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Inconspicuous echolocation in hoary bats (Lasiurus cinereus)

机译:在白蝙蝠(灰黄)的回声定位不明显

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摘要

Echolocation allows bats to occupy diverse nocturnal niches. Bats almost always use echolocation, even when other sensory stimuli are available to guide navigation. Here, using arrays of calibrated infrared cameras and ultrasonic microphones, we demonstrate that hoary bats (Lasiurus cinereus) use previously unknown echolocation behaviours that challenge our current understanding of echolocation. We describe a novel call type (‘micro’ calls) that has three orders of magnitude less sound energy than other bat calls used in open habitats. We also document bats flying close to microphones (less than 3 m) without producing detectable echolocation calls. Acoustic modelling indicates that bats are not producing calls that exceed 70–75 dB at 0.1 m, a level that would have little or no known use for a bat flying in the open at speeds exceeding 7 m s−1. This indicates that hoary bats sometimes fly without echolocation. We speculate that bats reduce echolocation output to avoid eavesdropping by conspecifics during the mating season. These findings might partly explain why tens of thousands of hoary bats are killed by wind turbines each year. They also challenge the long-standing assumption that bats—model organisms for sensory specialization—are reliant on sonar for nocturnal navigation.
机译:回声使蝙蝠占据各种夜间生态位。蝙蝠几乎总是使用回声定位,即使有其他感觉刺激可用于引导导航。在这里,通过使用一系列校准的红外热像仪和超声波麦克风,我们证明了白蝙蝠(Lasiurus cinereus)使用以前未知的回声定位行为,这挑战了我们对回声定位的当前理解。我们描述了一种新颖的叫声类型(“微型”叫声),其声音能量比在开放栖息地中使用的其他蝙蝠叫声少三个数量级。我们还记录了蝙蝠在靠近麦克风(小于3 m)的地方飞行而没有产生可检测到的回声定位呼叫的情况。声学模型表明,蝙蝠在0.1 m处不会发出超过70–75 dB的声音,对于以超过7 ms -1 的速度在空中飞行的蝙蝠来说,这种水平几乎没有或没有用处。这表明白蝙蝠有时会在没有回声定位的情况下飞行。我们推测蝙蝠会减少回声定位输出,以避免在交配季节被同种动物偷听。这些发现可能部分解释了为什么每年都有成千上万的蝙蝠被风力涡轮机杀死。它们还挑战了长期以来的假设,即蝙蝠(用于感官专业化的模型生物)依赖声纳进行夜间航行。

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