基于GEANT3仿真研究的PMT-ClearPET原型设计优化

U. Heinrichs, U. Pietrzyk, K. Ziemons
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引用次数: 40

摘要

在水晶透明合作的四个中心正在开发2/sup / generation高性能小动物PET扫描仪,用于不同种类的动物和医疗应用。第一个原型是基于pmt的系统,包括通过使用LSO和LuYAP的光交换层进行交互深度(DOI)检测。这些模拟研究的目的是优化给定设计的灵敏度和空间分辨率,这些设计因不同的探测器配置(环形/八边形)和尺寸而导致fov不同。为此,使用了仿真工具GEANT3 (CERN)。模拟结果表明,所有具有晶体一对一耦合的PMT设计都具有非常非线性的轴向灵敏度分布。通过在轴向每隔1/4个PMT长度的偏移,视场的采样变得更加均匀。当能量阈值为350keV时,回归系数从非移位设计的0.818增加到移位设计的0.993。以视场为中心的点源(阈值:350keV)的模拟结果表明,4/spl倍/20PMT (LSO/LuYAP为10mm)的灵敏度为4.2%,4/spl倍/16PMT (LSO/LuYAP为8mm)环设计的灵敏度为3.8%。点光源的3D-MLEM重建显示,使用DOI为3.1mm的双晶体层(距CFOV 40mm处)而不是20mm的单层(11.9mm),分辨率有了巨大的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design optimization of the PMT-ClearPET prototypes based on simulation studies with GEANT3
Within the Crystal Clear Collaboration four centres are developing 2/sup nd/ generation high performance small animal PET scanners for different kinds of animals and medical applications. The first prototypes are PMT-based systems including depth of interaction (DOI) detection by using a phoswich layer of LSO and LuYAP. The aim of these simulation studies is to optimize sensitivity and spatial resolution of given designs, which vary in FOVs caused by different detector configurations (ring/octagon) and sizes. For this purpose the simulation tool GEANT3 (CERN) was used. The simulations have shown that all PMT designs with one-to-one coupling of crystals have a very nonlinear axial sensitivity profile. By shifting every other PMT 1/4 of a PMT length in axial direction the sampling of the FOVs became more homogeneous. At an energy threshold of 350keV the regression coefficient increases from 0.818 for the non-shifted to 0.993 for the shifted design. Simulations of a point source centred in the FOV (threshold: 350keV) resulted in sensitivities of 4.2% for a 4/spl times/20PMT (LSO/LuYAP a 10mm) and 3.8% for a 4/spl times/16PMT (LSO/LuYAP a 8mm) ring design. The 3D-MLEM reconstruction of a point source shows the enormous improvement of resolution using a crystal double layer with DOI (3.1mm at 40mm from CFOV) instead of a 20mm single layer (11.9mm).
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