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普通话语音生成过程中对响度偏移语音反馈的补偿反应。

Compensatory responses to loudness-shifted voice feedback during production of Mandarin speech.

作者信息

Liu Hanjun, Zhang Qianru, Xu Yi, Larson Charles R

机构信息

Department of Communication Sciences and Disorders, Northwestern University, 2240 Campus Drive, Evanston, Illinois 60208, USA.

出版信息

J Acoust Soc Am. 2007 Oct;122(4):2405-12. doi: 10.1121/1.2773955.

Abstract

Previous studies have demonstrated that perturbations in voice pitch or loudness feedback lead to compensatory changes in voice F(0) or amplitude during production of sustained vowels. Responses to pitch-shifted auditory feedback have also been observed during English and Mandarin speech. The present study investigated whether Mandarin speakers would respond to amplitude-shifted feedback during meaningful speech production. Native speakers of Mandarin produced two-syllable utterances with focus on the first syllable, the second syllable, or none of the syllables, as prompted by corresponding questions. Their acoustic speech signal was fed back to them with loudness shifted by +/-3 dB for 200 ms durations. The responses to the feedback perturbations had mean latencies of approximately 142 ms and magnitudes of approximately 0.86 dB. Response magnitudes were greater and latencies were longer when emphasis was placed on the first syllable than when there was no emphasis. Since amplitude is not known for being highly effective in encoding linguistic contrasts, the fact that subjects reacted to amplitude perturbation just as fast as they reacted to F(0) perturbations in previous studies provides clear evidence that a highly automatic feedback mechanism is active in controlling both F(0) and amplitude of speech production.

摘要

以往的研究表明,在持续元音发音过程中,音高或响度反馈的扰动会导致语音基频(F(0))或振幅产生补偿性变化。在英语和汉语语音中也观察到了对音高移位听觉反馈的反应。本研究调查了说汉语的人在有意义的语音产生过程中是否会对振幅移位反馈做出反应。以普通话为母语的人根据相应问题的提示,说出双音节话语,重点分别在第一个音节、第二个音节或两个音节都不突出。他们的声学语音信号被反馈给他们,在200毫秒的时长内响度偏移±3分贝。对反馈扰动的反应平均潜伏期约为142毫秒,幅度约为0.86分贝。当强调第一个音节时,反应幅度比不强调时更大,潜伏期更长。由于振幅在编码语言对比方面并不被认为是非常有效的,而在本研究中受试者对振幅扰动的反应速度与他们在以往研究中对F(0)扰动的反应速度一样快,这一事实清楚地证明了一种高度自动的反馈机制在控制语音产生的F(0)和振幅方面是活跃的。

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