Cargando…

Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries

PURPOSE: To examine the association between meteorological factors (temperature, relative humidity, wind speed, and UV radiation) and transmission capacity of COVID-19. METHODS: We collected daily numbers of COVID-19 cases in 202 locations in 8 countries. We matched meteorological data from the NOAA...

Descripción completa

Detalles Bibliográficos
Autores principales: Pan, Jinhua, Yao, Ye, Liu, Zhixi, Meng, Xia, Ji, John S., Qiu, Yang, Wang, Weidong, Zhang, Lina, Wang, Weibing, Kan, Haidong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7480263/
https://www.ncbi.nlm.nih.gov/pubmed/33207446
http://dx.doi.org/10.1016/j.scitotenv.2020.142272
_version_ 1783580391092781056
author Pan, Jinhua
Yao, Ye
Liu, Zhixi
Meng, Xia
Ji, John S.
Qiu, Yang
Wang, Weidong
Zhang, Lina
Wang, Weibing
Kan, Haidong
author_facet Pan, Jinhua
Yao, Ye
Liu, Zhixi
Meng, Xia
Ji, John S.
Qiu, Yang
Wang, Weidong
Zhang, Lina
Wang, Weibing
Kan, Haidong
author_sort Pan, Jinhua
collection PubMed
description PURPOSE: To examine the association between meteorological factors (temperature, relative humidity, wind speed, and UV radiation) and transmission capacity of COVID-19. METHODS: We collected daily numbers of COVID-19 cases in 202 locations in 8 countries. We matched meteorological data from the NOAA National Centers for Environmental Information. We used a time-frequency approach to examine the possible association between meteorological conditions and basic reproductive number (R(0)) of COVID-19. We determined the correlations between meteorological factors and R(0) of COVID-19 using multiple linear regression models and meta-analysis. We further validated our results using a susceptible-exposed-infectious-recovered (SEIR) metapopulation model to simulate the changes of daily cases of COVID-19 in China under different temperatures and relative humidity conditions. PRINCIPAL RESULTS: Temperature did not exhibit significant association with R(0) of COVID-19 (meta p = 0.446). Also, relative humidity (meta p = 0.215), wind speed (meta p = 0.986), and ultraviolet (UV) radiation (meta p = 0.491) were not significantly associated with R(0) either. The SEIR model in China showed that with a wide range of meteorological conditions, the number of COVID-19 confirmed cases would not change substantially. CONCLUSIONS: Meteorological conditions did not have statistically significant associations with the R(0) of COVID-19. Warmer weather alone seems unlikely to reduce the COVID-19 transmission.
format Online
Article
Text
id pubmed-7480263
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-74802632020-09-09 Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries Pan, Jinhua Yao, Ye Liu, Zhixi Meng, Xia Ji, John S. Qiu, Yang Wang, Weidong Zhang, Lina Wang, Weibing Kan, Haidong Sci Total Environ Article PURPOSE: To examine the association between meteorological factors (temperature, relative humidity, wind speed, and UV radiation) and transmission capacity of COVID-19. METHODS: We collected daily numbers of COVID-19 cases in 202 locations in 8 countries. We matched meteorological data from the NOAA National Centers for Environmental Information. We used a time-frequency approach to examine the possible association between meteorological conditions and basic reproductive number (R(0)) of COVID-19. We determined the correlations between meteorological factors and R(0) of COVID-19 using multiple linear regression models and meta-analysis. We further validated our results using a susceptible-exposed-infectious-recovered (SEIR) metapopulation model to simulate the changes of daily cases of COVID-19 in China under different temperatures and relative humidity conditions. PRINCIPAL RESULTS: Temperature did not exhibit significant association with R(0) of COVID-19 (meta p = 0.446). Also, relative humidity (meta p = 0.215), wind speed (meta p = 0.986), and ultraviolet (UV) radiation (meta p = 0.491) were not significantly associated with R(0) either. The SEIR model in China showed that with a wide range of meteorological conditions, the number of COVID-19 confirmed cases would not change substantially. CONCLUSIONS: Meteorological conditions did not have statistically significant associations with the R(0) of COVID-19. Warmer weather alone seems unlikely to reduce the COVID-19 transmission. Elsevier 2021-01-20 /pmc/articles/PMC7480263/ /pubmed/33207446 http://dx.doi.org/10.1016/j.scitotenv.2020.142272 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pan, Jinhua
Yao, Ye
Liu, Zhixi
Meng, Xia
Ji, John S.
Qiu, Yang
Wang, Weidong
Zhang, Lina
Wang, Weibing
Kan, Haidong
Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries
title Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries
title_full Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries
title_fullStr Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries
title_full_unstemmed Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries
title_short Warmer weather unlikely to reduce the COVID-19 transmission: An ecological study in 202 locations in 8 countries
title_sort warmer weather unlikely to reduce the covid-19 transmission: an ecological study in 202 locations in 8 countries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7480263/
https://www.ncbi.nlm.nih.gov/pubmed/33207446
http://dx.doi.org/10.1016/j.scitotenv.2020.142272
work_keys_str_mv AT panjinhua warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT yaoye warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT liuzhixi warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT mengxia warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT jijohns warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT qiuyang warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT wangweidong warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT zhanglina warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT wangweibing warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries
AT kanhaidong warmerweatherunlikelytoreducethecovid19transmissionanecologicalstudyin202locationsin8countries