Selected article for: "epidemic peak and intervention time"

Author: Oscar Patterson-Lomba
Title: Optimal timing for social distancing during an epidemic
  • Document date: 2020_4_1
  • ID: cm91jxde_69
    Snippet: is the (which was not peer-reviewed) The copyright holder for this preprint . https://doi.org/10.1101/2020.03.30.20048132 doi: medRxiv preprint Optimal timing for peak reduction Figure 11 : (left) Optimal t 0 to initiate social distancing to maximize the delay of the epidemic peak as a function of R 0 (x axis), and time to pharmacological intervention (t I ) (y axis). (right) Optimal t 0 to initiate social distancing to maximize the reduction of .....
    Document: is the (which was not peer-reviewed) The copyright holder for this preprint . https://doi.org/10.1101/2020.03.30.20048132 doi: medRxiv preprint Optimal timing for peak reduction Figure 11 : (left) Optimal t 0 to initiate social distancing to maximize the delay of the epidemic peak as a function of R 0 (x axis), and time to pharmacological intervention (t I ) (y axis). (right) Optimal t 0 to initiate social distancing to maximize the reduction of the epidemic peak as a function of R 0 (x axis), and time to pharmacological intervention (t I ) (y axis). With γ = 1/10, T = 30, r = 0.55, I(0) = 0.01%.

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