Döllinger M, Rosanowski F, Eysholdt U, Lohscheller J
Abteilung für Phoniatrie und Pädaudiologie, Universitätsklinikum Erlangen, Erlangen, Germany.
HNO. 2008 Dec;56(12):1213-20. doi: 10.1007/s00106-007-1549-1.
The understanding of normal and pathological vocal fold dynamics is the basis for a pathophysiological motivated voice therapy. Crucial vocal fold dynamics concerning voice production occur at the medial part of the vocal fold which is seen as the most critical region of mucosal wave propagation. Due to the limited size of the larynx the possibilities of laryngeal imaging by endoscopic techniques are limited.
This work describes an experimental set-up that enables quantification of the entire medial and superior vocal fold surface using excised human and in vivo canine larynges.
The data obtained enable analysis of vocal fold deflections, velocities, and mucosal wave propagation. The reciprocal dependencies can be examined and different areas of vocal fold dynamics located. The vertical components obscured in clinical endoscopy can be visualized. This is not negligible.
In particular it is shown that the vertical deflection, which cannot be observed by clinical examination, plays an important part in the dynamics and therefore cannot be omitted for therapeutic procedures. The theoretically assumed entrainment and influence of the two main vibration modes enabling normal phonation is confirmed.
对正常和病理性声带动力学的理解是基于病理生理学的嗓音治疗的基础。与发声相关的关键声带动力学发生在声带的内侧部分,该部分被视为黏膜波传播的最关键区域。由于喉部尺寸有限,通过内镜技术进行喉部成像的可能性受到限制。
本文描述了一种实验装置,该装置能够使用切除的人体喉和活体犬喉对整个声带内侧和上表面进行量化。
所获得的数据能够分析声带的偏转、速度和黏膜波传播。可以研究相互依赖关系并确定声带动力学的不同区域。临床内镜检查中模糊不清的垂直分量可以可视化。这一点不可忽视。
特别表明,临床检查无法观察到的垂直偏转在动力学中起重要作用,因此在治疗过程中不能忽略。理论上假设的两种主要振动模式的夹带和影响,这两种模式使正常发声成为可能,得到了证实。