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基于共形映射的二维耳蜗液模型。

A two-dimensional cochlear fluid model based on conformal mapping.

机构信息

Computational Neuroscience, Ludwig-Maximilians-Universität München, 82152 Planegg-Martinsried, Germany.

出版信息

J Acoust Soc Am. 2010 Dec;128(6):3577-84. doi: 10.1121/1.3505108.

Abstract

Using conformal mapping, fluid motion inside the cochlear duct is derived from fluid motion in an infinite half plane. The cochlear duct is represented by a two-dimensional half-open box. Motion of the cochlear fluid creates a force acting on the cochlear partition, modeled by damped oscillators. The resulting equation is one-dimensional, more realistic, and can be handled more easily than existing ones derived by the method of images, making it useful for fast computations of physically plausible cochlear responses. Solving the equation of motion numerically, its ability to reproduce the essential features of cochlear partition motion is demonstrated. Because fluid coupling can be changed independently of any other physical parameter in this model, it allows the significance of hydrodynamic coupling of the cochlear partition to itself to be quantitatively studied. For the model parameters chosen, as hydrodynamic coupling is increased, the simple resonant frequency response becomes increasingly asymmetric. The stronger the hydrodynamic coupling is, the slower the velocity of the resulting traveling wave at the low frequency side is. The model's simplicity and straightforward mathematics make it useful for evaluating more complicated models and for education in hydrodynamics and biophysics of hearing.

摘要

利用保角映射,将耳蜗管内的流体运动从无限半平面内的流体运动推导出来。耳蜗管由二维半开盒表示。耳蜗液的运动会产生作用于耳蜗隔板的力,由阻尼振荡器建模。由此得到的方程是一维的,更现实,并且比通过镜像法推导的现有方程更容易处理,这使得它非常适合快速计算物理上合理的耳蜗响应。通过数值求解运动方程,证明了它能够再现耳蜗隔板运动的基本特征。由于在该模型中,流体耦合可以独立于任何其他物理参数进行改变,因此可以定量研究耳蜗隔板自身的流体耦合的重要性。对于所选的模型参数,随着流体耦合的增加,简单的共振频率响应变得越来越不对称。流体耦合越强,低频侧产生的行波的速度越慢。该模型的简单性和直接的数学性质使其非常适合评估更复杂的模型,并用于水动力学和听觉生物物理学的教育。

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