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An Electromechanical Model for the Cochlear Microphonic

机译:耳蜗麦克芹的机电模型

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The first of the many electrical signals generated in the ear, nerves and brain as a response to a sound incident on the ear is the cochlear microphonic (CM). The CM is generated by the hair cells of the cochlea, primarily the outer hairs cells. The potentials of this signal are a nonlinear filtered version of the acoustic pressure at the tympanic membrane. The CM signal has been used very little in recent years for clinical audiology and audiological research. This is because of uncertainty in interpreting the CM signal as a diagnostic measure, and also because of the difficulty of obtaining the signal, which has usually required the use of a transtympanic electrode. There are however, several potential clinical and research applications for acquisition of the CM. To promote understanding of the CM. and potential clinical application, a model is presented which can account for the generation of the cochlear microphonic signal. The model incorporates micromechanical and macro-mechanical aspects of previously published models of the basilar membrane and reticular lamina, as well as cochlear fluid mechanics, piezoelectric activity and capacitance of the outer hair cells. It also models the electrical coupling of signals along the scalae.
机译:在耳朵,神经和大脑中产生的许多电信号中的第一个是对入射在耳朵上的声音的响应是耳蜗麦克芹(CM)。 CM由耳蜗的毛发细胞产生,主要是外毛细胞。该信号的电位是鼓膜处的声压的非线性滤波版本。近年来,CM信号近年来用于临床听证学和听力学研究。这是因为在将CM信号解释为诊断测量时,并且还因为难以获得信号,这通常需要使用变性电极。然而,有几种潜在的临床和研究应用程序用于获取厘米。促进对厘米的理解。和潜在的临床应用,提出了一种模型,其可以解释为耳蜗麦克约信号的产生。该模型包括以前公布的基底膜和网状椎板的型号的微机械和宏 - 机械方面,以及外毛细胞的耳蜗流体力学,压电活性和电容。它还模拟了沿着scalae的信号的电耦合。

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