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基于正常振动模式的声带接触模式。

Vocal fold contact patterns based on normal modes of vibration.

作者信息

Smith Simeon L, Titze Ingo R

机构信息

The National Center for Voice and Speech, The University of Utah, 136 South Main Street, Suite 320, Salt Lake City, UT 84101, United States.

The National Center for Voice and Speech, The University of Utah, 136 South Main Street, Suite 320, Salt Lake City, UT 84101, United States.

出版信息

J Biomech. 2018 May 17;73:177-184. doi: 10.1016/j.jbiomech.2018.04.011. Epub 2018 Apr 12.

Abstract

The fluid-structure interaction and energy transfer from respiratory airflow to self-sustained vocal fold oscillation continues to be a topic of interest in vocal fold research. Vocal fold vibration is driven by pressures on the vocal fold surface, which are determined by the shape of the glottis and the contact between vocal folds. Characterization of three-dimensional glottal shapes and contact patterns can lead to increased understanding of normal and abnormal physiology of the voice, as well as to development of improved vocal fold models, but a large inventory of shapes has not been directly studied previously. This study aimed to take an initial step toward characterizing vocal fold contact patterns systematically. Vocal fold motion and contact was modeled based on normal mode vibration, as it has been shown that vocal fold vibration can be almost entirely described by only the few lowest order vibrational modes. Symmetric and asymmetric combinations of the four lowest normal modes of vibration were superimposed on left and right vocal fold medial surfaces, for each of three prephonatory glottal configurations, according to a surface wave approach. Contact patterns were generated from the interaction of modal shapes at 16 normalized phases during the vibratory cycle. Eight major contact patterns were identified and characterized by the shape of the flow channel, with the following descriptors assigned: convergent, divergent, convergent-divergent, uniform, split, merged, island, and multichannel. Each of the contact patterns and its variation are described, and future work and applications are discussed.

摘要

呼吸气流与声带自我维持振动之间的流固相互作用及能量传递一直是声带研究中备受关注的课题。声带振动由声带表面的压力驱动,而该压力由声门形状及声带间的接触决定。三维声门形状及接触模式的特征描述有助于增进对正常和异常嗓音生理学的理解,以及改进声带模型的开发,但此前尚未直接研究过大量的形状。本研究旨在朝着系统地表征声带接触模式迈出第一步。基于简正模式振动对声带运动和接触进行建模,因为已表明声带振动几乎完全可以仅由少数几个最低阶振动模式来描述。根据表面波方法,对于三种发声前声门配置中的每一种,将四个最低简正振动模式的对称和不对称组合叠加在左右声带的内侧表面上。在振动周期的16个归一化相位处,由模态形状的相互作用生成接触模式。识别出八种主要接触模式,并根据流道形状进行特征描述,赋予以下描述词:收敛、发散、收敛 - 发散、均匀、分裂、合并、岛状和多通道。描述了每种接触模式及其变化,并讨论了未来的工作和应用。

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