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内淋巴在螺旋沟内侧和盖膜下间隙的流动。

Flow of endolymph in the inner spiral sulcus and the subtectorial space.

作者信息

Raftenberg M N

机构信息

U.S. Army Ballistic Research Laboratory, Aberdeen Proving Ground, Maryland 21005.

出版信息

J Acoust Soc Am. 1990 Jun;87(6):2606-20. doi: 10.1121/1.399053.

Abstract

Flows of endolymph within the inner spiral sulcus and the subtectorial space are studied analytically. These flows are driven by boundary displacements and scala media pressure, all prescribed in the form of traveling sine waves with uniform amplitude, wave speed, and wavelength. Prescribed boundary displacements have no axial components and are assumed "small." In the subtectorial space, waves are further assumed "long," and inner and outer hair cells' stereocilia are represented by permeable barriers. Boundary motions of the subtectorial space are assumed to be associated with basilar membrane motion. The localized boundary motions that would presumably accompany independent outer hair cell motions are not admitted. The pressure drop across the barrier representing the inner hair cells' stereocilia is evaluated for four specific input conditions. The results are used to assess its relative sensitivity to three types of boundary displacement and to examine the contribution of endolymph flow to the "second filter." The model predicts the introduction of appreciable tuning (102.3 dB/octave) into the auditory signal between the stages of relative normal displacement of the boundaries of the subtectorial space and the generation of a pressure drop across the inner hair cells' stereocilia. The outer barrier is removed from the model, and the pressure drop across the inner barrier is reevaluated for the same four cases to study its sensitivity to destruction of the outer hair cells' stereocilia. These results are examined in light of data by Robertson and Johnstone [D. Robertson and B. M. Johnstone, J. Acoust. Soc. Am. 66, 466-469 (1979)].

摘要

对内淋巴在蜗管内螺旋沟和盖膜下间隙中的流动进行了分析研究。这些流动由边界位移和中阶压力驱动,所有这些都以具有均匀振幅、波速和波长的行波正弦波形式规定。规定的边界位移没有轴向分量,并假设为“小”位移。在盖膜下间隙中,进一步假设波为“长”波,内、外毛细胞的静纤毛由可渗透屏障表示。盖膜下间隙的边界运动被认为与基底膜运动相关。推测会伴随独立外毛细胞运动的局部边界运动不被考虑。针对四种特定输入条件评估了代表内毛细胞静纤毛的屏障两端的压降。结果用于评估其对三种边界位移类型的相对敏感性,并研究内淋巴流动对“第二滤波器”的贡献。该模型预测,在盖膜下间隙边界相对正常位移阶段与内毛细胞静纤毛两端产生压降阶段之间的听觉信号中引入了可观的调谐(102.3 dB/倍频程)。从模型中移除外部屏障,并针对相同的四种情况重新评估内部屏障两端的压降,以研究其对外毛细胞静纤毛破坏的敏感性。根据罗伯逊和约翰斯通的数据对这些结果进行了研究[D. 罗伯逊和B. M. 约翰斯通,《美国声学学会杂志》66, 466 - 469 (1979)]。

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