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A Network Control Theory Approach to Modeling and Optimal Control of Zoonoses: Case Study of Brucellosis Transmission in Sub-Saharan Africa

机译:人畜共患病建模和最优控制的网络控制理论方法:以撒哈拉以南非洲布鲁氏菌病传播为例

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摘要

Zoonotic diseases (ones that infect both animals and humans) exact a significant economic and human cost, especially in developing economies. Developing effective policies for mitigating zoonotic infections is often challenging, both because of the complexity of their spread and because very limited resources must be allocated among a range of control options. It is increasingly becoming clear that mathematical modeling, and in particular network modeling, of disease spread can aid in analyzing and mitigating these spreads. Here, we develop a network model for the spread and control of a zoonotic infection, focusing particularly on a case study of brucellosis transmission and control among wildlife, cattle herds, and human subpopulations in an agricultural community. After motivating and formulating the model, we introduce tools for 1) parameterization of the model from time-course and snapshot data, 2) simulation and analysis of the model, and 3) optimal design of control policies using the model. The study shows that the network model can inform design of heterogeneous control policies that mitigate zoonotic disease spread with limited resources.
机译:人畜共患病(既感染动物又感染人类的​​疾病)要付出巨大的经济和人力成本,特别是在发展中经济体中。制定有效的政策来减轻人畜共患病的感染通常具有挑战性,这既是由于其传播的复杂性,又因为必须在一系列控制方案中分配非常有限的资源。越来越明显的是,疾病传播的数学模型,特别是网络模型可以帮助分析和减轻这些传播。在这里,我们开发了一种用于传播和控制人畜共患病感染的网络模型,尤其是针对农业社区中野生生物,牛群和人类亚种群之间布鲁氏菌病传播和控制的案例研究。在对模型进行激励和公式化之后,我们介绍了以下工具:1)根据时程和快照数据对模型进行参数化; 2)对模型进行仿真和分析; 3)使用模型对控制策略进行优化设计。研究表明,该网络模型可以为设计资源有限的减轻人畜共患疾病传播的异构控制策略提供信息。

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