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本文引用的文献

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Nature of the vibrato and the control loop in singing.歌唱中颤音的本质与控制回路
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2
Early pitch-shift response is active in both steady and dynamic voice pitch control.早期音高转换反应在稳定和动态的嗓音音高控制中均起作用。
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A reflex resonance model of vocal vibrato.一种嗓音颤音的反射共振模型。
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J Acoust Soc Am. 2001 May;109(5 Pt 1):2146-52. doi: 10.1121/1.1366319.
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Perceptual and acoustic study of professionally trained versus untrained voices.受过专业训练与未受过专业训练的嗓音的感知与声学研究。
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Perceptual calibration of F0 production: evidence from feedback perturbation.F0 生成的感知校准:来自反馈扰动的证据
J Acoust Soc Am. 2000 Sep;108(3 Pt 1):1246-51. doi: 10.1121/1.1288414.
8
Instructing subjects to make a voluntary response reveals the presence of two components to the audio-vocal reflex.指示受试者做出自主反应,揭示了听-声反射存在两个组成部分。
Exp Brain Res. 2000 Jan;130(2):133-41. doi: 10.1007/s002219900237.
9
Voice F0 responses to manipulations in pitch feedback.嗓音基频对音高反馈操作的反应。
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Voice F0 responses to pitch-shifted auditory feedback: a preliminary study.对音高移位听觉反馈的嗓音基频响应:一项初步研究。
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听觉反馈在维持嗓音颤音中的作用。

The role of auditory feedback in sustaining vocal vibrato.

作者信息

Leydon Ciara, Bauer Jay J, 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. 2003 Sep;114(3):1575-81. doi: 10.1121/1.1603230.

DOI:10.1121/1.1603230
PMID:14514211
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1769352/
Abstract

Vocal vibrato and tremor are characterized by oscillations in voice fundamental frequency (F0). These oscillations may be sustained by a control loop within the auditory system. One component of the control loop is the pitch-shift reflex (PSR). The PSR is a closed loop negative feedback reflex that is triggered in response to discrepancies between intended and perceived pitch with a latency of approximately 100 ms. Consecutive compensatory reflexive responses lead to oscillations in pitch every approximately 200 ms, resulting in approximately 5-Hz modulation of F0. Pitch-shift reflexes were elicited experimentally in six subjects while they sustained /u/ vowels at a comfortable pitch and loudness. Auditory feedback was sinusoidally modulated at discrete integer frequencies (1 to 10 Hz) with +/- 25 cents amplitude. Modulated auditory feedback induced oscillations in voice F0 output of all subjects at rates consistent with vocal vibrato and tremor. Transfer functions revealed peak gains at 4 to 7 Hz in all subjects, with an average peak gain at 5 Hz. These gains occurred in the modulation frequency region where the voice output and auditory feedback signals were in phase. A control loop in the auditory system may sustain vocal vibrato and tremorlike oscillations in voice F0.

摘要

嗓音颤音和震颤的特征在于嗓音基频(F0)的振荡。这些振荡可能由听觉系统内的一个控制回路维持。该控制回路的一个组成部分是音高偏移反射(PSR)。PSR是一种闭环负反馈反射,它在预期音高和感知音高之间出现差异时被触发,潜伏期约为100毫秒。连续的补偿性反射反应导致音高每隔约200毫秒振荡一次,从而导致F0产生约5赫兹的调制。在六名受试者以舒适的音高和响度持续发/u/元音时,通过实验诱发了音高偏移反射。听觉反馈以离散整数频率(1至10赫兹)进行正弦调制,幅度为+/- 25音分。调制后的听觉反馈在所有受试者的嗓音F0输出中诱发了与嗓音颤音和震颤一致的振荡频率。传递函数显示所有受试者在4至7赫兹处有峰值增益,平均峰值增益在5赫兹。这些增益出现在嗓音输出和听觉反馈信号同相的调制频率区域。听觉系统中的一个控制回路可能维持嗓音F0中的嗓音颤音和类似震颤的振荡。