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A simple model for the within-host dynamics of a protozoan parasite

机译:原生动物寄生虫宿主内部动力学的简单模型

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摘要

The dynamics of parasite-host systems can be complicated if the parasite life cycle contains an obligatory environmental stage and if the hosts' immunity increases upon re-infection. The dynamics then greatly depend on the relation between infection history and parasite uptake and excretion of individual hosts. In an effort to better understand such systems, we study Eimeria spp. in chickens as our model. In this paper we take a first step and study the within-host dynamics of Eimeria spp., transmitted through oocysts in the environment, with a mathematical model for the parasite life cycle in discrete time, interacting with a single variable describing the immune response. The model can explain various types of oocyst input-output behaviour as described in previous experiments, in particular the characteristic crowding effect, which causes a decreasing oocyst production with increasing single dose oocyst uptake. Oocyst excretion during constant oocyst uptake (trickle infection) and the immunizing effect of single and trickle infections also appears in accordance with published experiments. The model seems a good description of oocyst input-output behaviour in individual hosts; it provides a solid basis for the study of between-host dynamics, where individuals interact in a common environment, thereby affecting their own and each other's infection pattern.
机译:如果寄生虫的生命周期包含强制性的环境阶段,并且如果宿主在重新感染后免疫力增强,则寄生虫宿主系统的动力学可能会变得复杂。然后,动力学很大程度上取决于感染史与个体宿主的寄生虫摄取和排泄之间的关系。为了更好地理解此类系统,我们研究了Eimeria spp。以鸡为模型。在本文中,我们迈出了第一步,研究了通过环境中的卵囊传播的艾美球虫属的宿主内部动力学,并建立了离散时间内寄生虫生命周期的数学模型,并与描述免疫反应的单个变量相互作用。该模型可以解释如先前实验中所述的各种类型的卵囊输入-输出行为,特别是特征性的拥挤效应,其导致随着单剂量卵囊摄取的增加,卵囊产量减少。根据公开的实验,在持续的卵囊摄取(tri流感染)过程中卵囊排泄以及单一和trick流感染的免疫效果也出现了。该模型似乎很好地描述了单个宿主中卵囊的输入输出行为。它为研究宿主之间的动力学提供了坚实的基础,其中个体在共同的环境中相互作用,从而影响他们自己和彼此的感染模式。

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