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Click-based echolocation in bats: not so primitive after all

机译:蝙蝠中基于点击的回声定位:毕竟不是那么原始

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摘要

Echolocating bats of the genus Rousettus produce click sonar signals, using their tongue (lingual echolocation). These signals are often considered rudimentary and are believed to enable only crude performance. However, the main argument supporting this belief, namely the click’s reported long duration, was recently shown to be an artifact. In fact, the sonar clicks of Rousettus bats are extremely short, ~50–100 μs, similar to dolphin vocalizations. Here, we present a comparison between the sonar systems of the ‘model species’ of laryngeal echolocation, the big brown bat (Eptesicus fuscus), and that of lingual echolocation, the Egyptian fruit bat (Rousettus aegyptiacus). We show experimentally that in tasks, such as accurate landing or detection of medium-sized objects, click-based echolocation enables performance similar to laryngeal echolocators. Further, we describe a sophisticated behavioral strategy for biosonar beam steering in clicking bats. Finally, theoretical analyses of the signal design—focusing on their autocorrelations and wideband ambiguity functions—predict that in some aspects, such as target ranging and Doppler-tolerance, click-based echolocation might outperform laryngeal echolocation. Therefore, we suggest that click-based echolocation in bats should be regarded as a viable echolocation strategy, which is in fact similar to the biosonar used by most echolocating animals, including whales and dolphins.
机译:Rousettus属的回声蝙蝠使用其舌头产生舌头声纳信号(舌头回声定位)。这些信号通常被认为是基本的,并且被认为只能实现粗略的性能。但是,最近证明支持这种观点的主要论点,即所报告的点击持续时间长,是一种假象。实际上,Rousettus蝙蝠的声纳咔嗒声非常短,约50-100μs,类似于海豚发声。在这里,我们对喉回声定位的“模型物种”的声纳系统(大棕蝙蝠(Eptesicus fuscus))和舌状回声定位的声纳系统(埃及果蝠(Rousettus aegyptiacus))进行了比较。我们通过实验表明,在诸如准确着陆或检测中型物体等任务中,基于点击的回声定位可实现与喉部回声定位器类似的性能。此外,我们描述了单击蝙蝠中生物声纳束操纵的复杂的行为策略。最后,针对信号设计的理论分析(着重于其自相关和宽带歧义函数)可以预测,在某些方面(例如目标测距和多普勒容限),基于点击的回声定位可能会优于喉头回声定位。因此,我们建议应将蝙蝠中基于点击的回声定位视为可行的回声定位策略,实际上,它与大多数回声定位动物(包括鲸鱼和海豚)使用的生物声纳相似。

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