The Pandemic Holiday Blip in New York City

Maximilian Vierlboeck1, Roshanak Rose Nilchiani1, Christine M Edwards2

  • 1School of Systems and EnterprisesStevens Institute of Technology Hoboken NJ 07030 USA.

IEEE Transactions on Computational Social Systems
|January 25, 2023
PubMed

Insights

A new simulation model dynamically predicts COVID-19 pandemic progress and healthcare impacts. Realistic factors like contact rates show holidays can significantly increase cases and hospitalizations, aiding policy development.

Area of Science:

  • Epidemiology
  • Public Health
  • Health Informatics

Background:

  • The Coronavirus disease (COVID-19) pandemic strained healthcare systems globally.
  • Hospitals faced shortages of supplies, beds, and personnel due to increased patient demand.
  • Predictive modeling is crucial for managing pandemic progression and resource allocation.

Purpose of the Study:

  • To develop and present a simulation model for evaluating COVID-19 pandemic progress.
  • To dynamically mimic crucial pandemic parameters like infection and death rates.
  • To assess the impact of real-world events and policy interventions on pandemic trajectories.

Main Methods:

  • Developed a dynamic simulation framework based on realistic parameters such as individual contact rates.
  • Modeled time-dependent behaviors of key pandemic indicators.
  • Simulated anomalous events like holidays and their impact on disease spread.

Main Results:

  • The model realistically represents pandemic developments and allows for scenario testing.
  • A case study on NYC holidays demonstrated significant increases in cases and hospitalizations.
  • A 50% contact rate increase projected 461,090 new cases, 79,733 hospitalizations, and 19,125 fatalities over 90 days.

Conclusions:

  • The simulation model provides a powerful tool for predicting pandemic outcomes.
  • It enables the assessment of various containment policies and regulatory measures.
  • The framework is adaptable for broader applications beyond metropolitan regions and future pandemics.

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