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Geometric calibration between PET scanner and structured light scanner

机译:pET扫描仪和结构光扫描仪之间的几何校准

摘要

Head movements degrade the image quality of high resolution Positron Emission Tomography (PET) brain studies through blurring and artifacts. Manny image reconstruction methods allows for motion correction if the head position is tracked continuously during the study. Our method for motion tracking is a structured light scanner placed just above the patient tunnel on the High Resolution Research Tomograph (HRRT, Siemens). It continuously registers point clouds of a part of the patient's face. The relative motion is estimated as the rigid transformation between frames. A geometric calibration between the HRRT scanner and the tracking system is needed in order to reposition the PET listmode data or image frames in the HRRT scanner coordinate system. This paper presents a method where obtained transmission scan data is segmented in order to create a point cloud of the patient's head. The point clouds from both systems can then be aligned to each other using the Iterative Closest Point (ICP) algorithm.
机译:头部运动会由于模糊和伪影而降低高分辨率正电子发射断层扫描(PET)脑研究的图像质量。如果在研究过程中连续跟踪头部位置,则曼尼图像重建方法可进行运动校正。我们的运动跟踪方法是将结构化的光扫描仪放置在高分辨率研究断层扫描仪(HRRT,西门子)上患者通道上方。它连续记录患者面部一部分的点云。相对运动被估计为帧之间的刚性变换。为了在HRRT扫描仪坐标系统中重新定位PET列表模式数据或图像帧,需要在HRRT扫描仪和跟踪系统之间进行几何校准。本文提出了一种方法,其中对获得的透射扫描数据进行分段,以创建患者头部的点云。然后,可以使用迭代最近点(ICP)算法将两个系统的点云彼此对齐。

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