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Cause-effect relationship between vocal fold physiology and voice production in a three-dimensional phonation model

机译:三维发声模型中声带生理与声音产生之间的因果关系

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The goal of this study is to better understand the cause-effect relation between vocal fold physiology and the resulting vibration pattern and voice acoustics. Using a three-dimensional continuum model of phonation, the effects of changes in vocal fold stiffness, medial surface thickness in the vertical direction, resting glottal opening, and subglottal pressure on vocal fold vibration and different acoustic measures are investigated. The results show that the medial surface thickness has dominant effects on the vertical phase difference between the upper and lower margins of the medial surface, closed quotient, H1-H2, and higher-order harmonics excitation. The main effects of vocal fold approximation or decreasing resting glottal opening are to lower the phonation threshold pressure, reduce noise production, and increase the fundamental frequency. Increasing subglottal pressure is primarily responsible for vocal intensity increase but also leads to significant increase in noise production and an increased fundamental frequency. Increasing AP stiffness significantly increases the fundamental frequency and slightly reduces noise production. The interaction among vocal fold thickness, stiffness, approximation, and subglottal pressure in the control of F0, vocal intensity, and voice quality is discussed. (C) 2016 Acoustical Society of America.
机译:这项研究的目的是更好地理解声带生理与所产生的振动模式和声音声学之间的因果关系。使用三维发声的连续模型,研究了声带刚度,垂直方向上的中间表面厚度,声门开口静止和声门下压力变化对声带振动和不同声学措施的影响。结果表明,内侧表面厚度对内侧表面上下边界之间的垂直相位差,封闭商,H1-H2和高次谐波激发具有显着影响。声带近似或减少声门开口的主要作用是降低发声阈值压力,减少噪声产生并增加基本频率。声门下压力的增加主要是人声强度的增加,但也导致噪声产生的显着增加和基本频率的增加。 AP刚度的增加会显着增加基频,并稍微降低噪声的产生。讨论了在F0,人声强度和声音质量控制中人声折叠厚度,刚度,近似值和声门下压力之间的相互作用。 (C)2016年美国声学学会。

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