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Computational modeling of phonatory dynamics in a tubular three-dimensional model of the human larynx

机译:人喉管状三维模型中语音动力学的计算模型

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摘要

Simulation of the phonatory flow-structure interaction has been conducted in a three-dimensional, tubular shaped laryngeal model that has been designed with a high level of realism with respect to the human laryngeal anatomy. A non-linear spring-based contact force model is also implemented for the purpose of representing contact in more general conditions, especially those associated with three-dimensional modeling of phonation in the presence of vocal fold pathologies. The model is used to study the effects of a moderate (20%) vocal-fold tension imbalance on the phonatory dynamics. The characteristic features of phonation for normal as well as tension-imbalanced vocal folds, such as glottal waveform, glottal jet evolution, mucosal wave-type vocal-fold motion, modal entrainment, and asymmetric glottal jet deflection have been discussed in detail and compared to established data. It is found that while a moderate level of tension asymmetry does not change the vibratory dynamics significantly, it can potentially lead to measurable deterioration in voice quality.
机译:已经在三维管状喉模型中进行了声流-结构相互作用的模拟,该模型在设计上相对于人体喉部解剖学具有很高的真实性。还实现了基于弹簧的非线性接触力模型,目的是在更一般的条件下表示接触,尤其是在存在声带病理的情况下与发声的三维建模相关的条件。该模型用于研究中等(20%)声带张力不平衡对发声动力学的影响。正常声和张力不平​​衡的声带的发声特征,如声门波形,声门射流演变,粘膜波型声带运动,模态夹带和不对称声门射流偏转已被详细讨论并与之相比。建立的数据。发现虽然中等程度的张力不对称不会显着改变振动动力学,但可能导致可测量的语音质量下降。

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