Selected article for: "infection risk and total population"

Author: Santillana, Mauricio; Tuite, Ashleigh; Nasserie, Tahmina; Fine, Paul; Champredon, David; Chindelevitch, Leonid; Dushoff, Jonathan; Fisman, David
Title: Relatedness of the incidence decay with exponential adjustment (IDEA) model, “Farr's law” and SIR compartmental difference equation models
  • Document date: 2018_3_9
  • ID: tmt8vdzj_19
    Snippet: The "damping" parameter r represents the relative risk of infection in each generation of the epidemic, compared to the risk seen in the last generation (i.e., if there were no improvement in control in a given generation compared to the last, most recent generation). If an outbreak is small relative to the size of the total population (as would be true if R 0 were modest and control achieved relatively quickly) SðtÞ=N will be approximately 1 t.....
    Document: The "damping" parameter r represents the relative risk of infection in each generation of the epidemic, compared to the risk seen in the last generation (i.e., if there were no improvement in control in a given generation compared to the last, most recent generation). If an outbreak is small relative to the size of the total population (as would be true if R 0 were modest and control achieved relatively quickly) SðtÞ=N will be approximately 1 throughout the outbreak and the expression can be rewritten as:

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