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Flutter sensitivity in FM bats. Part I: delay modulation

机译:FM蝙蝠中的颤动敏感性。 第一部分:延迟调制

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摘要

Echolocating bats measure target distance by the time delay between call and echo. Target movement such as the flutter of insect wings induces delay modulations. Perception of delay modulations has been studied extensively in bats, but only concerning how well bats discriminate flutter frequencies, never with regard to flutter magnitude. We used an auditory virtual reality approach to generate changes in echo delay that were independent of call repetition rate, mimicking fluttering insect wings. We show that in the frequency-modulating (FM) bat Phyllostomus discolor, the sensitivity for modulations in echo delay depends on the rate of the modulation, with bats being most sensitive at modulation rates below 20Hz and above 50Hz. The very short duration of their calls compels FM bats to evaluate slow modulations (about 100Hz) across entire echo sequences. This makes them susceptible to interference between their own call repetition rate and the modulation rate. We propose that this phenomenon constitutes an echo-acoustic wagon-wheel effect. We further demonstrate how at high modulation rates, flutter sensitivity could be rescued by using spectral and temporal cues introduced by Doppler distortions. Thus, Doppler distortions may play a crucial role in flutter sensitivity in the hundreds of FM species worldwide.
机译:呼应蝙蝠呼叫和回声之间的时间延迟测量目标距离。目标运动,例如昆虫翅膀的颤动诱导延迟调制。在蝙蝠中广泛地研究了对延迟调制的感知,但只有关于蝙蝠鉴别颤动频率的差异,从未相对于颤振幅度的研究。我们使用了听觉虚拟现实方法来产生与呼叫重复率无关的回声延迟的变化,模仿飘飘昆虫翅膀。我们表明,在频率调节(FM)BAT Phyllostomus褪色中,回声延迟中调制的灵敏度取决于调制的速率,蝙蝠在20Hz以下的调制率和50Hz以上的调制率最敏感。呼叫的非常短的持续时间将FM蝙蝠跨越整个回声序列评估慢度调制(&大约100hz)。这使得它们易于在自己的呼叫重复率和调制率之间干扰。我们建议这种现象构成回声声车轮效果。我们进一步证明了如何在高调制率下,通过使用多普勒失真引入的光谱和时间线索可以救出颤音灵敏度。因此,多普勒失真可能在全球数百个FM种类中的颤音灵敏度中起着至关重要的作用。

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