首页> 外文期刊>Journal of voice: official journal of the Voice Foundation >Measures of spectral slope using an excised larynx model
【24h】

Measures of spectral slope using an excised larynx model

机译:使用切除喉模型测量频谱斜率

获取原文
获取原文并翻译 | 示例
       

摘要

Spectral measures of the glottal source were investigated using an excised canine larynx (CL) model for various aerodynamic and phonatory conditions. These measures included spectral harmonic difference H1-H2 and spectral slope that are highly correlated with voice quality but not reported in a systematic manner using an excised larynx model. It was hypothesized that the acoustic spectra of the glottal source were significantly influenced by the subglottal pressure, glottal adduction, and vocal fold elongation, as well as the resulting vibration pattern. CLs were prepared, mounted on the bench with and without false vocal folds, and made to oscillate with a flow of heated and humidified air. Major control parameters were subglottal pressure, adduction, and elongation. Electroglottograph, subglottal pressure, flow rate, and audio signals were analyzed using custom software. Results suggest that an increase in subglottal pressure and glottal adduction may change the energy balance between harmonics by increasing the spectral energy of the first few harmonics in an unpredictable manner. It is suggested that changes in the dynamics of vocal fold motion may be responsible for different spectral patterns. The finding that the spectral harmonics do not conform to previous findings was demonstrated through various cases. Results of this study may shed light on phonatory spectral control when the larynx is part of a complete vocal tract system.
机译:对于各种空气动力学和发声条​​件,使用切除的犬喉(CL)模型研究了声门声源的频谱测量。这些措施包括频谱谐波差异H1-H2和频谱斜率,它们与语音质量高度相关,但未使用切除的喉头模型以系统的方式进行报告。假设声门声源的声谱受声门下压力,声门内收和声带伸长以及产生的振动模式的影响很大。准备CL,将其安装在有或没有假声带的长凳上,并使其在加热和加湿的空气流中振荡。主要的控制参数是声门下压力,内收和伸长率。使用定制软件分析电描记器,声门下压力,流速和音频信号。结果表明,声门下压力和声门内收的增加可能会以不可预测的方式增加前几个谐波的频谱能量,从而改变谐波之间的能量平衡。建议在声带运动的动态变化可能是不同的频谱模式。通过各种情况证明了频谱谐波不符合先前的发现。当喉部是完整声道系统的一部分时,这项研究的结果可能会有助于语音频谱控制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号