Epidemic spreading with immunization and mutations

Stephan M. Dammer and Haye Hinrichsen
Phys. Rev. E 68, 016114 – Published 14 July 2003
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Abstract

The spreading of infectious diseases with and without immunization of individuals can be modeled by stochastic processes that exhibit a transition between an active phase of epidemic spreading and an absorbing phase, where the disease dies out. In nature, however, the transmitted pathogen may also mutate, weakening the effect of immunization. In order to study the influence of mutations, we introduce a model that mimics epidemic spreading with immunization and mutations. The model exhibits a line of continuous phase transitions and includes the general epidemic process (GEP) and directed percolation (DP) as special cases. Restricting to perfect immunization in two spatial dimensions, we analyze the phase diagram and study the scaling behavior along the phase transition line as well as in the vicinity of the GEP point. We show that mutations lead generically to a crossover from the GEP to DP. Using standard scaling arguments, we also predict the form of the phase transition line close to the GEP point. The protection gained by immunization is vitally decreased by the occurrence of mutations.

  • Received 26 March 2003

DOI:https://doi.org/10.1103/PhysRevE.68.016114

©2003 American Physical Society

Authors & Affiliations

Stephan M. Dammer1,2 and Haye Hinrichsen2

  • 1Institut für Physik, Universität Duisburg–Essen, 47048 Duisburg, Germany
  • 2Theoretische Physik, Fachbereich 8, Bergische Universität Wuppertal, 42097 Wuppertal, Germany

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Vol. 68, Iss. 1 — July 2003

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