Abstract
Pandemics have been recognized as a serious global threat to humanity. To effectively prevent the spread and outbreak of the epidemic disease, theoretical models intended to depict the disease dynamics have served as the main tools to understand its underlying mechanisms and thus interrupt its transmission. Two commonly-used models are mean-field compartmental models and agent-based models (ABM). The former ones are analytically tractable for describing the dynamics of subpopulations by cannot explicitly consider the details of individual movements. The latter one is mainly used to the spread of epidemics at a microscopic level but have limited simulation scale for the randomness of the results. To overcome current limitations, a hierarchical hybrid modeling and simulation method, combining mean-field compartmental model and ABM, is proposed in this paper. Based on this method, we build a hybrid model, which takes both individual heterogeneity and the dynamics of sub-populations into account. The proposed model also investigates the impact of combined interventions (i. e. vaccination and pre-deployment training) for healthcare workers (HCWs) on the spread of disease. Taking the case of 2014-2015 Ebola Virus Disease (EVD) in Sierra Leone as an example, we examine its spreading mechanism and evaluate the effect of prevention by our parameterized and validated hybrid model. According to our simulation results, an optimal combination of pre-job training and vaccination deployment strategy has been identified. To conclude, our hybrid model helps informing the synergistic disease control strategies and the corresponding hierarchical hybrid modeling and simulation method can further be used to understand the individual dynamics during epidemic spreading in large scale population and help inform disease control strategies for different infectious disease.
Publisher
Public Library of Science (PLoS)
Reference49 articles.
1. Optimizing Real-Time Vaccine Allocation in a Stochastic SIR Model;C Nguyen;Plos One,2016
2. Optimal Control Design of Impulsive SQEIAR Epidemic Models with Application to COVID-19;Z Abbasi;Chaos Solitons & Fractals,2020
3. The outbreak pattern of SARS cases in China as revealed by a mathematical model;Z Zhang;Ecological Modelling,2007
4. Modeling Ebola virus disease transmissions with reservoir in a complex virus life ecology;T Berge;Mathematical Biosciences and Engineering,2018
5. A contribution to the mathematical theory of epidemics;WO Kermack;Proceedings of the royal society of london Series A, Containing papers of a mathematical and physical character,1927
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