Challenging the spread of COVID-19 in Thailand

Kraichat Tantrakarnapa1, Bhophkrit Bhopdhornangkul2

  • 1Department of Social and Environmental Medicine, Faculty of Tropical Medicine, Mahidol University, Ratchathewi, Bangkok, Thailand.

Insights

This study analyzed COVID-19 in Thailand using dynamic models and found temperature influences infections. Social distancing and emergency regulations were key to controlling the pandemic

Area of Science:

  • Epidemiology
  • Mathematical Modeling
  • Public Health

Background:

  • The COVID-19 pandemic, declared by the WHO, rapidly spread globally, causing significant mortality and morbidity.
  • Thailand faced challenges in controlling the disease's spread, necessitating an analysis of effective control strategies.

Purpose of the Study:

  • To analyze the COVID-19 situation in Thailand and evaluate disease control strategies.
  • To employ dynamic modeling to forecast cases and identify key prevention approaches.
  • To investigate the influence of ambient temperature on COVID-19 transmission in Thailand.

Main Methods:

  • Utilized statistical techniques to assess the correlation between ambient temperature and daily COVID-19 cases (p<0.01).
  • Employed the Susceptible-Exposed-Infectious-Recovered (SEIR) dynamic model and moving average estimation for case forecasting.
  • Used STELLA dynamic software and statistical methods for base run analysis and prediction.

Main Results:

  • Ambient temperature showed a significant association with daily infected cases.
  • The SEIR model predicted cases with a Root Mean Square Error (RMSE) of 12.8.
  • Moving average approaches demonstrated superior short-term prediction accuracy (RMSE: 0.21-0.35) compared to the SEIR model.
  • Human movement, both domestic and international, was identified as a significant factor in disease spread.
  • Governmental interventions, including social distancing and state of emergency regulations, effectively reduced the disease's growth rate.

Conclusions:

  • Dynamic models like SEIR are valuable for long-term COVID-19 prediction, while moving averages are effective for short-term forecasting.
  • Collaborative, multi-sectoral implementation of interventions is crucial for successful pandemic control.
  • Public health policies and regulations play a vital role in mitigating the impact of infectious disease outbreaks.

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