• Title of article

    Meningitis, pathogenicity near criticality: the epidemiology of meningococcal disease as a model for accidental pathogens

  • Author/Authors

    Stollenwerk، نويسنده , , Nico and Jansen، نويسنده , , Vincent A.A.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    13
  • From page
    347
  • To page
    359
  • Abstract
    We formulate and analyse a model for infectious diseases transmitted by asymptomatic carriers finding, that if harmless and pathogenic strains of the infected agent compete, frequent outbreaks of the pathogenic strains can occur. A counterintuitively high number of clustered outbreaks at low pathogenicity in our model compares well with observations in diseases with severe and often fatal results for the host, as for example in meningitis. These clustered outbreaks can be described by the typical scaling behaviour around criticality. idemic model is a susceptible-infected-recovered system (SIR) for the harmless infective agent, acting as a background to a mutant strain Y which occasionally creates severely affected hosts X. The full system of SIRYX is described in the master equation framework, confirming limiting assumptions about a reduced YX-system with the SIR-system in stationarity. In this limiting case we can analytically show convergence to power law scaling typical for critical states, as well as the divergence of the variance of outbreaks near criticality. large fluctuations of outbreaks of accidental pathogens as mutants of otherwise harmless commensal organisms is the challenging new feature of our model for future epidemiology of diseases like meningococcal disease.
  • Keywords
    Neisseria meningitidis , septicaemia , Population structure , Branching process , Asymptomatic carriage , master equation , Power law
  • Journal title
    Journal of Theoretical Biology
  • Serial Year
    2003
  • Journal title
    Journal of Theoretical Biology
  • Record number

    1535813