English

Interplay between cost and benefits triggers nontrivial vaccination uptake

Physics and Society 2018-03-28 v2 Computer Science and Game Theory

Abstract

The containment of epidemic spreading is a major challenge in science. Vaccination, whenever available, is the best way to prevent the spreading, because it eventually immunizes individuals. However, vaccines are not perfect, and total immunization is not guaranteed. Imperfect immunization has driven the emergence of anti-vaccine movements that totally alter the predictions about the epidemic incidence. Here, we propose a mathematically solvable mean-field vaccination model to mimic the spontaneous adoption of vaccines against influenza-like diseases, and the expected epidemic incidence. The results are in agreement with extensive Monte Carlo simulations of the epidemics and vaccination co-evolutionary processes. Interestingly, the results reveal a non-monotonic behavior on the vaccination coverage, that increases with the imperfection of the vaccine and after decreases. This apparent counterintuitive behavior is analyzed and understood from stability principles of the proposed mathematical model.

Keywords

Cite

@article{arxiv.1802.00883,
  title  = {Interplay between cost and benefits triggers nontrivial vaccination uptake},
  author = {Benjamin Steinegger and Alessio Cardillo and Paolo De Los Rios and Jesús Gómez-Gardeñes and Alex Arenas},
  journal= {arXiv preprint arXiv:1802.00883},
  year   = {2018}
}

Comments

7 pages + 4 figures;