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首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Relation of structural and vibratory kinematics of the vocal folds to two acoustic measures of breathy voice based on computational modeling
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Relation of structural and vibratory kinematics of the vocal folds to two acoustic measures of breathy voice based on computational modeling

机译:基于计算模型的声带结构和振动运动学与呼吸声的两种声学测量之间的关系

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Purpose: To relate vocal fold structure and kinematics to 2 acoustic measures: cepstral peak prominence (CPP) and the amplitude of the first harmonic relative to the second (H1-H2). Method: The authors used a computational, kinematic model of the medial surfaces of the vocal folds to specify features of vocal fold structure and vibration in a manner consistent with breathy voice. Four model parameters were altered: degree of vocal fold adduction, surface bulging, vibratory nodal point, and supraglottal constriction. CPP and H1-H2 were measured from simulated glottal area, glottal flow, and acoustic waveforms and were related to the underlying vocal fold kinematics. Results: CPP decreased with increased separation of the vocal processes, whereas the nodal point location had little effect. H1-H2 increased as a function of separation of the vocal processes in the range of 1.0mmto 1.5mmand decreased with separation >1.5 mm. Conclusions: CPP is generally a function of vocal process separation. H1*-H2* (see paragraph 6 of article text for an explanation of the asterisks) will increase or decrease with vocal process separation on the basis of vocal fold shape, pivot point for the rotational mode, and supraglottal vocal tract shape, limiting its utility as an indicator of breathy voice. Future work will relate the perception of breathiness to vocal fold kinematics and acoustic measures.
机译:目的:将人声折叠结构和运动学与两种声学测量方法相关:倒谱峰突出(CPP)和一次谐波相对于二次谐波的振幅(H1-H2)。方法:作者使用声带内侧表面的计算运动学模型,以与呼吸声一致的方式指定声带结构和振动的特征。改变了四个模型参数:声带内收度,表面隆起,振动结点和声门上狭窄。 CPP和H1-H2是从模拟的声门面积,声门流量和声波波形中测得的,并且与潜在的声带运动学有关。结果:CPP随声带分离的增加而降低,而结点位置的影响很小。 H1-H2在1.0mm至1.5mm的范围内随发声过程的分离而增加,而在> 1.5 mm的情况下降低。结论:CPP通常是声音过程分离的功能。 H1 * -H2 *(关于星号的说明,请参见文章第6段)将根据声带形状,旋转模式的枢轴点和声门上声道的形状,随着声程分离而增加或减少。实用程序作为呼吸声音的指示器。未来的工作将把呼吸的感觉与声带运动学和声学测量联系起来。

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