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首页> 外文期刊>Hearing Research: An International Journal >Viscoelastic properties of the human tympanic membrane studied with stroboscopic holography and finite element modeling
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Viscoelastic properties of the human tympanic membrane studied with stroboscopic holography and finite element modeling

机译:用频闪全息术和有限元模拟研究人鼓膜膜的粘弹性

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摘要

A new anatomically-accurate Finite Element (FE) model of the tympanic membrane (TM) and malleus was combined with measurements of the sound-induced motion of the TM surface and the bony ma-nubrium, in an isolated TM-malleus preparation. Using the results, we were able to address two issues related to how sound is coupled to the ossicular chain: (i) Estimate the viscous damping within the tympanic membrane itself, the presence of which may help smooth the broadband response of a potentially highly resonant TM, and (ii) Investigate the function of a peculiar feature of human middle-ear anatomy, the thin mucosal epithelial fold that couples the mid part of the human manubrium to the TM. Sound induced motions of the surface of ex vivo human eardrums and mallei were measured with stroboscopic holography, which yields maps of the amplitude and phase of the displacement of the entire membrane surface at selected frequencies. The results of these measurements were similar, but not identical to measurements made in intact ears. The holography measurements were complemented by laser-Doppler vibrometer measurements of sound-induced umbo velocity, which were made with fine-frequency resolution. Comparisons of these measurements to predictions from a new anatomically accurate FE model with varied membrane characteristics suggest the TM contains viscous elements, which provide relatively low damping, and that the epithelial fold that connects the central section of the human manubrium to the TM only loosely couples the TM to the manubrium. The laser-Doppler measurements in two preparations also suggested the presence of significant variation in the complex modulus of the TM between specimens. Some animations illustrating the model results are available at our website (www.uantwerp.be/en/rg/bimef/downloads/tympanic-membrane-motion).
机译:在分离的TM-MOLLEUS制剂中,组合鼓膜膜(TM)和MALLEUS的鼓膜膜(TM)和MALLEUS的诱导运动的测量结果与分离的TM-MALLEUS制剂相结合。使用结果,我们能够解决与声音耦合到音箱的两个问题有关:(i)估计鼓膜膜本身内的粘性阻尼,其中存在可能有助于平滑潜在高度共振的宽带响应TM和(II)研究人中耳解剖学的特殊特征,将人疗法的中间部分与TM联系起来的薄膜上皮折叠的功能。用频闪性全息术测量离体人耳膜和Mallei表面的声音诱导的运动,从而在所选择的频率下产生整个膜表面的位移的幅度和相位的映射。这些测量结果的结果相似,但与完整耳朵中的测量不相同。通过光学诱导的UMBO速度的激光多普勒振动计测量来补充全息测量,这是用微频分辨率进行的。这些测量的比较从具有多种膜特性的新的解剖学准确的Fe模型预测表明TM含有粘性元件,其提供相对低的阻尼,并且将人类甘露姑娘的中央部分连接到TM的上皮折叠仅限于TM的上皮折叠tm到甘蔗。两种制剂中的激光多普勒测量还表明样品之间Tm的复杂模量存在显着变化。一些说明模型结果的动画可在我们的网站上获得(www.uantwerp.be/en/rg/bimef/downloads/tympanic-membrane-motion)。

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