Guidelines in Wastewater-based Epidemiology of SARS-CoV-2 with Diagnosis

Fuente: arXiv
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Main Authors: Fatima, Madiha, Cao, Zhihua, Huang, Aichun, Wu, Shengyuan, Fan, Xinxian, Wang, Yi, Jiren, Liu, Zhu, Ziyun, Ye, Qiongrou, Ma, Yuan, Chow, Joseph K. F, Jia, Peng, Liu, Yangshou, Lin, Yubin, Ye, Manjun, Wu, Tong, Li, Zhixun, Cai, Cong, Zhang, Wenhai, Ding, Cheris H. Q., Cai, Yuanzhe, Huang, Feijuan
Format: Preprint
Published: 2023
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author Fatima, Madiha
Cao, Zhihua
Huang, Aichun
Wu, Shengyuan
Fan, Xinxian
Wang, Yi
Jiren, Liu
Zhu, Ziyun
Ye, Qiongrou
Ma, Yuan
Chow, Joseph K. F
Jia, Peng
Liu, Yangshou
Lin, Yubin
Ye, Manjun
Wu, Tong
Li, Zhixun
Cai, Cong
Zhang, Wenhai
Ding, Cheris H. Q.
Cai, Yuanzhe
Huang, Feijuan
author_facet Fatima, Madiha
Cao, Zhihua
Huang, Aichun
Wu, Shengyuan
Fan, Xinxian
Wang, Yi
Jiren, Liu
Zhu, Ziyun
Ye, Qiongrou
Ma, Yuan
Chow, Joseph K. F
Jia, Peng
Liu, Yangshou
Lin, Yubin
Ye, Manjun
Wu, Tong
Li, Zhixun
Cai, Cong
Zhang, Wenhai
Ding, Cheris H. Q.
Cai, Yuanzhe
Huang, Feijuan
contents With the global spread and increasing transmission rate of SARS-CoV-2, more and more laboratories and researchers are turning their attention to wastewater-based epidemiology (WBE), hoping it can become an effective tool for large-scale testing and provide more ac-curate predictions of the number of infected individuals. Based on the cases of sewage sampling and testing in some regions such as Hong Kong, Brazil, and the United States, the feasibility of detecting the novel coronavirus in sewage is extremely high. This study re-views domestic and international achievements in detecting SARS-CoV-2 through WBE and summarizes four aspects of COVID-19, including sampling methods, virus decay rate cal-culation, standardized population coverage of the watershed, algorithm prediction, and provides ideas for combining field modeling with epidemic prevention and control. Moreover, we highlighted some diagnostic techniques for detection of the virus from sew-age sample. Our review is a new approach in identification of the research gaps in waste water-based epidemiology and diagnosis and we also predict the future prospect of our analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2401_01367
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Guidelines in Wastewater-based Epidemiology of SARS-CoV-2 with Diagnosis
Fatima, Madiha
Cao, Zhihua
Huang, Aichun
Wu, Shengyuan
Fan, Xinxian
Wang, Yi
Jiren, Liu
Zhu, Ziyun
Ye, Qiongrou
Ma, Yuan
Chow, Joseph K. F
Jia, Peng
Liu, Yangshou
Lin, Yubin
Ye, Manjun
Wu, Tong
Li, Zhixun
Cai, Cong
Zhang, Wenhai
Ding, Cheris H. Q.
Cai, Yuanzhe
Huang, Feijuan
Quantitative Methods
With the global spread and increasing transmission rate of SARS-CoV-2, more and more laboratories and researchers are turning their attention to wastewater-based epidemiology (WBE), hoping it can become an effective tool for large-scale testing and provide more ac-curate predictions of the number of infected individuals. Based on the cases of sewage sampling and testing in some regions such as Hong Kong, Brazil, and the United States, the feasibility of detecting the novel coronavirus in sewage is extremely high. This study re-views domestic and international achievements in detecting SARS-CoV-2 through WBE and summarizes four aspects of COVID-19, including sampling methods, virus decay rate cal-culation, standardized population coverage of the watershed, algorithm prediction, and provides ideas for combining field modeling with epidemic prevention and control. Moreover, we highlighted some diagnostic techniques for detection of the virus from sew-age sample. Our review is a new approach in identification of the research gaps in waste water-based epidemiology and diagnosis and we also predict the future prospect of our analysis.
title Guidelines in Wastewater-based Epidemiology of SARS-CoV-2 with Diagnosis
topic Quantitative Methods
url https://arxiv.org/abs/2401.01367