Author:
Lin Shengnan,Rui Jia,Xie Fang,Zhan Meirong,Chen Qiuping,Zhao Bin,Zhu Yuanzhao,Li Zhuoyang,Deng Bin,Yu Shanshan,Li An,Ke Yanshu,Zeng Wenwen,Su Yanhua,Chiang Yi-Chen,Chen Tianmu
Abstract
BackgroundMeteorological factors have been proven to affect pathogens; both the transmission routes and other intermediate. Many studies have worked on assessing how those meteorological factors would influence the transmissibility of COVID-19. In this study, we used generalized estimating equations to evaluate the impact of meteorological factors on Coronavirus disease 2019 (COVID-19) by using three outcome variables, which are transmissibility, incidence rate, and the number of reported cases.MethodsIn this study, the data on the daily number of new cases and deaths of COVID-19 in 30 provinces and cities nationwide were obtained from the provincial and municipal health committees, while the data from 682 conventional weather stations in the selected provinces and cities were obtained from the website of the China Meteorological Administration. We built a Susceptible-Exposed-Symptomatic-Asymptomatic-Recovered/Removed (SEIAR) model to fit the data, then we calculated the transmissibility of COVID-19 using an indicator of the effective reproduction number (Reff). To quantify the different impacts of meteorological factors on several outcome variables including transmissibility, incidence rate, and the number of reported cases of COVID-19, we collected panel data and used generalized estimating equations. We also explored whether there is a lag effect and the different times of meteorological factors on the three outcome variables.ResultsPrecipitation and wind speed had a negative effect on transmissibility, incidence rate, and the number of reported cases, while humidity had a positive effect on them. The higher the temperature, the lower the transmissibility. The temperature had a lag effect on the incidence rate, while the remaining five meteorological factors had immediate and lag effects on the incidence rate and the number of reported cases.ConclusionMeteorological factors had similar effects on incidence rate and number of reported cases, but different effects on transmissibility. Temperature, relative humidity, precipitation, sunshine hours, and wind speed had immediate and lag effects on transmissibility, but with different lag times. An increase in temperature may first cause a decrease in virus transmissibility and then lead to a decrease in incidence rate. Also, the mechanism of the role of meteorological factors in the process of transmissibility to incidence rate needs to be further explored.
Funder
Bill and Melinda Gates Foundation
National Key Research and Development Program of China
Subject
Public Health, Environmental and Occupational Health
Reference55 articles.
1. Temperature significant change COVID-19 transmission in 429 cities;Wang;Sci Total Environ. [Preprint],2020
2. Containment measures limit environmental effects on COVID-19 early outbreak dynamics;Ficetola;Sci Total Environ.,2021
3. Transmissibility of COVID-19 in 11 major cities in China and its association with temperature and humidity in Beijing, Shanghai, Guangzhou, and Chengdu;Guo;Infect Dis Poverty.,2020
4. The effects of “fangcang, huoshenshan, and leishenshan” makeshift hospitals and temperature on the mortality of COVID-19;Cai;Journal Peer J,2020
5. Effects of temperature variation and humidity on the death of COVID-19 in Wuhan, China;Ma;Sci Total Environ.,2020
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