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Influence of sensor arrangements and scintillator crystal properties on the 3D precision of monolithic scintillation detectors in PET

机译:传感器布置和闪烁体晶体特性对PET中整体闪烁探测器的3D精度的影响

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This paper reports the characterization and comparison of different sensor configurations for monolithic scintillation crystals via the calculation of a figure of a merit based on statistical (Fischer) information. The optimal precision of maximum likelihood determinations of interaction positions, i.e. where annihilation photons are absorbed in a monolithic (LSO) crystal, is approximated throughout a crystal block via Fischer information (related to the width of the maximum likelihood distribution) evaluated at a grid of points. Realistic positions and thus realistic distributions of points of interaction are estimated by applying a maximum likelihood algorithm to Monte Carlo data. The algorithm was based on pattern recognition using a Monte Carlo generated lookup table and the least square method. The precision of this method is compared with the optimal (Cramer-Rao) limit for selected points.
机译:本文通过计算基于统计(FIScher)信息,报告了单片闪烁晶体的不同传感器配置的表征和比较。最大似然测定的相互作用位置的最佳精度,即湮灭光子被在整体(LSO)晶体中被吸收,通过Fischer信息(与最大似然分布的宽度有关)在网格中进行晶体块近似要点。通过将最大似然算法应用于Monte Carlo数据来估计现实位置,从而估计相互作用点的现实分布。该算法基于使用Monte Carlo生成的查找表和最小二乘法的模式识别。将该方法的精确度与所选点的最佳(Cramer-Rao)限制进行比较。

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