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兰姆波剪切波频散超声振动测量法(SDUV)验证研究。

Lamb wave Shearwave dispersion ultrasound Vibrometry (SDUV) validation study.

作者信息

Nenadic Ivan, Urban Matthew W, Mitchell Scott A, Greenleaf James F

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, MN 55905, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:45-8. doi: 10.1109/IEMBS.2010.5626336.

Abstract

Our group has been investigating the use of Shearwave Dispersion Ultrasound Vibrometry (SDUV) for quantifying viscoelasticity of the myocardium. The primary aim of this study is the design and testing of viscoelastic materials suitable for validation of the Lamb wave model in the heart. The Lamb wave SDUV method was used to measure shear wave velocity dispersion of gelatin and urethane rubber plates in the range 40-500 Hz and estimate the material properties. A finite element model (FEM) of a viscoelastic plate submerged in water was used to study the appropriateness of the Lamb wave dispersion equations. An embedded sphere method was used as an independent measurement of viscoelasticity. The FEM wave velocity dispersion data were in excellent agreement with the theoretical predictions. Elasticity and viscosity of urethane and gelatin obtained using the Lamb wave SDUV and embedded sphere methods agree within one standard deviation.

摘要

我们的团队一直在研究使用剪切波频散超声振动测量法(SDUV)来量化心肌的粘弹性。本研究的主要目的是设计和测试适用于验证心脏中兰姆波模型的粘弹性材料。采用兰姆波SDUV方法测量了明胶和聚氨酯橡胶板在40 - 500 Hz范围内的剪切波速度频散,并估算了材料特性。使用浸没在水中的粘弹性板的有限元模型(FEM)来研究兰姆波频散方程的适用性。采用嵌入球体法作为粘弹性的独立测量方法。有限元模型的波速频散数据与理论预测结果非常吻合。使用兰姆波SDUV和嵌入球体法获得的聚氨酯和明胶的弹性和粘性在一个标准差范围内相符。

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