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Tomographic Reconstruction of Dynamic Cardiac Image Sequences

机译:动态心脏图像序列的层析成像重建

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In this paper, we propose an approach for the reconstruction of dynamic images from a gated cardiac data acquisition. The goal is to obtain an image sequence that can show simultaneously both cardiac motion and time-varying image activities. To account for the cardiac motion, the cardiac cycle is divided into a number of gate intervals, and a time-varying image function is reconstructed for each gate. In addition, to cope with the under-determined nature of the problem, the time evolution at each pixel is modeled by a B-spline function. The dynamic images for the different gates are then jointly determined using maximum a posteriori estimation, in which a motion-compensated smoothing prior is introduced to exploit the similarity among the different gates. The proposed algorithm is evaluated using a dynamic version of the 4-D gated mathematical cardiac torso phantom simulating a gated single photon emission computed tomography perfusion acquisition with Technitium-99m labeled Teboroxime. We thoroughly evaluated the performance of the proposed algorithm using several quantitative measures, including signal-to-noise ratio analysis, bias-variance plot, and time activity curves. Our results demonstrate that the proposed joint reconstruction approach can improve significantly the accuracy of the reconstruction
机译:在本文中,我们提出了一种从门控心脏数据采集中重建动态图像的方法。目的是获得可以同时显示心脏运动和随时间变化的图像活动的图像序列。为了说明心脏运动,将心动周期分为多个门间隔,并为每个门重建时变图像函数。另外,为了解决问题的不确定性,每个像素的时间演化都通过B样条函数建模。然后使用最大后验估计共同确定不同门的动态图像,其中引入运动补偿平滑先验以利用不同门之间的相似性。使用动态版本的4-D门控数学心脏躯干体模模拟带有Technitium-99m标记为Teboroxime的门控单光子发射计算机体层摄影术灌注采集,对提出的算法进行了评估。我们使用几种定量方法,包括信噪比分析,偏差方差图和时间活动曲线,全面评估了该算法的性能。我们的结果表明,提出的联合重建方法可以显着提高重建的准确性

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