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Estimation and correction of cardiac respiratory motion in SPECT in the presence of limited-angle effects due to irregular respiration

机译:由于不规则呼吸而存在有限角度效应的情况下SPECT中心脏呼吸运动的估计和校正

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摘要

>Purpose: One issue with amplitude binning list-mode studies in SPECT for respiratory motion correction is that variation in the patient’s respiratory pattern will result in binned motion states with little or no counts at various projection angles. The reduced counts result in limited-angle reconstruction artifacts which can impact the accuracy of the necessary motion estimation needed to correct the images. In this work, the authors investigate a method to overcome the effect of limited-angle reconstruction artifacts in SPECT when estimating respiratory motion.>Methods: In the first pass of the reconstruction method, only the projection angles with significant counts in common between the binned respiratory states are used in order to better estimate the motion between them. After motion estimation, the estimates are used to correct for motion within iterative reconstruction using all of the acquired projection data.>Results: Using simulated SPECT studies based on the NCAT phantom, the authors demonstrate the problem caused by having data available for only a limited number of angles when estimating motion and the utility of the proposed method in diminishing this error. For NCAT data sets with a clinically appropriate level of Poisson noise, the average registration error for motion with the proposed method was always less with the use of their algorithm, the reduction being statistically significant (p<0.05) in the majority of cases. The authors illustrate the ability of their method to correct the degradations caused by respiratory motion in short-axis slices and polar maps of the NCAT phantom for cases with 1 and 2 cm amplitudes of respiratory motion. In four cardiac-perfusion patients acquired on the same day, the authors demonstrate the large variability of the number of counts in the amplitude-binned projections. Finally, the authors demonstrate a visual improvement in the slices and polar maps of patient studies with the algorithm for respiratory motion correction.>Conclusions: The authors’ method shows promise in reducing errors in respiratory motion estimation despite the presence of limited-angle reconstruction effects due to irregularity in respiration. Improvements in image quality were observed in both simulated and clinical studies.
机译:>目的:SPECT中用于呼吸运动校正的幅度合并列表模式研究的一个问题是,患者呼吸模式的变化将导致合并的运动状态在不同的投影角度几乎没有计数。减少的计数导致有限角度的重建伪像,这可能会影响校正图像所需的必要运动估计的准确性。在这项工作中,作者研究了一种在估计呼吸运动时克服SPECT中的有限角度重建伪影的方法。>方法:在重建方法的第一遍中,只有具有显着角度的投影角为了更好地估计它们之间的运动,使用了合并的呼吸状态之间的共同计数。在进行运动估计之后,这些估计将用于使用所有获取的投影数据在迭代重建中校正运动。>结果:使用基于NCAT幻象的模拟SPECT研究,作者证明了由估计运动时仅可用于有限数量的角度的数据,以及所提出的方法在减小此误差方面的实用性。对于具有Poisson噪声临床上适当水平的NCAT数据集,使用其算法使用运动提出的平均运动配准误差始终较小,在大多数情况下,这种降低具有统计学意义(p <0.05)。作者举例说明了他们的方法能够纠正呼吸运动幅度为1和2 cm的病例的NCAT体模的短轴切片和极坐标图中由呼吸运动引起的退化。在同一天获得的四名心脏灌注患者中,作者证明了振幅结合预测中计数的数量差异很大。最后,作者展示了使用呼吸运动校正算法对患者研究的切片和极谱图的视觉改善。>结论:尽管存在,作者的方法显示出有望减少呼吸运动估计误差。呼吸不规则造成的有限角度重建效果。在模拟和临床研究中均观察到图像质量的改善。

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