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首页> 外文期刊>The Journal of the Acoustical Society of America >The effect of rocking stapes motions on the cochlear fluid flow and on the basilar membrane motion
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The effect of rocking stapes motions on the cochlear fluid flow and on the basilar membrane motion

机译:摇摆骨运动对耳蜗液流和基底膜运动的影响

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摘要

The basilar membrane (BM) and perilymph motion in the cochlea due to rocking stapes motion (RSM) and piston-like stapes motion (PSM) is modeled by numerical simulations. The full Navier-Stokes equations are solved in a two-dimensional box geometry. The BM motion is modeled by independent oscillators using an immersed boundary technique. The traveling waves generated by both stimulation modes are studied. A comparison of the peak amplitudes of the BM motion is presented and their dependence on the frequency and on the model geometry (stapes position and cochlear channel height) is investigated. It is found that the peak amplitudes for the RSM are lower and decrease as frequency decreases whereas those for the PSM increase as frequency decreases. This scaling behavior can be explained by the different mechanisms that excite the membrane oscillation. Stimulation with both modes at the same time leads to either a slight increase or a slight decrease of the peak amplitudes compared to the pure PSM, depending on the phase shift between the two modes. While the BM motion is dominated by the PSM mode under normal conditions, the RSM may lead to hearing if no PSM is present or possible, e.g., due to round window atresia.
机译:通过数值模拟对由于摇摆骨运动(RSM)和活塞状骨运动(PSM)引起的耳蜗基底膜(BM)和周围淋巴运动进行了建模。完整的Navier-Stokes方程在二维盒子几何中求解。 BM运动是使用浸入边界技术通过独立的振荡器进行建模的。研究了两种刺激模式产生的行波。提出了BM运动的峰值幅度的比较,并研究了它们对频率和模型几何形状(钉位置和耳蜗通道高度)的依赖性。发现,RSM的峰值幅度较低,并且随着频率的降低而减小,而PSM的峰值幅度随着频率的降低而增大。这种结垢行为可以通过激发膜振动的不同机制来解释。与纯PSM相比,同时使用两种模式进行刺激会导致峰值幅度略有增加或略有下降,这取决于两种模式之间的相移。在正常情况下,虽然BM运动由PSM模式主导,但是,例如,由于圆窗闭锁,RSM可能会导致听觉是否不存在或可能没有PSM。

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