A model for energy flow in the inner ear of the bullfrog (Rana catesbeiana).

A P Purgue, P M Narins
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引用次数: 21

Abstract

We present a quantitative mathematical model that represents the main features of the bullfrog inner ear. Calculated responses based on this model predict the observed frequency separation between the amphibian papilla and basilar papilla responses. The origin of this separation can be traced to the effect of the contact membranes on the impedance of the respective paths. Additionally, we calculated the input impedance of the periotic canal and showed that at low frequencies it acts as a bypass for most of the energy entering the ear, shunting it away from the amphibian-basilar papilla complex. As this shunting decreases with increasing frequency, we propose that the periotic canal functions as a protection mechanism to prevent overload of the amphibian papilla and basilar papilla during ventilation and for quasi-static pressure equalization. Our model explains the main features of the empirical data obtained from direct measurement of the amphibian papilla and basilar papilla contact membranes reported in an accompanying paper (this issue).

牛蛙(蛙)内耳能量流模型。
我们提出了一个定量的数学模型,代表了牛蛙内耳的主要特征。基于该模型的计算响应预测了两栖动物乳头和基底乳头响应之间观察到的频率分离。这种分离的起源可以追溯到接触膜对各自路径阻抗的影响。此外,我们计算了周期管的输入阻抗,并表明在低频时,它作为进入耳朵的大部分能量的旁路,将其从两栖动物-基底乳头复合物分流出去。由于这种分流随着频率的增加而减少,我们提出,周期管作为一种保护机制,可以防止两栖动物乳头和基底乳头在通气过程中过载,并实现准静态压力均衡。我们的模型解释了从直接测量两栖动物乳头和基底乳头接触膜中获得的经验数据的主要特征,该数据在随附的论文(本期)中报道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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