A minimal model of boosting and waning iin a recurrent seasonal epidemic

Fuente: arXiv
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Main Authors: Chen, Siyu, Sankoff, David
Format: Preprint
Published: 2024
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author Chen, Siyu
Sankoff, David
author_facet Chen, Siyu
Sankoff, David
contents We propose a model of the immunity to a cyclical epidemic disease taking account not only of seasonal boosts during the infectious season, but also of residual immunity remaining from one season to the next. The focus is on the exponential waning process over successive cycles, imposed on the temporal distribution of infections or exposures over a season. This distribution, interacting with the waning function, is all that is necessary to reproduce, in mathematically closed form, the mechanical cycle of boosting and waning immunity characteristic of recurrent seasonal infectious disease. Distinct from epidemiological models predicting numbers of individuals moving between infectivity compartments, our result enables us to directly estimate parameters of waning and the infectivity distribution. We can naturally iterate the cyclical process to simulate immunity trajectories over many years and thus to quantify the strong relationship between residual immunity and the time elapsed between annual infectivity peaks.
format Preprint
id arxiv_https___arxiv_org_abs_2404_12865
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A minimal model of boosting and waning iin a recurrent seasonal epidemic
Chen, Siyu
Sankoff, David
Populations and Evolution
We propose a model of the immunity to a cyclical epidemic disease taking account not only of seasonal boosts during the infectious season, but also of residual immunity remaining from one season to the next. The focus is on the exponential waning process over successive cycles, imposed on the temporal distribution of infections or exposures over a season. This distribution, interacting with the waning function, is all that is necessary to reproduce, in mathematically closed form, the mechanical cycle of boosting and waning immunity characteristic of recurrent seasonal infectious disease. Distinct from epidemiological models predicting numbers of individuals moving between infectivity compartments, our result enables us to directly estimate parameters of waning and the infectivity distribution. We can naturally iterate the cyclical process to simulate immunity trajectories over many years and thus to quantify the strong relationship between residual immunity and the time elapsed between annual infectivity peaks.
title A minimal model of boosting and waning iin a recurrent seasonal epidemic
topic Populations and Evolution
url https://arxiv.org/abs/2404.12865