Fourier rebinning of time-of-flight PET data
- 25 May 2005
- journal article
- Published by IOP Publishing in Physics in Medicine & Biology
- Vol. 50 (12) , 2749-2763
- https://doi.org/10.1088/0031-9155/50/12/002
Abstract
This paper explores fast reconstruction strategies for 3D time-of-flight (TOF) positron emission tomography (PET), based on 2D data rebinning. Starting from pre-corrected 3D TOF data, a rebinning algorithm estimates for each transaxial slice the 2D TOF sinogram that would have been acquired by a single-ring scanner. The rebinned sinograms can then be reconstructed using any algorithm for 2D TOF reconstruction. We introduce TOF-FORE, an approximate rebinning algorithm obtained by extending the Fourier rebinning method for non-TOF data. In addition, we identify two partial differential equations that must be satisfied by consistent 3D TOF data, and use them to derive exact rebinning algorithms and to characterize the degree of the approximation in TOF-FORE. Numerical simulations demonstrate that TOF-FORE is more accurate than two different TOF extensions of the single-slice rebinning method, and suggest that TOF-FORE will be a valuable tool for practical TOF PET in the range of axial apertures and time resolutions typical of current scanners.Keywords
This publication has 22 references indexed in Scilit:
- Design of a lanthanum bromide detector for time-of-flight PETIEEE Transactions on Nuclear Science, 2004
- Comparison of 3-D reconstruction with 3D-OSEM and with FORE+OSEM for PETIEEE Transactions on Medical Imaging, 2001
- A fast rebinning algorithm for 3D positron emission tomography using John's equationInverse Problems, 1999
- Exact rebinning methods for three-dimensional PETIEEE Transactions on Medical Imaging, 1999
- A factorization method for the 3D X-ray transformInverse Problems, 1995
- Three-dimensional PET reconstruction with time-of-flight measurementPhysics in Medicine & Biology, 1992
- Physical characteristics of TTV03, a new high spatial resolution time-of-flight positron tomographIEEE Transactions on Nuclear Science, 1990
- An Iterative Image Space Reconstruction Algorthm Suitable for Volume ECTIEEE Transactions on Medical Imaging, 1986
- A Simplified EM Reconstruction Algorithm for TOFPETIEEE Transactions on Nuclear Science, 1985
- The ultrahyperbolic differential equation with four independent variablesDuke Mathematical Journal, 1938