ENT Department, Leiden University Medical Center, Postbus 9600, 2300 RC, Leiden, The Netherlands.
J Assoc Res Otolaryngol. 2009 Dec;10(4):471-84. doi: 10.1007/s10162-009-0172-0. Epub 2009 Jun 3.
Basilar membrane responses to clicks and to white noise were recorded using laser velocimetry at basal sites of the chinchilla cochlea with characteristic frequencies near 10 kHz. Responses to noise grew at compressive rates and their instantaneous frequencies decreased with increasing stimulus level. First-order Wiener kernels were computed by cross-correlation of the noise stimuli and the responses. For linear systems, first-order Wiener kernels are identical to unit impulse responses. In the case of basilar membrane responses, first-order Wiener kernels and responses to clicks measured at the same sites were similar but not identical. Both consisted of transient oscillations with onset frequencies which increased rapidly, over about 0.5 ms, from 4-5 kHz to the characteristic frequency. Both first-order Wiener kernels and responses to clicks were more highly damped, exhibited slower frequency modulation, and grew at compressive rates with increasing stimulus levels. Responses to clicks had longer durations than the Wiener kernels. The statistical distribution of basilar membrane responses to Gaussian white noise is also Gaussian and the envelopes of the responses are Rayleigh distributed, as they should be for Gaussian noise passing through a linear band-pass filter. Accordingly, basilar membrane responses were accurately predicted by linear filters specified by the first-order Wiener kernels of responses to noise presented at the same level. Overall, the results indicate that cochlear nonlinearity is not instantaneous and resembles automatic gain control.
使用激光测速法,在接近 10 kHz 特征频率的位置,记录了基底膜对 click 和白噪声的反应。噪声的反应呈压缩速率增长,其瞬时频率随刺激水平的增加而降低。通过噪声刺激与响应的互相关计算得到一阶维纳核。对于线性系统,一阶维纳核与单位脉冲响应相同。在基底膜响应的情况下,一阶维纳核和在相同部位测量的 click 响应相似但不相同。两者都包含起始频率迅速增加的瞬态振荡,在大约 0.5 ms 内从 4-5 kHz 增加到特征频率。一阶维纳核和 click 响应都具有更高的阻尼,表现出较慢的频率调制,并且随着刺激水平的增加呈压缩速率增长。click 响应的持续时间比维纳核长。高斯白噪声的基底膜响应的统计分布也是高斯的,响应的包络呈瑞利分布,这是因为它们应该是通过线性带通滤波器的高斯噪声。因此,通过在相同水平下呈现的噪声的响应的一阶维纳核指定的线性滤波器,可以准确预测基底膜的响应。总的来说,这些结果表明,耳蜗的非线性不是瞬时的,类似于自动增益控制。