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沙鼠中耳的正向和反向传播

Middle ear forward and reverse transmission in gerbil.

作者信息

Dong Wei, Olson Elizabeth S

机构信息

Department of Otolaryngology, Head and Neck Surgery, Columbia University, P&S 11-452, 630 W. 168th Street, New York, NY 10032, USA.

出版信息

J Neurophysiol. 2006 May;95(5):2951-61. doi: 10.1152/jn.01214.2005. Epub 2006 Feb 15.

Abstract

The middle ear transmits environmental sound to the inner ear. It also transmits acoustic energy sourced within the inner ear out to the ear canal, where it can be detected with a sensitive microphone as an otoacoustic emission. Otoacoustic emissions are an important noninvasive measure of the condition of sensory hair cells and to use them most effectively one must know how they are shaped by the middle ear. In this contribution, forward and reverse transmissions through the middle ear were studied by simultaneously measuring intracochlear pressure in scala vestibuli near the stapes and ear canal pressure. Measurements were made in gerbil, in vivo, with acoustic two-tone stimuli. The forward transmission pressure gain was about 20-25 dB, with a phase-frequency relationship that could be fit by a straight line, and was thus characteristic of a delay, over a wide frequency range. The forward delay was about 32 micros. The reverse transmission pressure loss was on average about 35 dB, and the phase-frequency relationship was again delaylike with a delay of about 38 mus. Therefore to a first approximation the middle ear operates similarly in the forward and reverse directions. The observation that the amount of pressure reduction in reverse transmission was greater than the amount of pressure gain in forward transmission suggests that complex motions of the tympanic membrane and ossicles affect reverse more than forward transmission.

摘要

中耳将环境声音传递至内耳。它还将源自内耳的声能传至耳道,在耳道中,该声能可通过灵敏的麦克风作为耳声发射检测到。耳声发射是感觉毛细胞状况的一项重要非侵入性测量指标,要最有效地利用它们,必须了解它们是如何由中耳塑造的。在本论文中,通过同时测量镫骨附近前庭阶的蜗内压力和耳道压力,研究了通过中耳的正向和反向传递。在活体沙鼠身上,使用声学双音刺激进行测量。正向传递压力增益约为20 - 25分贝,其相频关系在很宽的频率范围内可用一条直线拟合,因此具有延迟的特征。正向延迟约为32微秒。反向传递压力损失平均约为35分贝,相频关系同样类似延迟,延迟约为38微秒。因此,初步近似来看,中耳在正向和反向方向上的运作方式类似。反向传递中压力降低量大于正向传递中压力增益量这一观察结果表明,鼓膜和听小骨的复杂运动对反向传递的影响大于对正向传递的影响。

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