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豚鼠耳蜗低频听觉刺激期间内毛细胞对基底膜速度的反应。

The responses of inner hair cells to basilar membrane velocity during low frequency auditory stimulation in the guinea pig cochlea.

作者信息

Sellick P M, Russell I J

出版信息

Hear Res. 1980 Jun;2(3-4):439-45. doi: 10.1016/0378-5955(80)90080-5.

Abstract

Intracellular receptor potentials were recorded from inner hair cells in the basal turn of the guinea pig cochlea in response to low frequency tones. These were compared with the cochlear microphonic (CM) recorded from the scala tympani and sound pressure at the tympanic membrance. The CM is symmetrical and behaves as if it responds to basilar membrane displacement. The depolarizing phase of the inner hair cell receptor potential exceeds the hyperpolarizing phase with a ratio of about 3:1 in response to sinusoidal stimulation. Below 100 Hz inner hair cell receptor potentials phase lead sound pressure by 180 degrees and their amplitudes increase at a rate of 12 dB/octave. Above 200 Hz their receptor potentials are in phase with CM. The capacitative impedances of the hair cells delay and attenuate the intracellular receptor potentials at frequencies above 178-873 Hz. We conclude that CM is dominated by the responses of outer hair cells, and that a frequencies below 100-200 Hz inner hair cells respond to basilar membrance velocity. Above this they respond to basilar membrane displacement.

摘要

在豚鼠耳蜗基底转的内毛细胞中记录到细胞内受体电位,以响应低频音调。将这些电位与从鼓阶记录的耳蜗微音电位(CM)以及鼓膜处的声压进行比较。CM是对称的,其表现就好像它对基底膜位移做出反应一样。在正弦刺激下,内毛细胞受体电位的去极化阶段超过超极化阶段,比例约为3:1。低于100Hz时,内毛细胞受体电位的相位比声压超前180度,其幅度以12dB/倍频程的速率增加。高于200Hz时,它们的受体电位与CM同相。在178 - 873Hz以上的频率,毛细胞的电容性阻抗会延迟并衰减细胞内受体电位。我们得出结论,CM主要由外毛细胞的反应主导,并且在100 - 200Hz以下的频率,内毛细胞对基底膜速度做出反应。高于此频率,它们对基底膜位移做出反应。

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