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具有非对称声门内流的声源模型及其在声带的降阶模型中的应用。

An acoustic source model for asymmetric intraglottal flow with application to reduced-order models of the vocal folds.

机构信息

Department of Mechanical and Aeronautical Engineering, Clarkson University, Potsdam, NY, United States of America.

Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

PLoS One. 2019 Jul 25;14(7):e0219914. doi: 10.1371/journal.pone.0219914. eCollection 2019.

Abstract

The complex three-way interaction between airflow, tissue, and sound, for asymmetric vocal fold vibration, is not well understood. Current modeling efforts are not able to explain clinical observations where drastic differences in sound production are often observed, with no noticeable differences in the vocal fold kinematics. To advance this understanding, an acoustical model for voiced sound generation in the presence of asymmetric intraglottal flows is developed. The source model operates in conjunction with a wave reflection analog propagation scheme and an asymmetric flow description within the glottis. To enable comparison with prior work, the source model is evaluated using a well-studied two-mass vocal fold model. The proposed source model is evaluated through acoustic measures of interest, including radiated sound pressure level, maximum flow declination rate, and spectral tilt, and also via its effects on the vocal fold dynamics. The influence of the model, in comparison to the standard symmetric Bernoulli flow description, results in an increased transfer of energy from the fluid to the vocal folds, increased radiated sound pressure level and maximum flow declination rate, and decreased spectral tilt. These differences are most pronounced for asymmetric vocal fold configurations that mimic unilateral paresis and paralysis, where minor kinematic changes can result in significant acoustic and aerodynamic differences. The results illustrate that fluid effects arising from asymmetric glottal flow can play an important role in the acoustics of pathological voiced speech.

摘要

气流、组织和声音之间复杂的三向相互作用,对于不对称的声带振动,目前还没有很好的理解。目前的建模工作无法解释临床观察到的现象,即声音产生的巨大差异,而声带运动学却没有明显的差异。为了深入了解这一现象,开发了一种在存在非对称声门内气流时产生浊音声音的声学模型。声源模型与波反射模拟传播方案以及声门内的非对称流描述相结合工作。为了与先前的工作进行比较,使用经过充分研究的两质量声带模型来评估声源模型。通过感兴趣的声学度量,包括辐射声压级、最大流量下降率和频谱倾斜,以及对声带动力学的影响,对所提出的声源模型进行了评估。与标准的对称伯努利流描述相比,该模型的影响导致更多的能量从流体传递到声带,辐射声压级和最大流量下降率增加,频谱倾斜减小。对于模拟单侧弛缓或麻痹的不对称声带配置,这些差异最为明显,其中较小的运动学变化可能导致显著的声学和空气动力学差异。结果表明,非对称声门气流引起的流体效应在病理浊音语音的声学中可能起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcae/6657872/af961f014b5d/pone.0219914.g001.jpg

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