Liu Hanjun, Larson Charles R
Department of Communication Sciences and Disorders, Northwestern University, 2240 Campus Drive, Evanston, Illinois 60208, USA.
J Acoust Soc Am. 2007 Dec;122(6):3671-7. doi: 10.1121/1.2800254.
The purpose of the present study was to investigate the responsiveness of the pitch-shift reflex to small magnitude stimuli and voice fundamental frequency (F(0)) level. English speakers received pitch-shifted voice feedback (+/-10, 20, 30, 40, and 50 cents, 200 ms duration) during vowel phonations at a high and a low F(0) level. Mean pitch-shift response magnitude increased as a function of pitch-shift stimulus magnitude, but when expressed as a percent of stimulus magnitude, declined from 100% with +/-10 cents to 37% with +/-50 cents stimuli. Response magnitudes were larger and latencies were shorter with a high F(0) level (16 cents;130 ms) compared to a low F(0) level (13 cents;152 ms). Data from the present study demonstrate that vocal response magnitudes are equal to small perturbation magnitudes, and they are larger and faster with a high F(0) voice. These results suggest that the audio-vocal system is optimally suited for compensating for small pitch rather than larger perturbations. Data also suggest the sensitivity of the audio-vocal system to voice perturbation may vary with F(0) level.
本研究的目的是调查音高偏移反射对小幅度刺激和语音基频(F(0))水平的反应。说英语的人在高F(0)水平和低F(0)水平的元音发声过程中接受了音高偏移的语音反馈(±10、20、30、40和50音分,持续200毫秒)。平均音高偏移反应幅度随音高偏移刺激幅度的增加而增加,但以刺激幅度的百分比表示时,从±10音分的100%下降到±50音分刺激时的37%。与低F(0)水平(13音分;152毫秒)相比,高F(0)水平(16音分;130毫秒)时的反应幅度更大,潜伏期更短。本研究的数据表明,发声反应幅度与小扰动幅度相等,并且在高F(0)语音时更大、更快。这些结果表明,听觉-发声系统最适合补偿小的音高变化而不是较大的扰动。数据还表明,听觉-发声系统对语音扰动的敏感性可能随F(0)水平而变化。