DocumentCode
1440019
Title
Fully-3D PET Image Reconstruction Using Scanner-Independent, Adaptive Projection Data and Highly Rotation-Symmetric Voxel Assemblies
Author
Scheins, J.J. ; Herzog, H. ; Shah, N.J.
Author_Institution
Inst. of Neurosci. & Med., Forschungszentrum Julich GmbH, Jülich, Germany
Volume
30
Issue
3
fYear
2011
fDate
3/1/2011 12:00:00 AM
Firstpage
879
Lastpage
892
Abstract
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.
Keywords
expectation-maximisation algorithm; image reconstruction; medical image processing; positron emission tomography; 3D PET image reconstruction; 3D positron emission tomography; Siemens BrainPET; Siemens ECAT HR+ whole body scanner; VOI projector; adaptive projection data; beneficial memory resident storage; ordered subset expectation maximization; precalculation; rotation symmetric voxel assembly; scanner independent data; Assembly; Crystals; Data models; Image reconstruction; Positron emission tomography; Random access memory; Three dimensional displays; Generic cylinder model; iterative reconstruction; positron emission tomography (PET); symmetries; system matrix; Algorithms; Brain; Humans; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Pattern Recognition, Automated; Positron-Emission Tomography; Reproducibility of Results; Sensitivity and Specificity;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/TMI.2011.2109732
Filename
5705579
Link To Document