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首页> 外文期刊>IEEE Transactions on Nuclear Science >Design and modeling of the Hybrid Portable Gamma Camera system
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Design and modeling of the Hybrid Portable Gamma Camera system

机译:混合便携式伽马相机系统的设计和建模

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The combination of a mechanically-collimated camera with an electronically-collimated camera offers both the high efficiency and good angular resolution typical in a mechanically-collimated camera for lower energies and the uncoupling of spatial resolution and efficiency provided by an electronically-collimated camera at higher energies. The application is an industrial gamma-ray imaging system with good angular resolution and efficiency over a broad energy range: 50 keV to 3 MeV. The design and performance modeling of the Hybrid Portable Gamma Camera, currently being built, is described here. The optimization of the Anger-logic first detector module in terms of spatial and energy resolution is accomplished using a Monte Carlo optical photon modeling code and Cramer-Rao lower bound calculations. Approximately 6 mm spatial resolution and 7.5% FWHM (statistical contribution only) energy resolution for a 140 keV incident energy are expected for the 100/spl times/100/spl times/10 mm/sup 3/ NaI(Tl) first detector. Analytical calculations of angular resolution components and efficiency for the Hybrid Portable Gamma Camera are compared to Monte Carlo calculations of the same quantities. The expected angular resolution performance for on-axis point sources, a central scattering angle of 30/spl deg/ and a detector separation distance of 35 cm ranges from 3-5/spl deg/ FWHM over the sensitive energy range. Intrinsic efficiency results over the same energy range are also presented.
机译:机械准直照相机与电子准直照相机的组合既提供了低能量的机械准直照相机中常见的高效率和良好的角分辨率,又提供了在更高的电准直照相机中提供的空间分辨率和效率的解耦能量。该应用是工业伽马射线成像系统,在50 keV至3 MeV的宽能量范围内具有良好的角分辨率和效率。本文介绍了目前正在构建的混合便携式伽马相机的设计和性能建模。使用空间蒙特卡罗光学光子建模代码和Cramer-Rao下界计算可完成对Anger-logic第一探测器模块的空间和能量分辨率优化。对于100 / spl次/ 100 / spl次/ 10mm / sup 3 / NaI(Tl)第一探测器,预期140 keV入射能量的约6 mm空间分辨率和7.5%FWHM(仅统计贡献)能量分辨率。将混合便携式伽马相机的角分辨率分量和效率的分析计算与相同数量的蒙特卡洛计算进行了比较。在敏感能量范围内,轴上点光源的预期角分辨率性能,中心散射角30 / spl deg /和探测器间隔距离35 cm介于3-5 / spl deg / FWHM。还介绍了在相同能量范围内的本征效率结果。

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