Institute of Neuroscience and Medicine, Forschungszentrum Jülich GmbH, D-52425 Jülich, Germany.
IEEE Trans Med Imaging. 2011 Mar;30(3):879-92. doi: 10.1109/TMI.2011.2109732. Epub 2011 Jan 31.
For iterative, fully 3D positron emission tomography (PET) image reconstruction intrinsic symmetries can be used to significantly reduce the size of the system matrix. The precalculation and beneficial memory-resident storage of all nonzero system matrix elements is possible where sufficient compression exists. Thus, reconstruction times can be minimized independently of the used projector and more elaborate weighting schemes, e.g., volume-of-intersection (VOI), are applicable. A novel organization of scanner-independent, adaptive 3D projection data is presented which can be advantageously combined with highly rotation-symmetric voxel assemblies. In this way, significant system matrix compression is achieved. Applications taking into account all physical lines-of-response (LORs) with individual VOI projectors are presented for the Siemens ECAT HR+ whole-body scanner and the Siemens BrainPET, the PET component of a novel hybrid-MR/PET imaging system. Measured and simulated data were reconstructed using the new method with ordered-subset-expectation-maximization (OSEM). Results are compared to those obtained by the sinogram-based OSEM reconstruction provided by the manufacturer. The higher computational effort due to the more accurate image space sampling provides significantly improved images in terms of resolution and noise.
对于迭代式、完全 3D 正电子发射断层扫描(PET)图像重建,固有对称性可用于显著减小系统矩阵的大小。只要存在足够的压缩,就可以预先计算并有益地存储所有非零系统矩阵元素,以便在内存中驻留。因此,重建时间可以独立于使用的投影仪和更复杂的加权方案(例如,感兴趣区(VOI))进行最小化。本文提出了一种新型的与扫描仪无关的自适应 3D 投影数据组织方式,它可以与高度旋转对称的体素组件相结合。通过这种方式,可以实现显著的系统矩阵压缩。本文介绍了适用于西门子 ECAT HR+全身扫描仪和西门子 BrainPET(新型混合-MR/PET 成像系统的 PET 组件)的考虑所有物理线响应(LOR)和单独的 VOI 投影仪的应用。使用新的有序子集期望最大化(OSEM)方法对实测和模拟数据进行了重建。将结果与制造商提供的基于线对的 OSEM 重建的结果进行了比较。由于图像空间采样更准确,因此更高的计算复杂度提供了在分辨率和噪声方面显著改善的图像。