Gianoli Chiara, Riboldi Marco, Fontana Giulia, Kurz Christopher, Parodi Katia, Baroni Guido
Dipartimento di Elettronica, Informazione e Bioingegneria (DEIB), Politecnico di Milano, Piazza Leonardo da Vinci 32, 20133, Milan, Italy.
Department of Radiation Oncology, Heidelberg University Hospital, Im Neuenheimer Feld 400, 69120, Heidelberg, Germany.
Med Biol Eng Comput. 2016 Mar;54(2-3):535-46. doi: 10.1007/s11517-015-1339-y. Epub 2015 Jul 1.
A novel strategy for 4D PET optimization in the sinogram domain is proposed, aiming at motion model application before image reconstruction ("sinogram warping" strategy). Compared to state-of-the-art 4D-MLEM reconstruction, the proposed strategy is able to optimize the image SNR, avoiding iterative direct and inverse warping procedures, which are typical of the 4D-MLEM algorithm. A full-count statistics sinogram of the motion-compensated 4D PET reference phase is generated by warping the sinograms corresponding to the different PET phases. This is achieved relying on a motion model expressed in the sinogram domain. The strategy was tested on the anthropomorphic 4D PET-CT NCAT phantom in comparison with the 4D-MLEM algorithm, with particular reference to robustness to PET-CT co-registrations artefacts. The MLEM reconstruction of the warped sinogram according to the proposed strategy exhibited better accuracy (up to +40.90 % with respect to the ideal value), whereas images reconstructed according to the 4D-MLEM reconstruction resulted in less noisy (down to -26.90 % with respect to the ideal value) but more blurred. The sinogram warping strategy demonstrates advantages with respect to 4D-MLEM algorithm. These advantages are paid back by introducing approximation of the deformation field, and further efforts are required to mitigate the impact of such an approximation in clinical 4D PET reconstruction.
提出了一种在正弦图域中进行4D PET优化的新策略,旨在在图像重建之前应用运动模型(“正弦图扭曲”策略)。与最先进的4D-MLEM重建相比,该策略能够优化图像SNR,避免了4D-MLEM算法中典型的迭代直接和逆扭曲过程。通过对与不同PET相位对应的正弦图进行扭曲,生成运动补偿后的4D PET参考相位的全计数统计正弦图。这是依靠在正弦图域中表达的运动模型来实现的。与4D-MLEM算法相比,该策略在拟人化4D PET-CT NCAT体模上进行了测试,特别参考了对PET-CT配准伪影的鲁棒性。根据所提出的策略对扭曲后的正弦图进行MLEM重建,显示出更好的准确性(相对于理想值高达+40.90%),而根据4D-MLEM重建的图像噪声更低(相对于理想值低至-26.90%)但更模糊。正弦图扭曲策略相对于4D-MLEM算法显示出优势。这些优势是以引入变形场的近似为代价的,需要进一步努力减轻这种近似在临床4D PET重建中的影响。