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[具有离散基底膜的耳蜗流体动力学模型]

[A hydrodynamic model of a cochlea with a discrete basilar membrane].

作者信息

Popov Iu V

出版信息

Fiziol Zh (1994). 1997;43(3-4):40-7.

PMID:9303801
Abstract

The hydrodynamic model of a cochlea (dimensions 520 x 120 x 100 (mm)), with the basilar membrane (BM) consisting of 50 discrete resonance links in the frequency band from 1 Hz to 128 Hz was constructed. Two ways of giving harmonic and impulse's signals at the model were used; a) through the membrane of the vestibular window (directly through the filled model liquid along the BM) and b) through the thread fastened to the basal part of the BM (by the travelling wave on the BM). It was shown that in the first case the transmission's time to apical part of the BM equals 0.8 ms and in the second--several seconds. The conclusion is that the main hydrodynamic processes of sound's coding in a cochlea are the processes according to the Helmholtz's resonance theory, but not Békésy's travelling wave theory.

摘要

构建了一个耳蜗的流体动力学模型(尺寸为520×120×100(毫米)),其基底膜(BM)在1赫兹至128赫兹频段由50个离散共振环节组成。在该模型上采用了两种施加谐波和脉冲信号的方式:a)通过前庭窗膜(直接通过充满模型的液体沿基底膜);b)通过系在基底膜基部的细线(通过基底膜上的行波)。结果表明,在第一种情况下,信号传输到基底膜顶端部分的时间为0.8毫秒,而在第二种情况下则为几秒。结论是,耳蜗中声音编码的主要流体动力学过程是符合亥姆霍兹共振理论的过程,而非贝凯西的行波理论。

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