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人鼓膜系统的体内弹性模量区域估计:正常年轻和老年耳朵中耳力学功能的建模

In vivo areal modulus of elasticity estimation of the human tympanic membrane system: modelling of middle ear mechanical function in normal young and aged ears.

作者信息

Gaihede Michael, Liao Donghua, Gregersen Hans

机构信息

Department of Otolaryngology, Head and Neck Surgery, Aalborg Hospital, Aarhus University Hospital, Aalborg, Denmark.

出版信息

Phys Med Biol. 2007 Feb 7;52(3):803-14. doi: 10.1088/0031-9155/52/3/019. Epub 2007 Jan 16.

Abstract

The quasi-static elastic properties of the tympanic membrane system can be described by the areal modulus of elasticity determined by a middle ear model. The response of the tympanic membrane to quasi-static pressure changes is determined by its elastic properties. Several clinical problems are related to these, but studies are few and mostly not comparable. The elastic properties of membranes can be described by the areal modulus, and these may also be susceptible to age-related changes reflected by changes in the areal modulus. The areal modulus is determined by the relationship between membrane tension and change of the surface area relative to the undeformed surface area. A middle ear model determined the tension-strain relationship in vivo based on data from experimental pressure-volume deformations of the human tympanic membrane system. The areal modulus was determined in both a younger (n = 10) and an older (n = 10) group of normal subjects. The areal modulus for lateral and medial displacement of the tympanic membrane system was smaller in the older group (mean = 0.686 and 0.828 kN m(-1), respectively) compared to the younger group (mean = 1.066 and 1.206 kN m(-1), respectively), though not significantly (2p = 0.10 and 0.11, respectively). Based on the model the areal modulus was established describing the summated elastic properties of the tympanic membrane system. Future model improvements include exact determination of the tympanic membrane area accounting for its shape via 3D finite element analyses. In vivo estimates of Young's modulus in this study were a factor 2-3 smaller than previously found in vitro. No significant age-related differences were found in the elastic properties as expressed by the areal modulus.

摘要

鼓膜系统的准静态弹性特性可用中耳模型确定的面弹性模量来描述。鼓膜对准静态压力变化的响应由其弹性特性决定。有几个临床问题与之相关,但研究较少且大多不可比。膜的弹性特性可用面弹性模量来描述,这些特性也可能易受与年龄相关的变化影响,这种变化通过面弹性模量的改变得以体现。面弹性模量由膜张力与相对于未变形表面积的表面积变化之间的关系决定。一个中耳模型基于人体鼓膜系统实验压力 - 容积变形的数据确定了体内的张力 - 应变关系。在一组较年轻(n = 10)和一组较年长(n = 10)的正常受试者中测定了面弹性模量。与较年轻组(平均值分别为1.066和1.206 kN m⁻¹)相比,较年长组中鼓膜系统横向和纵向位移的面弹性模量较小(平均值分别为0.686和0.828 kN m⁻¹),不过差异不显著(分别为2p = 0.10和0.11)。基于该模型建立了描述鼓膜系统综合弹性特性的面弹性模量。未来模型的改进包括通过三维有限元分析精确确定考虑鼓膜形状的鼓膜面积。本研究中体内杨氏模量的估计值比之前体外研究中发现的值小2至3倍。在由面弹性模量表示的弹性特性方面未发现显著的年龄相关差异。

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