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An Assessment of a Visual Tracking System (VTS) to Detect and Compensate for Patient Motion during SPECT

机译:视觉跟踪系统(VTS)的评估,以检测和补偿SPECT期间的患者运动

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Patient motion is inevitable in SPECT and PET due to the lengthy period of time patients are imaged and patient motion can degrade diagnostic accuracy. The goal of our studies is to perfect a methodology for tracking and correcting patient motion when it occurs. In this paper we report on enhancements to the calibration, camera stability, accuracy of motion tracking, and temporal synchronization of the visual tracking system (VTS) we are developing. The purpose of the VTS is to track the motion of retro-reflective markers on stretchy bands wrapped about the chest and abdomen of patients. We have improved the accuracy of 3D spatial calibration by using a MATLAB optical camera calibration package with a planar calibration pattern. This allowed us to determine the intrinsic and extrinsic parameters for stereo imaging with our CCD cameras. Locations in the VTS coordinate system are transformed to the SPECT coordinate system by a VTS/SPECT mapping using a phantom of 7 retro-reflective spheres each filled with a drop of Tc99m. We switched from pan, tilt and zoom (PTZ) network cameras to fixed network cameras to reduce the amount of camera drift. The improved stability was verified by tracking the positions of fixed retro-reflective markers on a wall. The ability of our VTS to track movement with sub-millimeter accuracy was established with the 7-sphere phantom for 1 cm vertical and axial steps as well as for an arbitrary rotation and translation. The difference in the time of optical image acquisition as decoded from the image headers relative to synchronization signals sent to the SPECT system was used to establish temporal synchrony between optical and list-mode SPECT acquisition. Two experiments showed better than 100 ms agreement between VTS and SPECT observed motion for three axial translations. We were able to track 3 reflective markers on an anthropomorphic phantom with a precision that allowed us to correct motion such that no loss in visual quality was- noted in motion corrected slices relative to motion free slices.
机译:在SPECT和PET中,患者的运动是不可避免的,这是因为要对患者进行长时间的成像,并且患者的运动会降低诊断的准确性。我们研究的目的是完善一种跟踪和纠正患者运动发生时的方法。在本文中,我们报告了对正在开发的视觉跟踪系统(VTS)的校准,相机稳定性,运动跟踪的准确性以及时间同步的增强。 VTS的目的是跟踪包裹在患者胸部和腹部的弹力带上的逆向反射标记的运动。通过使用带有平面校准图案的MATLAB光学相机校准套件,我们提高了3D空间校准的准确性。这使我们能够确定使用CCD摄像机进行立体成像的内在和外在参数。通过使用7个回射球体的幻像,通过VTS / SPECT映射,将VTS坐标系中的位置转换为SPECT坐标系,每个体模中都填充了Tc 99m 滴。我们从平移,倾斜和缩放(PTZ)网络摄像机切换到固定网络摄像机,以减少摄像机漂移量。通过跟踪固定的回射标记在墙上的位置,可以验证稳定性的提高。我们的VTS能够以7球体模型建立1毫米垂直和轴向步长以及任意旋转和平移的能力,以亚毫米精度跟踪运动。从图像标题解码的光学图像采集时间相对于发送到SPECT系统的同步信号的差异被用于建立光学和列表模式SPECT采集之间的时间同步。两个实验表明,对于三个轴向平移,VTS和SPECT观察到的运动之间的一致性好于100 ms。我们能够在拟人化模型上跟踪3个反射标记,其精确度使我们能够校正运动,从而使运动校正后的切片相对于自由运动的切片不会出现视觉质量的损失。

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