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Human Stapedial Annular Ligament Mechanical and Geometrical Property Analysis using a Bi-layer Tapered Beam Model

机译:使用双层锥形梁模型的人体足弓环形韧带的力学和几何特性分析

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摘要

Stapedial annular ligament (SAL) is a ring-shaped bundle of elastic fibers which connects the base of the stapes to the margin of the oval window Histological images and morphometric data from micro-CT imaging showed that a SAL has a sandwich structure with fibers concentrated near the medial and lateral surfaces and sparse fibers in the intervening space. A hi-layer computational model has been developed to obtain mechanical properties of SAL, including the shear and tensile stiffness with the principal moments of inertia. Each layer was divided into 200 sub-elements, which were analyzed as tapered and clamped-guided Timoshenko beam models in a linear system. The inertial properties of the stapes and the overall shape of SAL were calculated from 3-D reconstructions obtained from micro-CT imaging. A stiffness matrix of SAL that fully couples the effects of force and moment components was estimated from the physiologically based SAL model. The SAL stiffness was calculated by considering the principal axes of the stapes, and the mean stiffness values corresponding to the principal z direction of the stapes were found to be 0.21 N/m and 1.56 N/m, with respective Young's moduli of 65 kN/m(2) and 490 kN/m(2).
机译:ped骨环形韧带(SAL)是一圈环形的弹性纤维束,将the骨的根部连接到椭圆形窗口的边缘。组织学图像和来自微CT的形态学数据表明,SAL具有纤维集中的三明治结构在内侧和外侧表面附近,并且在中间空间中纤维稀疏。已经开发了一种高层计算模型来获得SAL的机械性能,包括具有主要惯性矩的剪切刚度和拉伸刚度。每层分为200个子元素,将它们分析为线性系统中的锥形和夹紧导向的Timoshenko光束模型。 micro骨的惯性特性和SAL的整体形状是通过从Micro-CT成像获得的3-D重建来计算的。从基于生理的SAL模型估算出完全结合了力和力矩分量影响的SAL刚度矩阵。通过考虑the骨的主轴计算SAL刚度,发现对应于the骨主z方向的平均劲度值为0.21 N / m和1.56 N / m,各自的杨氏模量为65 kN / m m(2)和490 kN / m(2)。

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