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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >Auditory fovea and Doppler shift compensation: adaptations for flutter detection in echolocating bats using CF-FM signals
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Auditory fovea and Doppler shift compensation: adaptations for flutter detection in echolocating bats using CF-FM signals

机译:听觉中央凹和多普勒频移补偿:使用CF-FM信号对回声定位蝙蝠中的颤振检测进行改编

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摘要

Rhythmical modulations in insect echoes caused by the moving wings of fluttering insects are behaviourally relevant information for bats emitting CF-FM signals with a high duty cycle. Transmitter and receiver of the echolocation system in flutter detecting foragers are especially adapted for the processing of flutter information. The adaptations of the transmitter are indicated by a flutter induced increase in duty cycle, and by Doppler shift compensation (DSC) that keeps the carrier frequency of the insect echoes near a reference frequency. An adaptation of the receiver is the auditory fovea on the basilar membrane, a highly expanded frequency representation centred to the reference frequency. The afferent projections from the fovea lead to foveal areas with an overrepresentation of sharply tuned neurons with best frequencies near the reference frequency throughout the entire auditory pathway. These foveal neurons are very sensitive to stimuli with natural and simulated flutter information. The frequency range of the foveal areas with their flutter processing neurons overlaps exactly with the frequency range where DS compensating bats most likely receive echoes from fluttering insects. This tight match indicates that auditory fovea and DSC are adaptations for the detection and evaluation of insects flying in clutter.
机译:由拍打昆虫的活动翅膀引起的昆虫回声中的节律调制是与蝙蝠在高占空比下发射CF-FM信号的行为相关的信息。扑动探测觅食者中回声定位系统的发射器和接收器特别适合于扑动信息的处理。发射机的适应性由抖动引起的占空比增加以及多普勒频移补偿(DSC)表示,该补偿使昆虫回波的载波频率保持在参考频率附近。接收器的一种适应是基底膜上的听觉中央凹,这是一个以参考频率为中心的高度扩展的频率表示。中央凹的传入投影导致中央凹区域,其中在整个听觉通路中,最佳频率附近的最佳频率的锐调神经元过多。这些中央凹神经元对具有自然和模拟颤动信息的刺激非常敏感。带有扑动处理神经元的中央凹区的频率范围与DS补偿蝙蝠最有可能接收来自扑动昆虫的回波的频率范围完全重叠。这种紧密匹配表明,听觉中央凹和DSC是检测和评估杂乱飞行的昆虫的适应物。

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