DocumentCode :
1765058
Title :
A Fast List-Mode Reconstruction Algorithm with Dedicated Correction for Random Coincidences for the Clear-PEM System
Author :
Liji Cao ; Bugalho, Ricardo ; Ferreira, Cleber S. ; Ortigao, Catarina ; Capote, R.M. ; Varela, Jesus ; Peter, Jorg
Author_Institution :
Div. of Med. Phys. in Radiol., German Cancer Res. Center, Heidelberg, Germany
Volume :
61
Issue :
3
fYear :
2014
fDate :
41791
Firstpage :
1182
Lastpage :
1191
Abstract :
A fast list-mode MLEM reconstruction algorithm including low-noise random correction for the Clear-PEM imaging system is presented. In this approach, the sensitivity matrix is estimated based on planar phantom acquisitions, rather than tracing along lines of response (LORs). The algorithm is implemented by distributing the calculation of the acquired list-mode events into different threads yielding significantly increased computational speed. A list-mode random correction approach is presented in which reconstructed data are corrected according to a smooth correction image estimated from delayed coincidence data. Monte Carlo simulations based on GATE were performed to validate the proposed approach. A Derenzo phantom study shows that the 1.2-mm hot rods can be resolved using the presented algorithm. A breast-torso phantom study as well as a study based on acquired patient data demonstrate its feasibility in a clinical environment. This method reaches a significant higher calculation efficiency in which the total reconstruction time is less than 30 seconds for a typical clinical study. Results show that bias from random coincidences is largely suppressed. The presented algorithm achieves a fast and low-noise reconstructions without compromising intrinsic system resolution and sensitivity.
Keywords :
Monte Carlo methods; biological tissues; data acquisition; delays; image reconstruction; image resolution; mammography; matrix algebra; medical image processing; phantoms; positron emission tomography; random processes; rods (structures); Derenzo phantom study; GATE; LOR tracing; Monte Carlo simulations; acquired list-mode event calculation distribution; breast-torso phantom study; calculation efficiency; clear-PEM imaging system; clinical environment; clinical study; computational speed; data reconstruction; dedicated correction; delayed coincidence data; fast list-mode MLEM reconstruction algorithm; fast reconstructions; hot rod resolution; intrinsic system resolution; intrinsic system sensitivity; line of response tracing; list-mode random correction; low-noise random correction; low-noise reconstructions; patient data acquisition; planar phantom acquisitions; random coincidence bias suppression; random coincidences; sensitivity matrix estimation; size 1.2 mm; smooth correction image estimation; total reconstruction time; Crystals; Detectors; Image reconstruction; Phantoms; Reconstruction algorithms; Sensitivity; Transmission line matrix methods; Correction for random coincidences; image reconstruction; list mode; positron emission mammography (PEM);
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2014.2311171
Filename :
6809224
Link To Document :
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