Recio-Spinoso Alberto, Temchin Andrei N, van Dijk Pim, Fan Yun-Hui, Ruggero Mario A
Department of Communication Sciences and Disorders, Northwestern University, 2240 Campus Drive, Evanston, IL 60208-3550, USA.
J Neurophysiol. 2005 Jun;93(6):3615-34. doi: 10.1152/jn.00882.2004. Epub 2005 Jan 19.
Responses to broadband Gaussian white noise were recorded in auditory-nerve fibers of deeply anesthetized chinchillas and analyzed by computation of zeroth-, first-, and second-order Wiener kernels. The first-order kernels (similar to reverse correlations or "revcors") of fibers with characteristic frequency (CF) <2 kHz consisted of lightly damped transient oscillations with frequency equal to CF. Because of the decay of phase locking strength as a function of frequency, the signal-to-noise ratio of first-order kernels of fibers with CFs >2 kHz decreased with increasing CF at a rate of about -18 dB per octave. However, residual first-order kernels could be detected in fibers with CF as high as 12 kHz. Second-order kernels, 2-dimensional matrices, reveal prominent periodicity at the CF frequency, regardless of CF. Thus onset delays, frequency glides, and near-CF group delays could be estimated for auditory-nerve fibers innervating the entire length of the chinchilla cochlea.
在深度麻醉的龙猫的听神经纤维中记录对宽带高斯白噪声的反应,并通过计算零阶、一阶和二阶维纳核进行分析。特征频率(CF)<2kHz的纤维的一阶核(类似于反向相关或“revcors”)由频率等于CF的轻度阻尼瞬态振荡组成。由于锁相强度随频率衰减,CF>2kHz的纤维的一阶核的信噪比随CF增加以约-18dB每倍频程的速率下降。然而,在CF高达12kHz的纤维中仍可检测到残余的一阶核。二阶核是二维矩阵,无论CF如何,在CF频率处都显示出明显的周期性。因此,可以估计支配龙猫耳蜗全长的听神经纤维的起始延迟、频率滑动和近CF群延迟。