality. Under extremely wet conditions (95th percentile of 28-day cumulative precipitation), diarrheal mortality increased by 17.8% (95% confidence interval [CI] = 10.4%, 25.7%) compared with minimum-risk precipitation. For temperate and arid climates, diarrheal mortality increases in both dry and wet conditions. In extremely dry conditions (fifth percentile of 28-day cumulative precipitation), diarrheal mortality risk increases by 3.8% (95% CI = 1.2%, 6.5%) for temperate and 5.5% (95% CI = 1.0%, 10.2%) for arid climates. Similarly, under extremely wet conditions, diarrheal mortality risk increases by 2.5% (95% CI = -0.1%, 5.1%) for temperate and 4.1% (95% CI = 1.1%, 7.3%) for arid climates. Conclusions: Associations between precipitation and diarrheal mortality exhibit variations across different climate zones. It is crucial to consider climate-specific variations when generating global projections of future precipitation-related diarrheal mortality.
KW - Diarrheal mortality
KW - Meta-analysis
KW - Poisson regression models
KW - Precipitation
UR - https://www.scopus.com/pages/publications/85199156656
U2 - 10.1097/EE9.0000000000000320
DO - 10.1097/EE9.0000000000000320
M3 - Artículo
AN - SCOPUS:85199156656
SN - 2474-7882
VL - 8
SP - e320
JO - Environmental Epidemiology
JF - Environmental Epidemiology
IS - 4
ER -