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双唇塞音发音时的唇与颌运动学

Lip and jaw kinematics in bilabial stop consonant production.

作者信息

Löfqvist A, Gracco V L

机构信息

Haskins Laboratories, New Haven, CT, USA.

出版信息

J Speech Lang Hear Res. 1997 Aug;40(4):877-93. doi: 10.1044/jslhr.4004.877.

Abstract

This paper reports two experiments, each designed to clarify different aspects of bilabial stop consonant production. The first one examined events during the labial closure using kinematic recordings in combination with records of oral air pressure and force of labial contact. The results of this experiment suggested that the lips were moving at a high velocity when the oral closure occurred. They also indicated mechanical interactions between the lips during the closure, including tissue compression and the lower lip moving the upper lip upward. The second experiment studied patterns of upper and lower lip interactions, movement variability within and across speakers, and the effects on lip and jaw kinematics of stop consonant voicing and vowel context. Again, the results showed that the lips were moving at a high velocity at the onset of the oral closure. No consistent influences of stop consonant voicing were observed on lip and jaw kinematics in five subjects, nor on a derived measure of lip aperture. The overall results are compatible with the hypothesis that one target for the lips in bilabial stop production is a region of negative lip aperture. A negative lip aperture implies that to reach their virtual target, the lips would have to move beyond each other. Such a control strategy would ensure that the lips will form an air light seal irrespective of any contextual variability in the onset positions of their closing movements.

摘要

本文报告了两项实验,每项实验旨在阐明双唇塞音发音的不同方面。第一项实验使用运动学记录结合口腔气压和唇部接触力的记录,研究了唇部闭合过程中的相关事件。该实验结果表明,在口腔闭合时嘴唇移动速度很快。实验结果还显示,在闭合过程中嘴唇之间存在机械相互作用,包括组织压缩以及下唇将上唇向上推动。第二项实验研究了上下唇相互作用的模式、不同说话者之间及之内的运动变异性,以及塞音发声和元音语境对唇部和下颌运动学的影响。结果再次表明,在口腔闭合开始时嘴唇移动速度很快。在五名受试者中,未观察到塞音发声对唇部和下颌运动学有一致影响,对唇部开口度的派生测量也未观察到一致影响。总体结果与以下假设相符:在双唇塞音发音中,嘴唇的一个目标是唇部开口度为负的区域。唇部开口度为负意味着为了达到其虚拟目标,嘴唇必须相互超越。这样一种控制策略将确保无论嘴唇闭合运动起始位置的任何语境变异性如何,嘴唇都能形成气密密封。

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