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Prey field switching based on preferential behaviour can induce Lévy flights

机译:基于偏好行为的猎物场切换会诱使Lévy飞行

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摘要

Using the foraging movements of an insectivorous bat, Myotis mystacinus, we describe temporal switching of foraging behaviour in response to resource availability. These observations conform to predictions of optimized search under the Lévy flight paradigm. However, we suggest that this occurs as a result of a preference behaviour and knowledge of resource distribution. Preferential behaviour and knowledge of a familiar area generate distinct movement patterns as resource availability changes on short temporal scales. The behavioural response of predators to changes in prey fields can elicit different functional responses, which are considered to be central in the development of stable predator–prey communities. Recognizing how the foraging movements of an animal relate to environmental conditions also elucidates the evolution of optimized search and the prevalence of discrete strategies in natural systems. Applying techniques that use changes in the frequency distribution of movements facilitates exploration of the processes that underpin behavioural changes.
机译:利用食虫蝙蝠Myotis mystacinus的觅食运动,我们描述了随资源可用性而觅食行为的时间转换。这些观察结果符合Lévy飞行范例下优化搜索的预测。但是,我们建议,这是由于偏好行为和对资源分配的了解而发生的。随着资源可用性在短时间尺度上的变化,熟悉区域的偏好行为和知识会产生不同的运动模式。捕食者对猎物场变化的行为反应可以引起不同的功能反应,这被认为是稳定捕食者-猎物社区发展的核心。认识到动物的觅食运动与环境条件之间的关系,也阐明了优化搜索的发展以及自然系统中离散策略的普遍性。应用在运动频率分布中使用变化的技术有助于探索支撑行为变化的过程。

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