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Meteorological factors and COVID-19 incidence in 190 countries: An observational study

机译:190个国家的气象因素和Covid-19发病率:观察研究

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摘要

Novel corona virus disease 2019 (COVID-19). which first emerged in December 2019, has become a pandemic. This study aimed to investigate the associations between meteorological factors and COVID-19 incidence and mortality worldwide. This study included 1,908,197 confirmed cases of and 119,257 deaths from COVID-19 from 190 countries between 23 January and 13 April, 2020. We used a distributed lag non-linear model with city-/country-level random intercept to investigate the associations between COVID19 incidence and daily temperature, relative humidity, and wind speed. A series of confounders were considered in the analysis including demographics, socioeconomics, geographic locations, and political strategies. Sensitivity analyses were performed to examine the robustness of the associations. The COVID-19 incidence showed a stronger association with temperature than with relative humidity or wind speed. An inverse association was identified between the COVID-19 incidence and temperature. The corresponding 14-day cumulative relative risk was 128195% confidence interval (CI), 1.20-1.36] at 5 °C, and 0.75 (95% CI, 0.65-0.86) at 22 °C with reference to the risk at 11 °C. An inverse J-shaped association was observed between relative humidity and the COVID-19 incidence, with the highest risk at 72%. A higher wind speed was associated with a generally lower incidence of COVID-19, although the associations were weak. Sensitivity analyses generally yielded similar results. The C0V1D-19 incidence decreased with the increase of temperature. Our study suggests that the spread of COVID-19 may slow during summer but may increase during winter.
机译:2019年新型电晕病毒疾病(Covid-19)。哪个首次出现在2019年12月,已成为大流行。本研究旨在调查气象因素和Covid-19发病率与世界范围内死亡率之间的关联。本研究包括1,908,197例确诊病例,从190年4月23日至4月13日之间的Covid-19案件和119,257名死亡人员,从2020年4月23日之间。我们使用了与城市/国家级随机拦截的分布式滞后非线性模型,以调查Covid19之间的协会发病率和每日温度,相对湿度和风速。在分析中考虑了一系列混乱,包括人口统计学,社会经济,地理位置和政治策略。进行敏感性分析以检查关联的鲁棒性。 Covid-19发病率与温度相比,伴有比相对湿度或风速更强。在Covid-19发病率和温度之间鉴定了逆关联。相应的14天累积相对风险在5℃下为128195%的置信区间(CI),1.20-1.36],在22℃下,参照11°C的风险,在22℃下为0.75(95%CI,0.65-0.86) 。在相对湿度和Covid-19发病率之间观察到逆J形关联,其风险最高为72%。虽然联想较弱,但是较高的风速与普遍较低的Covid-19发生率有关。敏感性分析通常产生类似的结果。随着温度的增加,C0V1D-19发病率降低。我们的研究表明,Covid-19的传播可能在夏季缓慢慢,但在冬季可能会增加。

著录项

  • 来源
    《Science of the total environment》 |2021年第25期|143783.1-143783.8|共8页
  • 作者单位

    Jockey Club School of Public Health and Primary Care The Chinese University of Hong Kong. Hong Kong China;

    Jockey Club School of Public Health and Primary Care The Chinese University of Hong Kong. Hong Kong China;

    Division of Environment and Sustainability The Hong Kong University of Science and Technology Hong Kong China;

    Shenzhen Dong Fang Tech Development Co. LTD. Shenzhen Guangdong China;

    Jockey Club School of Public Health and Primary Care The Chinese University of Hong Kong. Hong Kong China;

    Division of Environment and Sustainability The Hong Kong University of Science and Technology Hong Kong China;

    Division of Environment and Sustainability The Hong Kong University of Science and Technology Hong Kong China;

    Division of Environment and Sustainability The Hong Kong University of Science and Technology Hong Kong China;

    Institute for the Environment the Hong Kong University of Science and Technology. Hong Kong China;

    Jockey Club School of Public Health and Primary Care The Chinese University of Hong Kong. Hong Kong China Stanley Ho Centre for Emerging Infectious Diseases The Chinese University of Hong Kong Shatin Hong Kong China Shenzhen Research Institute of The Chinese University of Hong Kong Shenzhen China;

    Jockey Club School of Public Health and Primary Care The Chinese University of Hong Kong. Hong Kong China;

    Division of Environment and Sustainability The Hong Kong University of Science and Technology Hong Kong China Department of Civil and Environmental Engineering The Hong Kong University of Science and Technology Hong Kong China;

    Jockey Club School of Public Health and Primary Care The Chinese University of Hong Kong. Hong Kong China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    COVID-19 incidence; COVID-19 mortality; Meteorology; Temperature; Relative humidity; Wind speed;

    机译:covid-19发病率;covid-19死亡率;气象;温度;相对湿度;风速;

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