DocumentCode
51200
Title
Laplacian Erosion: An Image Deblurring Technique for Multi-Plane Gamma-Cameras
Author
Brown, Jeremy M. C. ; Gillam, John E. ; Paganin, David M. ; Dimmock, Matthew R.
Author_Institution
Sch. of Phys., Monash Univ., Clayton, VIC, Australia
Volume
60
Issue
5
fYear
2013
fDate
Oct. 2013
Firstpage
3333
Lastpage
3342
Abstract
Laplacian Erosion, an image deblurring technique for multi-plane Gamma-cameras, has been developed and tested for planar imaging using a GEANT4 Monte Carlo model of the Pixelated Emission Detector for RadioisOtopes (PEDRO) as a test platform. A contrast and Derenzo-like phantom composed of 125I were both employed to investigate the dependence of detection plane and pinhole geometry on the performance of Laplacian Erosion. Three different pinhole geometries were tested. It was found that, for the test system, the performance of Laplacian Erosion was inversely proportional to the detection plane offset, and directly proportional to the pinhole diameter. All tested pinhole geometries saw a reduction in the level of image blurring associated with the pinhole geometry. However, the reduction in image blurring came at the cost of signal to noise ratio in the image. The application of Laplacian Erosion was shown to reduce the level of image blurring associated with pinhole geometry and improve recovered image quality in multi-plane Gamma-cameras for the targeted radiotracer 125I.
Keywords
Monte Carlo methods; cameras; gamma-ray detection; image enhancement; image restoration; phantoms; radioisotopes; Derenzo-like phantom; GEANT4 Monte Carlo model; Laplacian erosion; PEDRO; image contrast; image deblurring; image quality; multiplane Gamma camera; pinhole geometry detection; pixelated emission detector for radioisotope; planar imaging; plane geometry detection; plane offset detection; radiotracer; Apertures; Geometry; Image restoration; Laplace equations; Phantoms; Spatial resolution; Standards; Image deblurring; mechanical collimation; single photon emission imaging;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2013.2264946
Filename
6564468
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