Lee Shao-Hsuan, Fang Tuan-Jen, Yu Jen-Fang, Lee Guo-She
Ph.D. Program in Biomedical Engineering, College of Engineering, Chang-Gung University, Taoyuan City, Taiwan.
Department of Otorhinolaryngology, Chang-Gung Memorial Hospital, Taoyuan City, Taiwan.
J Voice. 2017 Sep;31(5):536-544. doi: 10.1016/j.jvoice.2017.01.015. Epub 2017 Mar 3.
Auditory feedback can make reflexive responses on sustained vocalizations. Among them, the middle-frequency power of F0 (MFP) may provide a sensitive index to access the subtle changes in different auditory feedback conditions.
Phonatory airflow temperature was obtained from 20 healthy adults at two vocal intensity ranges under four auditory feedback conditions: (1) natural auditory feedback (NO); (2) binaural speech noise masking (SN); (3) bone-conducted feedback of self-generated voice (BAF); and (4) SN and BAF simultaneously. The modulations of F0 in low-frequency (0.2 Hz-3 Hz), middle-frequency (3 Hz-8 Hz), and high-frequency (8 Hz-25 Hz) bands were acquired using power spectral analysis of F0. Acoustic and aerodynamic analyses were used to acquire vocal intensity, maximum phonation time (MPT), phonatory airflow, and MFP-based vocal efficiency (MBVE).
SN and high vocal intensity decreased MFP and raised MBVE and MPT significantly. BAF showed no effect on MFP but significantly lowered MBVE. Moreover, BAF significantly increased the perception of voice feedback and the sensation of vocal effort.
Altered auditory feedback significantly changed the middle-frequency modulations of F0. MFP and MBVE could well detect these subtle responses of audio-vocal feedback.
听觉反馈可对持续发声产生反射性反应。其中,基频的中频功率(MFP)可能提供一个敏感指标,以获取不同听觉反馈条件下的细微变化。
在四种听觉反馈条件下,从20名健康成年人在两个发声强度范围内获取发声气流温度:(1)自然听觉反馈(NO);(2)双耳语音噪声掩蔽(SN);(3)自我发声的骨传导反馈(BAF);以及(4)SN和BAF同时存在。使用基频的功率谱分析获取低频(0.2 Hz - 3 Hz)、中频(3 Hz - 8 Hz)和高频(8 Hz - 25 Hz)频段的基频调制。采用声学和空气动力学分析获取发声强度、最大发声时间(MPT)、发声气流以及基于MFP的发声效率(MBVE)。
SN和高声强显著降低MFP,并显著提高MBVE和MPT。BAF对MFP无影响,但显著降低MBVE。此外,BAF显著增加了语音反馈的感知和发声努力的感觉。
改变的听觉反馈显著改变了基频的中频调制。MFP和MBVE能够很好地检测这些声-声反馈的细微反应。