Jiang J J, Chang C I, Raviv J R, Gupta S, Banzali F M, Hanson D G
Department of Otolaryngology, Head and Neck Surgery, Northwestern University Medical School, Chicago, Illinois, USA.
Laryngoscope. 2000 Sep;110(9):1567-73. doi: 10.1097/00005537-200009000-00032.
Vocal fold mucosal wave movements are thought to be important in determining voice characteristics and quality. To see these movements, high-speed cinematography and videostroboscopy have been used clinically; however, these techniques have disadvantages that make them impractical for quantitative measurement of mucosal wave movements. This study explored the feasibility of using line-scan cameras for mucosal wave analysis.
An excised larynx bench model was used to examine the effects of elongation and changes in subglottal pressure on the amplitude, frequency, and phase difference of vocal fold mucosal movements as calculated from line-scan images.
The data showed a positive and linear relationship between an increase in subglottal pressure and amplitude of the mucosal wave; elongation of the vocal folds appeared to decrease the amplitude of mucosal wave upheaval at each level of subglottal pressure. Similarly, increase in subglottal pressure had a positive and linear relationship with increase in frequency of vibration; elongation of the vocal folds further increased the frequency at any given subglottal pressure. Phase difference between the movements of the upper and lower margins of the mucosal lips was estimated and did not appear to be significantly affected by changes in subglottal pressure and elongation.
The data presented in this study are consistent with relationships that we would expect to be true from currently accepted models of vocal fold vibration.
声带黏膜波动运动被认为在决定嗓音特征和质量方面很重要。为观察这些运动,高速摄影和频闪喉镜已在临床上使用;然而,这些技术存在缺点,使其不适用于黏膜波动运动的定量测量。本研究探讨了使用线扫描相机进行黏膜波动分析的可行性。
使用切除的喉部实验台模型,以检查由线扫描图像计算得出的声门下压力变化和声带伸长对声带黏膜运动的幅度、频率和相位差的影响。
数据显示声门下压力增加与黏膜波幅度之间呈正线性关系;在每个声门下压力水平,声带伸长似乎会降低黏膜波隆起的幅度。同样,声门下压力增加与振动频率增加呈正线性关系;在任何给定的声门下压力下,声带伸长会进一步提高频率。估计了黏膜唇上下边缘运动之间的相位差,且似乎不受声门下压力变化和声带伸长的显著影响。
本研究呈现的数据与我们从当前被接受的声带振动模型中预期为真的关系一致。