Faculty of Medicine, School of Medicine, National Yang-Ming University and Department of Otolaryngology, Ren-Ai Branch, Taipei City Hospital, No. 155, Sec. 2, Li-Norng Street, Bei-Tou District, Taipei 112, Taiwan.
Hear Res. 2013 Aug;302:1-8. doi: 10.1016/j.heares.2013.04.010. Epub 2013 May 4.
To investigate the audio-vocal feedback responses of (F0) to hearing amplification in severe-to-profound prelingual hearing loss (SPHL) using power spectral analysis of F0 contour of sustained vowels. Sustained phonations of vowel/a/of seventeen participants with SPHL were acquired with and without hearing-aid amplifications. The vocal intensity was visually fed back to the participants to help controlling the vocal intensity at 65-75 dBA and 85-95 dBA. The F0 contour of the phonations was extracted and submitted to spectral analysis to measure the extent of F0 fluctuations at different frequency ranges. The results showed that both high vocal intensity and hearing-aid amplification significantly improved voice F0 control by reducing the low-frequency fluctuations (low-frequency power, LFP, 0.2-3 Hz) in F0 spectrum. However, the enhanced feedback from higher vocal intensity and/or hearing amplification was not adequate to reduce the LFP to the level of a normal hearing person. Moreover, we found significant and negative correlations between LFP and supra-threshold feedback intensity (phonation intensity - hearing threshold level) for the frequencies of 500-2000 Hz. Increased vocal intensity, as well as hearing-aid amplification, improved voice F0 control by reducing the LFP of F0 spectrum, and the subtle changes in voices could be well explored using spectral analysis of F0.
本研究旨在通过对元音/a/的持续发声的基频(F0)轮廓进行功率谱分析,探究严重至极重度语前聋(SPHL)患者使用听力辅助设备时的听觉-发声反馈响应。本研究招募了 17 名 SPHL 患者,让他们在使用和不使用助听器放大的情况下进行/a/的持续发声。通过视觉将发声的声强反馈给参与者,以帮助他们将声强控制在 65-75dBA 和 85-95dBA。提取发声的 F0 轮廓并进行频谱分析,以测量不同频率范围内 F0 波动的程度。结果表明,高发声强度和助听器放大都能显著改善 F0 控制,减少 F0 频谱中的低频波动(低频功率,LFP,0.2-3Hz)。然而,更高的发声强度和/或助听器放大所提供的增强反馈不足以将 LFP 降低到正常听力水平。此外,我们发现 LFP 与高于阈值的反馈强度(发声强度-听阈水平)之间存在显著的负相关关系,这种相关关系存在于 500-2000Hz 的频率范围内。增加发声强度和助听器放大都可以通过降低 F0 频谱的 LFP 来改善 F0 控制,通过 F0 频谱的功率谱分析可以很好地探索声音的细微变化。