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A flexible multicamera visual-tracking system for detecting and correcting motion-induced artifacts in cardiac SPECT slices

机译:灵活的多摄像机视觉跟踪系统,用于检测和校正心脏SPECT切片中的运动引起的伪像

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摘要

Patient motion is inevitable in SPECT and PET due to the lengthy period of time patients are imaged. The authors hypothesized that the use of external-tracking devices which provide additional information on patient motion independent of SPECT data could be employed to provide a more robust correction than obtainable from data-driven methods. Therefore, the authors investigated the Vicon MX visual-tracking system (VTS) which utilizes near-infrared (NIR) cameras to stereo-image small retroreflective markers on stretchy bands wrapped about the chest and abdomen of patients during cardiac SPECT. The chest markers are used to provide an estimate of the rigid-body (RB) motion of the heart. The abdomen markers are used to provide a signal used to bin list-mode acquisitions as part of correction of respiratory motion of the heart. The system is flexible in that the layout of the cameras can be designed to facilitate marker viewing. The system also automatically adapts marker tracking to employ all of the cameras visualizing a marker at any instant, with visualization by any two being sufficient for stereo-tracking. Herein the ability of this VTS to track motion with submillimeter and subdegree accuracy is established through studies comparing the motion of Tc-99m containing markers as assessed via stereo-tracking and from SPECT reconstructions. The temporal synchronization between motion-tracking data and timing marks embedded in list-mode SPECT acquisitions is shown to agree within 100 ms. In addition, motion artifacts were considerably reduced in reconstructed SPECT slices of an anthropomorphic phantom by employing within iterative reconstruction the motion-tracking information from markers attached to the phantom. The authors assessed the number and placement of NIR cameras required for robust motion tracking of markers during clinical imaging in 77 SPECT patients. They determined that they were able to track without loss during the entire period of SPECT and transmission imaging at least three of the four markers on the chest and one on the abdomen bands 94% and 92% of the time, respectively. The ability of the VTS to correct motion clinically is illustrated for ten patients who volunteered to undergo repeat-rest imaging with the original-rest SPECT study serving as the standard against which to compare the success of correction. Comparison of short-axis slices shows that VTS-based motion correction provides better agreement with the original-rest-imaging slices than either no correction or the vendor-supplied software for motion correction on our SPECT system. Comparison of polar maps shows that VTS-based motion-correction results in less numerical difference on average in the segments of the polar maps between the original-rest study and the second-rest study than the other two strategies. The difference was statistically significant for the comparison between VTS-based and clinical vendor-supplied software correction. Taken together, these findings suggest that VTS-based motion correction is superior to either no-motion correction or the vendor-supplied software the authors investigated in clinical practice.
机译:由于患者的成像时间较长,因此在SPECT和PET中患者运动是不可避免的。作者假设可以使用外部跟踪设备来提供与SPECT数据无关的关于患者运动的附加信息,而可以使用比从数据驱动方法获得的更鲁棒的校正方法。因此,作者研究了Vicon MX视觉跟踪系统(VTS),该系统利用近红外(NIR)相机对心脏SPECT期间包裹在患者胸部和腹部的弹性带上的小型逆反射标记进行立体成像。胸部标记用于估计心脏的刚体(RB)运动。腹部标记用于提供信号,用于对列表模式采集进行分类,作为心脏呼吸运动校正的一部分。该系统具有灵活性,因为可以设计摄像机的布局以方便查看标记。该系统还自动适应标记跟踪,以采用所有摄像机在任何时刻可视化标记,任何两个可视化足以实现立体跟踪。在此,通过比较包含通过立体跟踪和SPECT重建评估的Tc-99m标记的运动的研究,可以建立此VTS跟踪亚毫米和亚度精度运动的能力。运动跟踪数据和嵌入在列表模式SPECT采集中的计时标记之间的时间同步显示在100毫秒内一致。另外,通过在迭代重建中采用来自附着在体模上的标记的运动跟踪信息,可以大大减少拟人体模的重建SPECT切片中的运动伪影。作者评估了77位SPECT患者在临床成像过程中对标记进行可靠运动跟踪所需的NIR摄像机的数量和位置。他们确定,在整个SPECT和透射成像期间,他们至少有94%和92%的时间分别对胸部的四个标记中的三个和腹部的一个标记进行了无损追踪。通过自愿休息重复成像的十名患者,以原始静止SPECT研究为标准,对比了矫正成功的标准,说明了VTS在临床上纠正运动的能力。短轴切片的比较表明,基于VTS的运动校正与SPECT系统上的无校正或供应商提供的运动校正软件相比,与原始静止成像切片之间的一致性更好。极坐标图的比较显示,与其他两种策略相比,基于VTS的运动校正在极坐标图的各部分之间的原始平均休息时间与次要休息时间之间的平均数值差异较小。对于基于VTS的和临床供应商提供的软件校正之间的比较,差异具有统计学意义。综上所述,这些发现表明,基于VTS的运动校正优于无运动校正或作者在临床实践中研究的厂商提供的软件。

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