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Geometric Requirements for Tectorial Membrane Traveling Waves in the Presence of Cochlear Loads

机译:耳蜗载荷作用下胸膜行波的几何要求

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摘要

Recent studies suggest that wave motions of the tectorial membrane (TM) play a critical role in determining the frequency selectivity of hearing. However, frequency tuning is also thought to be limited by viscous loss in subtectorial fluid. Here, we analyze effects of this loss and other cochlear loads on TM traveling waves. Using a viscoelastic model, we demonstrate that hair bundle stiffness has little effect on TM traveling waves calculated with physiological parameters, that the limbal attachment can cause small (<20%) increases in TM wavelength, and that viscous loss in the subtectorial fluid can cause small (<20%) decreases in TM wave decay constants. However, effects of viscous loss in the subtectorial fluid are significantly increased if TM thickness is decreased. In contrast, increasing TM thickness above its physiological range has little effect on the wave, suggesting that the TM is just thick enough to maximize the spatial extent of the TM traveling wave.
机译:最近的研究表明,盖膜(TM)的波动在确定听力的频率选择性方面起着至关重要的作用。然而,频率调谐也被认为受到掩盖液中粘性损失的限制。在这里,我们分析了这种损耗和其他耳蜗负载对TM行波的影响。使用粘弹性模型,我们证明了发束的刚度对使用生理参数计算的TM行波几乎没有影响,角膜缘附着可引起TM波长的微小增加(<20%),而在输卵管下液中的粘性损失可导致TM波衰减常数减小很小(<20%)。但是,如果TM厚度减小,则在粘膜下流体中的粘性损失的影响将显着增加。相反,将TM厚度增加到其生理范围以上对波影响很小,这表明TM的厚度足以使TM行波的空间范围最大化。

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