Detection efficiency and imaging performance of a 25.4 x 25.4 x 24 mm3 compton camera based on a single voxelized scintillator

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초록

Conventional Compton cameras have FOV limitations that affect their detection efficiency. Three-dimensional voxelized detectors that integrate scattering and absorption functions address these limitations. This study demonstrates the enhancement of a Compton camera system by expanding the voxelized detector volume to increase its detection efficiency and reduce data acquisition time for reconstructing radiation sources. By doubling the size of a previous 4 x 4 x 4 voxel detector (12.6 x 12.6 x 12 mm3) to an 8 x 8 x 8 (25.4 x 25.4 x 24 mm3), both the angular resolution and signal-to-noise ratio were significantly improved. Simple backprojection and list-mode maximum likelihood estimation methods were used for image reconstruction, and the expanded system showed a significant decrease in measurement times by up to 20 times with equivalent image quality. This advancement is expected to provide substantial improvements in the deployment of lightweight and high-efficiency Compton cameras in unmanned measuring equipment, such as in drones, for various industrial applications.

키워드

GAGG; Position-sensitive; Compton camera; Detection efficiency; ALGORITHMS
제목
Detection efficiency and imaging performance of a 25.4 x 25.4 x 24 mm3 compton camera based on a single voxelized scintillator
저자
Choi, Seonghee; Lee, Hyounggun; Lee, Wonho
DOI
10.1016/j.radphyschem.2025.112754
발행일
2025-08
유형
Article
저널명
Radiation Physics and Chemistry
권
233