用反投影滤波算法重建运动污染数据的ROI

M. King, Lifeng Yu, D. Xia, Xiaochuan Pan, M. Giger
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摘要

为了评估使用反向投影滤波(BPF)算法从运动污染数据中重建图像的潜力,使用三个虚拟幻影进行了仿真研究。第一个是均匀的椭圆幻像,它在一半的时间周期内进行旋转运动。第二个是一个正常大小的改良FORBILD假体,在其65%的时间周期内进行动态插入运动。这个幻像被扩展成第三个幻像,其部分延伸到视野之外。对于椭圆幻影,BPF算法能够获得覆盖部分椭圆的感兴趣区域(ROI)的精确重建,而扇束滤波反投影(FFBP)算法则不能。对于正常大小的幻影,获得了9个全扫描数据集,运动污染数据pmcd的百分比从17.5%到100%不等。对于每个数据集,使用平均绝对差MAD、均方根误差RMS和相关CORR指标来评估从运动污染数据重建的定义ROI与从无运动数据重建的相同ROI之间的差异。使用缩短扫描间隔的BPF算法比使用相同短扫描间隔的FFBP和BPF算法能够在所有pmcd上产生更好的MAD、RMS和CORR指标。对于扩展幻影,数据集中截断的存在并不影响pmcd范围为15%至100%的8个数据集的BPF重建中三个指标的总体趋势。
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ROI reconstruction of motion-contaminated data with a backprojection filtration algorithm
In order to evaluate the potential of using the backprojection filtration (BPF) algorithm for reconstructing images from motion-contaminated data, simulation studies were conducted with three virtual phantoms. The first was a uniform elliptical phantom, which underwent rotational motion during half of its temporal cycle. The second was a normal-sized modified FORBILD phantom with a dynamic insert undergoing contractile motion during 65% of its temporal cycle. This phantom was expanded to form a third phantom, whose portions extended beyond the field-of-view (FOV). For the elliptical phantom, the BPF algorithm was able to obtain an exact reconstruction of a region-of-interest (ROI) covering a portion of the ellipse, whereas the fanbeam filtered backprojection (FFBP) algorithm could not. For the normal-sized phantom, nine full-scan data sets were acquired with percents of motion-contaminated data PMCDs ranging from 17.5% to 100%. For each data set, the mean absolute difference MAD, root mean square error RMS, and correlation CORR metrics were used to assess the differences between a defined ROI reconstructed from motion-contaminated data from the same ROI reconstructed from motion-free data. The BPF algorithm using a reduced-scan interval was able to produce better MAD, RMS, and CORR metrics than both FFBP and BPF algorithms using the same short-scan interval over all PMCDs. For the expanded phantom, the presence of truncations in the data sets did not affect the overall trends of the three metrics in BPF reconstructions of eight data sets with PMCDs ranging from 15% to 100%.
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