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耳蜗力学理论

Theory of cochlear mechanics.

作者信息

Zwislocki J J

出版信息

Hear Res. 1980 Jun;2(3-4):171-82. doi: 10.1016/0378-5955(80)90055-6.

Abstract

This paper attempts to define the current state of the theory of cochlear mechanics on the basis of past and current experimental and theoretical work. It begins with von Békésy's discovery of traveling transversal waves in the cochlea and with related early mathematical theory and ends with insights engendered by Russell and Sellick's demonstration that inner hair cells are as sharply tuned as the auditory-nerve fibers and by the finding of the M.I.T. groups of Weiss and Peake that sharp tuning of hair cells can exist in the absence of basilar-membrane tuning. Evidence for a sharpening of tuning beyond basilar-membrane vibration is reviewed and two mechanisms for such sharpening are considered--one arising from an interaction between basilar-membrane wavelength and longitudinal coupling within the tectorial membrane and one from the radial-mode resonance of the tectorial membrane and its viscoelastic coupling to the organ of Corti. Simple calculation reveals that damping of the radial-mode vibration should be small enough to allow such a resonance.

摘要

本文试图根据过去和当前的实验及理论研究,界定耳蜗力学理论的现状。文章开篇介绍了冯·贝凯西发现的耳蜗内传播的横向行波以及相关早期数学理论,结尾阐述了罗素和塞利克的研究成果带来的见解,即内毛细胞的调谐与听神经纤维一样敏锐,以及麻省理工学院的韦斯和皮克团队的发现,即在基底膜无调谐的情况下,毛细胞仍可存在敏锐调谐。文中回顾了基底膜振动之外调谐锐化的证据,并探讨了两种导致这种锐化的机制——一种源于基底膜波长与盖膜内纵向耦合之间的相互作用,另一种源于盖膜的径向模式共振及其与柯蒂氏器的粘弹性耦合。简单计算表明,径向模式振动的阻尼应足够小,以允许这种共振。

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