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Is compulsory home quarantine less effective than centralized quarantine in controlling the COVID-19 outbreak?
1Hong Kong University of Science and Technology, Hong Kong.
Insights
Home quarantine for COVID-19 showed initial lower effectiveness compared to centralized quarantine but later converged. This approach conserves resources and balances freedom, making it a sustainable option for many nations.
Area of Science:
- Epidemiology
- Public Health Policy
- Socioeconomics
Background:
- COVID-19 pandemic necessitated varied quarantine strategies globally.
- Hong Kong implemented home quarantine, contrasting with mainland China and Macau's centralized approach.
Purpose of the Study:
- To evaluate the effectiveness of compulsory home quarantine versus centralized quarantine for pandemic control.
- To compare infection trends under different quarantine models.
Main Methods:
- Utilized epidemiological, socioeconomic, and meteorological data from over 250 cities.
- Employed the Synthetic Control Method (SCM) to create a counterfactual "synthetic Hong Kong".
Main Results:
- Home quarantine was initially less effective than centralized quarantine.
- Infection rates converged between home quarantine and the synthetic centralized quarantine model (0.136% vs. 0.174%) in the later phase.
- Home quarantine demonstrated similar long-term efficacy to centralized quarantine.
Conclusions:
- Home quarantine, with enhanced enforcement, is a viable and potentially preferable alternative to centralized quarantine, especially for resource-limited settings.
- Home quarantine offers a sustainable balance between public health protection, individual liberty, and resource conservation.
Abstract:
Faced with the global spread of COVID-19, the Hong Kong government imposed compulsory home quarantine on all overseas arrivals, while cities in mainland China and Macau adopted a more stringent centralized quarantine approach. This study evaluates the effectiveness of compulsory home quarantine as a means of pandemic control. Combining epidemiological data with traditional socioeconomic and meteorological data from over 250 cities, we employ the Synthetic Control Method (SCM) to construct a counterfactual "synthetic Hong Kong". This model simulates the infection trends for a hypothetical situation in which HK adopts centralized quarantine measures, and compares them to actual infection numbers. Results suggest that home quarantine would have been less effective than centralized quarantine initially. However, the infection rate under home quarantine later converges with the counterfactual estimate under centralized quarantine (0.136% vs. 0.174%), suggesting similar efficacy in the later phase of implementation. Considering its minimal reliance on public resources, home quarantine with heightened enforcement may therefore be preferable to centralized quarantine in countries with limited public health resources. Home quarantine as a quarantine alternative balances public protection and individual freedom, while conserving resources, making it a more sustainable option for many cities.
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