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Analysis of the Mechanical Properties of the Human Tympanic Membrane and Its Influence on the Dynamic Behaviour of the Human Hearing System

机译:人体鼓膜的力学性能及其对人体听觉系统动态行为的影响

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摘要

The difficulty to estimate the mechanical properties of the tympanic membrane (TM) is a limitation to understand the sound transmission mechanism. In this paper, based on finite element calculations, the sensitivity of the human hearing system to these properties is evaluated. The parameters that define the bending stiffness properties of the membrane have been studied, specifically two key parameters: Young's modulus of the tympanic membrane and the thickness of the eardrum. Additionally, it has been completed with the evaluation of the presence of an initial prestrain inside the TM. Modal analysis is used to study the qualitative characteristics of the TM comparing with vibration patterns obtained by holography. Higher-order modes are shown as a tool to identify these properties. The results show that different combinations of elastic properties and prestrain provide similar responses. The presence of prestrain at the membrane adds more uncertainty, and it is pointed out as a source for the lack of agreement of some previous TM elastic modulus estimations.
机译:难以估计鼓膜(TM)的机械性能是理解声音传输机理的限制。在本文中,基于有限元计算,评估了人类听力系统对这些属性的敏感性。已经研究了定义膜的弯曲刚度特性的参数,特别是两个关键参数:鼓膜的杨氏模量和鼓膜的厚度。此外,它还通过评估TM内部是否存在初始预应变来完成。模态分析用于研究TM的定性特性,并与全息照相获得的振动模式进行比较。高阶模式显示为识别这些属性的工具。结果表明,弹性性能和预应变的不同组合提供了相似的响应。膜上预应变的存在增加了更多的不确定性,并且指出这是一些先前的TM弹性模量估计不一致的原因。

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