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A Computational Study of the Effect of False Vocal Folds on Glottal Flow and Vocal Fold Vibration During Phonation

机译:虚假声带对声带化过程中声门流动和声带振动影响的计算研究

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摘要

The false vocal folds are believed to be components of the acoustic filter that is responsible for shaping the voice. However, the effects of false vocal folds on the vocal fold vibration and the glottal aerodynamic during phonation remain unclear. This effect has implications for computational modeling of phonation as well as for understanding laryngeal pathologies such as glottal incompetence resulting from unilateral vocal fold paralysis. In this study, a high fidelity, two-dimensional computational model, which combines an immersed boundary method for the airflow and a continuum, finite-element method for the vocal folds, is used to examine the effect of the false vocal folds on flow-induced vibration (FIV) of the true vocal folds and the dynamics of the glottal jet. The model is notionally based on a laryngeal CT scan and employs realistic flow conditions and tissue properties. Results show that the false vocal folds potentially have a significant impact on phonation. The false vocal folds reduce the glottal flow impedance and increase the amplitude as well as the mean glottal jet velocity. The false vocal folds also enhance the intensity of the monopole acoustic sources in the glottis. A mechanism for reduction in flow impedance due to the false vocal folds is proposed.
机译:虚假的声带被认为是声波滤波器的组成部分,它负责塑造声音。但是,假声带对发声过程中声带振动和声门空气动力学的影响尚不清楚。这种影响对发声的计算模型以及理解喉部病理学有影响,例如由于单侧声带麻痹导致的声门功能不全。在这项研究中,采用了高保真度的二维计算模型,该模型结合了用于气流的沉浸边界方法和用于声带的连续有限元方法,用于检验假声带对流动的影响。真实声带的声振动(FIV)和声门喷射的动力学。该模型理论上是基于喉部CT扫描,并采用了现实的流动条件和组织特性。结果表明,错误的声带可能会对发声产生重大影响。虚假的声带会降低声门血流阻抗,并增加声波幅度和声门平均射流速度。错误的声带也会增加声门中单极声源的强度。提出了一种用于减少由于假声带引起的流阻的机制。

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