On a stochastic epidemic SIR model with non homogenous population: a toy model for HIV

Fuente: arXiv
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Main Author: Rovira, Carles
Format: Preprint
Published: 2025
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author Rovira, Carles
author_facet Rovira, Carles
contents In this paper we generalise a simple discrete time stochastic SIR type model defined by Tuckwell and Williams. The SIR model by Tuckwell and Williams assumes a homogeneous population, a fixed infectious period, and a strict transition from susceptible to infected to recovered. In contrast, our model introduces two groups, $A$ and $B$, where group $B$ has a higher risk of infection due to increased contact rates. Additionally, the duration in the infected class follows a probability distribution rather than being fixed. Finally, individuals in group $B$ can transition directly to the recovered class R, allowing us to analyze the impact of this preventive measure on disease spread. Finally, we apply this model to the spread of HIV, analyzing how risk behaviors, rapid testing, and PrEP-like therapies influence the epidemic dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2504_13556
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle On a stochastic epidemic SIR model with non homogenous population: a toy model for HIV
Rovira, Carles
Populations and Evolution
Probability
Physics and Society
92D30, 60J10, 60H10
In this paper we generalise a simple discrete time stochastic SIR type model defined by Tuckwell and Williams. The SIR model by Tuckwell and Williams assumes a homogeneous population, a fixed infectious period, and a strict transition from susceptible to infected to recovered. In contrast, our model introduces two groups, $A$ and $B$, where group $B$ has a higher risk of infection due to increased contact rates. Additionally, the duration in the infected class follows a probability distribution rather than being fixed. Finally, individuals in group $B$ can transition directly to the recovered class R, allowing us to analyze the impact of this preventive measure on disease spread. Finally, we apply this model to the spread of HIV, analyzing how risk behaviors, rapid testing, and PrEP-like therapies influence the epidemic dynamics.
title On a stochastic epidemic SIR model with non homogenous population: a toy model for HIV
topic Populations and Evolution
Probability
Physics and Society
92D30, 60J10, 60H10
url https://arxiv.org/abs/2504.13556