DocumentCode
1558736
Title
3-D computer simulations of resolution effects of multidetector point focusing SPECT imaging
Author
Kim, Hee-Joung ; Zeeberg, Barry R. ; Loew, Murray H. ; Reba, Richard C.
Author_Institution
George Washington Univ., Washington, DC, USA
Volume
10
Issue
3
fYear
1991
fDate
9/1/1991 12:00:00 AM
Firstpage
413
Lastpage
425
Abstract
The authors present an efficient algorithm and the results of its application in simulating the three-dimensional (3-D) projection data resulting from a 3-D distribution of radioactivity. The algorithm was applied to a series of geometrical mathematical phantoms and to a realistic mathematical brain phantom. The authors simulated the projection data from a multidetector single-photon emission computed tomography (SPECT) system with point focusing collimators. The simulated projection data were then reconstructed using the manufacturer´s software. The objects simulated included simple geometrical solids such as spheres and sheets, as well as the distribution of muscarinic cholinergic receptors in a realistic brain slice. Spheres were chosen as a model for brain structures such as caudate nucleus, thalamus, and cerebellum; sheets were selected as representing lateral cortical gray matter regions. The results of these simulations indicate the existence of significant qualitative and quantitative artifacts in reconstructed human brain images
Keywords
computerised tomography; digital simulation; medical diagnostic computing; radioisotope scanning and imaging; 3D computer simulations; 3D projection data simulation; caudate nucleus; cerebellum; efficient algorithm; geometrical mathematical phantoms; lateral cortical gray matter regions; mathematical brain phantom; medical diagnostic imaging; multidetector point focusing SPECT imaging; muscarinic cholinergic receptors distribution; nuclear medicine; point focusing collimators; resolution effects; sheets; simple geometrical solids; simulated projection data; single photon emission computerised tomography; spheres; thalamus; Application software; Brain modeling; Collimators; Computational modeling; Computed tomography; Computer simulation; Focusing; Image reconstruction; Imaging phantoms; Virtual manufacturing;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.97592
Filename
97592
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