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食果蝙蝠会根据声回放动态改变回声定位参数。

The frugivorous bat dynamically changes echolocation parameters in response to acoustic playback.

机构信息

Institute for Cell Biology and Neuroscience, Goethe University, 60438 Frankfurt am Main, Germany

Institute for Cell Biology and Neuroscience, Goethe University, 60438 Frankfurt am Main, Germany.

出版信息

J Exp Biol. 2021 Mar 18;224(Pt 6):jeb234245. doi: 10.1242/jeb.234245.

Abstract

Animals extract behaviorally relevant signals from 'noisy' environments. Echolocation behavior provides a rich system testbed for investigating signal extraction. When echolocating in acoustically enriched environments, bats show many adaptations that are believed to facilitate signal extraction. Most studies to date focused on describing adaptations in insectivorous bats while frugivorous bats have rarely been tested. Here, we characterize how the frugivorous bat adapts its echolocation behavior in response to acoustic playback. Since bats not only adapt their echolocation calls in response to acoustic interference but also with respect to target distances, we swung bats on a pendulum to control for distance-dependent call changes. Forward swings evoked consistent echolocation behavior similar to approach flights. By comparing the echolocation behavior recorded in the presence and absence of acoustic playback, we could precisely define the influence of the acoustic context on the bats' vocal behavior. Our results show that decrease the terminal peak frequencies of their calls when echolocating in the presence of acoustic playback. When considering the results at an individual level, it became clear that each bat dynamically adjusts different echolocation parameters across and even within experimental days. Utilizing such dynamics, bats create unique echolocation streams that could facilitate signal extraction in noisy environments.

摘要

动物从“嘈杂”的环境中提取行为相关的信号。回声定位行为为研究信号提取提供了一个丰富的系统测试平台。当在充满声音的环境中进行回声定位时,蝙蝠表现出许多被认为有助于信号提取的适应性。迄今为止,大多数研究都集中在描述食虫蝙蝠的适应性上,而很少对食果蝙蝠进行测试。在这里,我们描述了食果蝙蝠如何适应其回声定位行为以响应声音回放。由于蝙蝠不仅会根据声音干扰来调整它们的回声定位叫声,还会根据目标距离进行调整,因此我们通过钟摆让蝙蝠摆动来控制距离相关的叫声变化。向前摆动会引发与接近飞行相似的一致回声定位行为。通过比较有和没有声音回放时记录的回声定位行为,我们可以精确地定义声音环境对蝙蝠发声行为的影响。我们的结果表明,当蝙蝠在声音回放存在的情况下进行回声定位时,它们会降低叫声的末端峰值频率。当考虑到个体水平的结果时,很明显,每只蝙蝠在不同的实验日甚至在同一实验日中都会动态地调整不同的回声定位参数。蝙蝠利用这种动态特性,创造出独特的回声定位流,从而能够在嘈杂的环境中提取信号。

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