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_22
Snippet: where I D,i and I W,i are the numbers of 'dirty' and 'washed' infected individuals respectively at airport i and N i is the total population at airport i. The probability that an individual with washed hands becomes dirty is ΠW →D = 1 − exp(−θ ) and the probability that an individual with dirty hands will wash his/her hands, within each one-hour time step, is ΠD→W = 1 − exp(−p). Using these probabilities, the computational model .....
Document: where I D,i and I W,i are the numbers of 'dirty' and 'washed' infected individuals respectively at airport i and N i is the total population at airport i. The probability that an individual with washed hands becomes dirty is ΠW →D = 1 − exp(−θ ) and the probability that an individual with dirty hands will wash his/her hands, within each one-hour time step, is ΠD→W = 1 − exp(−p). Using these probabilities, the computational model generates the stochastic epidemic transitions for the traveling agents over time. In our analysis, we vary the model parameter p, considering different hand-hygiene interventions, and analyze their impact on global disease spreading.
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