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Influence of population density, temperature, and absolute humidity on spread and decay durations of COVID-19: A comparative study of scenarios in China, England, Germany, and Japan

机译:人口密度,温度和绝对湿度对Covid-19传播和衰减持续时间的影响:中国,英格兰,德国和日本情景的比较研究

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In this study, we analyzed the spread and decay durations of the COVID-19 pandemic in several cities of China, England, Germany, and Japan, where the first wave has undergone decay. Differences in medical and health insurance systems, as well as in regional policies incommoded the comparison of the spread and decay in different cities and countries. The spread and decay durations in the cities of the four studied countries were reordered and calculated based on an asymmetric bell-shaped model. We acquired the values of the ambient temperature, absolute humidity, and population density to perform multivariable analysis. We found a significant correlation (p?
机译:在这项研究中,我们分析了中国,英格兰,德国和日本的几个城市Covid-19大流行的蔓延和衰减持续时间,第一波经历了衰减。医疗保险制度的差异,以及区域政策,不包括不同城市和国家的传播和腐烂的比较。四个学习国家的城市的传播和衰减持续时间被重新排序和计算,基于不对称的钟形模型计算。我们获得了环境温度,绝对湿度和人口密度的值,以进行多变量分析。我们发现了四个分析国家的人口密度的涂抹和衰减持续时间的显着相关性(P?<?0.05)。具体地,扩展持续时间显示出与人口密度和绝对湿度的高相关(P?<?0.05),而衰减持续时间表现出与人口密度,绝对湿度和最高温度的最高关联(P?<?<0.05)。由于实施严格的锁定,人口密度的影响几乎不存在。我们的调查结果将在下一个大流行中的政策制定和政府行动以及在Covid-19的下一个波浪中有用。

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