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Comparison of a fiber-gel finite element model of vocal fold vibration to a transversely isotropic stiffness model

机译:声带折射振动对横向各向同性刚度模型的纤维 - 凝胶有限元模型的比较

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A fiber-gel vocal fold model is compared to a transversely isotropic stiffness model in terms of normal mode vibration. The fiber-gel finite element model (FG-FEM) consists of a series of gel slices, each with a two-dimensional finite element mesh, in a plane transverse to the tissue fibers. The gel slices are coupled with fibers under tension in the anterior-posterior dimension. No vibrational displacement in the fiber-length direction is allowed, resulting in a plane strain state. This is consistent with the assumption of transverse displacement of a simple string, offering a wide range of natural frequencies (well into the kHz region) with variable tension. For low frequencies, the results compare favorably with the natural frequencies of a transversely isotropic elastic stiffness model (TISM) in which the shear modulus in the longitudinal plane is used to approximate the effect of fiber tension. For high frequencies, however, the natural frequencies do not approach the string mode frequencies unless plane strain is imposed on the TISM model. The simplifying assumption of plane strain, as well as the use of analytical closed-form shape functions, allow for substantial savings in computational time, which is important in clinical and exploratory applications of the FG-FEM model. (C) 2017 Acoustical Society of America.
机译:在正常模式振动方面将纤维 - 凝胶声折叠模型与横向各向同性刚度模型进行比较。纤维 - 凝胶有限元模型(FG-FEM)由一系列凝胶切片组成,每个凝胶切片具有二维有限元啮合,在横向于组织纤维的平面中。凝胶切片与前后尺寸的张力下的纤维偶联。允许纤维长度方向上的振动位移,导致平面应变状态。这与假设简单串的横向位移的假设一致,提供具有可变张力的各种自然频率(井进入KHz区域)。对于低频,结果对横向各向同性弹性刚度模型(TIS)的自然频率相比,其中纵向平面中的剪切模量用于近似纤维张力的影响。然而,对于高频,除非对TISM模型施加平面应变,否则自然频率不会接近串模式频率。平面应变的简化假设以及分析闭合形状功能的使用,允许在计算时间内显着节省,这在FG-FEM模型的临床和探索性应用中是重要的。 (c)2017年声学社会。

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