首页> 外文期刊>Journal of Biomechanics >Geometry of human vocal folds and glottal channel for mathematical and biomechanical modeling of voice production.
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Geometry of human vocal folds and glottal channel for mathematical and biomechanical modeling of voice production.

机译:人声折叠和声门通道的几何结构,用于语音产生的数学和生物力学建模。

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摘要

Current models of the vocal folds derive their shape from approximate information rather than from exactly measured data. The objective of this study was to obtain detailed measurements on the geometry of human vocal folds and the glottal channel in phonatory position. A non-destructive casting methodology was developed to capture the vocal fold shape from excised human larynges on both medial and superior surfaces. Two female larynges, each in two different phonatory configurations corresponding to low and high fundamental frequency of the vocal fold vibrations, were measured. A coordinate measuring machine was used to digitize the casts yielding 3D computer models of the vocal fold shape. The coronal sections were located in the models, extracted and fitted by piecewise-defined cubic functions allowing a mathematical expression of the 2D shape of the glottal channel. Left-right differences between the cross-sectional shapes of the vocal folds were found in both the larynges.
机译:当前的声带模型是从近似信息而不是从精确测量的数据中得出其形状的。这项研究的目的是获得关于人声折叠的几何形状和声带声门通道的详细测量。开发了一种非破坏性的铸造方法,以从内侧和上表面切除的人喉中捕获声带形状。测量了两个雌性喉部,每个具有两个不同的发声配置,分别对应于声带振动的低基频和高基频。使用坐标测量机对演员表进行数字化处理,以产生声带形状的3D计算机模型。冠状截面位于模型中,通过分段定义的三次函数提取并拟合,从而可以对声门通道的2D形状进行数学表达。在两个喉中都发现了声带横截面形状之间的左右差异。

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