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Effects of heterogeneity in infection-exposure history and immunity on the dynamics of a protozoan parasite

机译:感染暴露史和免疫中异质性对原生动物寄生虫动力学的影响

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摘要

Infection systems where traits of the host, such as acquired immunity, interact with the infection process can show complex dynamic behaviour with counter-intuitive results. In this study, we consider the traits ‘immune status’ and ‘exposure history’, and our aim is to assess the influence of acquired individual heterogeneity in these traits. We have built an individual-based model of Eimeria acervulina infections, a protozoan parasite with an environmental stage that causes coccidiosis in chickens. With the model, we simulate outbreaks of the disease under varying initial contaminations. Heterogeneity in the traits arises stochastically through differences in the dose and frequency of parasites that individuals pick up from the environment. We find that the relationship between the initial contamination and the severity of an outbreak has a non-monotonous ‘wave-like’ pattern. This pattern can be explained by an increased heterogeneity in the host population caused by the infection process at the most severe outbreaks. We conclude that when dealing with these types of infection systems, models that are used to develop or evaluate control measures cannot neglect acquired heterogeneity in the host population traits that interact with the infection process.
机译:宿主特征(例如获得性免疫)与感染过程相互作用的感染系统可能会显示复杂的动态行为,并带有与直觉相反的结果。在这项研究中,我们考虑了“免疫状态”和“接触历史”特征,我们的目的是评估获得性个体异质性对这些特征的影响。我们建立了一个基于个体的艾美球虫艾美球虫感染模型,这是一种具有环境阶段的原生动物寄生虫,会导致鸡发生球虫病。使用该模型,我们可以模拟在各种初始污染下的疾病暴发。性状的异质性是通过个体从环境中拾取的寄生虫的剂量和频率的差异随机产生的。我们发现,初始污染与爆发严重程度之间的关系具有非单调的“波状”模式。这种模式可以通过最严重的疫情爆发过程中的感染过程导致宿主种群异质性增加来解释。我们得出的结论是,在处理这些类型的感染系统时,用于开发或评估控制措施的模型不能忽略与感染过程相互作用的宿主群体性状的获得性异质性。

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