Optimization of each layer's hole of a variable collimator for environmental radiation monitoring using GATE

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초록

The purpose of this work is to optimize the number of holes in each layer with the Monte Carlo simulation tool, GATE, a variable collimator of the non-replaceable types that makes up for pinhole collimator's shortcomings. The material is tungsten and the detector size is 25.8 x 25.8 x 3.0 mm(3) GAGG with 0.7 x 0.7 x 3.0 mm(3) pixels arranged in 29 x 29 x 1 and performance is evaluated based on the field-of-view, sensitivity, and spatial resolution by magnification for the point source Cs-137. Simulations were designed to optimize the five layers from 44, 55, 11, 55, 44 to 6, 9, 3, 9, and 6 to meet the feasibility of manufacturing collimators. We also confirmed performance errors of 5.7% sensitivity and 5.2% spatial resolution compared to using an ideal variable collimator for all parameters, such as specific purposes and magnification scale. Through these results, we propose an environmental monitoring system that can be used for diverse radiation disasters by enabling image magnifi-ation and transforming the shape of the collimator.

키워드

Variable collimatorGATE(Geant4 application for tomographic emission)FeasibilityEnvironmental monitoring systemPINHOLE COLLIMATORFLYING ROBOTDESIGNSIMULATION
제목
Optimization of each layer's hole of a variable collimator for environmental radiation monitoring using GATE
저자
Han, Dong-HeeLee, Seung-JaeLee, Hak-JaeBaek, Cheol-Ha
DOI
10.1016/j.radphyschem.2022.110516
발행일
2023-01
유형
Article
저널명
Radiation Physics and Chemistry
202