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Main Author: Segovia, Carlos
Format: Preprint
Published: 2022
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Online Access:https://arxiv.org/abs/2206.03269
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author Segovia, Carlos
author_facet Segovia, Carlos
contents This work provides a geometric version of the next-generation matrix method for obtaining the basic reproduction number of an epidemiological model. We exhibit a certain correspondence between any system of ODEs and Petri nets. We observe that any epidemiological model has the basic structures found in the SIR model of Kermack-McKendrick. This means that the basic reproduction number depends only on three substructures inside the Petri net, which are also given by three Petri nets inside, representing the susceptible population, the infection process, and the infected population. The five assumptions of the next-generation matrix method given by van den Driessche-Watmough can be described geometrically using Petri nets. Thus, the next-generation matrix results in a matrix of flows between the infection compartments with a dominant eigenvalue given by the basic reproduction number.
format Preprint
id arxiv_https___arxiv_org_abs_2206_03269
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Petri nets in epidemiology
Segovia, Carlos
Populations and Evolution
92B05, 68R01
This work provides a geometric version of the next-generation matrix method for obtaining the basic reproduction number of an epidemiological model. We exhibit a certain correspondence between any system of ODEs and Petri nets. We observe that any epidemiological model has the basic structures found in the SIR model of Kermack-McKendrick. This means that the basic reproduction number depends only on three substructures inside the Petri net, which are also given by three Petri nets inside, representing the susceptible population, the infection process, and the infected population. The five assumptions of the next-generation matrix method given by van den Driessche-Watmough can be described geometrically using Petri nets. Thus, the next-generation matrix results in a matrix of flows between the infection compartments with a dominant eigenvalue given by the basic reproduction number.
title Petri nets in epidemiology
topic Populations and Evolution
92B05, 68R01
url https://arxiv.org/abs/2206.03269