W Zhou Victor, Kyme Andre Z, Meikle Steven R, Fulton Roger
School of Physics, University of Sydney, NSW 2006, Sydney, Australia.
Phys Med Biol. 2009 Sep 7;54(17):5321-39. doi: 10.1088/0031-9155/54/17/016. Epub 2009 Aug 18.
Line of response (LOR) rebinning is an event-based motion-correction technique for positron emission tomography (PET) imaging that has been shown to compensate effectively for rigid motion. It involves the spatial transformation of LORs to compensate for motion during the scan, as measured by a motion tracking system. Each motion-corrected event is then recorded in the sinogram bin corresponding to the transformed LOR. It has been shown previously that the corrected event must be normalized using a normalization factor derived from the original LOR, that is, based on the pair of detectors involved in the original coincidence event. In general, due to data compression strategies (mashing), sinogram bins record events detected on multiple LORs. The number of LORs associated with a sinogram bin determines the relative contribution of each LOR. This paper provides a thorough treatment of event-based normalization during motion correction of PET data using LOR rebinning. We demonstrate theoretically and experimentally that normalization of the corrected event during LOR rebinning should account for the number of LORs contributing to the sinogram bin into which the motion-corrected event is binned. Failure to account for this factor may cause artifactual slice-to-slice count variations in the transverse slices and visible horizontal stripe artifacts in the coronal and sagittal slices of the reconstructed images. The theory and implementation of normalization in conjunction with the LOR rebinning technique is described in detail, and experimental verification of the proposed normalization method in phantom studies is presented.
响应线(LOR)重新组合是一种用于正电子发射断层扫描(PET)成像的基于事件的运动校正技术,已被证明能有效补偿刚性运动。它涉及对LOR进行空间变换,以补偿扫描过程中的运动,运动由运动跟踪系统测量。然后,每个经过运动校正的事件被记录在与变换后的LOR对应的正弦图bin中。先前已经表明,校正后的事件必须使用从原始LOR导出的归一化因子进行归一化,也就是说,基于原始符合事件中涉及的一对探测器。一般来说,由于数据压缩策略(混合),正弦图bin记录在多个LOR上检测到的事件。与正弦图bin相关联的LOR数量决定了每个LOR的相对贡献。本文全面探讨了使用LOR重新组合对PET数据进行运动校正期间基于事件的归一化。我们在理论和实验上证明,LOR重新组合期间校正事件的归一化应考虑对运动校正事件进行分bin的正弦图bin中贡献的LOR数量。不考虑这个因素可能会在重建图像的横向切片中导致人为的切片间计数变化,以及在冠状和矢状切片中出现可见的水平条纹伪影。详细描述了结合LOR重新组合技术的归一化理论和实现,并给出了在体模研究中对所提出的归一化方法的实验验证。