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高速数字成像观察到的哨音音域的声带振动

Vocal Fold Vibration of the Whistle Register Observed by High-Speed Digital Imaging.

作者信息

Kato Hikari, Lee Yogaku, Wakamiya Kohei, Nakagawa Takashi, Kaburagi Tokihiko

机构信息

Graduate School of Design, Kyushu University, 4-9-1 Shiobaru, Minami-ku, Fukuoka 815-8540, Japan.

Graduate School of Design, Kyushu University, 4-9-1 Shiobaru, Minami-ku, Fukuoka 815-8540, Japan; Department of Otorhinolaryngology, Faculty of Medicine, Kyushu University, 3-1-1 Maidashi Higashi-ku, Fukuoka 812-8582, Japan.

出版信息

J Voice. 2023 Oct 6. doi: 10.1016/j.jvoice.2023.08.026.

Abstract

INTRODUCTION

Singers use a whistle register to sing at a fundamental frequency above 1000 Hz. In previous studies, vocal fold vibrations with or without complete closure and partial vocal fold vibrations were observed depending on the subject. However, the production mechanism of the whistle register is not yet clearly understood because of the limitations of the imaging device for the glottis and subjects.

OBJECTIVES

This study aims to examine vocal fold vibrations in a whistle register.

METHODS

The dynamic behavior of the glottis was recorded for six singers (four females and two males) using a high-speed digital imaging device with a frame rate above 10,000 fps. Audio signals were recorded simultaneously. The data were analyzed in the form of topography, glottal area waveforms, spectrograms, and phonovibrography to examine spatiotemporal patterns of glottal motion.

RESULTS

The vibratory motion of the vocal folds was classified into six patterns. The first pattern was the entire vocal fold vibration with complete closure during the closed phase. The second to fifth was the entire vocal fold vibration without complete closure, where a gap was observed for the full length of the vocal folds for the second, at the posterior part of the glottis for the third, at the anterior for the fourth, and at both ends for the fifth. In the sixth pattern, the vocal folds vibrated partially. Our results support the previous findings on the vibration of the vocal folds. In addition, we identified novel vibratory patterns in the vocal folds.

CONCLUSION

We conclude that the production of the whistle register is not just an extension of the falsetto register to the higher fundamental-frequency region; rather, the production mechanism of the whistle register appeared to be diverse as a means of vocalization.

摘要

引言

歌手使用哨音音域在高于1000赫兹的基频上演唱。在先前的研究中,根据受试者的情况,观察到了声带完全闭合或不完全闭合时的振动以及部分声带振动。然而,由于声门成像设备和受试者的限制,哨音音域的发声机制尚未完全明确。

目的

本研究旨在研究哨音音域中的声带振动。

方法

使用帧率高于10000帧/秒的高速数字成像设备,记录了六名歌手(四名女性和两名男性)的声门动态行为。同时记录音频信号。通过地形学、声门面积波形、频谱图和嗓音振动描记法等形式对数据进行分析,以研究声门运动的时空模式。

结果

声带的振动运动分为六种模式。第一种模式是在闭合阶段整个声带完全闭合振动。第二至第五种模式是整个声带不完全闭合振动,其中第二种模式在声带全长出现间隙,第三种模式在声门后部出现间隙,第四种模式在前部出现间隙,第五种模式在两端出现间隙。第六种模式是声带部分振动。我们的结果支持了先前关于声带振动的研究结果。此外,我们还发现了声带新的振动模式。

结论

我们得出结论,哨音音域的发声不仅仅是假声区域向更高基频区域的延伸;相反,哨音音域的发声机制似乎作为一种发声方式是多样的。

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