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Finite element analysis of the effects of a floating mass transducer on the performance of a middle ear implant

机译:浮动质量传感器对中耳植入物性能影响的有限元分析

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Experimental evidence has shown that floating mass transducers (FMTs) play a key role in the performance of middle ear implants. However, because of the tiny size and complex structure of the middle ear, systematic experimental study of the influences of FMTs is difficult to carry out. In this paper we develop a FMT-attached middle-ear finite element model to investigate some effects of a FMT on the performance of a middle ear implant. This model was constructed based on a complete set of computerized tomography section images of a healthy volunteer's left ear. The validity of the developed model was verified by comparing the model-predicted motion of the tympanic membrane and stapes footplate with published experimental data. The result shows that the FMT produces a mass loading effect prominently at high frequencies, the force required to drive the incus to the equivalent of 100 dB sound pressure level (SPL) is about 89 muN, and setting the attachment position of the FMT close to the incudostapedial joint can enhance the driving effect.
机译:实验证据表明,浮动质量传感器(FMT)在中耳植入物的性能中起关键作用。然而,由于中耳的尺寸很小且结构复杂,因此难以对FMT的影响进行系统的实验研究。在本文中,我们开发了连接FMT的中耳有限元模型,以研究FMT对中耳植入物性能的一些影响。该模型是基于健康志愿者左耳的一整套计算机断层扫描断层图像构建的。通过比较模型预测的鼓膜和骨足​​踏板的运动与已发表的实验数据,验证了所开发模型的有效性。结果表明,FMT在高频下会显着产生质量加载效果,将砧骨驱动到相当于100 dB声压级(SPL)所需的力约为89μN,并将FMT的固定位置设置为接近inc骨关节可以增强驱动效果。

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