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Regulation of glottal closure and airflow in a three-dimensional phonation model: Implications for vocal intensity control

机译:三维发声模型中声门关闭和气流的调节:对声音强度控制的影响

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摘要

Maintaining a small glottal opening across a large range of voice conditions is critical to normal voice production. This study investigated the effectiveness of vocal fold approximation and stiffening in regulating glottal opening and airflow during phonation, using a three-dimensional numerical model of phonation. The results showed that with increasing subglottal pressure the vocal folds were gradually pushed open, leading to increased mean glottal opening and flow rate. A small glottal opening and a mean glottal flow rate typical of human phonation can be maintained against increasing subglottal pressure by proportionally increasing the degree of vocal fold approximation for low to medium subglottal pressures and vocal fold stiffening at high subglottal pressures. Although sound intensity was primarily determined by the subglottal pressure, the results suggest that, to maintain small glottal opening as the sound intensity increases, one has to simultaneously tighten vocal fold approximation and/or stiffen the vocal folds, resulting in increased glottal resistance, vocal efficiency, and fundamental frequency.
机译:在较大范围的语音条件下保持较小的声门开口对于正常的语音产生至关重要。这项研究使用三维数值模型的发声,研究了发声近似和变硬在调节发声过程中声门开口和气流中的有效性。结果表明,随着声门下压力的增加,声带逐渐被推开,导致声门平均开度和流速增加。通过按比例增加中低声门下压力的声带逼近度和在高声门下压力下的声带硬化,可以维持人声的典型小声门开口和平均声门流速,以防止声门下压力增加。尽管声强主要由声门下压力决定,但结果表明,要在声强增加时保持声门小开口,必须同时收紧声带近似值和/或使声带变硬,从而导致声门阻力,声带增大。效率和基本频率。

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