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PET camera performance design evaluation for BGO and BaF2 scintillators (non-time-of-flight).

Journal of nuclear medicine : official publication, Society of Nuclear Medicine (1988-03-01)
W H Wong
RÉSUMÉ

Bismuth germanate (BGO) and barium fluoride (BaF2) scintillators are presently used in positron emission tomegraphy (PET) cameras. This study evaluates the important PET performance parameters of image resolution, true sensitivity, scatter background, accidental background, and realistic maximum radioactivity in the field of view for both BGO and BaF2 in an identical non-time-of-flight, whole-body camera configuration. These performance parameters are evaluated for three phantoms simulating (a) the head, (b) whole-body cross-section and (c) heart/kidney. This study finds that the high stopping power of BGO yields higher sensitivity, higher resolution, less vignetting, better immunity from scattered gamma, and lower accident/true ratio at any dose level. The faster BaF2 timing acceptance window is traded off by its vulnerability to noncoincidental scatter-gamma which increases accidental coincidences. The BGO is found to be a better choice for non-time-of-flight systems especially with large objects which produce a lot of noncoincidental scatter-gammas. This study also found that the practical diminishing return maximum activity within the field-of-view is approximately 20-25 mCi for existing conventional cameras.

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Sigma-Aldrich
Barium fluoride, 99.99% trace metals basis
Sigma-Aldrich
Barium fluoride, powder, 98%
Sigma-Aldrich
Barium fluoride, precipitated, 99.95% trace metals basis