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Measurements of vocal fold tissue viscoelasticity: Approaching the male phonatory frequency range

机译:声带组织粘弹性的测量:接近男性发声频率范围

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摘要

Viscoelastic shear properties of human vocal fold tissues have been reported previously. However, data have only been obtained at very low frequencies (≤15 Hz). This necessitates data extrapolation to the frequency range of phonation based on constitutive modeling and time-temperature superposition. This study attempted to obtain empirical measurements at higher frequencies with the use of a controlled strain torsional rheometer, with a design of directly controlling input strain that introduced significantly smaller system inertial errors compared to controlled stress rheometry. Linear viscoelastic shear properties of the vocal fold mucosa (cover) from 17 canine larynges were quantified at frequencies of up to 50 Hz. Consistent with previous data, results showed that the elastic shear modulus (G'), viscous shear modulus (G"), and damping ratio (ζ) of the vocal fold mucosa were relatively constant across 0.016–50 Hz, whereas the dynamic viscosity (η') decreased monotonically with frequency. Constitutive characterization of the empirical data by a quasilinear viscoelastic model and a statistical network model demonstrated trends of viscoelastic behavior at higher frequencies generally following those observed at lower frequencies. These findings supported the use of controlled strain rheometry for future investigations of the viscoelasticity of vocal fold tissues and phonosurgical biomaterials at phonatory frequencies.
机译:先前已经报道了人声带组织的粘弹性剪切特性。但是,仅在非常低的频率(≤15 Hz)下获得数据。这需要根据本构模型和时间-温度叠加将数据外推到发声的频率范围。这项研究试图通过使用可控应变扭转流变仪来获得更高频率的经验测量结果,其设计是直接控制输入应变,与可控应力流变仪相比,引入的系统惯性误差要小得多。在高达50 Hz的频率下,对来自17条犬喉的声带粘膜(覆盖物)的线性粘弹性剪切特性进行了定量。与以前的数据一致,结果表明,声带粘膜的弹性剪切模量(G'),粘性剪切模量(G“)和阻尼比(ζ)在0.016–50 Hz范围内相对恒定,而动态粘度( η')随频率单调下降,通过准线性粘弹性模型和统计网络模型对经验数据的本构特征表明,在较高频率下粘弹性行为的趋势通常遵循在较低频率下观察到的趋势。声带组织和声外科生物材料在发声频率下的粘弹性的未来研究。

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