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声激励基底膜中耳蜗波传播方向。

Direction of wave propagation in the cochlea for internally excited basilar membrane.

机构信息

Department of Mechanical Engineering, University of Michigan-Ann Arbor, Michigan 48109, USA.

出版信息

J Acoust Soc Am. 2012 Jun;131(6):4710-21. doi: 10.1121/1.4707505.

Abstract

Otoacoustic emissions are an indicator of a normally functioning cochlea and as such are a useful tool for non-invasive diagnosis as well as for understanding cochlear function. While these emitted waves are hypothesized to arise from active processes and exit through the cochlear fluids, neither the precise mechanism by which these emissions are generated nor the transmission pathway is completely known. With regard to the acoustic pathway, two competing hypotheses exist to explain the dominant mode of emission. One hypothesis, the backward-traveling wave hypothesis, posits that the emitted wave propagates as a coupled fluid-structure wave while the alternate hypothesis implicates a fast, compressional wave in the fluid as the main mechanism of energy transfer. In this paper, we study the acoustic pathway for transmission of energy from the inside of the cochlea to the outside through a physiologically-based theoretical model. Using a well-defined, compact source of internal excitation, we predict that the emission is dominated by a backward traveling fluid-structure wave. However, in an active model of the cochlea, a forward traveling wave basal to the location of the force is possible in a limited region around the best place. Finally, the model does predict the dominance of compressional waves under a different excitation, such as an apical excitation.

摘要

耳声发射是耳蜗正常功能的一个指标,因此它是一种有用的非侵入性诊断工具,也有助于了解耳蜗功能。虽然这些发射波被假设是由活跃的过程产生的,并通过耳蜗液流出,但这些发射产生的确切机制和传输途径尚不完全清楚。关于声传播途径,有两种相互竞争的假说可以解释主导的发射模式。一种假说,即逆行波假说,认为发射波作为一个耦合的流体-结构波传播,而另一种假说则暗示了在流体中存在快速的压缩波,这是能量转移的主要机制。在本文中,我们通过一个基于生理学的理论模型研究了能量从耳蜗内部传播到外部的声传播途径。使用内部激励的一个定义明确、紧凑的源,我们预测发射主要由逆行流体-结构波主导。然而,在耳蜗的主动模型中,在力的位置基底处的前向传播波在最佳位置周围的有限区域内是可能的。最后,该模型确实预测了在不同的激励下,如顶点激励,压缩波的主导地位。

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Reverse propagation of sound in the gerbil cochlea.沙鼠耳蜗中声音的逆向传播。
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本文引用的文献

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Reverse wave propagation in the cochlea.耳蜗中的逆向波传播。
Proc Natl Acad Sci U S A. 2008 Feb 19;105(7):2729-33. doi: 10.1073/pnas.0708103105. Epub 2008 Feb 12.
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Supporting evidence for reverse cochlear traveling waves.耳蜗逆行行波的支持证据。
J Acoust Soc Am. 2008 Jan;123(1):222-40. doi: 10.1121/1.2816566.

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