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软组织粘弹性特性的成像估计值与力学测量值的一致性。

Congruence of imaging estimators and mechanical measurements of viscoelastic properties of soft tissues.

作者信息

Zhang Man, Castaneda Benjamin, Wu Zhe, Nigwekar Priya, Joseph Jean V, Rubens Deborah J, Parker Kevin J

机构信息

Department of Biomedical Engineering, University of Rochester, Rochester, NY 14627, USA.

出版信息

Ultrasound Med Biol. 2007 Oct;33(10):1617-31. doi: 10.1016/j.ultrasmedbio.2007.04.012. Epub 2007 Jul 2.

Abstract

Biomechanical properties of soft tissues are important for a wide range of medical applications, such as surgical simulation and planning and detection of lesions by elasticity imaging modalities. Currently, the data in the literature is limited and conflicting. Furthermore, to assess the biomechanical properties of living tissue in vivo, reliable imaging-based estimators must be developed and verified. For these reasons, we developed and compared two independent quantitative methods--crawling wave estimator (CRE) and mechanical measurement (MM) for soft tissue characterization. The CRE method images shear wave interference patterns from which the shear wave velocity can be determined and hence the Young's modulus can be obtained. The MM method provides the complex Young's modulus of the soft tissue from which both elastic and viscous behavior can be extracted. This article presents the systematic comparison between these two techniques on the measurement of gelatin phantom, veal liver, thermal-treated veal liver and human prostate. It was observed that the Young's moduli of liver and prostate tissues slightly increase with frequency. The experimental results of the two methods are highly congruent, suggesting CRE and MM methods can be reliably used to investigate viscoelastic properties of other soft tissues, with CRE having the advantages of operating in nearly real time and in situ.

摘要

软组织的生物力学特性对于广泛的医学应用非常重要,例如手术模拟与规划以及通过弹性成像方式检测病变。目前,文献中的数据有限且相互矛盾。此外,为了在体内评估活体组织的生物力学特性,必须开发并验证可靠的基于成像的估计方法。出于这些原因,我们开发并比较了两种独立的定量方法——用于软组织表征的蠕动波估计器(CRE)和力学测量(MM)。CRE方法对剪切波干涉图样进行成像,由此可以确定剪切波速度,进而获得杨氏模量。MM方法提供软组织的复杨氏模量,从中可以提取弹性和粘性行为。本文展示了这两种技术在明胶模型、小牛肉肝脏、热处理小牛肉肝脏和人类前列腺测量方面的系统比较。据观察,肝脏和前列腺组织的杨氏模量随频率略有增加。这两种方法的实验结果高度一致,表明CRE和MM方法可可靠地用于研究其他软组织的粘弹性特性,其中CRE具有近乎实时和原位操作的优势。

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