Department of Informatics andMathematical Modelling, Technical University of Denmark, Lyngby, Denmark.
IEEE Trans Med Imaging. 2013 Feb;32(2):200-9. doi: 10.1109/TMI.2012.2219693. Epub 2012 Sep 19.
A custom designed markerless tracking system was demonstrated to be applicable for positron emission tomography (PET) brain imaging. Precise head motion registration is crucial for accurate motion correction (MC) in PET imaging. State-of-the-art tracking systems applied with PET brain imaging rely on markers attached to the patient's head. The marker attachment is the main weakness of these systems. A healthy volunteer participating in a cigarette smoking study to image dopamine release was scanned twice for 2 h with (11)C-racolopride on the high resolution research tomograph (HRRT) PET scanner. Head motion was independently measured, with a commercial marker-based device and the proposed vision-based system. A list-mode event-by-event reconstruction algorithm using the detected motion was applied. A phantom study with hand-controlled continuous random motion was obtained. Motion was time-varying with long drift motions of up to 18 mm and regular step-wise motion of 1-6 mm. The evaluated measures were significantly better for motion-corrected images compared to no MC. The demonstrated system agreed with a commercial integrated system. Motion-corrected images were improved in contrast recovery of small structures.
一个定制设计的无标记跟踪系统被证明适用于正电子发射断层扫描(PET)脑成像。精确的头部运动配准对于 PET 成像中的准确运动校正(MC)至关重要。应用于 PET 脑成像的最先进的跟踪系统依赖于附着在患者头部的标记。标记附着是这些系统的主要弱点。一名参与吸烟研究以成像多巴胺释放的健康志愿者在高分辨率研究断层扫描仪(HRRT)PET 扫描仪上两次扫描了 2 小时的(11)C- racolopride。头部运动分别使用商业的基于标记的设备和提出的基于视觉的系统进行测量。使用检测到的运动应用了一种基于事件的列表模式事件重建算法。获得了手动控制连续随机运动的体模研究。运动是时变的,有长达 18 毫米的长漂移运动和 1-6 毫米的规则分步运动。与无 MC 相比,评估的指标对于运动校正后的图像明显更好。所展示的系统与商业集成系统一致。运动校正后的图像改善了小结构的对比度恢复。