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Acoustic input impedance of the avian inner ear measured in ostrich (Struthio camelus)

机译:鸵鸟(Struthio Camelus)测量的禽类内耳的声学输入阻抗

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In both mammals and birds, the mechanical behavior of the middle ear structures is affected by the mechanical impedance of the inner ear. In this study, the aim was to quantify the acoustic impedance of the avian inner ear in the ostrich, which allows us to determine the effect on columellar vibrations and middle ear power flow in future studies. To determine the inner ear impedance, vibrations of the columella were measured for both the quasi-static and acoustic stimulus frequencies. In the frequency range of 0.3-4 kHz, we used electromagnetic stimulation of the ossicle and a laser Doppler vibrometer to measure the vibration response. At low frequencies, harmonic displacements were imposed on the columella using piezo stimulation and the resulting force response was measured with a force sensor. From these measurement data, the acoustic impedance of the inner ear could be determined. A simple RLC model in series of the impedance measurements 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. We found that values of the inner ear impedance in the ostrich are one to two orders in magnitude smaller than what is found in mammal ears. (C) 2016 Elsevier B.V. All rights reserved.
机译:在哺乳动物和鸟类中,中耳结构的力学行为受内耳机械阻抗的影响。在这项研究中,目的是量化鸵鸟中禽道耳的声阻抗,这使我们能够在未来的研究中确定对云柱振动和中耳动力流的影响。为了确定内耳阻抗,针对准静态和声刺激频率测量柱耳的振动。在0.3-4 kHz的频率范围内,我们使用纺织品和激光多普勒振动计的电磁刺激来测量振动响应。在低频下,使用压电刺激施加对霉菌的谐波位移,并用力传感器测量所得到的力响应。从这些测量数据,可以确定内耳的声阻抗。串联阻抗测量的简单RLC模型导致K-IE = 0.20.10(12)PA / m(3)的刚度电抗,M-IE = 0.652.10(6)PA S的惯性阻抗( 2)/ m(3),以及R-IE = 1.57.1​​0(9)Pa S / m的电阻。我们发现鸵鸟中内耳阻抗的值比哺乳动物耳朵中发现的数量小一至两个的顺序。 (c)2016年Elsevier B.v.保留所有权利。

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