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首页> 外文期刊>Journal of voice: official journal of the Voice Foundation >Estimation of Source-Filter Interaction Regions Based on Electroglottography
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Estimation of Source-Filter Interaction Regions Based on Electroglottography

机译:基于电漆术的源滤波器交互区域估计

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摘要

Source-filter interaction is a phenomenon in which acoustic airway pressures influence the glottal airflow at the source (level 1) and the vibration pattern of the vocal folds (level 2). This interaction is most significant when dominant source harmonics are near airway resonances. The influence of acoustic airway pressures on vocal fold vibration (level 2) was studied systematically by changing the supraglottal vocal tract length in human subjects with tube extensions. The subjects were asked to perform fundamental frequency (f(o)) glides while phonating through tubes of various lengths. An algorithm was developed using the quasi-open quotient extracted from the electroglottograph. Regions of sudden vocal fold vibration pattern change due to source-filter interaction were inferred from contact area changes. The algorithm correctly identified 89% of male and 84.8% of female quantal changes in contact pattern associated with interactions between source harmonics and formants during ascending glides. During the descending glides, the algorithm correctly identified 84% of male and 81.1% of female quantal changes in contact pattern. These results are in comparison with those obtained from the f(o)-based algorithm (Maxfield et al).
机译:源滤波器相互作用是一种现象,其中声气道压力影响源极(1级)和声带(2级)的振动图案中的光泽气流。当主导源谐波靠近气道共振时,这种互动最为显着。通过在用管延伸的人体受试者中改变Suprotlal声道长度来系统地研究了声学气道压力对声带振动(2级)的影响。要求受试者执行基本频率(F(o))滑动,同时通过各种长度的管子发放。使用从电涂记录仪中提取的准开放商开发了一种算法。从接触面积改变推断出由于源滤波器相互作用而导致的突然声带振动模式的区域。该算法正确地确定了89%的雄性和84.8%的升序与升级滑动期间与源谐波和成形剂之间的相互作用相关的接触模式。在降下滑动期间,该算法正确地确定了84%的男性和81.1%的接触模式的雌性量变化。这些结果与基于F(o)的算法(MaxField等人)获得的那些相比。

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