Effects of Demographic and Weather Parameters on COVID-19 Basic Reproduction Number

被引:21
作者
Salom, Igor [1 ]
Rodic, Andjela [2 ]
Milicevic, Ognjen [3 ]
Zigic, Dusan [1 ]
Djordjevic, Magdalena [1 ]
Djordjevic, Marko [2 ]
机构
[1] Univ Belgrade, Inst Phys Belgrade, Natl Inst Republ Serbia, Belgrade, Serbia
[2] Univ Belgrade, Quantitat Biol Grp, Fac Biol, Belgrade, Serbia
[3] Univ Belgrade, Sch Med, Dept Med Stat & Informat, Belgrade, Serbia
关键词
COVID-19; transmissibility; environmental factors; basic reproduction number; COVID-19 demographic dependence; COVID-19 weather dependence; RELATIVE-HUMIDITY; INFLUENZA-VIRUS; BLOOD-GROUP; TRANSMISSION; TEMPERATURE; ASSOCIATION; POLLUTION; RECEPTOR; SARS;
D O I
10.3389/fevo.2020.617841
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
It is hard to overstate the importance of a timely prediction of the COVID-19 pandemic progression. Yet, this is not possible without a comprehensive understanding of environmental factors that may affect the infection transmissibility. Studies addressing parameters that may influence COVID-19 progression relied on either the total numbers of detected cases and similar proxies (which are highly sensitive to the testing capacity, levels of introduced social distancing measures, etc.), and/or a small number of analyzed factors, including analysis of regions that display a narrow range of these parameters. We here apply a novel approach, exploiting widespread growth regimes in COVID-19 detected case counts. By applying nonlinear dynamics methods to the exponential regime, we extract basic reproductive number R-0 (i.e., the measure of COVID-19 inherent biological transmissibility), applying to the completely naive population in the absence of social distancing, for 118 different countries. We then use bioinformatics methods to systematically collect data on a large number of potentially interesting demographics and weather parameters for these countries (where data was available), and seek their correlations with the rate of COVID-19 spread. While some of the already reported or assumed tendencies (e.g., negative correlation of transmissibility with temperature and humidity, significant correlation with UV, generally positive correlation with pollution levels) are also confirmed by our analysis, we report a number of both novel results and those that help settle existing disputes: the absence of dependence on wind speed and air pressure, negative correlation with precipitation; significant positive correlation with society development level (human development index) irrespective of testing policies, and percent of the urban population, but absence of correlation with population density per se. We find a strong positive correlation of transmissibility on alcohol consumption, and the absence of correlation on refugee numbers, contrary to some widespread beliefs. Significant tendencies with health-related factors are reported, including a detailed analysis of the blood type group showing consistent tendencies on Rh factor, and a strong positive correlation of transmissibility with cholesterol levels. Detailed comparisons of obtained results with previous findings, and limitations of our approach, are also provided.
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页数:18
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