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

P. Ojala, A. Bousselham, L. Eriksson, A. Brahme, C. Bohm
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引用次数: 4

Abstract

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
传感器布置和闪烁体晶体性质对PET单片闪烁探测器三维精度的影响
本文通过计算基于统计(菲舍尔)信息的值,报道了单片闪烁晶体的不同传感器配置的特性和比较。相互作用位置的最大似然确定的最佳精度,即湮灭光子在单片(LSO)晶体中被吸收的位置,通过在点网格上评估的Fischer信息(与最大似然分布的宽度相关)在整个晶体块中近似。通过对蒙特卡罗数据应用最大似然算法来估计相互作用点的实际位置和实际分布。该算法基于模式识别,采用蒙特卡罗生成查找表和最小二乘法。将该方法的精度与所选点的最优(Cramer-Rao)极限进行了比较
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