Author: Oscar Patterson-Lomba
Title: Optimal timing for social distancing during an epidemic Document date: 2020_4_1
ID: cm91jxde_66
Snippet: is the (which was not peer-reviewed) The copyright holder for this preprint Figure 10 : Reduction in peak time corresponding to optimal t 0 to initiate social distancing as a function of R 0 (x axis), reduction in transmissibility during social distancing r (y axis), and length of social distancing intervention (7, 14 and 30 days). For all simulations γ = 1/10. Appendix 4: Simulations for the optimal t 0 to flatten the epidemic when an effective.....
Document: is the (which was not peer-reviewed) The copyright holder for this preprint Figure 10 : Reduction in peak time corresponding to optimal t 0 to initiate social distancing as a function of R 0 (x axis), reduction in transmissibility during social distancing r (y axis), and length of social distancing intervention (7, 14 and 30 days). For all simulations γ = 1/10. Appendix 4: Simulations for the optimal t 0 to flatten the epidemic when an effective intervention is available in the feature Figure (11) shows that as t I decreases so does the optimal social distancing time if the goal is to flatten the epidemic curve.
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