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A Scenario-Based Evaluation of COVID-19-Related Essential Clinical Resource Demands in China
Ting Zhang1, Qing Wang2, Zhiwei Leng1
1School of Population Medicine and Public Health, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100730, China.
Insights
Strict interventions and vaccination can control COVID-19 spread. However, without them, healthcare systems need wartime preparations for essential resource demands. Asymptomatic cases complicate containment efforts.
Area of Science:
- Epidemiology
- Public Health
- Health Economics
Background:
- The COVID-19 pandemic has overwhelmed global healthcare systems, causing critical shortages.
- Assessing essential clinical resource demands is vital for pandemic preparedness.
Purpose of the Study:
- To estimate COVID-19-related essential clinical resource demands in China.
- To evaluate the impact of different spread and intervention scenarios on resource needs.
Main Methods:
- Utilized a susceptible-exposed-infectious-hospitalized/isolated-removed (SEIHR) transmission dynamics model.
- Simulated various scenarios of COVID-19 spread, non-pharmaceutical interventions (NPIs), and vaccination rates.
Main Results:
- Strict NPIs or mass vaccination effectively contained COVID-19 transmission and local outbreaks.
- Low-intensity NPIs and limited vaccination necessitate wartime transition models for medical resource stockpiling.
- Asymptomatic infections increase transmission difficulty without reducing overall medical resource demand.
Conclusions:
- COVID-19 vaccine and NPI timing significantly impacts transmission and clinical resource demand.
- Preparedness strategies must account for asymptomatic cases and potential healthcare system strain.
- Findings guide emergency preparations, control strategy adjustments, and healthcare investment during pandemics.
Abstract:
The coronavirus disease 2019 (COVID-19) pandemic is a global crisis, and medical systems in many countries are overwhelmed with supply shortages and increasing demands to treat patients due to the surge in cases and severe illnesses. This study aimed to assess COVID-19-related essential clinical resource demands in China, based on different scenarios involving COVID-19 spreads and interventions. We used a susceptible-exposed-infectious-hospitalized/isolated-removed (SEIHR) transmission dynamics model to estimate the number of COVID-19 infections and hospitalizations with corresponding essential healthcare resources needed. We found that, under strict non-pharmaceutical interventions (NPIs) or mass vaccination of the population, China would be able to contain community transmission and local outbreaks rapidly. However, under scenarios involving a low intensity of implemented NPIs and a small proportion of the population vaccinated, the use of a peacetime-wartime transition model would be needed for medical source stockpiles and preparations to ensure a normal functioning healthcare system. The implementation of COVID-19 vaccines and NPIs in different periods can influence the transmission of COVID-19 and subsequently affect the demand for clinical diagnosis and treatment. An increased proportion of asymptomatic infections in simulations will not reduce the demand for medical resources; however, attention must be paid to the increasing difficulty in containing COVID-19 transmission due to asymptomatic cases. This study provides evidence for emergency preparations and the adjustment of prevention and control strategies during the COVID-19 pandemic. It also provides guidance for essential healthcare investment and resource allocation.
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