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Synchronization of a Nonlinear Oscillator: Processing the Cf Component of the Echo-Response Signal in the Cochlea of the Mustached Bat

机译:非线性振荡器的同步:处理蝙蝠耳蜗中回声响应信号的Cf分量

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摘要

Cochlear microphonic potential (CM) was recorded from the CF2 region and the sparsely innervated zone (the mustached bat's cochlea fovea) that is specialized for analyzing the Doppler-shifted echoes of the first-harmonic (~61 kHz) of the constant-frequency component of the echolocation call. Temporal analysis of the CM, which is tuned sharply to the 61 kHz cochlear resonance, revealed that at the resonance frequency, and within 1 msec of tone onset, CM is broadly tuned with linear magnitude level functions. CM measured during the ongoing tone and in the ringing after tone offset is 50 dB more sensitive, is sharply tuned, has compressive level functions, and the phase leads onset CM by 90°: an indication that cochlear responses are amplified during maximum basilar membrane velocity. For high-level tones above the resonance frequency, CM appears at tone onset and after tone offset. Measurements indicate that the two oscillators responsible for the cochlear resonance, presumably the basilar and tectorial membranes, move together in phase during the ongoing tone, thereby minimizing net shear between them and hair cell excitation. For tones within 2 kHz of the cochlear resonance the frequency of CM measured within 2 msec of tone onset is not that of the stimulus but is proportional to it. For tones just below the cochlear resonance region CM frequency is a constant amount below that of the stimulus depending on CM measurement delay from tone onset. The frequency responses of the CM recorded from the cochlear fovea can be accounted for through synchronization between the nonlinear oscillators responsible for the cochlear resonance and the stimulus tone.
机译:从CF2区域和稀疏的神经支配区域(胡子蝙蝠的耳蜗中央凹)记录了耳蜗微音势(CM),该区域专门用于分析恒定频率分量的第一谐波(〜61 kHz)的多普勒频移回波回声定位调用。对CM进行了时态分析,将其调谐到61 kHz的耳蜗共振,发现在共振频率和音调发作1毫秒内,CM可以通过线性幅度水平函数进行广泛调谐。在进行中的音调期间和在音调偏移后的振铃中测得的CM灵敏度高50 dB,经过精确调音,具有压缩电平功能,并且相位使CM提前90°:这表明在最大基底膜速度期间耳蜗反应会放大。对于高于共振频率的高音,CM会在音调开始时和音调偏移之后出现。测量表明,负责耳蜗共振的两个振荡器,大概是基底膜和盖膜,在进行中的音调期间同相移动,从而使它们之间的净剪切和毛细胞激发最小化。对于在耳蜗共振的2 kHz范围内的音调,在音调发作2毫秒内测得的CM频率与刺激的频率无关,而是与其成正比的。对于正好在耳蜗共振区域下方的音调,取决于从音调开始的CM测量延迟,CM频率是低于刺激频率的恒定量。可以通过负责耳蜗共振和刺激音的非线性振荡器之间的同步来说明从耳蜗中央凹记录的CM的频率响应。

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