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Identification of the Rayleigh surface waves for estimation of viscoelasticity using the surface wave elastography technique (L)

机译:使用表面波弹性成像技术识别瑞利表面波以估计粘弹性(L)

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摘要

The purpose of this Letter to the Editor is to demonstrate an effective method for estimating viscoelasticity based on measurements of the Rayleigh surface wave speed. It is important to identify the surface wave mode for measuring surface wave speed. A concept of start frequency of surface waves is proposed. The surface wave speeds above the start frequency should be used to estimate the viscoelasticity of tissue. The motivation was to develop a noninvasive surface wave elastography (SWE) technique for assessing skin disease by measuring skin viscoelastic properties. Using an optical based SWE system, the author generated a local harmonic vibration on the surface of phantom using an electromechanical shaker and measured the resulting surface waves on the phantom using an optical vibrometer system. The surface wave speed was measured using a phase gradient method. It was shown that different standing wave modes were generated below the start frequency because of wave reflection. However, the pure symmetric surface waves were generated from the excitation above the start frequency. Using the wave speed dispersion above the start frequency, the viscoelasticity of the phantom can be correctly estimated. (C) 2016 Acoustical Society of America.
机译:致编辑的这封信的目的是演示一种基于瑞利表面波速度测量值估算粘弹性的有效方法。识别表面波模式对于测量表面波速度很重要。提出了表面波起始频率的概念。高于起始频率的表面波速度应用于估计组织的粘弹性。目的是开发一种非侵入性表面波弹性成像(SWE)技术,通过测量皮肤的粘弹性来评估皮肤疾病。使用基于光学的SWE系统,作者使用机电振动器在体模表面上产生了局部谐波振动,并使用光学振动计系统测量了体模上产生的表面波。使用相位梯度法测量表面波速度。结果表明,由于波反射,在起始频率以下会产生不同的驻波模式。但是,纯对称表面波是由高于起始频率的激励产生的。使用高于起始频率的波速色散,可以正确估计体模的粘弹性。 (C)2016年美国声学学会。

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