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A new 2D shear wave imaging system for ultrasound elastography

机译:用于超声弹性成像的新型二维剪切波成像系统

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Ultrasound elastography is able to provide a non-invasive measurement of tissue elasticity properties. Shear wave imaging (SWI) technique is a quantitative method for tissue stiffness assessment. However, traditional SWI implementations cannot acquire 2D quantitative images of tissue elasticity distribution. In this study, a new shear wave imaging system is proposed and evaluated. Detailed delineation of hardware and image processing algorithms are presented. Programmable devices are selected to support flexible control of the system and the image processing algorithms. Analytic signal based cross-correlation method and a Radon transform based shear wave speed determination method are proposed with parallel computation ability. Tissue mimicking phantom imaging, and in vitro imaging measurements are conducted to demonstrate the performance of the proposed system. The system has the ability to provide a new choice for quantitative mapping of the tissue elasticity, and has good potential to be implemented into commercial ultrasound scanner.
机译:超声弹性成像能够提供组织弹性特性的非侵入性测量。剪切波成像(SWI)技术是一种用于组织刚度评估的定量方法。但是,传统的SWI实现无法获取组织弹性分布的2D定量图像。在这项研究中,提出并评估了一种新的剪切波成像系统。给出了硬件和图像处理算法的详细描述。选择可编程设备以支持系统和图像处理算法的灵活控制。提出了具有并行计算能力的基于解析信号的互相关方法和基于Radon变换的剪切波速度确定方法。模仿幻像成像的组织,并进行体外成像测量以证明所提出系统的性能。该系统能够为组织弹性的定量映射提供新的选择,并且具有在商用超声扫描仪中实现的良好潜力。

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