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Non-linear link between temperature difference and COVID-19: Excluding the effect of population density.

Authors :
Ding Y
Gao L
Shao NY
Source :
Journal of infection in developing countries [J Infect Dev Ctries] 2021 Mar 07; Vol. 15 (2), pp. 230-236. Date of Electronic Publication: 2021 Mar 07.
Publication Year :
2021

Abstract

Introduction: The spatiotemporal patterns of Corona Virus Disease 2019 (COVID-19) is detected in the United States, which shows temperature difference (TD) with cumulative hysteresis effect significantly changes the daily new confirmed cases after eliminating the interference of population density.<br />Methodology: The nonlinear feature of updated cases is captured through Generalized Additive Mixed Model (GAMM) with threshold points; Exposure-response curve suggests that daily confirmed cases is changed at the different stages of TD according to the threshold points of piecewise function, which traces out the rule of updated cases under different meteorological condition.<br />Results: Our results show that the confirmed cases decreased by 0.390% (95% CI: -0.478 ~ -0.302) for increasing each one degree of TD if TD is less than 11.5°C; It will increase by 0.302% (95% CI: 0.215 ~ 0.388) for every 1°C increase in the TD (lag0-4) at the interval [11.5, 16]; Meanwhile the number of newly confirmed COVID-19 cases will increase by 0.321% (95% CI: 0.142 ~ 0.499) for every 1°C increase in the TD (lag0-4) when the TD (lag0-4) is over 16°C, and the most fluctuation occurred on Sunday. The results of the sensitivity analysis confirmed our model robust.<br />Conclusions: In US, this interval effect of TD reminds us that it is urgent to control the spread and infection of COVID-19 when TD becomes greater in autumn and the ongoing winter.<br />Competing Interests: No Conflict of Interest is declared<br /> (Copyright (c) 2021 Yongmei Ding, Liyuan Gao, Ning-Yi Shao.)

Details

Language :
English
ISSN :
1972-2680
Volume :
15
Issue :
2
Database :
MEDLINE
Journal :
Journal of infection in developing countries
Publication Type :
Academic Journal
Accession number :
33690205
Full Text :
https://doi.org/10.3855/jidc.13926