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A Time Scales Approach to Coinfection by Opportunistic Diseases

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  • Marcos Marvá
  • Ezio Venturino
  • Rafael Bravo de la Parra

Abstract

Traditional biomedical approaches treat diseases in isolation, but the importance of synergistic disease interactions is now recognized. As a first step we present and analyze a simple coinfection model for two diseases simultaneously affecting a population. The host population is affected by the primary disease , a long-term infection whose dynamics is described by a SIS model with demography, which facilitates individuals acquiring a second disease, secondary ( or opportunistic ) disease . The secondary disease is instead a short-term infection affecting only the primary infected individuals. Its dynamics is also represented by a SIS model with no demography. To distinguish between short- and long-term infection the complete model is written as a two-time-scale system. The primary disease acts at the slow time scale while the secondary disease does at the fast one, allowing a dimension reduction of the system and making its analysis tractable. We show that an opportunistic disease outbreak might change drastically the outcome of the primary epidemic process, although it does among the outcomes allowed by the primary disease. We have found situations in which either acting on the opportunistic disease transmission or recovery rates or controlling the susceptible and infected population size allows eradicating/promoting disease endemicity.

Suggested Citation

  • Marcos Marvá & Ezio Venturino & Rafael Bravo de la Parra, 2015. "A Time Scales Approach to Coinfection by Opportunistic Diseases," Journal of Applied Mathematics, Hindawi, vol. 2015, pages 1-10, April.
  • Handle: RePEc:hin:jnljam:275485
    DOI: 10.1155/2015/275485
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    Cited by:

    1. Fu, Shuaiming & Luo, Jianfeng & Zhao, Yi, 2022. "Stability and bifurcations analysis in an ecoepidemic system with prey group defense and two infectious routes," Mathematics and Computers in Simulation (MATCOM), Elsevier, vol. 194(C), pages 665-690.

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