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声带小振幅振荡的物理学

The physics of small-amplitude oscillation of the vocal folds.

作者信息

Titze I R

机构信息

Department of Speech Pathology and Audiology, University of Iowa, Iowa City 52242.

出版信息

J Acoust Soc Am. 1988 Apr;83(4):1536-52. doi: 10.1121/1.395910.

Abstract

A theory of vocal fold oscillation is developed on the basis of the body-cover hypothesis. The cover is represented by a distributed surface layer that can propagate a mucosal surface wave. Linearization of the surface-wave displacement and velocity, and further small-amplitude approximations, yields closed-form expressions for conditions of oscillation. The theory predicts that the lung pressure required to sustain oscillation, i.e., the oscillation threshold pressure, is reduced by reducing the mucosal wave velocity, by bringing the vocal folds closer together and by reducing the convergence angle in the glottis. The effect of vocal tract acoustic loading is included. It is shown that vocal tract inertance reduces the oscillation threshold pressure, whereas vocal tract resistance increases it. The treatment, which is applicable to falsetto and breathy voice, as well as onset or release of phonation in the absence of vocal fold collision, is harmonized with former treatments based on two-mass models and collapsible tubes.

摘要

基于体-被膜假说,提出了一种声带振荡理论。被膜由一个能够传播黏膜表面波的分布式表层表示。对表面波位移和速度进行线性化,并进一步进行小振幅近似,得出了振荡条件的封闭形式表达式。该理论预测,通过降低黏膜波速度、使声带更靠近以及减小声门处的会聚角,可以降低维持振荡所需的肺压,即振荡阈值压力。考虑了声道声学负载的影响。结果表明,声道惯性会降低振荡阈值压力,而声道阻力会增加该压力。该理论适用于假声和呼吸声,以及在没有声带碰撞的情况下发声的起始或终止,与基于双质量模型和可折叠管的先前理论相协调。

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