
Managing Close Contacts of COVID-19 Confirmed Cases in Metropolitan Areas in China
Author(s) -
Jin Ding,
Wen-Jan Tuan,
Jonathan L. Temte
Publication year - 2020
Publication title -
journal of public health management and practice
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.771
H-Index - 50
eISSN - 1550-5022
pISSN - 1078-4659
DOI - 10.1097/phh.0000000000001189
Subject(s) - preparedness , metropolitan area , public health , quarantine , china , notifiable disease , environmental health , psychological intervention , covid-19 , medicine , medical emergency , epidemiology , outbreak , geography , disease , nursing , infectious disease (medical specialty) , political science , virology , archaeology , pathology , law
The novel coronavirus (COVID-19) outbreak has rapidly spread across the world. As medical systems continue to develop vaccines and treatments, it is crucial for the public health community to establish nonpharmaceutical interventions (NPIs) that can effectively mitigate the rate of SARS-Coronavirus-2 (SARS-CoV-2) spread across highly populated residential areas, especially among individuals who have close contact with confirmed cases. A community-driven preparedness strategy has been implemented in metropolitan areas in China. The Chinese Center for Disease Control and Prevention (CCDC) has required that all COVID-19 confirmed cases be recorded and documented in a national notifiable disease surveillance system (NDSS). After receiving reports of newly confirmed cases, an epidemiological services team at the CCDC or trained medical professionals at local clinical facilities start a case-contact investigation. A task force performs home visits to infected individuals. Persons under investigation (PUIs) can stay in designated quarantine facilities for 14 days or in special circumstances can be quarantined at home. This community-based approach involved all stakeholders including local public health departments, public safety authorities, neighborhood councils, and community health centers.