DocumentCode :
1531362
Title :
A 3D HIDAC-PET camera with sub-millimetre resolution for imaging small animals
Author :
Jeavons, A.P. ; Chandler, R.A. ; Dettmar, C.A.R.
Author_Institution :
Oxford Positron Syst., UK
Volume :
46
Issue :
3
fYear :
1999
fDate :
6/1/1999 12:00:00 AM
Firstpage :
468
Lastpage :
473
Abstract :
A HIDAC-PET camera consisting essentially of 5 million 0.5 mm gas avalanching detectors has been constructed for small-animal imaging. The particular HIDAC advantage-a high 3D spatial resolution-has been improved to 0.95 mm fwhm and to 0.7 mm fwhm when reconstructing with 3D-OSEM methods incorporating resolution recovery. A depth-of-interaction resolution of 2.5 mm is implicit, due to the laminar construction. Scatter-corrected sensitivity, at 8.9 cps/kBq (i.e. 0.9%) from a central point source, or 7.2cps/kBq (543cps/kBq/cm 3) from a distributed (40 mm diameter, 60 mm long) source is now much higher than previous, and other, work. A field-of-view of 100 mm (adjustable to 200 mm) diameter by 210 mm axially permits whole-body imaging of small animals, containing typically 4 MBqs of activity, at 40 kcps of which 16% are random coincidences, with a typical scatter fraction of 44%. Throughout the field-of-view there are no positional distortions and relative quantitation is uniform to ±3.5%, but some variation of spatial resolution is found. The performance demonstrates that HIDAC technology is quite appropriate for small-animal PET cameras
Keywords :
biomedical equipment; drift chambers; image reconstruction; image resolution; medical image processing; positron emission tomography; 3D HIDAC-PET camera; 4 MBq; MWPC; depth-of-interaction resolution; dual-HIDAC model; field-of-view; gas avalanching detectors; high 3D spatial resolution; high density drift chamber; laminar construction; positron camera; positron emission tomography; scatter-corrected sensitivity; small animal imaging; sub-millimetre resolution; whole-body imaging; Animals; Appropriate technology; Cameras; Detectors; High-resolution imaging; Image reconstruction; Image resolution; Positron emission tomography; Scattering; Spatial resolution;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.775564
Filename :
775564
Link To Document :
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