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The influence of muscles activation on the dynamical behaviour of the tympano-ossicular system of the middle ear

机译:肌肉激活对中耳鼓膜听觉系统动力学行为的影响

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摘要

The human ear is a complex biomechanical system and is divided into three parts: outer, middle and inner ear. The middle ear is formed by ossicles (malleus, incus and stapes), ligaments, muscles and tendons, which transfers sound vibrations from the eardrum to the inner ear, linking with mastoid and Eustachian tube. In this work, a finite element modelling of the tympano-ossicular system of the middle ear was developed. A dynamic study based on a structural response to harmonic vibrations, for a sound pressure level (SPL) of 110, 120 and 130 dB SPL applied in the eardrum, is presented. The connection between the ossicles is made using a contact formulation. The model includes the different ligaments considering its hyperelastic behaviour. The activation of the muscles is based on the constitutive model proposed by previous work. The harmonic responses of displacement and pressure obtained on the stapes footplate, for a frequency range between 100 Hz and 10 kHz, are obtained simulating the muscle activation. The results are compared considering the passive and active states. The results are discussed and they are in accordance with audiological data published with reference to the effects of the middle ear muscles contraction.
机译:人耳是一个复杂的生物力学系统,分为三部分:外耳,中耳和内耳。中耳由小骨(小腿,砧骨和骨),韧带,肌肉和肌腱形成,将声音振动从鼓膜传递到内耳,并与乳突和咽鼓管相连。在这项工作中,开发了中耳鼓膜听骨系统的有限元建模。提出了基于结构对谐波振动的动态研究,针对在鼓膜中施加110、120和130 dB SPL的声压级(SPL)。小骨之间的连接使用接触配方进行。考虑到其超弹性行为,该模型包括不同的韧带。肌肉的激活是基于先前工作提出的本构模型。在100 Hz到10 kHz的频率范围内,在骨踏板上获得的位移和压力的谐波响应是通过模拟肌肉激活而获得的。比较考虑了被动和主动状态的结果。对结果进行了讨论,并与参考中耳肌肉收缩作用的听觉数据相一致。

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