Selected article for: "generation interval and infected case"

Author: Andrea Torneri; Amin Azmon; Christel Faes; Eben Kenah; Gianpaolo Scalia Tomba; Jacco Wallinga; Niel Hens
Title: Realized generation times: contraction and impact of infectious period, reproduction number and population size
  • Document date: 2019_3_8
  • ID: ag9mzwkx_26
    Snippet: The findings of the present study clearly show the non-constant behaviour of both 338 backward and forward generation interval, in line with the literature [5, 6, 8, 20] . 339 Moreover, this has been the first attempt to thoroughly examine the cause of the contact and the infection time of the next case is t (2) = t * (1)1 . At this stage, the newly infected case and its infector will contact other people randomly in the population. Unlike the st.....
    Document: The findings of the present study clearly show the non-constant behaviour of both 338 backward and forward generation interval, in line with the literature [5, 6, 8, 20] . 339 Moreover, this has been the first attempt to thoroughly examine the cause of the contact and the infection time of the next case is t (2) = t * (1)1 . At this stage, the newly infected case and its infector will contact other people randomly in the population. Unlike the stepwise algorithm, this contact can be potentially generated also for already infected person. In parallel, the first case will generate his or her second contact at time t * (1)2 = t (1) + δ (1)1 + δ (1)2 and the second case will generate his or her contact at time t *

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