Xu Yi, Sun Xuejing
Department of Communication Sciences and Disorders, Northwestern University, Evanston, Illinois 60208, USA.
J Acoust Soc Am. 2002 Mar;111(3):1399-413. doi: 10.1121/1.1445789.
How fast speakers can change pitch voluntarily is potentially an important articulatory constraint for speech production. Previous attempts at assessing the maximum speed of pitch change have helped improve understanding of certain aspects of pitch production in speech. However, since only "response time"--time needed to complete the middle 75% of a pitch shift--was measured in previous studies, direct comparisons with speech data have been difficult. In the present study, a new experimental paradigm was adopted in which subjects produced rapid successions of pitch shifts by imitating synthesized model pitch undulation patterns. This permitted the measurement of the duration of entire pitch shifts. Native speakers of English and Mandarin participated as subjects. The speed of pitch change was measured both in terms of response time and excursion time-time needed to complete the entire pitch shift. Results show that excursion time is nearly twice as long as response time. This suggests that physiological limitation on the speed of pitch movement is greater than has been recognized. Also, it is found that the maximum speed of pitch change varies quite linearly with excursion size, and that it is different for pitch rises and falls. Comparisons of present data with data on speed of pitch change from studies of real speech found them to be largely comparable. This suggests that the maximum speed of pitch change is often approached in speech, and that the role of physiological constraints in determining the shape and alignment of F0 contours in speech is probably greater than has been appreciated.
说话者能够自主改变音高的速度,可能是语音产生过程中一个重要的发音限制因素。以往评估音高变化最大速度的尝试,有助于增进对语音中某些音高产生方面的理解。然而,由于以往研究仅测量了“反应时间”——完成音高变化中间75%所需的时间,因此很难与语音数据进行直接比较。在本研究中,采用了一种新的实验范式,即让受试者通过模仿合成的模型音高波动模式,快速连续地进行音高变化。这使得能够测量整个音高变化的持续时间。以英语和汉语为母语的人作为受试者参与了实验。音高变化速度的测量,既包括反应时间,也包括偏移时间——完成整个音高变化所需的时间。结果表明,偏移时间几乎是反应时间的两倍。这表明,音高移动速度的生理限制比人们认识到的更大。此外,还发现音高变化的最大速度与偏移幅度呈相当线性的变化,并且音高上升和下降时有所不同。将本研究数据与真实语音研究中的音高变化速度数据进行比较,发现它们在很大程度上具有可比性。这表明,在语音中常常接近音高变化的最大速度,并且生理限制在决定语音中F0轮廓的形状和对齐方面所起的作用,可能比人们所认识到的更大。