Department of Solid Mechanics, Mechatronics and Biomechanics, Brno University of Technology, Brno, Czech Republic.
J Voice. 2011 May;25(3):308-18. doi: 10.1016/j.jvoice.2009.12.002. Epub 2010 Apr 1.
Specialized literature presents a number of models describing the function of the vocal folds. In most of those models, an emphasis is placed on the air flowing through the glottis and, further, on the effect of the parameters of the air alone (its mass, speed, and so forth). The article focuses on the constructional definition of artificial vocal folds and their experimental analysis. The analysis is conducted for voiced source voice phonation and for the changing mean value of the subglottal pressure. The article further deals with the analysis of the pressure of the airflow through the vocal folds, which is cut (separated) into individual pulses by the vibrating vocal folds. The analysis results show that air pulse characteristics are relevant to voice generation, as they are produced by the flowing air and vibrating vocal folds. A number of artificial vocal folds have been constructed to date, and the aforementioned view of their phonation is confirmed by their analysis. The experiments have confirmed that man is able to consciously affect only two parameters of the source voice, that is, its fundamental frequency and voice intensity. The main forces acting on the vocal folds during phonation are as follows: subglottal air pressure and elastic and inertia forces of the vocal folds' structure. The correctness of the function of the artificial vocal folds is documented by the experimental verification of the spectra of several types of artificial vocal folds.
专业文献提出了许多描述声带功能的模型。在这些模型中,大多数都强调了流经声门的气流,以及空气参数(如质量、速度等)的影响。本文专注于人工声带的结构定义及其实验分析。分析对象包括浊音声源发声和声门下压力均值的变化。本文进一步研究了通过振动声带切割(分离)为单个脉冲的气流压力。分析结果表明,空气脉冲特性与发声有关,因为它们是由流动的空气和振动的声带产生的。迄今为止,已经构建了许多人工声带,并且通过对它们的分析证实了上述对其发声的看法。实验证实,人只能有意识地影响声源的两个参数,即基频和声音强度。声带在发声过程中主要受到以下力的作用:声门下空气压力以及声带结构的弹性和惯性力。通过对几种类型的人工声带的频谱进行实验验证,证明了人工声带功能的正确性。