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Fixation and detachment of superior and anterior malleolar ligaments in human middle ear: Experiment and modeling

机译:人中耳上踝和前踝韧带的固定和脱离:实验和建模

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摘要

The aim of this study is to investigate the function of the superior malleolar ligament (SML) and the anterior malleolar ligament (AML) in human middle ear for sound transmission through simulations of fixation and detachment of these ligaments in human temporal bones and a finite element (FE) ear model. Two laser vibrometers were used to measure the vibrations of the tympanic membrane (TM) and stapes footplate. A 3-D FE ear model was used to predict the transfer function of the middle ear with ligament fixation and detachment. The results demonstrate that fixations and detachments of the SML and AML had different effects on TM and stapes footplate movements. Fixation of the SML resulted in a reduction of displacement of the TM (umbo) and the footplate at low frequencies (f < 1000 Hz), but also caused a shift of displacement peak to higher frequencies. Fixation of both SML and AML caused a reduction of 15 dB at umbo or stapes at low frequencies. Detachment of the SML had almost no effect on TM and footplate mobility, but AML detachment had a minor effect on TM and footplate movement. The FE model was able to predict the effects of SML and AML fixation and detachment.
机译:这项研究的目的是通过模拟这些韧带在人颞骨中的固定和分离以及有限元,来研究上中踝韧带(SML)和前踝韧带(AML)在人中耳中的功能,以进行声音传输。 (FE)耳模。使用两个激光振动计测量鼓膜(TM)和骨足板的振动。使用3-D FE耳朵模型预测韧带固定和脱离的中耳传递功能。结果表明,SML和AML的固定和脱离对TM和骨足板运动有不同的影响。 SML的固定导致低频(f <1000 Hz)处TM(踏板)和踏板的位移减小,但也导致位移峰值向更高频率移动。 SML和AML的固定都会导致低频处的鼓声或骨声降低15 dB。分离SML对TM和足板的活动性几乎没有影响,但是AML脱离对TM和足板的运动影响较小。 FE模型能够预测SML和AML固定和脱离的影响。

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