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Differences of Basilar Membrane Responses Due to Spiral Geometry Identified from Passive Cochlea Numerical Models

机译:从被动耳蜗数值模型确定的螺旋几何形状引起的基底膜反应的差异。

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In this study, the dynamics responses of basilar membrane in an inner ear were investigated in order to identify the differences between spiral and uncoiled cochleae using passive finite element models. To compare the dynamics responses of the basilar membrane, an uncoiled cochlea model was developed considering the fluid-structure interactions and the transverse orthotropic material properties of basilar membrane. A spiral cochlea model was also constructed by transforming only the nodal coordinates of the uncoiled model into spiral geometry. Then, the dynamic characteristics of two cochlear models were compared in frequency domain. Compared vibrational components of basilar membrane in longitudinal and radial directions in the spiral cochlea model showed large differences compared to those of the uncoiled one. It was discussed whether these differences have influences on the hearing capability in very low and high frequency ranges.
机译:在这项研究中,研究了内耳基底膜的动力学响应,以便使用被动有限元模型识别螺旋耳蜗和未卷曲耳蜗之间的差异。为了比较基底膜的动力学响应,考虑到基底膜的流体-结构相互作用和正交各向异性材料特性,建立了未卷曲的耳蜗模型。还通过仅将未卷曲模型的节点坐标转换为螺旋几何结构来构建螺旋耳蜗模型。然后,在频域上比较了两个耳蜗模型的动态特性。在螺旋耳蜗模型中,基底膜在纵向和径向上的振动分量与未卷曲的相比,差异很大。讨论了这些差异是否会影响非常低和高频范围内的听力。

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