Selected article for: "disease recover and SIR model"

Author: Christos Nicolaides; Demetris Avraam; Luis Cueto-Felgueroso; Marta C. González; Ruben Juanes
Title: Hand-hygiene mitigation strategies against global disease spreading through the air transportation network
  • Document date: 2019_1_26
  • ID: l353fvsp_21
    Snippet: At the initial time step of each simulation, t = 0, we declare an airport i as the source of the disease where we randomly choose ten individuals to seed the infection. For each analysis we run 500 realizations of 10 5 traveling agents each. At each time step, which corresponds to one hour, we let individuals travel, wash their hands, and recover or transmit the disease to susceptible agents when those individuals are infected. At each time step,.....
    Document: At the initial time step of each simulation, t = 0, we declare an airport i as the source of the disease where we randomly choose ten individuals to seed the infection. For each analysis we run 500 realizations of 10 5 traveling agents each. At each time step, which corresponds to one hour, we let individuals travel, wash their hands, and recover or transmit the disease to susceptible agents when those individuals are infected. At each time step, an infected individual recovers with probability Π I→R = 1 − exp(−µ). When the transmission of an infection is associated with hand cleanliness of the infected individuals (as described by the SIR WD model), the probability of a susceptible to get the infection is

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