Williams, Bevelynn Fay ORCID: https://orcid.org/0000-0002-9119-6568 (2022) Mechanistic intracellular and within-host models of bacterial and viral infections. PhD thesis, University of Leeds.
Abstract
This thesis explores mathematical models for the infection dynamics of two types of pathogens, namely the specific bacterium Bacillus anthracis, which is the causative agent of anthrax, and viruses more generally. I present a stochastic multi-scale model for describing B. anthracis infection at the intracellular and within-host levels. The intracellular model uses a Markov chain to describe the key interaction between B. anthracis spores and host cells, and to predict the distribution of outcomes from this interaction. Key outputs are then used to connect this intracellular model to a within-host model of inhalational anthrax, which aims to offer a realistic mechanistic description of the infection dynamics, as well the probability of infection for a given inhaled dose. The multi-scale model is calibrated via a Bayesian approach, using various experimental in vitro and in vivo data. Stochastic models of virus kinetics are also studied, with a focus on finding probability distributions for the burst size and cellular reproduction number. It is shown how these distributions are affected by modelling choices, and how these distributions in turn affect the probability that the virus and infected cells will be eliminated before an established infection can occur.
Metadata
Supervisors: | Lopez Garcia, Martin and Lythe, Grant and Molina Paris, Carmen |
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Related URLs: | |
Keywords: | Markov process, approximate Bayesian computation, stochastic model, Bacillus anthracis, intracellular model, spore germination, rupture size distribution, time to macrophage rupture, dose-response, viral burst size, reproduction number |
Awarding institution: | University of Leeds |
Academic Units: | The University of Leeds > Faculty of Maths and Physical Sciences (Leeds) > School of Mathematics (Leeds) > Applied Mathematics (Leeds) |
Identification Number/EthosID: | uk.bl.ethos.878048 |
Depositing User: | Miss Bevelynn Fay Williams |
Date Deposited: | 23 Mar 2023 13:02 |
Last Modified: | 11 May 2023 09:53 |
Open Archives Initiative ID (OAI ID): | oai:etheses.whiterose.ac.uk:32422 |
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