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LDV Measurement of Bird Ear Vibrations to Determine Inner Ear Impedance and Middle Ear Power Flow

机译:LDV测量鸟耳振动,确定内耳阻抗和中耳电流

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The mechanical behavior of the middle ear structures in birds and mammals is affected by the fluids in the inner ear (IE) that are present behind the oval window. In this study, the aim was to gather knowledge of the acoustic impedance of the IE in the ostrich, to be able to determine the effect on vibrations and power flow in the single-ossicle bird middle ear for future studies. To determine the IE impedance, vibrations of the ossicle were measured for both the quasi-static and acoustic stimulus frequencies. In the acoustic regime, vibrations were measured with a laser Doppler vibrometer and electromagnetic stimulation of the ossicle. The impedance of the inner ear could be determined by means of a simple RLC model in series, which resulted in a stiffness reactance of K_(IE) = 0.20·10~(12) Pa/m~3, an inertial impedance of M_(IE) = 0.652·10~6 Pa s~2/m~3, and a resistance of R_(IE) = 1.57·10~9 Pa s/m. The measured impedance is found to be considerably smaller than what is found for the human IE.
机译:鸟类和哺乳动物中的中耳结构的力学行为受到在椭圆形窗口后面的内耳(IE)中的流体的影响。在这项研究中,目的是收集关于IE在鸵鸟中的声阻抗的知识,以确定单孔鸟类中耳中的振动和功率流动的影响,以进行未来的研究。为了确定IE阻抗,测量纺织品的振动,用于准静态和声学刺激频率。在声学状态下,用激光多普勒振动器测量振动和纺织品的电磁刺激。内耳的阻抗可以通过串联的简单RLC模型来确定,导致K_(即)= 0.20·10〜(12)PA / M〜3的刚度电抗,M_的惯性阻抗( IE)= 0.652·10〜6 Pa S〜2 / m〜3,以及R_(即)= 1.57·10〜9 pa s / m的电阻。发现测量的阻抗远小于人类IE的发现。

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