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喉振动机制:重探声区概念

Laryngeal vibratory mechanisms: the notion of vocal register revisited.

作者信息

Roubeau Bernard, Henrich Nathalie, Castellengo Michèle

机构信息

Service d'ORL et de Chirurgie Cervico-faciale, Hôpital Tenon, Paris, France.

出版信息

J Voice. 2009 Jul;23(4):425-38. doi: 10.1016/j.jvoice.2007.10.014. Epub 2008 Jun 6.

DOI:10.1016/j.jvoice.2007.10.014
PMID:18538982
Abstract

This study, focused on the laryngeal source level, introduces the concept of laryngeal vibratory mechanism. Human phonation is characterized by the use of four laryngeal mechanisms, labeled M0-M3, as evidenced by the electroglottographic (EGG) study of the transition phenomena between mechanisms with a population of men and women, trained and untrained singers. Macroscopic and local descriptions of the EGG signal are analyzed during the production of glissandos and held notes with different mechanisms. The transition from one mechanism to another of higher rank is characterized by a jump in frequency, a reduction of EGG amplitude, and a change in the shape of the derivative of the EGG (which may correspond to a reduction of the vibratory mass). These characteristics are used to identify a transition between two mechanisms, in complement with acoustic spectrographic analyses. The pitches of transitions between the two main mechanisms M1 and M2 and the range of the frequency-overlap region are described in detail. The notion of vocal register is revisited in the light of these concepts of laryngeal mechanism. The literature on vocal registers is reviewed, and it is shown that the confusion often cited with respect to this notion may be related to the heterogeneity of the approaches and methods used to describe the phenomena and to the multiplicity of descriptors. Therefore, the terminology of the registers is organized depending on their relation to the four laryngeal vibratory mechanisms.

摘要

本研究聚焦于喉部声源水平,引入了喉部振动机制的概念。人类发声的特点是使用四种喉部机制,标记为M0 - M3,这在对一组男性和女性、受过训练和未受过训练的歌手的机制转换现象进行的电声门图(EGG)研究中得到了证实。在使用不同机制进行滑音和持续音符发声过程中,对EGG信号的宏观和局部描述进行了分析。从一种机制向更高等级机制的转换特征为频率跃升、EGG振幅减小以及EGG导数形状的变化(这可能对应于振动质量的减小)。这些特征与声学频谱分析相结合,用于识别两种机制之间的转换。详细描述了两种主要机制M1和M2之间转换的音高以及频率重叠区域的范围。根据这些喉部机制的概念,对声区的概念进行了重新审视。对有关声区的文献进行了综述,结果表明,经常提到的关于这一概念的混淆可能与用于描述这些现象的方法和手段的异质性以及描述符的多样性有关。因此,根据声区与四种喉部振动机制的关系对声区术语进行了整理。

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