Chan Roger W, Rodriguez Maritza L
Department of Otolaryngology-Head and Neck Surgery, Graduate Program in Biomedical Engineering, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9035, USA.
J Acoust Soc Am. 2008 Aug;124(2):1207-19. doi: 10.1121/1.2946715.
Previous studies reporting the linear viscoelastic shear properties of the human vocal fold cover or mucosa have been based on torsional rheometry, with measurements limited to low audio frequencies, up to around 80 Hz. This paper describes the design and validation of a custom-built, controlled-strain, linear, simple-shear rheometer system capable of direct empirical measurements of viscoelastic shear properties at phonatory frequencies. A tissue specimen was subjected to simple shear between two parallel, rigid acrylic plates, with a linear motor creating a translational sinusoidal displacement of the specimen via the upper plate, and the lower plate transmitting the harmonic shear force resulting from the viscoelastic response of the specimen. The displacement of the specimen was measured by a linear variable differential transformer whereas the shear force was detected by a piezoelectric transducer. The frequency response characteristics of these system components were assessed by vibration experiments with accelerometers. Measurements of the viscoelastic shear moduli (G' and G") of a standard ANSI S2.21 polyurethane material and those of human vocal fold cover specimens were made, along with estimation of the system signal and noise levels. Preliminary results showed that the rheometer can provide valid and reliable rheometric data of vocal fold lamina propria specimens at frequencies of up to around 250 Hz, well into the phonatory range.
以往关于人类声带覆盖层或黏膜线性粘弹性剪切特性的研究基于扭转流变学,测量限于低音频,最高约80赫兹。本文描述了一种定制的、可控应变、线性、简单剪切流变仪系统的设计与验证,该系统能够在发声频率下直接对粘弹性剪切特性进行实证测量。将一个组织样本置于两个平行的刚性丙烯酸板之间进行简单剪切,一个线性电机通过上板使样本产生平移正弦位移,下板传递由样本粘弹性响应产生的谐波剪切力。样本的位移由线性可变差动变压器测量,而剪切力由压电换能器检测。通过使用加速度计的振动实验评估了这些系统组件的频率响应特性。对一种标准的ANSI S2.21聚氨酯材料以及人类声带覆盖层样本的粘弹性剪切模量(G'和G")进行了测量,并估计了系统的信号和噪声水平。初步结果表明,该流变仪能够在高达约250赫兹的频率下提供声带固有层样本有效且可靠的流变学数据,该频率范围已深入发声范围。