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Characterization of Ca co-doped LSO:Ce scintillators coupled to SiPM for PET applications

机译:Ca共掺杂LSO:Ce闪烁体与SiPM耦合用于PET应用的特性

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Scintillators suitable for PET applications must be characterized by a high efficiency for gamma-ray detection, determined by a high density and atomic number of the crystal; a fast light signal that allows to achieve a good time resolution and to cope with high counting rates; a high light yield for a good energy and time resolution; a good linearity of the light output as a function of the energy to preserve the intrinsic energy resolution of the scintillator. Recently developed LSO:Ce scintillators, co-doped with Ca, have been produced by the University of Tennessee group. They are characterized by the improved performance of most the above-mentioned characteristics. The crystals, initially tested with PMTs, showed a higher light output, faster light pulse, improved energy resolution and reduced afterglow, as compared to the standard LSO:Ce crystals. Even though the PMTs still represent the gold standard photodetectors, the recently available SiPMs are now valid candidate to replace PMTs in the next generation of PET scanners thanks to their compactness, high spatial resolution performances, low bias operating voltage and, most important for combined PET/MRI systems, insensitivity to static and RF fields. In this work we present the performance of Ca co-doped LSO:Ce samples coupled to SiPMs and PMTs. In particular we have assessed their performances by evaluating the energy and time resolution.
机译:适用于PET应用的闪烁体必须以高效率的伽马射线检测为特征,这取决于晶体的高密度和原子序数;快速的光信号,可以实现良好的时间分辨率并应对高计数率;高光输出,具有良好的能量和时间分辨率;光输出具有良好的线性度,该线性度是能量的函数,以保持闪烁体的固有能量分辨率。田纳西大学研究小组生产了最近开发的掺有Ca的LSO:Ce闪烁体。它们的特征在于大多数上述特征的改进性能。与标准LSO:Ce晶体相比,最初使用PMT测试的晶体显示出更高的光输出,更快的光脉冲,更高的能量分辨率和更少的余辉。尽管PMT仍然代表着黄金标准的光电探测器,但由于它们的紧凑性,高空间分辨率性能,低偏置工作电压,并且对于组合式PET最重要的是,最近可用的SiPM现在是替代新一代PET扫描仪中PMT的有效候选者。 / MRI系统,对静电场和RF场不敏感。在这项工作中,我们介绍了Ca共掺杂的LSO:Ce样品与SiPM和PMT耦合的性能。特别是,我们通过评估能量和时间分辨率来评估其性能。

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