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模态发声和低喉位发声的声学、空气动力学、生理学及感知特性。

Acoustic, aerodynamic, physiologic, and perceptual properties of modal and vocal fry registers.

作者信息

Blomgren M, Chen Y, Ng M L, Gilbert H R

机构信息

Department of Communication Sciences, University of Connecticut, Storrs 06269-1085, USA.

出版信息

J Acoust Soc Am. 1998 May;103(5 Pt 1):2649-58. doi: 10.1121/1.422785.

Abstract

The purpose of the study was to examine the acoustic, aerodynamic, physiologic, and perceptual characteristics of modal and vocal fry production. Twenty normal speakers (10 males, 10 females) participated in the study. Speech material included four sustained vowels (/i/, /a/, /ae/, /u/), and syllable strings of /pi/ repetitions produced in both modal and vocal fry registers. Acoustic data (fundamental frequency, jitter, shimmer, and signal-to-noise ratio), aerodynamic data (airflow and air pressure), and electroglottographic (EGG) data were obtained simultaneously. Results demonstrated considerable differences across voice parameters for the modal and vocal fry registers. Fundamental frequency was significantly lower in vocal fry than in modal register for both males and females, however, significant gender differences existed only in modal register. For both males and females, measurements of jitter and shimmer were significantly higher and signal to noise ratio was significantly lower in vocal fry. In addition, airflow rate in modal register was almost three times as high as the airflow rate in vocal fry register during sustained vowel production. During syllable string production, subglottal air pressure values in modal register were approximately 1.5 times higher than that in the vocal fry register. In general, these data emphasize that the aeromechanical mechanisms of vocal fold vibratory behavior are substantially different between modal and vocal fry registers. A model of vocal fry phonation is presented to account for the present results.

摘要

本研究的目的是考察正常发声和发声“泡泡音”的声学、空气动力学、生理学及感知特征。20名正常受试者(10名男性,10名女性)参与了本研究。言语材料包括四个长元音(/i/、/a/、/æ/、/u/),以及在正常发声和发声“泡泡音”音域中重复发出的/pi/音节串。同时获取声学数据(基频、抖动、闪烁和信噪比)、空气动力学数据(气流和气压)以及电声门图(EGG)数据。结果表明,正常发声和发声“泡泡音”音域在嗓音参数上存在显著差异。男性和女性发声“泡泡音”时的基频均显著低于正常发声时,但显著的性别差异仅存在于正常发声中。对于男性和女性而言,发声“泡泡音”时的抖动和闪烁测量值显著更高,而信噪比显著更低。此外,在发长元音时,正常发声的气流速率几乎是发声“泡泡音”气流速率的三倍。在发音节串时,正常发声的声门下气压值比发声“泡泡音”时高约1.5倍。总体而言,这些数据强调正常发声和发声“泡泡音”音域中声带振动行为的气动力学机制存在显著差异。本文提出了一个发声“泡泡音”发声模型来解释目前的研究结果。

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