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使用改良视觉模拟量表进行的仪器化嗓音评估与感知性嗓音分析的相关性

Correlation of instrumental voice evaluation with perceptual voice analysis using a modified visual analog scale.

作者信息

Yu Ping, Revis Joana, Wuyts Floris L, Zanaret Michel, Giovanni Antoine

机构信息

Laboratoire d'Audio-Phonologie Clinique, CHU Timone, Marseille, France.

出版信息

Folia Phoniatr Logop. 2002 Nov-Dec;54(6):271-81. doi: 10.1159/000066150.

DOI:10.1159/000066150
PMID:12417797
Abstract

Various rating scales have been used for perceptual voice analysis including ordinal (ORD) scales and visual analog (VA) scales. The purpose of this study was to determine the most suitable scale for studies using perceptual voice analysis as a gold standard for validation of objective analysis protocols. The study was carried out on 74 female voice samples from 68 dysphonic patients and 6 controls. A panel of 4 raters with experience in perceptual analysis was asked to score voices according to the G component (overall quality) of the GRBAS system. Two rating scales were used. The first was a conventional 4-point ORD scale. The second was a modified VA (mVA) scale obtained by transforming the VA scale into an ORD scale using a weighted conversion scheme. Objective voice evaluation was performed using the EVA workstation. Objective measurements included acoustic, aerodynamic, and physiologic parameters as well as parameters based on nonlinear mathematics (e.g., Lyapunov coefficient). Instrumental measurements were compared with results of perceptual analysis using either the conventional ORD scale or mVA scale. Results demonstrate that correlation between perceptual and objective voice judgments is better using a mVA scale than a conventional ORD scale (concordance, 88 vs. 64%). Data also indicate that the mVA scale described herein improves the correlation between objective and perceptual voice analysis.

摘要

各种评分量表已被用于感知语音分析,包括顺序(ORD)量表和视觉模拟(VA)量表。本研究的目的是确定最适合用于以感知语音分析作为客观分析方案验证金标准的研究的量表。该研究对来自68名发音障碍患者和6名对照的74个女性语音样本进行。一个由4名具有感知分析经验的评估者组成的小组被要求根据GRBAS系统的G成分(总体质量)对语音进行评分。使用了两种评分量表。第一种是传统的4分ORD量表。第二种是通过使用加权转换方案将VA量表转换为ORD量表而获得的改良VA(mVA)量表。使用EVA工作站进行客观语音评估。客观测量包括声学、空气动力学和生理参数以及基于非线性数学的参数(例如,李雅普诺夫系数)。将仪器测量结果与使用传统ORD量表或mVA量表的感知分析结果进行比较。结果表明,使用mVA量表时,感知和客观语音判断之间的相关性比传统ORD量表更好(一致性分别为88%和64%)。数据还表明,本文所述的mVA量表改善了客观和感知语音分析之间的相关性。

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