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听神经纤维对噪声刺激的反应显示出耳蜗的非线性特征。

Responses of auditory nerve fibres to noise stimuli show cochlear nonlinearities.

作者信息

Møller A R

出版信息

Acta Otolaryngol. 1978 Jul-Aug;86(1-2):1-8.

PMID:696288
Abstract

The frequency selectivity of the peripheral auditory frequency analyser was determined on the basis of recordings from single auditory nerve fibres in the rat, using pseudorandom noise as stimulus. The impulse response function was arrived at by cross-correlating period histograms of the recorded activity with the noise. Frequency transfer functions were computed by Fourier transformation of the derived impulse response function. The impulse response function was observed to become shorter with increasing stimulus intensity. A concomitant widening of the frequency transfer function and a downward shift in the centre frequency were seen. Since the method used is insensitive to nonlinearities, the derived impulse and frequency respone functions are assumed to be valid approximations of the basilar membrane properties. The results, then, support the hypothesis that the basilar membrane is a nonlinear frequency analyser whose selectivity decreases as sound intensity increases.

摘要

基于对大鼠单根听神经纤维的记录,使用伪随机噪声作为刺激,确定了外周听觉频率分析仪的频率选择性。通过将记录活动的周期直方图与噪声进行互相关来得到脉冲响应函数。通过对导出的脉冲响应函数进行傅里叶变换来计算频率传递函数。观察到随着刺激强度的增加,脉冲响应函数变短。同时还发现频率传递函数变宽且中心频率下移。由于所使用的方法对非线性不敏感,因此假定导出的脉冲和频率响应函数是基底膜特性的有效近似。那么,这些结果支持了以下假设:基底膜是一个非线性频率分析仪,其选择性随着声音强度的增加而降低。

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