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使用非线性模型研究帕金森病中的声带振动。

Studying vocal fold vibrations in Parkinson's disease with a nonlinear model.

作者信息

Zhang Yu, Jiang Jack, Rahn Douglas A

机构信息

Department of Surgery, Division of Otolaryngology Head and Neck Surgery, University of Wisconsin Medical School, Madison, Wisconsin 53792-7375, USA.

出版信息

Chaos. 2005 Sep;15(3):33903. doi: 10.1063/1.1916186.

Abstract

A nonlinear model is applied to study pathologic vocal vibratory characteristics and voice treatments of Parkinson's disease. We find that a number of pathologic vocal characteristics commonly observed in Parkinson's disease, including reduced vibratory intensity, incomplete vocal closure, increased phonation threshold pressure, glottal tremor, subharmonics, and chaotic vocal fold vibrations, can be studied with this nonlinear model. We also find that two kinds of clinical voice treatments for Parkinson's disease, including respiratory effort treatment and Lee Silverman voice treatment can be studied with this computer model. Results suggest that respiratory effort treatment, in which subglottal pressure is increased, might aid in enhancing vibratory intensity, improving glottal closure, and avoiding vibratory irregularity. However, the Lee Silverman voice treatment, in which both subglottal pressure and vocal fold adduction are increased, might be better than respiratory effort treatment. Increasing vocal fold thickness would be further helpful to improve these pathologic characteristics. The model studies show consistencies with clinical observations. Computer models may be of value in understanding the dynamic mechanism of disordered voices and studying voice treatment effects in Parkinson's disease.

摘要

应用非线性模型研究帕金森病的病理性嗓音振动特征及嗓音治疗。我们发现,该非线性模型可用于研究帕金森病中常见的一些病理性嗓音特征,包括振动强度降低、声门闭合不全、发声阈压升高、声门震颤、次谐波以及声带混沌振动。我们还发现,该计算机模型可用于研究帕金森病的两种临床嗓音治疗方法,即呼吸训练治疗和李氏嗓音治疗。结果表明,通过增加声门下压力的呼吸训练治疗,可能有助于提高振动强度、改善声门闭合以及避免振动不规则。然而,同时增加声门下压力和声带内收的李氏嗓音治疗可能比呼吸训练治疗效果更好。增加声带厚度将进一步有助于改善这些病理性特征。模型研究结果与临床观察结果一致。计算机模型对于理解嗓音障碍的动态机制以及研究帕金森病嗓音治疗效果可能具有重要价值。

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