Dolan D F, Teas D C, Walton J P
J Acoust Soc Am. 1983 Feb;73(2):580-91. doi: 10.1121/1.389005.
Whole-nerve action potentials evoked by a standard click were recorded from a gross electrode on the RW and the discharges of auditory nerve fibers to the same standard click were recorded from micropipette electrodes in the auditory nerve. The effect of a preceding tone burst (2, 4, or 8 kHz) upon the responses was measured for forward-masker intensities from 20 to 80 dB SPL. All forward maskers reduced the discharges of auditory nerve fibers to the standard click with the greatest reduction occurring for fibers with characteristic frequencies (CFs) near the masker frequency. The 4- and 8-kHz forward maskers produced similar effects on N1, P1, and N2 of the RW response. However, the 2-kHz forward masker produced enhancement at P1 and N2 in the RW response to the standard click. An empirical summation model of estimated elemental waveforms at latencies dependent on CF produces synthesized AP response waveforms which are similar to the observed RW response. The model permits the exclusion of discharges from segments along the cochlear partition in a manner similar to the effect of a forward masker. Alterations in the synthesized waveforms due to the exclusion of segments are similar in direction to the alterations observed in the RW responses for forward masking.
用一个粗电极在RW上记录由标准短声诱发的全神经动作电位,并用微电极在听神经中记录听神经纤维对同一标准短声的放电。对于强度在20至80 dB SPL之间的前导音爆(2、4或8 kHz),测量其对反应的影响。所有前向掩蔽器都减少了听神经纤维对标准短声的放电,其中特征频率(CFs)接近掩蔽频率的纤维减少最为明显。4 kHz和8 kHz的前向掩蔽器对RW反应的N1、P1和N2产生了类似的影响。然而,2 kHz的前向掩蔽器在RW对标准短声的反应中使P1和N2增强。一个基于依赖于CF的潜伏期估计基本波形的经验性总和模型产生了与观察到的RW反应相似的合成动作电位(AP)反应波形。该模型允许以类似于前向掩蔽器的效果的方式排除沿耳蜗隔板各段的放电。由于排除各段而导致的合成波形变化在方向上与前向掩蔽时在RW反应中观察到的变化相似。