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首页> 外文期刊>Journal of Mathematical Biology >Models of kleptoparasitism on networks: the effect of population structure on food stealing behaviour
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Models of kleptoparasitism on networks: the effect of population structure on food stealing behaviour

机译:网络网络思想主义模型:人口结构对粮食窃取行为的影响

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摘要

The behaviour of populations consisting of animals that interact with each other for their survival and reproduction is usually investigated assuming homogeneity amongst the animals. However, real populations are non-homogeneous. We focus on an established model of kleptoparasitism and investigate whether and how much population heterogeneities can affect the behaviour of kleptoparasitic populations. We consider a situation where animals can either discover food items by themselves or attempt to steal the food already discovered by other animals through aggressive interactions. Representing the likely interactions between animals by a network, we develop pairwise and individual-based models to describe heterogeneities in both the population structure and other individual characteristics, including searching and fighting abilities. For each of the models developed we derive analytic solutions at the steady state. The high accuracy of the solutions is shown in various examples of populations with different degrees of heterogeneity. We observe that highly heterogeneous structures can significantly affect the food intake rate and therefore the fitness of animals. In particular, the more highly connected animals engage in more conflicts, and have a reduced food consumption rate compared to poorly connected animals. Further, for equivalent average level of connectedness, the average consumption rate of a population with heterogeneous structure can be higher.
机译:群体的行为由彼此相互作用的动物用于其存活和繁殖,通常在动物之间进行均匀性来研究。然而,真正的人群是非均匀的。我们专注于建立的思科遗传学模型,并调查人口的异质性是否会影响Kleptoparasitic群体的行为。我们认为动物可以通过自己发现食物或试图通过激进的相互作用窃取其他动物已经发现的食物的情况。代表网络通过网络之间的相互作用,我们开发成对和基于个别的模型,以描述人口结构和其他个人特征的异质性,包括搜索和战斗能力。对于每个模型开发的,我们在稳定状态下推出了分析解决方案。溶液的高精度显示在具有不同非异质程度的群体的各种实例中。我们观察到,高度异质的结构可以显着影响食物进气率,因此可以显着影响动物的适应性。特别是,与持久的动物相比,更高度连接的动物从事更多的冲突,并且具有降低的食物消耗率。此外,对于相应的平均分方程,具有异质结构的群体的平均消耗率可以更高。

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