Coats A C, Martin J L, Kidder H R
J Acoust Soc Am. 1979 Mar;65(3):747-58. doi: 10.1121/1.382488.
We recorded normal electrophysiological responses to third-octave filtered clicks from external auditory meatus (EAM) and vertex electrodes referred to coupled earlobe electrodes (forehead ground). From both vertex and EAM, polarity-sensitive responses predominated at low frequencies and exhibited characteristics of both phase-locked neural responses (frequency-following response or FFR) and cochlear microphonics (CM). The FFR-like response predominated at the vertex site and the CM-like response predominated at EAM. At high frequencies, polarity-insensitive responses closely resembled rectangular-pulse click action potentials and brainstem evoked potentials, with clearly defined N1 and V peaks recorded from EAM and vertex, respectively. As frequency was lowered, the N1 and V peak latencies increased, the peaks broadened, and the latency-intensity curves steepened with greater prolongation occurring at lower click intensities. Lowering click frequency also shortened the N1-V interval and caused the plot of N1-V interval versus click intensity to become steeper. Plots of polarity-insensitive response amplitudes and thresholds against frequency revealed a high frequency bias for both N1 and V, but the V "frequency response" was flatter. A possible explanation of the shortened N1-V interval at low click frequencies based on this flatter V "Frequency response" is presented.
我们记录了外耳道(EAM)和头顶电极对倍频程滤波短声的正常电生理反应,参考电极连接双耳耳垂电极(前额接地)。在头顶和EAM处,低频时极性敏感反应占主导,呈现出锁相神经反应(频率跟随反应或FFR)和耳蜗微音电位(CM)的特征。类似FFR的反应在头顶部位占主导,类似CM的反应在EAM处占主导。在高频时,极性不敏感反应与矩形脉冲短声动作电位和脑干诱发电位非常相似,在EAM和头顶分别记录到明确的N1和V波峰。随着频率降低,N1和V波峰潜伏期延长,波峰变宽,潜伏期-强度曲线变陡,在较低短声强度下延长更明显。降低短声频率也缩短了N1-V间期,并使N1-V间期与短声强度的关系曲线变得更陡。极性不敏感反应幅度和阈值与频率的关系图显示,N1和V均有高频偏向,但V的“频率反应”更平缓。基于这种更平缓的V“频率反应”,我们提出了在低短声频率下N1-V间期缩短的一种可能解释。