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Phonation threshold pressure and onset frequency in a two-layer physical model of the vocal folds

机译:两层声带物理模型中的声音阈值压力和起音频率

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摘要

The influence of vocal fold geometry and stiffness on phonation onset was experimentally investigated using a body-cover physical model of the vocal folds. Results showed that a lower phonation threshold pressure and phonation onset frequency can be achieved by reducing body-layer or cover-layer stiffness, reducing medial surface thickness, or increasing cover-layer depth. Increasing body-layer stiffness also restricted vocal fold motion to the cover layer and reduced prephonatory glottal opening. Excitation of anterior–posterior modes was also observed, particularly for large values of the body-cover stiffness ratio. The results of this study were also discussed in relation to previous theoretical and experimental studies.
机译:声带的几何形状和刚度对发声开始的影响是通过使用声带的身体覆盖物物理模型进行实验研究的。结果表明,可以通过降低主体层或覆盖层的刚度,减小内侧表面厚度或增加覆盖层深度来实现较低的发声阈值压力和发声起始频率。体层刚度的增加也限制了声带向覆盖层的运动并减少了声门的开口。还观察到了前后模式的激励,特别是对于较大的车身覆盖刚度比值。本研究的结果也与先前的理论和实验研究进行了讨论。

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