Incorporating individual health-protective decisions into disease transmission models: A mathematical framework

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Abstract

It is anticipated that the next generation of computational epidemic models will simulate both infectious disease transmission and dynamic human behaviour change. Individual agents within a simulation will not only infect one another, but will also have situational awareness and a decision algorithm that enables them to modify their behaviour. This paper develops such a model of behavioural response, presenting a mathematical interpretation of a well-known psychological model of individual decision making, the health belief model, suitable for incorporation within an agent-based disease-transmission model. We formalize the health belief model and demonstrate its application in modelling the prevalence of facemask use observed over the course of the 2003 Hong Kong SARS epidemic, a well-documented example of behaviour change in response to a disease outbreak. © 2011 The Royal Society.

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Durham, D. P., & Casman, E. A. (2012). Incorporating individual health-protective decisions into disease transmission models: A mathematical framework. Journal of the Royal Society Interface, 9(68), 562–570. https://doi.org/10.1098/rsif.2011.0325

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