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猫耳蜗底转的声压

Sound pressures in the basal turn of the cat cochlea.

作者信息

Nedzelnitsky V

出版信息

J Acoust Soc Am. 1980 Dec;68(6):1676-89. doi: 10.1121/1.385200.

Abstract

Techniques were developed for measuring sound pressure in the cochlea with calibrated, liquid-filled, piezoelectric probe microphones. Sound pressures were measured in scala vestibuli and scala tympani in the basal turn in 25 cats for tones from 20--10 000 Hz. Control experiments indicated that intracochlear pressures were essentially uninfluenced by the measuring technique, and were conducted to the cochlea via the ossicular chain. Intracochlear pressures are linearly related to pressure at the tympanic membrane for tone levels at least as high as 105 dB SPL, and are relatively independent of depth of probe insertion in the scalae. The transfer ratio of sound pressure in scala vestibuli to that at the tympanic membrane increases in magnitude over the frequency range 50--1000 Hz to reach a maximum value of 15--30 dB, and decreases at higher frequencies, thus demonstrating that the middle ear provides a frequency-dependent pressure gain. At frequencies below 40 Hz, the pressures in scala vestibuli and scala tympani are approximately equal and are both determined by the round-window membrane compliance. At frequencies above 100 Hz, the round-window membrane impedance is small compared to the acoustic input impedance of the cochlea, and the pressure in scala vestibuli considerably exceeds that in scala tympani; consequently, the pressure difference across the cochlear partition is approximately equal to the pressure in scala vestibuli.

摘要

已开发出使用校准的、充液的压电探针式麦克风测量耳蜗内声压的技术。在25只猫的基底转中,测量了前庭阶和鼓阶中20 - 10000 Hz音调的声压。对照实验表明,测量技术对耳蜗内压力基本没有影响,且压力是通过听骨链传导至耳蜗的。对于至少高达105 dB SPL的音调水平,耳蜗内压力与鼓膜处的压力呈线性相关,并且相对独立于探针在前庭阶和鼓阶中的插入深度。前庭阶中的声压与鼓膜处声压的传递比在50 - 1000 Hz频率范围内幅值增加,达到最大值15 - 30 dB,在更高频率时降低,从而表明中耳提供了频率依赖性压力增益。在40 Hz以下的频率,前庭阶和鼓阶中的压力大致相等,且均由圆窗膜的顺应性决定。在100 Hz以上的频率,与耳蜗的声输入阻抗相比,圆窗膜的阻抗较小,前庭阶中的压力大大超过鼓阶中的压力;因此,跨耳蜗隔的压力差大致等于前庭阶中的压力。

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