人鼓膜的动态特性-实验测量和模型分析

Xiangming Zhang, R. Gan
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引用次数: 33

摘要

本文报道了利用材料测试系统和激光多普勒振动仪对人体鼓膜进行动态测试的实验装置。采用声-结构耦合分析方法对TM试样进行有限元模拟。采用广义标准线性实体(Weichert)模型作为TM的本构律,采用反问题求解法推导了TM的动力特性。得到了频域的复模量和时域的松弛模量。8个TM试样在200 Hz频率下的储存模量均值为54.34,在8000 Hz频率下的储存模量均值为65.54 MPa,在200 Hz频率下的损失模量均值为1.92,在8000 Hz频率下的损失模量均值为6.12 MPa。这些结果与已发表的用微型分离式霍普金森拉力杆测量的数据进行了比较。本文所报道的方法和数据对耳软组织生物力学领域的实验测量和理论分析都有一定的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic properties of human tympanic membrane – experimental measurement and modelling analysis
An experimental setup for dynamic testing of human tympanic membrane (TM) with the material testing system and laser Doppler vibrometry is reported in this paper. The experiment on TM specimen was simulated in finite element (FE) model using acoustic-structure coupled analysis. The generalised standard linear solid (Weichert) model was used as the constitutive law for the TM, and the dynamic properties of the TM was derived by inverse-problem solving method. The complex modulus in frequency-domain and the relaxation modulus in time-domain were obtained. The mean value of storage modulus of eight TM specimens was 54.34 at the frequency of 200 Hz and 65.54 MPa at 8,000 Hz, while the mean loss modulus was 1.92 at 200 Hz and 6.12 MPa at 8,000 Hz. These results were compared with the published data measured with the miniature split Hopkinson tension bar. The methods and data reported here contribute to the field of soft tissue biomechanics in both experimental measurement and theoretical analysis of ear.
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