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Photon Interaction Position-Dependent Time Walk Measurement for the PET Detectors with a Continuous Crystal Coupled to a Multi-anode PMT

机译:光子相互作用位置依赖于宠物检测器的位置依赖于宠物检测器的时间步行测量,其具有连续晶体耦合到多阳极PMT

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Relying on the single-end scintillation light detection for PET detectors based on continuous crystal, the annihilation photon interaction position inside of crystal can be determined by our 3D maximum likelihood position estimation algorithm, which provides a possibility to investigate the correlation between the time walk and interaction position to optimize the detector timing performance. Measurements were performed with a test detector consisting of a continuous LYSO crystal (18.1 mm × 18.1 mm × 10 mm) optically coupled to a multi-anode PMT (H7546B) and a coincidence detector constructed by a block of LaBr3 crystal coupled to a R9800 PMT. The time walk, referring to the shift of the timing distribution peak, was experimentally measured as a function of the 3D interaction position. The maximum time walk for events in a (x, y) plane is measured as 140 ps, meanwhile it is 50 ps for events with different depth-of-interaction (DOI). The (x,y)-dependent time walk is rooted in the timing signal readout structure of the MA-PMT, and the DOI-dependent time walk is consistent with the variation of the average propagation time from the interaction position to the surface of PMT. The time walk was corrected by the measured function, which improved the time resolution of detector from 374.5 ps to 342.3 ps.
机译:依赖于基于连续晶体的PET探测器的单端闪烁光检测,晶体内部的湮灭光子相互作用位置可以通过我们的3D最大似然位置估计算法确定,这提供了调查时间之间的相关性和散步之间的相关性相互作用位置优化检测器时序性能。用由连续的Lyso晶体(18.1mm×18.1mm×10mm)组成的测试检测器进行测量,与多阳极PMT(H7546B)和由耦合到R9800PMT的Labr3晶体块构成的重合检测器。 。参考时序分布峰的偏移的时间步行是通过3D交互位置的函数进行实验测量的。在A(x,y)平面中的事件中的最大时间步行被测量为140 ps,同时它是具有不同交互景深(DOI)的事件的50 ps。 (x,y) - 依存时间步行源于MA-PMT的定时信号读出结构,并且DOI依赖的时间步行与从相互作用位置到PMT表面的平均传播时间的变化一致。测量函数校正了时间步行,从374.5 ps增加到342.3 ps的检测器的时间分辨率改善了。

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