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A COMPARISON OF MODEL BASED AND DIRECT OPTIMIZATION BASED FILTERING ALGORITHMS FOR SHEARWAVE VELOCITY RECONSTRUCTION FOR ELECTRODE VIBRATION ELASTOGRAPHY

机译:基于模型和基于直接优化的滤波算法在电极振动弹性成像中剪切波速度重建的比较

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摘要

Tissue stiffness estimation plays an important role in cancer detection and treatment. The presence of stiffer regions in healthy tissue can be used as an indicator for the possibility of pathological changes. Electrode vibration elastography involves tracking of a mechanical shear wave in tissue using radio-frequency ultrasound echoes. Based on appropriate assumptions on tissue elasticity, this approach provides a direct way of measuring tissue stiffness from shear wave velocity, and enabling visualization in the form of tissue stiffness maps. In this study, two algorithms for shear wave velocity reconstruction in an electrode vibration setup are presented. The first method models the wave arrival time data using a hidden Markov model whose hidden states are local wave velocities that are estimated using a particle filter implementation. This is compared to a direct optimization-based function fitting approach that uses sequential quadratic programming to estimate the unknown velocities and locations of interfaces. The mean shear wave velocities obtained using the two algorithms are within 10%of each other. Moreover, the Young’s modulus estimates obtained from an incompressibility assumption are within 15 kPa of those obtained from the true stiffness data obtained from mechanical testing. Based on visual inspection of the two filtering algorithms, the particle filtering method produces smoother velocity maps.
机译:组织刚度估计在癌症的检测和治疗中起着重要的作用。健康组织中较硬区域的存在可以用作病理变化可能性的指标。电极振动弹性成像包括使用射频超声回波跟踪组织中的机械剪切波。基于对组织弹性的适当假设,此方法提供了一种从剪切波速度测量组织刚度的直接方法,并能够以组织刚度图的形式进行可视化。在这项研究中,提出了两种在电极振动设置中重建剪切波速度的算法。第一种方法使用隐马尔可夫模型对波到达时间数据进行建模,该隐马尔可夫模型的隐含状态是使用粒子滤波实现估计的局部波速。这与基于直接优化的函数拟合方法进行了比较,后者使用顺序二次编程来估计未知的速度和接口位置。使用这两种算法获得的平均剪切波速度彼此相差10%以内。此外,根据不可压缩性假设获得的杨氏模量估算值与根据机械测试获得的真实刚度数据估算值相差15 kPa以内。基于对这两种滤波算法的目视检查,粒子滤波方法会生成更平滑的速度图。

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  • 作者

    Atul Ingle; Tomy Varghese;

  • 作者单位
  • 年(卷),期 -1(2013),-1
  • 年度 -1
  • 页码 760–763
  • 总页数 9
  • 原文格式 PDF
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