A game dynamic model for vaccine skeptics and vaccine believers: measles as an example

Eunha Shim1, John J Grefenstette, Steven M Albert

  • 1Department of Epidemiology, Graduate School of Public Health, University of Pittsburgh, Pittsburgh, PA 15261, USA. eshim@pitt.edu

Insights

Public misperceptions of vaccine risks can hinder vaccination programs. Self-interest among vaccine skeptics leads to suboptimal Measles-Mumps-Rubella (MMR) vaccination rates, impacting herd immunity and increasing outbreak risks.

Area of Science:

  • Epidemiology
  • Behavioral Economics
  • Public Health

Background:

  • Measles-Mumps-Rubella (MMR) vaccination rates have declined due to public misperceptions of vaccine risks.
  • This decline has led to an increase in measles outbreaks, highlighting challenges in maintaining herd immunity.
  • Understanding vaccination choices is crucial for effective public health strategies.

Purpose of the Study:

  • To analyze vaccination decisions using game theory and epidemic models.
  • To investigate how behavioral differences between vaccine skeptics and believers affect vaccination coverage.
  • To identify factors influencing suboptimal vaccination levels and disease spread.

Main Methods:

  • Coupling game theory with epidemic models to simulate vaccination choices.
  • Stratifying populations into two behavioral groups: vaccine skeptics and believers.
  • Analyzing the impact of heterogeneous risk perceptions on vaccination behavior.

Main Results:

  • Self-interest among vaccine skeptics often results in population-level vaccination coverage that is suboptimal.
  • Measles vaccine demand is more sensitive to the proportion of skeptics than their risk misperceptions.
  • Increased vaccination costs widen the gap between self-interested and population-optimal coverage.

Conclusions:

  • Public education on vaccine safety and infection risks is vital for maintaining adequate vaccination levels.
  • Addressing vaccine hesitancy and promoting informed decision-making are key to preserving herd immunity.
  • Game theory and epidemic modeling offer valuable insights into vaccination dynamics.

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