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Theoretical simulation and experimental validation of inverse quasi-one-dimensional steady and unsteady glottal flow models

机译:准一维逆稳态和非稳态声门流模型的理论模拟和实验验证

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In physical modeling of phonation, the pressure drop along the glottal constriction is classically assessed with the glottal geometry and the subglottal pressure as known input parameters. Application of physical modeling to study phonation abnormalities and pathologies requires input parameters related to in vivo measurable quantities commonly corresponding to the physical model output parameters. Therefore, the current research presents the inversion of some popular simplified flow models in order to estimate the subglottal pressure, the glottal constriction area, or the separation coefficient inherent to the simplified flow modeling for steady and unsteady flow conditions. The inverse models are firstly validated against direct simulations and secondly against in vitro measurements performed for different configurations of rigid vocal fold replicas mounted in a suitable experimental setup. The influence of the pressure corrections related to viscosity and flow unsteadiness on the flow modeling is quantified. The inversion of one-dimensional glottal flow models including the major viscous effects can predict the main flow quantities with respect to the in vitro measurements. However, the inverse model accuracy is strongly dependent on the pertinence of the direct flow modeling. The choice of the separation coefficient is preponderant to obtain pressure predictions relevant to the experimental data. (c) 2008 Acoustical Society of America.
机译:在发声的物理模型中,沿声门收缩的压降通常以声门的几何形状和声门下压力作为已知输入参数进行评估。物理模型在研究发声异常和病理学方面的应用要求输入参数与通常与物理模型输出参数相对应的体内可测量量有关。因此,当前的研究提出了一些流行的简化流模型的反演,以便估计稳态和非稳态流条件下的声门下压力,声门收缩面积或简化流模型固有的分离系数。逆模型首先针对直接模拟进行验证,其次针对针对在合适的实验装置中安装的刚性人声折叠复制品的不同配置执行的体外测量。量化了与粘度和流动不稳定有关的压力校正对流动模型的影响。包含主要粘性效应的一维声门血流模型的反演可以预测相对于体外测量的主要血流量。但是,逆模型的准确性很大程度上取决于直接流建模的相关性。分离系数的选择是获得与实验数据相关的压力预测的主要手段。 (c)2008年美国声学学会。

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