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Silicon photomultiplier based TOF-PET detector

机译:基于硅光电倍增管的TOF-PET检测器

摘要

A scintillation block detector employs an array of optically air coupled scintillation pixels, the array being wrapped in reflector material and optically coupled to an array of silicon photomultiplier light sensors with common-cathode signal timing pickoff and individual anode signal position and energy determination. The design features afford an optimized combination of photopeak energy event sensitivity and timing, while reducing electronic circuit complexity and power requirements, and easing necessary fabrication methods. Four of these small blocks, or “miniblocks,” can be combined as optically and electrically separated quadrants of a larger single detector in order to recover detection efficiency that would otherwise be lost due to scattering between them. Events are validated for total energy by summing the contributions from the four quadrants, while the trigger is generated from either the timing signal of the quadrant with the highest energy deposition, the first timing signal derived from the four quadrant time-pickoff signals, or a statistically optimum combination of the individual quadrant event times, so as to maintain good timing for scatter events. This further reduces the number of electronic channels required per unit detector area while avoiding the timing degradation characteristic of excessively large SiPM arrays.
机译:闪烁块检测器采用光学耦合的空气闪烁像素阵列,该阵列包裹在反射器材料中,并通过共阴极信号定时拾取以及单独的阳极信号位置和能量确定,光学耦合到硅光电倍增管光传感器阵列。设计功能提供了光电峰值能量事件灵敏度和时序的优化组合,同时降低了电子电路的复杂性和功耗要求,并简化了必要的制造方法。这些小块中的四个或“微型块”可以组合为较大的单个检测器的光电隔离象限,以恢复检测效率,否则由于它们之间的散射而损失该检测效率。通过对四个象限的贡献求和来验证事件的总能量,而触发是根据能量沉积最高的象限的定时信号,从四个象限的时间提取信号中得出的第一个定时信号或统计上各个象限事件时间的最佳组合,以便为分散事件保持良好的时间安排。这进一步减少了每单位检测器区域所需的电子通道数量,同时避免了过大的SiPM阵列的时序下降特性。

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