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使用同步光声门图和喉频闪喉镜对黏膜波速度进行临床测量。

Clinical measurement of mucosal wave velocity using simultaneous photoglottography and laryngostroboscopy.

作者信息

Hanson D G, Jiang J, D'Agostino M, Herzon G

机构信息

Department of Otolaryngology-Head and Neck Surgery, Northwestern University School of Medicine, Chicago, Illinois, USA.

出版信息

Ann Otol Rhinol Laryngol. 1995 May;104(5):340-9. doi: 10.1177/000348949510400502.

Abstract

Simultaneous glottal transillumination or photoglottography (PGG), electroglottography (EGG), and video laryngostroboscopy were used to measure the traveling wave velocity of the vibrating vocal folds during phonation in human subjects. The duration of travel was calibrated from the PGG signal, while the displacement of the upper and lower lips of the vibrating vocal folds was calibrated from parallel laser beams projected onto the vocal folds. The mucosal wave velocity varied with the portion of the glottal cycle. The amplitude of displacement correlated positively with the intensity of phonation and negatively with the fundamental frequency and was decreased for breathy and pressed phonation modes. The velocity of the opening phase segment of the PGG signal directly correlated with the top lip displacement of the vibrating vocal fold, and bottom lip displacement correlated with the closing phase of the PGG signal. Therefore, with suitable calibration, the effects of mucosal lateral displacement may be measured from a PGG signal. Simultaneous measures of PGG, EGG, and stroboscopy provide a three-dimensional representation of glottal vibration that can be numerically analyzed.

摘要

同时使用声门透照法或光声门图(PGG)、电声门图(EGG)和视频喉镜频闪检查来测量人类受试者发声时振动声带的行波速度。传播持续时间根据PGG信号进行校准,而振动声带上下唇的位移则根据投射到声带上的平行激光束进行校准。黏膜波速度随声门周期的不同部分而变化。位移幅度与发声强度呈正相关,与基频呈负相关,在呼吸声和紧压声发声模式下会降低。PGG信号开放阶段的速度与振动声带的上唇位移直接相关,下唇位移与PGG信号的闭合阶段相关。因此,通过适当校准,可以从PGG信号中测量黏膜横向位移的影响。PGG、EGG和频闪检查的同步测量提供了声门振动的三维表示,可以进行数值分析。

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