Jafari M, Wong K H, Behbehani K, Kondraske G V
Human Performance Institute, Biomedical Engineering Program, University of Texas, Arlington 76019.
J Acoust Soc Am. 1989 Mar;85(3):1322-8. doi: 10.1121/1.397463.
The performance of the human pitch control system was characterized by measurement of the speed of pitch shift and pitch shift response speed (inverse of reaction time) at various initial pitch and loudness levels. Data from three nonsinger adult male subjects and one professional singer suggest a strong inverse correlation (r greater than 0.78) between initial pitch and rate of pitch rise. This study showed no significant relation between initial loudness and rate of pitch rise. Also, vocal response speed showed no significant relation with either initial pitch or loudness. However, it is suggested that pitch shift response speed might be related to the second formant frequency of the target vowel. A composite index of pitch control performance capacity was defined as the product of response speed and vocal fold contractile velocity. From experimental data, the composite index was able to reflect a distinct 74% superior performance by the professional singer (relative to the average maximum performance capacity of nonsingers). It is suggested that the product-based composite index of performance capacity can serve as a sensitive means for vocal proficiency determination.
通过测量在不同初始音高和响度水平下的音高变化速度和音高变化响应速度(反应时间的倒数),对人类音高控制系统的性能进行了表征。来自三名非歌手成年男性受试者和一名专业歌手的数据表明,初始音高与音高上升速率之间存在很强的负相关(r大于0.78)。该研究表明,初始响度与音高上升速率之间没有显著关系。此外,声音响应速度与初始音高或响度均无显著关系。然而,有人认为音高变化响应速度可能与目标元音的第二共振峰频率有关。音高控制性能能力的综合指数定义为响应速度与声带收缩速度的乘积。根据实验数据,该综合指数能够反映出专业歌手比非歌手平均最大性能能力高出74%的显著优势。有人认为,基于乘积的性能能力综合指数可以作为确定声乐熟练程度的一种敏感方法。