DocumentCode
1706115
Title
Resolution uniformity and sensitivity of the NIH ATLAS small animal PET scanner: comparison to simulated LSO scanners without depth-of-interaction capability
Author
Seidel, Jürgen ; Vaquero, Juan José ; Green, Michael V.
Author_Institution
Nat. Inst. of Health, Bethesda, MD, USA
Volume
3
fYear
2001
Firstpage
1555
Abstract
PET scanners designed to image animals the size of rats and mice should possess simultaneously high and uniform spatial resolution and high sensitivity. ATLAS (Advanced Technology Laboratory Animal Scanner), an 11.8 cm diameter aperture, 2 cm axial field-of-view ring-type research scanner seeks these goals by surrounding the animal with eighteen 15 mm deep, LGSO (7 mm)/GSO (8 mm) phoswich detector modules. A Monte Carlo simulation was used to compare the variation of resolution across the field-of-view and the absolute central point source sensitivity (ACS) of ATLAS to similar systems comprised only of LSO arrays of different depths with no depth-of-interaction (DOI) capability. For ATLAS radial spatial resolution deteriorated by 27% from the center to 3 cm off-axis. Scanners comprised of 15 mm deep, 10 mm deep and 7 mm deep LSO crystals deteriorated by 100%, 51%, and 20% respectively, over the same distance. Simulated ACS (absorbed energies ≥250 keV) for ATLAS was 2.0% and for the 15 mm, 10 mm deep and 7 mm deep LSO scanners 2.4%, 1.5%, and 0.9%, respectively. Radial resolution loss 3 cm off-axis and ACS measured for the actual ATLAS scanner were similar to the values obtained by simulation (27% resolution loss, 1.8% ACS). The phoswich design thus achieves good resolution uniformity over a 6 cm FOV while preserving sensitivity compared to equivalent non-DOI LSO scanners with a range of crystal depths.
Keywords
Monte Carlo methods; biological techniques; position sensitive particle detectors; positron emission tomography; solid scintillation detectors; 10 mm; 15 mm; 250 keV; 7 mm; ATLAS; GSO detector; LGSO detector; LSO detector; Monte Carlo; depth-of-interaction; phoswich detector; radial spatial resolution; resolution uniformity; sensitivity; small animal PET scanner; Animals; Apertures; Crystals; Detectors; Laboratories; Loss measurement; Mice; Positron emission tomography; Rats; Spatial resolution;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2001 IEEE
ISSN
1082-3654
Print_ISBN
0-7803-7324-3
Type
conf
DOI
10.1109/NSSMIC.2001.1008634
Filename
1008634
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