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Precise Doppler shift compensation in the hipposiderid bat Hipposideros armiger

机译:精确的多普勒频移补偿在河马蝙蝠中

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摘要

Bats of the Rhinolophidae and Hipposideridae families, and Pteronotus parnellii, compensate for Doppler shifts generated by their own flight movement. They adjust their call frequency such that the frequency of echoes coming from ahead fall in a specialized frequency range of the hearing system, the auditory fovea, to evaluate amplitude and frequency modulations in echoes from fluttering prey. Some studies in hipposiderids have suggested a less sophisticated or incomplete Doppler shift compensation. To investigate the precision of Doppler shift compensation in Hipposideros armiger, we recorded the echolocation and flight behaviour of bats flying to a grid, reconstructed the flight path, measured the flight speed, calculated the echo frequency, and compared it with the resting frequency prior to each flight. Within each flight, the average echo frequency was kept constant with a standard deviation of 110 Hz, independent of the flight speed. The resting and reference frequency were coupled with an offset of 80 Hz; however, they varied slightly from flight to flight. The precision of Doppler shift compensation and the offset were similar to that seen in Rhinolophidae and P. parnellii. The described frequency variations may explain why it has been assumed that Doppler shift compensation in hipposiderids is incomplete.
机译:Rhinoolophidae和Hipposideridae家族的蝙蝠以及Pteronotus parnellii的蝙蝠可以补偿由于它们自己的飞行运动而产生的多普勒频移。他们调整呼叫频率,以使来自前方的回声频率落入听觉中心凹的助听器系统的特定频率范围内,以评估猎物扑动的回声的振幅和频率调制。对河马的某些研究表明,多普勒频移补偿的复杂度较低或不完全。为了研究希波塞德罗斯(Hipposideros)猩猩中多普勒频移补偿的精度,我们记录了蝙蝠飞向网格的回声位置和飞行行为,重构了飞行路径,测量了飞行速度,计算了回声频率,并将其与静止频率进行比较。每个航班。在每次飞行中,平均回声频率保持恒定,标准偏差为110 Hz,与飞行速度无关。静止和参考频率与80 Hz的偏移耦合;但是,它们之间的差异略有不同。多普勒频移补偿和偏移的精度与Rhinoolophidae和P. parnellii相似。所描述的频率变化可以解释为什么已经假设在河马类中多普勒频移补偿是不完整的。

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