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Taking animal tracking to new depths : synthesizing horizontal-vertical movement relationships for four marine predators

机译:将动物追踪推向新的深度:合成四个海洋捕食者的水平-垂直运动关系

摘要

In animal ecology, a question of key interest for aquatic species is how changes in movement behavior are related in the horizontal and vertical dimensions when individuals forage. Alternative theoretical models and inconsistent empirical findings mean that this question remains unresolved. Here we tested expectations by incorporating the vertical dimension (dive information) when predicting switching between movement states (“resident” or “directed”) within a state-space model. We integrated telemetry-based tracking and diving data available for four seal species (southern elephant, Weddell, antarctic fur, and crabeater) in East Antarctica. Where possible, we included dive variables derived from the relationships between (1) dive duration and depth (as a measure of effort), and (2) dive duration and the postdive surface interval (as a physiological measure of cost). Our results varied within and across species, but there was a general tendency for the probability of switching into “resident” state to be positively associated with shorter dive durations (for a given depth) and longer postdive surface intervals (for a given dive duration). Our results add to a growing body of literature suggesting that simplistic interpretations of optimal foraging theory based only on horizontal movements do not directly translate into the vertical dimension in dynamic marine environments. Analyses that incorporate at least two dimensions can test more sophisticated models of foraging behavior.
机译:在动物生态学中,对水生物种最感兴趣的问题是当个体觅食时,运动行为的变化在水平和垂直方向上如何相关。替代的理论模型和不一致的经验发现意味着这个问题尚未解决。在这里,我们在预测状态空间模型内的运动状态(“驻留”或“有向”)之间的切换时,通过合并垂直维度(潜水信息)来测试期望值。我们集成了基于遥测的跟踪和潜水数据,可用于南极东部的四种海豹物种(南象,威德尔,南极毛皮和海龟)。在可能的情况下,我们包括从(1)潜水持续时间和深度(作为努力的度量)与(2)潜水持续时间和潜水后表面间隔(作为成本的生理度量)之间的关系得出的潜水变量。我们的结果在不同物种内和不同物种之间都不同,但是总的趋势是,切换到“驻留”状态的概率与较短的潜水时间(对于给定的深度)和较长的潜水后表面间隔(对于特定的潜水时间)成正相关。我们的结果增加了越来越多的文献,这表明仅基于水平运动的最佳觅食理论的简单解释在动态海洋环境中不会直接转化为垂直方向。至少包含两个维度的分析可以测试更复杂的觅食行为模型。

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