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嗓音起始的生物物理学:全面概述

Biophysics of Voice Onset: A Comprehensive Overview.

作者信息

DeJonckere Philippe H, Lebacq Jean

机构信息

Federal Agency for Occupational Risks, 1210 Brussels, Belgium.

Neurosciences Institute, University of Louvain, 1200 Brussels, Belgium.

出版信息

Bioengineering (Basel). 2025 Feb 6;12(2):155. doi: 10.3390/bioengineering12020155.

Abstract

Voice onset is the sequence of events between the first detectable movement of the vocal folds (VFs) and the stable vibration of the vocal folds. It is considered a critical phase of phonation, and the different modalities of voice onset and their distinctive characteristics are analysed. Oscillation of the VFs can start from either a closed glottis with no airflow or an open glottis with airflow. The objective of this article is to provide a comprehensive survey of this transient phenomenon, from a biomechanical point of view, in normal modal (i.e., nonpathological) conditions of vocal emission. This synthetic overview mainly relies upon a number of recent experimental studies, all based on in vivo physiological measurements, and using a common, original and consistent methodology which combines high-speed imaging, sound analysis, electro-, photo-, flow- and ultrasound glottography. In this way, the two basic parameters-the instantaneous glottal area and the airflow-can be measured, and the instantaneous intraglottal pressure can be automatically calculated from the combined records, which gives a detailed insight, both qualitative and quantitative, into the onset phenomenon. The similarity of the methodology enables a link to be made with the biomechanics of sustained phonation. Essential is the temporal relationship between the glottal area and intraglottal pressure. The three key findings are (1) From the initial onset cycles onwards, the intraglottal pressure signal leads that of the opening signal, as in sustained voicing, which is the basic condition for an energy transfer from the lung pressure to the VF tissue. (2) This phase lead is primarily due to the skewing of the airflow curve to the right with respect to the glottal area curve, a consequence of the compressibility of air and the inertance of the vocal tract. (3) In case of a soft, physiological onset, the glottis shows a spindle-shaped configuration just before the oscillation begins. Using the same parameters (airflow, glottal area, intraglottal pressure), the mechanism of triggering the oscillation can be explained by the intraglottal aerodynamic condition. From the first cycles on, the VFs oscillate on either side of a paramedian axis. The amplitude of these free oscillations increases progressively before the first contact on the midline. Whether the first movement is lateral or medial cannot be defined. Moreover, this comprehensive synthesis of onset biomechanics and the links it creates sheds new light on comparable phenomena at the level of sound attack in wind instruments, as well as phenomena such as the production of intervals in the sung voice.

摘要

起音是指从声带首次可检测到的运动到声带稳定振动之间的一系列事件。它被认为是发声的一个关键阶段,并且对起音的不同形式及其独特特征进行了分析。声带的振动可以从没有气流的闭合声门开始,也可以从有气流的开放声门开始。本文的目的是从生物力学的角度,对正常发声模式(即非病理性)下的这种瞬态现象进行全面综述。这一综合概述主要依赖于最近的一些实验研究,这些研究均基于体内生理测量,并使用了一种共同、新颖且一致的方法,该方法结合了高速成像、声音分析、电声门图、光声门图、气流声门图和超声声门图。通过这种方式,可以测量两个基本参数——瞬时声门面积和气流,并且可以根据组合记录自动计算瞬时声门内压,这能对起音现象进行详细的定性和定量洞察。该方法的相似性使得能够将其与持续发声的生物力学联系起来。声门面积和声门内压之间的时间关系至关重要。三个关键发现是:(1)从最初的起音周期开始,声门内压信号就领先于开放信号,就像在持续发声中一样,这是肺压向声带组织进行能量传递的基本条件。(2)这种相位领先主要是由于气流曲线相对于声门面积曲线向右倾斜,这是空气可压缩性和声道惯性的结果。(3)在柔和的生理性起音情况下,声门在振荡开始前呈现出纺锤形配置。使用相同的参数(气流、声门面积、声门内压),振荡触发机制可以通过声门内空气动力学条件来解释。从最初的周期开始,声带在正中轴的两侧振荡。在首次接触中线之前,这些自由振荡的幅度会逐渐增加。无法确定第一次运动是横向还是纵向。此外,这种对起音生物力学的全面综合及其建立的联系为管乐器发声起始水平上的类似现象以及歌唱中音符产生等现象提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2afd/11851932/2ec8db4820d3/bioengineering-12-00155-g001.jpg

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