发声
喉
声带
基频
医学
发音语音学
解剖
声学
听力学
物理
作者
Nancy Pearl Solomon,Kang Liu,Tzu‐Yu Hsiao,Erich S. Luschei,Tsu-Ching Fu,Ingo R. Titze,Mow‐Ming Hsu
标识
DOI:10.1177/000348949410301013
摘要
The relation between subglottic pressure and the fundamental frequency of vocal fold vibration was studied by means of evoked phonation in an in vivo canine model. The evoked-phonation model involved electrical stimulation of the midbrain that resulted in consistent responses by respiratory and laryngeal musculature, accompanied by phonation. The dynamic stiffness properties of the vocal folds, especially the “cover,” were investigated by delivering various amounts of air pressure to the larynx from an opening in the trachea. The fundamental frequency of vocal fold vibration increased linearly with subglottic pressure. The slopes ranged from 22.4 to 118.7 Hz per kilopascal in 7 animals. The results indicated that the dependence of fundamental frequency on subglottic pressure is a passive mechanical phenomenon.
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