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Temperature dependent of viscoelasticity measurement on fat emulsion phantom using acoustic radiation force elasticity imaging method

机译:声辐射力弹性成像法测量脂肪乳状体模型的粘弹性随温度的变化

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摘要

During the past two decades, tissue elasticity has been extensively studied and has been used in clinical disease diagnosis. But biological soft tissues are viscoelastic in nature. Therefore, they should be simultaneously characterized in terms of elasticity and viscosity. In addition, the mechanical properties of soft tissues are temperature dependent. However, how the temperature influences the shear wave dispersion and the viscoelasticity of soft tissue are still unclear. The aim of this study is to compare viscoelasticity of fat emulsion phantom with different temperature using acoustic radiation force elasticity imaging method. In our experiment, we produced four proportions of ultrasonic phantom by adding fat emulsion gelatin. Through adjusting the component of the fat emulsion, we change the viscoelasticity of the ultrasonic phantom. We used verasonics system to gather data and voigt model to fit the elasticity and viscosity value of the ultrasonic phantom we made. The influence of temperature to the ultrasonic phantom also measured in our study. The results show that the addition of fat emulsion to the phantom can increase the viscosity of the phantom, and the shear wave phase velocity decreases gradually at each frequency with the temperature increases, which provides a new material for the production of viscoelastic phantom.
机译:在过去的二十年中,组织弹性已被广泛研究,并已用于临床疾病诊断。但是生物软组织本质上是粘弹性的。因此,应同时对它们的弹性和粘度进行表征。另外,软组织的机械性能取决于温度。然而,温度如何影响剪切波分散和软组织的粘弹性仍不清楚。这项研究的目的是使用声辐射力弹性成像方法比较不同温度下的脂肪乳胶体模的粘弹性。在我们的实验中,我们通过添加脂肪乳明胶产生了四个比例的超声波体模。通过调整脂肪乳液的成分,我们可以改变超声体模的粘弹性。我们使用verasonics系统收集数据和voigt模型以适合我们制作的超声体模的弹性和粘度值。在我们的研究中还测量了温度对超声体模的影响。结果表明,在模体中添加脂肪乳剂可以增加模体的粘度,并且随着温度的升高,剪切波的相速度在各个频率处逐渐降低,为制备粘弹性体模提供了新的材料。

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