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The effect of host movement on viral transmission dynamics in a vector-borne disease system.

机译:宿主运动对媒介传播疾病系统中病毒传播动力学的影响。

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摘要

Many vector-borne pathogens whose primary vectors are generalists, such as Ixodid ticks, can infect a wide range of host species and are often zoonotic. Understanding their transmission dynamics is important for the development of disease management programmes. Models exist to describe the transmission dynamics of such diseases, but are necessarily simplistic and generally limited by knowledge of vector population dynamics. They are typically deterministic SIR-type models, which predict disease dynamics in a single, non-spatial, closed patch. Here we explore the limitations of such a model of louping-ill virus dynamics by challenging it with novel field data. The model was only partially successful in predicting Ixodes ricinus density and louping-ill virus prevalence at 6 Scottish sites. We extend the existing multi-host model by forming a two-patch model, incorporating the impact of roaming hosts. This demonstrates that host movement may account for some of the discrepancies between the original model and empirical data. We conclude that insights into the dynamics of multi-host vector-borne pathogens can be gained by using a simple two-patch model. Potential improvements to the model, incorporating aspects of spatial and temporal heterogeneity, are outlined.
机译:许多媒介传播的病原体是多才多艺的,其主要媒介物是I,例如d虱,它们可以感染多种宿主物种,并且通常是人畜共患病的。了解其传播动态对于制定疾病管理计划很重要。存在用于描述此类疾病传播动态的模型,但模型必须简单化,并且通常受媒介种群动态知识的限制。它们通常是确定性的SIR类型模型,可在单个非空间,封闭区域中预测疾病动态。在这里,我们通过向新颖的现场数据提出挑战,探索了这种大流行病病毒动力学模型的局限性。该模型仅能部分成功地预测苏格兰6个站点的蓖麻线虫密度和患病的流行率。我们通过形成两补丁模型来扩展现有的多主机模型,并结合了漫游主机的影响。这表明主机的移动可能会解释原始模型和经验数据之间的某些差异。我们得出结论,可以通过使用简单的两补丁模型获得对多宿主载体传播的病原体动力学的见解。概述了该模型的潜在改进,其中纳入了空间和时间异质性方面。

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