Department of Speech and Hearing Science, University of Illinois at Urbana-Champaign, Champaign, Illinois 61820, USA.
J Acoust Soc Am. 2010 Apr;127(4):2543-53. doi: 10.1121/1.3294486.
To study the acoustic characteristics of nasalized vowels, the effects of velopharyngeal opening and oral articulation are considered. Based on vocal tract area functions for one American English speaker, spectral evolutions for the nasalization of three English vowels /a/, /i/, and /u/ were studied by simulating transfer functions for vowels with only velar movement, and for different nasal consonant-vowel utterances, which include both velar and oral movements. Simulations indicate extra nasal spectral poles and zeros and oral formant shifts as a result of the velopharyngeal opening and oral movements, respectively. In this sense, if oral articulation is coordinated with velar movement in such a way that nasal acoustic features are prominently attenuated, corresponding compensatory articulation can be developed to reduce hypernasality. This may be realized by (1) adjusting the articulatory placement for isolated nasalized vowels or by (2) changing the relative timing of coarticulatory movements for dynamic speech. The results demonstrate the effect of oral articulation on the acoustics of nasalized vowels. This effect allows oral articulation to compensate for velopharyngeal dysfunction, which may involve a constellation of speech production disorders resulting from anomalous velopharyngeal closure and which is usually accompanied by hypernasality and nasal emission of air.
为了研究鼻化元音的声学特性,需要考虑软腭运动和口腔发音的影响。基于一位美国英语发音者的声道面积函数,通过模拟仅带有软腭运动的元音的传递函数,以及带有软腭和口腔运动的不同鼻辅音-元音发音,研究了三个英语元音 /a/、/i/和 /u/ 的鼻音化的频谱演变。模拟结果表明,由于软腭运动和口腔运动,分别产生了额外的鼻腔谱极点和零点以及口腔共振峰的移动。从这个意义上说,如果口腔发音与软腭运动协调一致,使得鼻音特征明显减弱,那么可以开发出相应的补偿发音来减少鼻音过重。这可以通过以下两种方式实现:(1)调整孤立的鼻化元音的发音位置,或(2)改变协同发音运动的相对时间,以适应动态语音。研究结果表明了口腔发音对鼻化元音声学特性的影响。这种影响允许口腔发音来补偿软腭功能障碍,这可能涉及到一系列由于异常软腭闭合导致的言语产生障碍,通常伴有鼻音过重和空气从鼻腔逸出。