• Title of article

    A dengue model with a dynamic Aedes albopictus vector population

  • Author/Authors

    Erickson، نويسنده , , Richard A. and Presley، نويسنده , , Steven M. and Allen، نويسنده , , Linda J.S. and Long، نويسنده , , Kevin R. and Cox، نويسنده , , Stephen B.، نويسنده ,

  • Pages
    10
  • From page
    2899
  • To page
    2908
  • Abstract
    Dengue is the most commonly transmitted arthropod-borne virus in the world with 50–100 million cases annually. Within the United States, dengue is a reemerging infectious disease of concern and near the U.S.–Mexico border, up to 75% of the population of some Texas communities have had exposure to dengue. Understanding dengue disease dynamics is critical to predicting and understanding the disease. These dynamics depend upon diverse factors such as socioeconomic conditions, the local environment, and vector biology. Here, we study dengue by examining the role of temperature in driving vector dynamics. To do this, we created a Susceptible, Exposed, Infectious, Recovered host and Susceptible, Exposed, Infectious vector (SEIR/SEI) model. The SEIR/SEI model was then used in conjunction with an Aedes albopictus population model to create a vector-based disease model. The vector-based diseased model was then forced by temperature. ed for public release; distribution is unlimited.
  • Keywords
    disease model , Epidemiology , Medical Entomology , SEIR/SEI model , Vector ecology , Reemerging disease
  • Journal title
    Astroparticle Physics
  • Record number

    2085714