Don M, Eggermont J J
J Acoust Soc Am. 1978 Apr;63(4):1084-92. doi: 10.1121/1.381816.
Brainstem electrical responses (BSER) to 60-dB-SL click in noise high passed at various cutoff frequencies separated b 1/2-octave steps were recorded in normal-hearing adult subjects. By applying a derived response technique, narrow-band contributions to the BSER from specific portions of the basilar membrane were revealed. Latencies and amplitudes of the various waves in the derived BSER were recorded. Results indicate that nearly the whole cochlear partition can contribute to the brainstem response. The shifts in latency of waves I, III, and V and amplitude changes of waves I and III as a function of CF appear to be fully comparable to those of the AP. In contrast, the amplitude behavior of wave V as a function of CF is different from waves I and III depending upon frequency range. The discrepency in the behavior of wave V with respect to the earlier waves suggests some sort of neural reorganization at the level where was V is generated. The fact that there are contributions to the brainstem response from apical portions of the cochlea opens the possibility for extending the brainstem technique in assessing the higher cochlear turn function.
在听力正常的成年受试者中,记录了脑干电反应(BSER)对在不同截止频率下高通滤波的60分贝声压级咔嗒声的反应,截止频率以1/2倍频程步长隔开。通过应用一种衍生反应技术,揭示了基底膜特定部分对BSER的窄带贡献。记录了衍生BSER中各种波的潜伏期和振幅。结果表明,几乎整个耳蜗分区都可对脑干反应产生贡献。波I、III和V的潜伏期变化以及波I和III的振幅变化作为中心频率(CF)的函数,似乎与动作电位(AP)的变化完全可比。相比之下,波V的振幅作为CF的函数的行为,根据频率范围的不同,与波I和III不同。波V相对于较早波的行为差异表明,在波V产生的水平存在某种神经重组。耳蜗顶部对脑干反应有贡献这一事实,为扩展脑干技术以评估耳蜗较高蜗旋功能开辟了可能性。