DocumentCode :
1828758
Title :
Performance improvement of event-based motion correction for PET using a PC cluster
Author :
Watabe, Hiroshi ; Woo, Sang-Keun ; Kim, Kyeong-Min ; Kudomi, Nobuyuki ; Iida, Hidehiro
Author_Institution :
Dept. of Investigative Radiol., Nat. Cardiovascular Center Res. Inst., Osaka, Japan
Volume :
4
fYear :
2003
fDate :
19-25 Oct. 2003
Firstpage :
2407
Abstract :
Head motion during PET scanning produces significant artifact or spatial resolution loss on the reconstructed image. Event-based motion correction (EBMC) technique has been developed to correct head movement during the scan incorporated with list mode acquisition of PET and an optical tracking system. In EBMC technique, each line-of-response (LOR) in the list-mode data was reoriented due to the motion data by the optical tracking system. Although EBMC technique has potential to correct head movement during PET acquisition, large size of list mode data set hampers the capability of on-line processing for the correction. In order to improve in the speed of computing time for EBMC, we implemented EBMC on a Beowulf PC cluster consisting of 7 PCs (24 GHz Xeon for a master node and 1.4 GHz PentiumIII for slave nodes) connecting each other through Gbit Ethernet. MPI (Message Passing Interface) protocol was utilized for parallelizing the task of EBMC. The performance of the PC cluster was evaluated using list-mode data and head motion data acquired by ECAT EXACT HR+ (CTI/Siemens) PET scanner and POLARIS (Northern Digital) optical tracking system. The six list-mode data sets (file sizes are from 161 to 253 Mbytes) were corrected for motion by EBMC technique on a single PC and the PC cluster. The PC cluster was 5.2 times faster than the single PC to perform the motion correction. The PC cluster remarkably improves the performance of EBMC with low cost.
Keywords :
data acquisition; image reconstruction; local area networks; medical computing; microcomputers; motion compensation; optical tracking; positron emission tomography; Beowulf PC cluster; EBMC technique; ECAT EXACT HR+ PET scanner; Gbit Ethernet; MPI protocol; PET scanning; POLARIS optical tracking system; computing time; event-based motion correction; head motion; line-of-response; list mode data acquisition; message passing interface; on-line processing; parallel computer; performance improvement; reconstructed image; significant artifact; spatial resolution loss; Ethernet networks; Head; Image reconstruction; Joining processes; Master-slave; Optical losses; Personal communication networks; Positron emission tomography; Spatial resolution; Tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record, 2003 IEEE
ISSN :
1082-3654
Print_ISBN :
0-7803-8257-9
Type :
conf
DOI :
10.1109/NSSMIC.2003.1352380
Filename :
1352380
Link To Document :
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