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首页> 外文期刊>Medical Physics >Multilevel hybrid 2D strain imaging algorithm for ultrasound sector/phased arrays.
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Multilevel hybrid 2D strain imaging algorithm for ultrasound sector/phased arrays.

机译:超声扇区/相控阵的多级混合2D应变成像算法。

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摘要

Two-dimensional (2D) cross-correlation algorithms are necessary to estimate local displacement vector information for strain imaging. However, most of the current two-dimensional cross-correlation algorithms were developed for linear array transducers. Although sector and phased array transducers are routinely used for clinical imaging of abdominal and cardiac applications, strain imaging for these applications has been performed using one-dimensional (1D) cross-correlation analysis. However, one-dimensional cross-correlation algorithms are unable to provide accurate and precise strain estimation along all the angular insonification directions which can range from -45 degrees to 45 degrees with sector and phased array transducers. In addition, since sector and phased array based images have larger separations between beam lines as the pulse propagates deeper into tissue, signal decorrelation artifacts with deformation or tissue motion are more pronounced. In this article, the authors propose a multilevel two-dimensional hybrid algorithm for ultrasound sector and phased array data that demonstrate improved tracking and estimation performance when compared to the traditional 1D cross-correlation or 2D cross-correlation based methods. Experimental results demonstrate that the signal-to-noise and contrast-to-noise ratio estimates improve significantly for smaller window lengths for the hybrid method when compared to the currently used one-dimensional or two-dimensional cross-correlation algorithms. Strain imaging results on ex vivo thermal lesions created in liver tissue and in vivo on cardiac short-axis views demonstrate the improved image quality obtained with this method.
机译:二维(2D)互相关算法是估计应变成像的局部位移矢量信息所必需的。然而,为线性阵列换能器开发了大多数目前的二维交叉相关算法。尽管扇区和相位阵列传感器经常用于腹部和心脏应用的临床成像,但是使用一维(1D)互相关分析进行了这些应用的应变成像。然而,一维互相关算法不能沿着所有角度钝化方向提供精确且精确的应变估计,该角度钝化方向可以在-45度到45度,与扇区和相控阵换能器。另外,由于扇区和基于阵列的图像在光束线之间具有更大的分开,因为脉冲在脉冲传播到组织中,因此具有变形或组织运动的信号去相关伪像更加明显。在本文中,作者提出了一种多级二维混合算法,用于超声扇区和相控阵数据,其展示与传统的1D互相关或基于2D互相关的方法相比的改进的跟踪和估计性能。实验结果表明,与当前使用的一维或二维互相关算法相比,信号对噪声和对比度估计对于混合方法的较小窗口长度,显着改善。应变成像结果对肝脏组织中产生的exVi​​vo热病变和心脏短轴视图上的体内热病变证明了通过这种方法获得的改进的图像质量。

著录项

  • 来源
    《Medical Physics 》 |2009年第6期| 共9页
  • 作者

    Chen H; Varghese T;

  • 作者单位

    Department of Medical Physics The University of Wisconsin-Madison Madison Wisconsin 53706 USA.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学 ;
  • 关键词

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