DocumentCode
1495231
Title
Performance evaluation of the PC-2048: a new 15-slice encoded-crystal PET scanner for neurological studies
Author
Evans, A.C. ; Thompson, C.J. ; Marrett, S. ; Meyer, E. ; Mazza, M.
Author_Institution
Montreal Neurological Inst., McGill Univ., Que., Canada
Volume
10
Issue
1
fYear
1991
fDate
3/1/1991 12:00:00 AM
Firstpage
90
Lastpage
98
Abstract
Initial experience is reported with the Scanditronix PC 2048-15B, a 15-slice positron emission tomography (PET) system using multicrystal/multiphoto-multiplier modules to obtain high spatial resolution. Random and scattered events are reduced using an orbiting 68Ge rod source for transmission scans by only accepting coincidence lines which intersect the instantaneous position of the source. Scatter correction of the emission data is removed with a deconvolution kernel, random and dead-time correction by the use of observed singles rates. The peak count rates are 11.7/20.0 Kcps for the direct cross slices at concentrations of 4.5/5.1 μCi/cc. respectively. Over the radial range 0-9 cm from the ring center, radial transverse resolution is 4.6-6.4 mm, aid tangential transverse resolution is 4.6-5.1 mm using a Hanning filter. Over the same range, axial resolution varies from 6.1-6.2 mm in direct slices and from 5.4-7.1 mm in cross slices. This near-isotropic resolution allows collection of image volume data with no preferred direction for signal averaging errors
Keywords
biomedical equipment; computerised tomography; radioisotope scanning and imaging; 68Ge rod source; Hanning filter; PC-2048; dead-time correction; deconvolution kernel; emission data; encoded-crystal PET scanner; medical diagnostic imaging; neurological studies; nuclear medicine; positron emission tomography; random correction; scatter correction; signal averaging errors; tangential transverse resolution; Attenuation; Brain; Computer displays; Crystals; Detectors; Hardware; Positron emission tomography; Scattering; Signal resolution; Spatial resolution;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.75615
Filename
75615
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