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Evaluation of Algorithms for Photon Depth of Interaction Estimation for the TRIMAGE PET Component

机译:TRIMAGE PET组件相互作用光子深度估计算法的评估

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摘要

The TRIMAGE consortium aims to develop a multimodal PET/MR/EEG brain scanner dedicated to the early diagnosis of schizophrenia and other mental health disorders. The TRIMAGE PET component features a full ring made of 18 detectors, each one consisting of twelve Silicon PhotoMultipliers (SiPMs) tiles coupled to two segmented LYSO crystal matrices with staggered layers. The identification of the pixel where a photon interacted is performed on-line at the front-end level, thus allowing the FPGA board to emit fully digital event packets. This allows to increase the effective bandwidth, but imposes restrictions on the complexity of the algorithms to be implemented. In this work, two algorithms, whose implementation is feasible directly on an FPGA, are presented and evaluated. The first algorithm is driven by physical considerations, while the other consists in a two-class linear Support Vector Machine (SVM). The validation of the algorithm performance is carried out by using simulated data generated with the GAMOS Monte Carlo. The obtained results show that the achieved accuracy in layer identification is above 90% for both the proposed approaches. The feasibility of tagging and rejecting events that underwent multiple interactions within the detector is also discussed.
机译:TRIMAGE联盟旨在开发一种多模式PET / MR / EEG脑部扫描仪,专门用于精神分裂症和其他精神疾病的早期诊断。 TRIMAGE PET组件具有一个由18个检测器组成的完整环,每个检测器由十二个硅光电倍增管(SiPM)瓦片组成,这些瓦片与两个具有交错层的分段LYSO晶体矩阵耦合。在前端级别在线进行光子相互作用的像素的识别,从而使FPGA板能够发出全数字事件包。这允许增加有效带宽,但是对要实现的算法的复杂性施加了限制。在这项工作中,提出并评估了两种算法,这些算法可以直接在FPGA上实现。第一种算法是出于物理考虑,而另一种则包括两类线性支持向量机(SVM)。算法性能的验证是通过使用GAMOS蒙特卡洛生成的模拟数据进行的。所获得的结果表明,对于两种所提出的方法,层识别中实现的精度均高于90%。还讨论了标记和拒绝在检测器内经历多次交互的事件的可行性。

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