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A novel method for the line-of-response and time-of-flight reconstruction in TOF-PET detectors based on a library of synchronized model signals

机译:基于同步模型信号库的TOF-PET探测器响应线和飞行时间重构的新方法

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摘要

A novel method of hit time and hit position reconstruction in scintillator detectors is described. The method is based on comparison of detector signals with results stored in a library of synchronized model signals registered for a set of well-defined positions of scintillation points. The hit position is reconstructed as the one corresponding to the signal from the library which is most similar to the measurement signal. The time of the interaction is determined as a relative time between the measured signal and the most similar one in the library. A degree of similarity of measured and model signals is defined as the distance between points representing the measurement- and model-signal in the multi-dimensional measurement space. Novelty of the method lies also in the proposed way of synchronization of model signals enabling direct determination of the difference between time-of-flights (TOF) of annihilation quanta from the annihilation point to the detectors. The introduced method was validated using experimental data obtained by means of the double strip prototype of the J-PET detector and ^{22} Na sodium isotope as a source of annihilation gamma quanta. The detector was built out from plastic scintillator strips with dimensions of 5 mm×19 mm×300 mm, optically connected at both sides to photomultipliers, from which signals were sampled by means of the Serial Data Analyzer. Using the introduced method, the spatial and TOF resolution of about 1.3 cm (\sigma) and 125 ps (\sigma) were established, respectively.
机译:描述了闪烁体探测器中命中时间和命中位置重建的新方法。该方法基于检测器信号与存储在同步模型信号库中的结果的比较,该同步模型信号库针对一组明确定义的闪烁点位置进行了注册。命中位置被重建为与库中与测量信号最相似的信号相对应的位置。交互作用的时间确定为测得信号与库中最相似信号之间的相对时间。测量信号和模型信号的相似度定义为表示多维测量空间中测量信号和模型信号的点之间的距离。该方法的新颖性还在于提出的模型信号同步方法,该方法能够直接确定从quant灭点到检测器的quant灭量子的飞行时间(TOF)之间的差异。使用通过J-PET检测器的双带原型和^ {22} Na钠同位素作为an没γ量子源获得的实验数据对引入的方法进行了验证。该检测器由尺寸为5 mm×19 mm×300 mm的塑料闪烁体条制成,并在两侧与光电倍增管光学连接,并通过串行数据分析仪对信号进行采样。使用引入的方法,分别建立了约1.3 cm(\ sigma)和125 ps(\ sigma)的空间和TOF分辨率。

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