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哺乳动物中耳力学:综述

Mammalian middle ear mechanics: A review.

作者信息

Ugarteburu Maialen, Withnell Robert H, Cardoso Luis, Carriero Alessandra, Richter Claus-Peter

机构信息

Department of Biomedical Engineering, The City College of New York, New York, NY, United States.

Department of Speech, Language and Hearing Sciences, Indiana University, Bloomington, IN, United States.

出版信息

Front Bioeng Biotechnol. 2022 Oct 10;10:983510. doi: 10.3389/fbioe.2022.983510. eCollection 2022.

Abstract

The middle ear is part of the ear in all terrestrial vertebrates. It provides an interface between two media, air and fluid. How does it work? In mammals, the middle ear is traditionally described as increasing gain due to Helmholtz's hydraulic analogy and the lever action of the malleus-incus complex: in effect, an impedance transformer. The conical shape of the eardrum and a frequency-dependent synovial joint function for the ossicles suggest a greater complexity of function than the traditional view. Here we review acoustico-mechanical measurements of middle ear function and the development of middle ear models based on these measurements. We observe that an impedance-matching mechanism (reducing reflection) rather than an impedance transformer (providing gain) best explains experimental findings. We conclude by considering some outstanding questions about middle ear function, recognizing that we are still learning how the middle ear works.

摘要

中耳是所有陆生脊椎动物耳朵的一部分。它提供了空气和液体这两种介质之间的界面。它是如何工作的呢?在哺乳动物中,传统上认为中耳由于亥姆霍兹的液压类比以及锤骨 - 砧骨复合体的杠杆作用而增加增益:实际上,是一个阻抗变换器。鼓膜的圆锥形以及听小骨的频率依赖性滑膜关节功能表明其功能比传统观点更为复杂。在此,我们回顾中耳功能的声学 - 力学测量以及基于这些测量的中耳模型的发展。我们观察到,一种阻抗匹配机制(减少反射)而非阻抗变换器(提供增益)最能解释实验结果。我们通过思考一些关于中耳功能的突出问题来得出结论,同时认识到我们仍在了解中耳是如何工作的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98de/9589510/621e4f42e376/fbioe-10-983510-g001.jpg

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