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      Modeling undetected live poliovirus circulation after apparent interruption of transmission: Pakistan and Afghanistan

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          Abstract

          Since most poliovirus infections occur with no paralytic symptoms, the possibility of silent circulation complicates the confirmation of the end of poliovirus transmission. Based on empirical field experience and theoretical modeling results, the Global Polio Eradication Initiative identified three years without observing paralytic cases from wild polioviruses (WPVs) with good acute flaccid paralysis surveillance as an indication of sufficient confidence that poliovirus circulation stopped. The complexities of real populations and the imperfect nature of real surveillance systems subsequently demonstrated the importance of specific modeling for areas at high risk of undetected circulation, resulting in varying periods of time required to obtain the same level of confidence about no undetected circulation. Using a poliovirus transmission model that accounts for variability in transmissibility and neurovirulence for different poliovirus serotypes and characterizes country-specific factors (e.g., vaccination and surveillance activities, demographics) related to wild and vaccine-derived poliovirus transmission in Pakistan and Afghanistan, we consider the probability of undetected poliovirus circulation for those countries once apparent die out occurs (i.e., in the absence of any epidemiological signals). We find that gaps in poliovirus surveillance or reaching elimination with borderline sufficient population immunity could significantly increase the time to reach a high confidence about interruption of live poliovirus transmission, such that the path taken to achieve and maintain poliovirus elimination matters. Pakistan and Afghanistan will need to sustain high-quality surveillance for polioviruses after apparent interruption of transmission and recognize that as efforts to identify cases or circulating live polioviruses decreases, the risks of undetected circulation increase and significantly delay the global polio endgame.

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          Author and article information

          Journal
          8109978
          7018
          Risk Anal
          Risk Anal
          Risk analysis : an official publication of the Society for Risk Analysis
          0272-4332
          1539-6924
          19 January 2021
          08 October 2018
          February 2019
          28 January 2021
          : 39
          : 2
          : 402-413
          Affiliations
          [1 ]Kid Risk, Inc., 605 N. High St. #253, Columbus, OH 43215 USA
          [2 ]Division of Viral Diseases, Centers for Disease Control and Prevention, Atlanta, GA, USA
          Author notes
          [* ]Corresponding author: Kid Risk, Inc., 605 N. High St. #253, Columbus, OH 43215 USA
          Article
          PMC7842182 PMC7842182 7842182 hhspa1661519
          10.1111/risa.13214
          7842182
          30296340
          0c05039e-f124-4723-b889-e4e6f97bf9bd
          History
          Categories
          Article

          Disease outbreaks,Disease eradication,Infection transmission modeling,Poliomyelitis,Poliovirus,Disease surveillance,Environmental surveillance,Vaccination

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