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Characteristics of phonation onset in a two-layer vocal fold model

机译:两层人声折叠模型中发声开始的特征

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摘要

Characteristics of phonation onset were investigated in a two-layer body-cover continuum model of the vocal folds as a function of the biomechanical and geometric properties of the vocal folds. The analysis showed that an increase in either the body or cover stiffness generally increased the phonation threshold pressure and phonation onset frequency, although the effectiveness of varying body or cover stiffness as a pitch control mechanism varied depending on the body-cover stiffness ratio. Increasing body-cover stiffness ratio reduced the vibration amplitude of the body layer, and the vocal fold motion was gradually restricted to the medial surface, resulting in more effective flow modulation and higher sound production efficiency. The fluid-structure interaction induced synchronization of more than one group of eigenmodes so that two or more eigenmodes may be simultaneously destabilized toward phonation onset. At certain conditions, a slight change in vocal fold stiffness or geometry may cause phonation onset to occur as eigenmode synchronization due to a different pair of eigenmodes, leading to sudden changes in phonation onset frequency, vocal fold vibration pattern, and sound production efficiency. Although observed in a linear stability analysis, a similar mechanism may also play a role in register changes at finite-amplitude oscillations.
机译:在发声的两层身体覆盖连续体模型中研究发声的特征,该模型是发声的生物力学和几何特性的函数。分析表明,尽管改变车身或罩壳刚度作为俯仰控制机构的效果随车身覆盖刚度比的变化而变化,但车身或罩壳刚度的增加通常会增加发声阈值压力和发声开始频率。体盖刚度比的增加减小了体层的振动幅度,并且声折运动逐渐限制在内侧表面,从而导致更有效的流量调制和更高的声音产生效率。流体-结构相互作用引起了多于一组的本征模式的同步,从而使得两个或多个本征模式可以同时趋于发声失稳。在某些条件下,由于一对不同的本征模式,人声折叠刚度或几何形状的细微变化可能导致发声开始,因为本征模式同步,导致发声开始频率,人声折叠振动模式和发声效率突然变化。尽管在线性稳定性分析中观察到,但是类似的机制也可能在有限振幅振荡下的寄存器变化中起作用。

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