Maunsell Rebecca, Ouaknine Maurice, Giovanni Antoine, Crespo Agrício
Otorhinolaryngology Department, Universidade Estadual de Campinas, Cidade Universitária Zeferino Vaz, CEP-13083-970 Campinas, São Paulo, Brazil.
Otolaryngol Head Neck Surg. 2006 Sep;135(3):438-44. doi: 10.1016/j.otohns.2006.05.023.
The aim of this study was to describe and analyze the vibratory pattern of vocal folds in an asymmetric situation.
Cricothyroid muscle unilateral action was simulated on excised larynges on an experimental bench. Increasing airflow rates were applied to achieve vocal fold vibration. Electroglottography and an optoreflectometer device allowed analysis of separate and simultaneous vocal fold vibration. Spectra of the signals were obtained for each level of airflow variation.
All experiments showed periodic vibration. A phase shift was noted between the two vocal folds. Subharmonics and biphonation were identified in all the experiments.
Lax vocal folds were more susceptible to spectral changes with increasing airflow.
Knowledge of the consequences of mass, tension, and position asymmetries of the vocal folds is crucial for diagnosis making and defining therapeutic strategies in dysphonic patients. This study may contribute to the understanding of physiology of vocal fold interaction and its compensatory mechanisms.
本研究旨在描述和分析不对称情况下声带的振动模式。
在实验台上对切除的喉部模拟环甲肌单侧作用。应用逐渐增加的气流速率以实现声带振动。电子声门图和光反射计装置可用于分析单独和同时的声带振动。针对每个气流变化水平获取信号频谱。
所有实验均显示出周期性振动。在两侧声带之间观察到相位偏移。在所有实验中均识别出次谐波和双声现象。
声带松弛时,随着气流增加更容易出现频谱变化。
了解声带质量、张力和位置不对称的后果对于诊断和确定发声障碍患者的治疗策略至关重要。本研究可能有助于理解声带相互作用的生理学及其代偿机制。