Design Optimization of a Small-animal SPECT System Using LGSO Continuous Crystal and a Micro Parallel-hole Collimator
Joong Hyun Kim, Mikiko Ito, Soo Mee Kim, Seong Jong Hong, Jae Sung Lee

TL;DR
This study used Monte Carlo simulations to optimize a small-animal SPECT system with LGSO crystals and micro collimators, achieving high spatial resolution and sensitivity for potential low-cost, compact imaging applications.
Contribution
It presents a novel design optimization of LGSO-based SPECT system components, including crystal thickness, surface treatment, and collimator length, for improved performance.
Findings
Achieved ~1 mm spatial resolution in simulation.
Optimized system sensitivity to ~100 cps/MBq.
Demonstrated capability to resolve 1 mm hot spots.
Abstract
The aim of this study was to optimize the design of a monolithic LGSO scintillation crystal and micro parallel-hole collimator for the development of a small-animal single photon emission computed tomography (SPECT) system with compact size, low-cost and reasonable performance through Monte Carlo simulation. L0.9GSO crystals with surface area of 50 mm X 50 mm were investigated for the design optimization. The intrinsic detection efficiency, intrinsic spatial resolution, and intrinsic energy resolution of crystals were estimated for different crystal thicknesses and photon energies (using I-125 and Tc-99m sources). Two kinds of surface treatments (providing polished and rough surfaces) were compared by optical photon simulation. The standard deviation of the angle between a micro-facet and the mean surface was set to 0.1 and 6.0 for polished and rough surfaces, respectively. For…
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Taxonomy
TopicsMedical Imaging Techniques and Applications · Radiation Detection and Scintillator Technologies · Advanced X-ray and CT Imaging
