A Systematic Review and Meta-Analysis on the Relationships between Extreme Ambient Temperature and All-Cause Mortality Risk: A Time Series Approach
Nwondah Chigozie, Okokon Oku Enembe, Ogaji Daprim Samuel, Essi Isaac
International Journal of Environment and Climate Change · pp. 3479–3493 · Published 1 Nov 2022
10.9734/ijecc/2022/v12i111397Abstract
Background: Exposure to extreme low or high ambient temperatures is associated with cardiovascular, respiratory and endocrine diseases and other complications, thereby causing death. This article is a synthesis of the relationships between ambient temperature and mortality from time series studies. Methods: This systematic review and meta-analysis used the PICO search strategy and Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. On 14th February to 21st of May 2020, PubMed, Springer and Science direct databases were systematically searched to obtain original studies published during the period of (2010 to 2019). The systematic review incorporated 23 studies, with sixteen (16) of these articles used for the meta-analysis and the remaining seven (7) articles were included in the narrative synthesis. Twelve of 16 studies used for meta-analysis were conducted in countries in Asia particularly in China, while three (3) of the remaining in Europe (Sweden, Spain and Portugal) and only one (1) study in Africa (South Africa). The meta-analysis was sub-grouped into (cold and warm) temperatures. Results: The result of the meta-analysis indicated a pooled relative risk (RR) for cold temperature of 1.632, while pooled RR for the warm temperature of 1.287 and the RR for the whole data (cold and warm) temperature of 1.430. The Meta-analysis indicated a statistical significance (p < 0.01) of the pooled estimate which signified that exposure to cold or extreme low temperature 1.632 (95% CI 1.262–2.110) have greater mortality risk than exposure to extreme high temperature 1.287 (95% CI 1.030–1.606). Conclusion: The RRs for extreme low and high temperatures associated with temperature attributable deaths differs in populations and locality. Government, Decision Makers, Social Actors and Health Administrators should make adequate planning and set up public health interventions to prevent and control the health impact of exposure to extreme ambient temperatures in vulnerable subpopulation particularly Africa.
Cited by 3
John E. Hay · Consequences of Weather, Climate and Ocean Extremes · 2026
Katerina Pantavou, Daniele Piovani, Stefanos Bonovas · Euro-Mediterranean Journal for Environmental Integration · 2023
Katerina Pantavou, Adrien Fillon, Lunzheng Li · International Journal of Biometeorology · 2025
Related research
- COVID-19-Related Mortality across the Gulf Cooperation Council Countries: Based on Countries’ Available Data Up to November, 2020 — shares topic coverage
- Lung Cancer: A Chronic Disease Epidemiology; Prevalence Study — shares topic coverage
- Indoor Air Quality in Benghazi’s Hospitals and Its Impact among Patients — shares topic coverage
- Isolation and Identification of Microbial Deteriogens of Fresh Tomatoes Stored at Ambient Temperature — shares topic coverage
- Microbiological Quality and Antibiotic Susceptibility Profile of Microorganisms Associated with Stored Vegetables in Port Harcourt — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
3
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.