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Motion-compensated image reconstruction in gated cardiac SPECT.

机译:门控心脏SPECT中的运动补偿图像重建。

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摘要

Single photon emission computed tomography (SPECT) is currently one of the most important techniques for detection and evaluation of coronary artery diseases. However, its effectiveness is often hampered by the presence of substantial amount of noise in the acquired image data. In this work we propose a spatio-temporal reconstruction approach, based on the use of motion compensation, to address the important issue of noise reduction in gated cardiac SPECT images.; We first consider image reconstruction in traditional gated SPECT perfusion imaging. We introduce a temporal prior in the form of motion compensation to account for the statistical correlations among the frames in a sequence, and reconstruct all the frames collectively as a single function of space and time. We demonstrated the method in our experiments using both simulated SPECT cardiac-perfusion images and clinical data. Besides bias-variance analysis and time activity curves, we also used a channelized Hotelling observer to evaluate the detectability of perfusion defects. Our experimental results demonstrated that the incorporation of temporal regularization into image reconstruction could significantly improve the accuracy of cardiac images without causing any significant cross-frame blurring that may arise from the cardiac motion.; We next present a new approach for estimating the dynamics of a radio-pharmaceutical in the myocardium. To account for the heart motion, the cardiac cycle is divided into a number of intervals. Within each gated frame, the time evolution at a pixel is modeled by a spline function. The spline control points are then reconstructed using a Bayesian framework, in which a smoothing prior is defined on all the gated frames based on the motion of the heart. The proposed algorithm is evaluated using a phantom simulating a gated SPECT perfusion acquisition with Tc-99m Teboroxime. We used signal to noise ratio analysis, bias-variance plots and time activity curves to measure the accuracy of the reconstructions. Our results demonstrate that the use of motion compensation can improve significantly both the accuracy of the reconstruction and the differentiation between sick and healthy tissue.
机译:单光子发射计算机断层扫描(SPECT)当前是检测和评估冠状动脉疾病的最重要技术之一。但是,其效率通常由于所采集的图像数据中存在大量噪声而受到阻碍。在这项工作中,我们提出了一种基于时空重建的方法,基于运动补偿的使用,以解决门控心脏SPECT图像降噪的重要问题。我们首先考虑传统的门控SPECT灌注成像中的图像重建。我们以运动补偿的形式引入时间先验,以解决序列中各帧之间的统计相关性,并将所有帧统一重建为一个时空函数。我们在实验中使用模拟的SPECT心脏灌注图像和临床数据演示了该方法。除了偏差方差分析和时间活动曲线外,我们还使用通道化的Hotelling观测器来评估灌注缺陷的可检测性。我们的实验结果表明,将时间正则化合并到图像重建中可以显着提高心脏图像的准确性,而不会引起可能因心脏运动而引起的任何明显的跨帧模糊。接下来,我们提出一种估计心肌中放射性药物动力学的新方法。为了说明心脏运动,将心动周期分为多个间隔。在每个门控帧内,像素上的时间演变通过样条函数建模。然后使用贝叶斯框架重建样条曲线控制点,其中基于心脏的运动在所有门控帧上定义平滑先验。拟议的算法是通过使用幻像模拟使用Tc-99m Teboroxime模拟门控SPECT灌注采集来评估的。我们使用信噪比分析,偏差方差图和时间活动曲线来测量重构的准确性。我们的结果表明,运动补偿的使用可以显着提高重建的准确性以及生病组织与健康组织之间的区分。

著录项

  • 作者

    Gravier, Erwan.;

  • 作者单位

    Illinois Institute of Technology.;

  • 授予单位 Illinois Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;生物医学工程;
  • 关键词

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