Statistical properties of COVID-19 transmission intervals in Republic of Korea

Fuente: arXiv
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Autori principali: Seo, Yeonji, Kwon, Okyu, Jo, Hang-Hyun
Natura: Preprint
Pubblicazione: 2023
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author Seo, Yeonji
Kwon, Okyu
Jo, Hang-Hyun
author_facet Seo, Yeonji
Kwon, Okyu
Jo, Hang-Hyun
contents A transmission interval for an infectious disease is important to understand epidemic processes in complex networks. The transmission interval is defined as a time interval between one person's infection and their infection to another person. To study statistical properties of transmission intervals, we analyze a COVID-19 dataset of confirmed cases in Republic of Korea that has been collected for two years since the confirmation of the first case on 19 January 2020. Utilizing demographic information of confirmed individuals, such as sex, age, residence location, and the nature of relation between infectors and infectees, we find that transmission intervals are rarely affected by sexes, but they tend to have larger values for the youngest and oldest age groups than other groups. We also find some metropolitan cities or provinces with relatively larger (smaller) transmission intervals than other locations. These empirical findings might help us to better understand dynamical mechanisms of epidemic processes in complex social systems.
format Preprint
id arxiv_https___arxiv_org_abs_2307_13508
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Statistical properties of COVID-19 transmission intervals in Republic of Korea
Seo, Yeonji
Kwon, Okyu
Jo, Hang-Hyun
Physics and Society
Data Analysis, Statistics and Probability
A transmission interval for an infectious disease is important to understand epidemic processes in complex networks. The transmission interval is defined as a time interval between one person's infection and their infection to another person. To study statistical properties of transmission intervals, we analyze a COVID-19 dataset of confirmed cases in Republic of Korea that has been collected for two years since the confirmation of the first case on 19 January 2020. Utilizing demographic information of confirmed individuals, such as sex, age, residence location, and the nature of relation between infectors and infectees, we find that transmission intervals are rarely affected by sexes, but they tend to have larger values for the youngest and oldest age groups than other groups. We also find some metropolitan cities or provinces with relatively larger (smaller) transmission intervals than other locations. These empirical findings might help us to better understand dynamical mechanisms of epidemic processes in complex social systems.
title Statistical properties of COVID-19 transmission intervals in Republic of Korea
topic Physics and Society
Data Analysis, Statistics and Probability
url https://arxiv.org/abs/2307.13508