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首页> 外文期刊>The Journal of the Acoustical Society of America >Middle-ear circuit model parameters based on a population of human ears
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Middle-ear circuit model parameters based on a population of human ears

机译:基于人耳的中耳电路模型参数

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摘要

Middle-ear circuit model parameters are selected to produce overall magnitude and phase agreement with pressure to stapes velocity transfer function measurements made on 16 human temporal bones, up to approximately 12 kHz. The circuit model, which was previously used for the cat, represents the tympanic membrane (TM) as a distributed parameter acoustic transmission line, and ossicular chain and cochlea as a network of lumped circuit elements. For some ears the TM transmission line primarily affects the magnitude of the response, while for others it primarily affects the phase. Model responses also compare favorably with velocity ratio data between the umbo and stapes footplate as well as between the umbo and incus, and exhibit similar characteristics to three previous input impedance measurements, including two from living ears. Similarities are also shown between the model magnitude and adjusted pressure to stapes velocity measurements from living ears, suggesting that the model may suitably approximate the behavior of living ears. In addition to fitting individual measurements, a set of parameters is selected to produce agreement with the mean of the 16 measurements up to 10 kHz, to allow the main features of the ensemble to be reproduced from a single parameter set. (c) 2008 Acoustical Society of America.
机译:选择中耳电路模型参数以产生与压力有关的整体幅度和相位一致性,以抑制在大约12 kHz的人体颞骨上进行的速度传递函数测量。以前用于猫的电路模型将鼓膜(TM)表示为分布参数的声传输线,并将听骨链和耳蜗表示为集总电路元件的网络。对于某些耳朵,TM传输线主要影响响应的幅度,而对于另一些耳朵,它主要影响相位。模型响应还可以很好地与腰部和foot骨足板之间以及腰部和砧骨之间的速度比数据进行比较,并且显示出与之前的三个输入阻抗测量(包括两个活耳)相似的特性。还显示了模型幅度与调整后的压力之间的相似性,以便从活耳中取速度,表明该模型可以适当地近似活耳的行为。除了适合单个测量值之外,还选择了一组参数以与16个测量值的平均值(最高10 kHz)产生一致性,从而允许从单个参数集中重现集成的主要特征。 (c)2008年美国声学学会。

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