Complex modulus of round window membrane over auditory frequencies in normal and otitis media chinchilla ears

Xuelin Wang, Don U. Nakmali, R. Gan
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引用次数: 7

Abstract

To better reveal the mechanical properties of round window membrane (RWM) in normal and pathological ears, the complex modulus of chinchilla RWM was determined by measuring its dynamic behaviour together with the finite element simulation. The acute otitis media (AOM) was created by transbullar injection of Haemophilus influenzae in chinchillas and RWM specimens in AOM ears were prepared four days post inoculation. Vibration of the RWM induced by coil-magnet force stimulation was measured by laser Doppler vibrometry over frequencies of 0.2–8 kHz. A finite element model-based inverse-problem solving method was used to determine the complex modulus of each RWM specimen in the frequency domain. Experimental results of the AOM ears indicated that the resonance frequency decreased by 13.94% compared with the normal ears and the mean storage modulus and loss modulus were decreased by 65% and 32%, respectively.
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正常鼠耳和中耳炎鼠耳圆窗膜在听频上的复模量
为了更好地揭示正常耳和病理耳圆窗膜的力学特性,通过测量圆窗膜的动态行为并进行有限元模拟,确定圆窗膜的复模量。采用经球囊注射流感嗜血杆菌制备龙猫急性中耳炎(AOM),接种4天后制备急性中耳炎耳RWM标本。利用激光多普勒振动仪在0.2 ~ 8khz频率范围内测量了线圈-磁体力刺激下RWM的振动。采用基于有限元模型的反问题求解方法,确定了各RWM试件的频域复模量。实验结果表明,与正常耳相比,AOM耳的共振频率降低了13.94%,平均存储模量和损耗模量分别降低了65%和32%。
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