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Computational modeling of vibration-induced systemic hydration of vocal folds over a range of phonation conditions

机译:在一系列发声条件下振动诱导的声学折叠系统水合的计算建模

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摘要

Predicting phonation conditions that are benign to voice health remains a biomechanically relevant problem.Our objective is to provide insight into vocal fold (VF) hydration based on continuum-based VF models thatare able to compute VF stresses during phonation and a scheme for the extraction and generalization of suchcomputational data based on the principle of linear superposition. Because VF tissue is poroelastic, spatialgradients of VF hydrostatic stresses computed for a given phonation condition determine VF interstitial fluidflow. The present approach transforms, based on linear superposition principles, the computed interstitialfluid velocities at the particular phonation to those at an arbitrary phonation condition. Intersititial fluidflow characteristics for a range of phonation conditions are compared. For phonation conditions with noor moderate collision, no dehydration per vibration cycle is predicted throughout the VF. For more severecollision conditions, tissue dehydration is restricted to a region close to the glottal surface. Interstitial fluiddisplacement in the VF is found to be heterogeneous and strongly dependent on the phonation condition.A phonation condition is found to exist for which dehydration peaks. The proposed method significantlyexpands the scope and relevance of conducting isolated numerical simulations of VF vibration.
机译:预测对语音健康有益的发声条件仍然是一个生物力学相关的问题。我们的目标是基于能够在发声期间计算VF压力的连续谱VF模型以及提取和提取方案的基础上,深入了解声带(VF)的水合作用。基于线性叠加原理的计算数据的一般化。因为VF组织是多孔弹性的,所以针对给定的发声条件计算出的VF静水压力的空间梯度决定了VF间质液流。本方法基于线性叠加原理,将特定发声时的计算间隙流体速度转换为任意发声条件下的间隙流体速度。比较了一系列发声条件的间隙流体流动特性。对于没有中等碰撞的发声条件,在整个VF中,每个振动周期都不会出现脱水。对于更严重的碰撞情况,组织脱水仅限于靠近声门表面的区域。发现VF中的组织液置换是不均匀的,并且强烈依赖于发声条件。发现存在脱水峰的发声条件。所提出的方法大大扩展了进行VF振动的孤立数值模拟的范围和相关性。

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