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人类假声带的弹性

Elasticity of the human false vocal fold.

作者信息

Chan Roger W, Fu Min, Tirunagari Neeraj

机构信息

Otolaryngology--Head and Neck Surgery, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9035, USA.

出版信息

Ann Otol Rhinol Laryngol. 2006 May;115(5):370-81. doi: 10.1177/000348940611500510.

Abstract

OBJECTIVES

Very little is known about the elasticity of the human ventricular fold (false vocal fold). To better understand the potential role of the false fold in the fluid dynamics and aeroacoustics of phonation, we made some measurements on the elastic properties of human ventricular fold tissues in vitro.

METHODS

Uniaxial tensile stress-strain characteristics of 6 male and 6 female false fold specimens were quantified with sinusoidal stretch-release deformation. Midcoronal sections of 3 specimens were examined to quantify the relative densities of collagen, elastin, seromucous glandular tissue, and adipose tissue by digital image analysis.

RESULTS

Nonlinear stress-strain curves with hysteresis (viscous energy loss) were observed, with large interindividual differences. A hybrid linear-exponential model was used to determine the elastic modulus (tangent Young's modulus) of the false fold. On average, the male false fold was twice as stiff as the female at a tensile strain of 20% to 30%.

CONCLUSIONS

This preliminary gender-related difference in elasticity could be attributed to a higher proportion of glandular tissue in the female false fold, due to the lower elastic modulus of glands. The present data allow one to develop a more comprehensive biomechanical model of phonation, for optimizing postoperative voice production following laryngeal reconstruction procedures.

摘要

目的

人们对人类室襞(假声带)的弹性了解甚少。为了更好地理解假声带在发声的流体动力学和空气声学中的潜在作用,我们对人类室襞组织的弹性特性进行了一些体外测量。

方法

通过正弦拉伸 - 释放变形对6例男性和6例女性假声带标本的单轴拉伸应力 - 应变特性进行量化。对3个标本的冠状中截面进行检查,通过数字图像分析量化胶原蛋白、弹性蛋白、浆液黏液腺组织和脂肪组织的相对密度。

结果

观察到具有滞后现象(粘性能量损失)的非线性应力 - 应变曲线,个体间差异较大。使用混合线性 - 指数模型确定假声带的弹性模量(切线杨氏模量)。平均而言,在20%至30%的拉伸应变下,男性假声带的硬度是女性的两倍。

结论

这种与性别相关的弹性初步差异可能归因于女性假声带中腺体组织比例较高,因为腺体的弹性模量较低。目前的数据有助于建立一个更全面的发声生物力学模型,以优化喉重建手术后的语音产生。

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