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Investigation on Natural Frequency of Different Thicknesses of Cartilage in Myringoplasty

机译:灭鱼术中不同厚度厚度的自然频率调查

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A human middle ear system which includes tympanic membrane and ossicles (three tiny bones) has a function as a mechanical system transmitted sound and vibration from outer through to the inner ear section. Myringoplasty is an operation performed to repair a hole (perforation) in the tympanic membrane (TM). Sliced cartilage is generally used by an otolaryngologist to repair tympanic membrane perforation. The natural frequency for different thicknesses of cartilage in myringoplasty was compared to the normal tympanic membrane to find proper thickness in order to get the best hearing of the human ear system. The purpose of this work is to show the effect of different thicknesses of cartilage in myringoplasty using the Finite Element Method (FEM). The geometrical model of the human middle ear system was generated by the CAD Software using the physical properties of the human middle ear system reported by the previous researcher. Then, Hypermesh was used to create the Finite Element (FE) model. The eigen-value analysis is performed to obtain the mode shape and natural frequency of the human middle ear system with varied thicknesses of cartilage from 0.1 to 10 mm. Thus, by comparing the first natural frequencies of each cartilage thicknesses, we found that the maximum natural frequency of the human ear system when the cartilage's thickness is 0.13 mm. This disorder is the effect of the human middle ear system's mass and stiffness.
机译:包括鼓膜膜和骨架(三个微小骨骼)的人类中耳系统具有作为机械系统传递的声音和从外耳段的振动的功能。灭备术是用于修复鼓膜(TM)中的孔(穿孔)的操作。切片软骨通常由耳鼻喉科医生用于修复鼓膜膜穿孔。与法式鼓膜相比,将不同厚度厚度的软骨频率进行比较,以找到适当的厚度,以获得人耳系统的最佳听力。本作品的目的是使用有限元法(FEM)来展示不同厚度厚度厚度的软骨效果。人类中耳系统的几何模型由CAD软件使用先前研究人员报告的人类中耳系统的物理性质产生。然后,使用HyperMesh用于创建有限元(FE)模型。进行特征值分析以获得人中耳系统的模式形状和固有频率,具有0.1至10mm的多样化的软骨厚度。因此,通过比较每个软骨厚度的第一自然频率,我们发现当软骨厚度为0.13mm时,人耳系统的最大自然频率。这种疾病是人类中耳系统质量和刚度的影响。

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