DocumentCode :
1044055
Title :
Post acquisition linearity correction for holospectral imaging in nuclear medicine
Author :
Gagnon, Daniel ; Pouliot, Nicole ; Laperrière, Luc ; Arsenault, André ; Grégoire, Jean ; Dupras, Georges
Author_Institution :
Montreal Hart Inst., Que., Canada
Volume :
37
Issue :
2
fYear :
1990
fDate :
4/1/1990 12:00:00 AM
Firstpage :
621
Lastpage :
626
Abstract :
Conventional gamma cameras are designed for optimal performance only within a narrow energy window. To ensure adequate image quality, techniques using a wide energy spectrum, such as holospectral imaging (HI), require additional correction. A two-step post acquisition linearity correction algorithm has been developed for that purpose. First, the correction coefficients are evaluated based on the analysis of an ultrafast statistics flood image; second, a post acquisition correction is applied to the image of interest. The main idea of the algorithm is to map the original image matrix into a nonuniform pixel size matrix, through which the distorted image appears straight and uniform. The correction is a one-to-one spatial resampling of the original image using new center coordinates and a new area for each pixel of the image to be corrected. The computation of correction coefficients and their application on multiple frame images across a wide range of energy demonstrate the feasibility of extending the optimal performance of conventional cameras in terms of uniformity while maintaining spatial resolution. This allows scatter removal on post acquisition corrected images through holospectral imaging
Keywords :
cameras; gamma-ray detection and measurement; radioisotope scanning and imaging; gamma cameras; holospectral imaging; multiple frame images; nonuniform pixel size matrix; nuclear medicine; optimal performance; scatter removal; spatial resampling; two-step post acquisition linearity correction algorithm; ultrafast statistics flood image; wide energy spectrum; Cameras; Floods; Image analysis; Image quality; Linearity; Optical imaging; Pixel; Scattering; Spatial resolution; Statistical analysis;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.106687
Filename :
106687
Link To Document :
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