DocumentCode
20716
Title
Collimator for Variable Sensitivity and Spatial Resolution Without the Need for Exchange
Author
Kubo, Naoki ; Tsuchiya, K. ; Shiga, Toshikazu ; Kojima, S. ; Suzuki, A. ; Ueno, Yukiko ; Kobashi, Keiji ; Tamaki, Nagara
Author_Institution
Office of Health & Safety, Hokkaido Univ., Sapporo, Japan
Volume
61
Issue
5
fYear
2014
fDate
Oct. 2014
Firstpage
2489
Lastpage
2493
Abstract
A new design of collimator is proposed that has variable sensitivity and spatial resolution, eliminating the need for exchanging collimators in a gamma camera. Using Monte Carlo simulations, the present article evaluates the shielding of undesirable gamma rays in a parallel-hole collimator. It consists of a number of layers of rectangular holes. These layers consist of alternately stacked fixed and movable collimators. In high-resolution mode, the movable collimators are shifted by half the aperture pitch along the diagonal direction. The first collimator (type A) has 50 layers with fixed thicknesses of 1.2 mm. The second collimator (type B) has 25 layers with a thickness of 1.0 mm on the object side and 25 layers with a thickness of 1.4 mm on the opposite side. The third collimator (type C) has 20 layers with non-uniform thicknesses. The ratios of the maximum artificial peak to the main-peak are calculated for point-source responses. The ratios for types A, B, and C collimators are 0.78, 0.08, and 0.03, respectively. The same performance for shielding undesirable gamma rays is achieved in the type C collimator as for a conventional collimator.
Keywords
collimators; Monte Carlo simulations; collimator design; gamma camera; movable collimators; parallel-hole collimator; point-source responses; rectangular holes; spatial resolution; variable sensitivity; Cameras; Collimators; Gamma-rays; Monte Carlo methods; Sensitivity; Spatial resolution; Collimators; Monte Carlo simulation; high-resolution;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2014.2333748
Filename
6874594
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