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Determinism as a statistical metric for ecologically important recurrent behaviors with trapline foraging as a case study

机译:确定性作为生态学上重要的周期性行为的统计指标,以捕食为例

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Patterns of discrete behaviors tied together in specific sequences are essential for the formation of complex behavioral phenomena. Such behavioral sequences can be of critical ecological importance, for example relating to resource acquisition, predator evasion, and sexual selection. The role of sequential behaviors in ecology, however, is understudied, in substantial part due to the difficulty of quantifying complex sequences. Here, we present a modified version of determinism (DET) from recurrence quantification analysis (RQA) as a standard metric for quantifying sequential behaviors. We focus on a case study of trapline foraging, a taxonomically widespread behavioral strategy in which animals repeatedly visit spatially fixed resources in a predictable order. Using a bumble bee movement dataset, we demonstrate how to calculate DET and create and interpret recurrence plots, which visually demonstrate patterns in foraging sequences. We show a new method for statistical comparisons of DET scores and assess the sensitivity of DET to resource density using simulated foraging sequences. We find that DET complements and offers distinct advantages over previously available methods for many questions and datasets since it does not depend on any particular resource arrangement or experimental setup and is relatively insensitive to resource density. These features make DET a powerful tool for comparing sequential behaviors between differing environments in a range of ecologically important contexts.
机译:以特定顺序捆绑在一起的离散行为模式对于形成复杂的行为现象至关重要。这样的行为顺序可能具有至关重要的生态重要性,例如,与资源获取,掠食者逃避和性选择有关。然而,主要是由于难以对复杂序列进行定量分析,因此没有充分研究顺序行为在生态学中的作用。在这里,我们从递归量化分析(RQA)中提出确定论(DET)的改进版本,作为量化顺序行为的标准度量。我们专注于陷阱陷阱觅食的案例研究,陷阱觅食是一种分类学广泛的行为策略,其中动物以可预测的顺序反复访问空间固定的资源。使用大黄蜂运动数据集,我们演示了如何计算DET以及创建和解释递归图,这些图直观地演示了觅食序列中的模式。我们展示了一种统计比较DET分数的新方法,并使用模拟觅食序列评估了DET对资源密度的敏感性。我们发现,对于许多问题和数据集,DET相对于先前可用的方法具有补充和独特的优势,因为它不依赖于任何特定的资源安排或实验设置,并且对资源密度相对不敏感。这些功能使DET成为在一系列重要生态环境中比较不同环境之间顺序行为的强大工具。

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