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Time-dependent vaccine efficacy estimation quantified by a mathematical model.


ABSTRACT: In this paper we calculate the variation of the estimated vaccine efficacy (VE) due to the time-dependent force of infection resulting from the difference between the moment the Clinical Trial (CT) begins and the peak in the outbreak intensity. Using a simple mathematical model we tested the hypothesis that the time difference between the moment the CT begins and the peak in the outbreak intensity determines substantially different values for VE. We exemplify the method with the case of the VE efficacy estimation for one of the vaccines against the new coronavirus SARS-CoV-2.

SUBMITTER: Loria J 

PROVIDER: S-EPMC10174497 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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Time-dependent vaccine efficacy estimation quantified by a mathematical model.

Loria Jennifer J   Albani Vinicius V L VVL   Coutinho Francisco A B FAB   Covas Dimas T DT   Struchiner Claudio J CJ   Zubelli Jorge P JP   Massad Eduardo E  

PloS one 20230511 5


In this paper we calculate the variation of the estimated vaccine efficacy (VE) due to the time-dependent force of infection resulting from the difference between the moment the Clinical Trial (CT) begins and the peak in the outbreak intensity. Using a simple mathematical model we tested the hypothesis that the time difference between the moment the CT begins and the peak in the outbreak intensity determines substantially different values for VE. We exemplify the method with the case of the VE e  ...[more]

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