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尸体人类和切除的犬类喉部垂直刚度梯度的表征

Characterization of the Vertical Stiffness Gradient in Cadaveric Human and Excised Canine Larynges.

作者信息

Michaud-Dorko Jacob, Dion Gregory R, Farbos de Luzan Charles, Gutmark Ephraim, Oren Liran

机构信息

Department of Biomedical Engineering, University of Cincinnati, Cincinnati, Ohio.

Department of Biomedical Engineering, University of Cincinnati, Cincinnati, Ohio; Department of Otolaryngology-Head and Neck Surgery, University of Cincinnati, Cincinnati, Ohio.

出版信息

J Voice. 2024 Sep 6. doi: 10.1016/j.jvoice.2024.08.011.

Abstract

The elastic properties of the folds govern the characteristics of vocal fold vibrations. This study addresses existing gaps by investigating the Young's modulus along the anterior-posterior direction in excised canine and cadaveric human vocal folds. Micro-indentation testing was conducted on six excised canines and three cadaveric human larynges. Multiple points along the medial glottal wall were indented to determine force-displacement, stress-strain relationships, and Young's modulus as a function of Green's strain. A vertical stiffness gradient was consistently observed in both canine and human samples, with higher stiffness in the inferior aspect compared with the superior aspect. The stiffness increased toward both the anterior and posterior directions from the mid-coronal plane, with a more pronounced increase at the posterior edge. Human vocal folds generally exhibited lower stiffness at low strains but were comparable to canine vocal folds at higher strains. These findings suggest that the canine larynx model is a reasonable representation of the human laryngeal tissues' elastic property trends. This analysis of the vertical stiffness gradient in canine and human vocal folds provides valuable data for improving experimental and numerical models of phonation.

摘要

声带褶皱的弹性特性决定了声带振动的特征。本研究通过调查切除的犬类和人类尸体声带沿前后方向的杨氏模量,填补了现有空白。对六只切除的犬类和三个人类尸体喉部进行了微压痕测试。沿声门内侧壁的多个点进行压痕,以确定力-位移、应力-应变关系以及作为格林应变函数的杨氏模量。在犬类和人类样本中均一致观察到垂直刚度梯度,下侧的刚度高于上侧。刚度从冠状中平面朝着前后方向增加,在后缘增加更为明显。人类声带在低应变时通常表现出较低的刚度,但在高应变时与犬类声带相当。这些发现表明,犬类喉部模型合理地反映了人类喉部组织的弹性特性趋势。对犬类和人类声带垂直刚度梯度的分析为改进发声的实验和数值模型提供了有价值的数据。

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