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一种用于测量体内软组织生物力学特性的新型超声压痕系统。

A novel ultrasound indentation system for measuring biomechanical properties of in vivo soft tissue.

作者信息

Han Lianghao, Noble J Alison, Burcher Michael

机构信息

Medical Vision Laboratory, Department of Engineering Science, Oxford University, Oxford, UK.

出版信息

Ultrasound Med Biol. 2003 Jun;29(6):813-23. doi: 10.1016/s0301-5629(02)00776-7.

Abstract

Technologies for soft tissue analysis are advancing at a rapid place. For instance, elastography, which provides soft tissue strain images, is starting to be tried in clinical practice as a tool for diagnosing cancer. Soft tissue deformation modeling and analysis is also an active area of research that has application in surgery planning and treatment. Typically, quantitative soft tissue analysis uses nominal values of soft tissue biomechanical properties. However, in practice, soft tissue properties can vary significantly between individuals. Hence, for soft tissue methodologies to reach their full potential as patient-specific techniques, there is a need to develop ways to efficiently measure soft tissue mechanical properties in vivo. This paper describes a prototype real-time ultrasound (US) indentation test system developed to meet this need. The system is based on the integration of a force sensor and an optical tracking system with a commercial US machine integrated with a suite of analysis methodologies. In a study on a single-layer phantom, we used the system to compare various methods of estimating linear elastic properties (via a theoretical approximation, 2-D finite element analysis, 3-D finite element analysis and a standard material-testing method). In a second study on a three-layer gelatin phantom, we describe a new finite-element-based inverse solution for recovering the Young's moduli of each layer to show how the system can estimate properties of internal components of soft tissue. Finally, we show how the system can be used to derive a modified quasilinear viscoelastic (QVL) model on real breast tissue.

摘要

软组织分析技术正在迅速发展。例如,能提供软组织应变图像的弹性成像技术,正开始在临床实践中作为一种癌症诊断工具进行尝试。软组织变形建模与分析也是一个活跃的研究领域,在手术规划和治疗中有着应用。通常,定量软组织分析使用软组织生物力学特性的标称值。然而,在实际中,个体之间的软组织特性可能有很大差异。因此,为了使软组织分析方法作为针对患者的技术充分发挥其潜力,需要开发在体内有效测量软组织力学特性的方法。本文描述了一种为满足这一需求而开发的实时超声(US)压痕测试系统原型。该系统基于将力传感器和光学跟踪系统与一台集成了一套分析方法的商用超声设备相整合。在对单层模型的一项研究中,我们使用该系统比较了估计线性弹性特性的各种方法(通过理论近似、二维有限元分析、三维有限元分析以及一种标准材料测试方法)。在对三层明胶模型的第二项研究中,我们描述了一种基于有限元的新的反解方法,用于恢复各层的杨氏模量,以展示该系统如何估计软组织内部组件的特性。最后,我们展示了该系统如何用于在真实乳腺组织上推导一种改进的准线性粘弹性(QVL)模型。

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