首页> 外文会议>IMECE2008;ASME international mechanical engineering congress and exposition >EXPERIMENTAL INVESTIGATION OF A HYDROMECHANICAL SCALE MODEL OF THE GERBIL COCHLEA
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EXPERIMENTAL INVESTIGATION OF A HYDROMECHANICAL SCALE MODEL OF THE GERBIL COCHLEA

机译:耳蜗水力力学模型的实验研究

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In this research, an uncoiled scale gerbil cochlea is designed and fabricated. The cochlea model is an uncoiled, 16 times scale model of the real gerbil cochlea and has only one duct. Both the basilar membrane width and the duct size vary along the length of the device, in analogy to the physiology. The cochlea duct is filled with silicone oil and driven by a modal exciter (shaker) at different frequencies. The movement of the basilar membrane is measured using laser vibrometry at different locations along the basilar membrane. The ratio of the basilar membrane velocity to drive velocity is computed and plotted. The characteristic frequency of the model varies from 7000 Hz at 2 cm from the base of the cochlea to 350 Hz at the 15 cm from the base. Two different viscosities silicone oil, 20 cSt and 500 cSt are used for the basilar membrane movement measurements. A WKB method is applied to the calculation of the basilar membrane movement of the scale cochlea model, in which the fluid motion is fully three dimensional.
机译:在这项研究中,未卷曲的沙鼠耳蜗的设计和制造。耳蜗模型是真实的沙鼠耳蜗的未卷曲,16倍比例模型,并且只有一条导管。类似于生理学,基底膜的宽度和导管的尺寸均沿装置的长度变化。耳蜗管充满硅油,并由模态激励器(振荡器)以不同的频率驱动。使用激光振动法在沿基底膜的不同位置测量基底膜的运动。计算并绘制基底膜速度与驱动速度的比率。该模型的特征频率从距耳蜗根部2 cm处的7000 Hz到距根部15 cm处的350 Hz变化。两种不同粘度的硅油20 cSt和500 cSt用于基底膜的运动测量。 WKB方法应用于规模耳蜗模型的基底膜运动的计算,其中流体运动是完全三维的。

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