Design studies of a depth encoding large aperture PET camera

The feasibility of a wholebody PET tomograph with the capacity to correct for the parallax error induced by the depth-of-interaction of /spl gamma/-rays is assessed through simulation. The experimental energy, depth, and transverse position resolutions of BGO block detector candidates are the main i...

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Veröffentlicht in:IEEE Transactions on Nuclear Science 1995-08, Vol.42 (4), p.1041-1050
Hauptverfasser: Moisan, C., Rogers, J.G., Buckley, K.R., Ruth, T.J., Stazyk, M.W., Tsang, G.
Format: Artikel
Sprache:eng
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Zusammenfassung:The feasibility of a wholebody PET tomograph with the capacity to correct for the parallax error induced by the depth-of-interaction of /spl gamma/-rays is assessed through simulation. The experimental energy, depth, and transverse position resolutions of BGO block detector candidates are the main inputs to a simulation that predicts the point source resolution of the depth encoding large aperture camera (DELAC). The results indicate that a measured depth resolution of 7 mm (FWHM) is sufficient to correct a substantial part of the parallax error for a point source at the edge of the field-of-view. A search for the block specifications and camera ring radius that would optimize the spatial resolution and its uniformity across the field-of-view is also presented.< >
ISSN:0018-9499
1558-1578
DOI:10.1109/23.467751