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首页> 外文期刊>Marine ecology progress series >Distinguishing residency behavior from random movements using passive acoustic telemetry
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Distinguishing residency behavior from random movements using passive acoustic telemetry

机译:使用被动声遥测的随机运动区分居住行为

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Passive acoustic telemetry is a powerful tool for tracking aquatic animals, yet the data derived from acoustic tags have important limitations. For example, inferences about habitat associations rely on statistical correlations, where frequent observations within a given habitat are interpreted as habitat preference. However, tagging data are not measures of movement per se, or even behavior more generally; rather, tagging data are representations of locations in space and time and can reflect limitations in the sampling technology as much as animal behavior. This interaction between sampling technology and resulting data means it is necessary to have some null expectation in order to evaluate a hypothesis predicting a habitat association. Here, we developed a null model for animal movement based on random walk simulations and examined our ability to distinguish random from intentioned movements when using passive acoustics. By comparing simulations to telemetry observations, we provide guidance for both data interpretation and future study design. We found that (1) real-world telemetry observations cannot be distinguished from random walks during initial portions of sampling and (2) researchers must account for the interaction between study duration and the ratio of organismal step size relative to detection radius when calculating site fidelity. To assist in the interpretation of passive acoustic data, we provide an analytical solution to forecast when real-world observations are reliably distinguishable from simple random walks.
机译:被动声学遥测是一种用于跟踪水生动物的强大工具,但源自声标签的数据具有重要的局限性。例如,关于栖息地关联的推论依赖于统计相关性,其中给定栖息地的频繁观察被解释为栖息地偏好。然而,标记数据不是衡量的运动,甚至更普遍的行为;相反,标记数据是空间和时间的位置的表示,并且可以反映采样技术的限制与动物行为一样多。采样技术与结果数据之间的这种相互作用意味着有必要具有一些空的期望,以便评估预测栖息地协会的假设。在这里,我们为基于随机步道模拟开发了一种用于动物运动的空模型,并在使用被动声学时检查了我们在有意运动中区分随机的能力。通过将模拟与遥测观测进行比较,我们为数据解释和未来的研究设计提供了指导。我们发现(1)实际遥测观察不能与样品初始部分的随机行走区分开,(2)研究人员必须考虑研究持续时间与有机体步长在计算网站保真时相对于检测到半径之间的相互作用。 。为了帮助解释被动声学数据,我们提供了一种分析解决方案,以预测当实世界观察从简单随机散步可靠地区分。

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