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首页> 外文期刊>Radiological physics and technology >Investigation of depth-of-interaction (DOI) effects in single- and dual-layer block detectors by the use of light sharing in scintillators
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Investigation of depth-of-interaction (DOI) effects in single- and dual-layer block detectors by the use of light sharing in scintillators

机译:通过使用闪烁体中的光共享来研究单层和双层块探测器中的相互作用深度(DOI)效应

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In block detectors for PET scanners that use different lengths of slits in scintillators to share light among photomultiplier tubes (PMTs), a position histogram is distorted when the depth of interaction (DOI) of the gamma photons is near the PMTs (DOI effect). However, it remains unclear whether a DOI effect is observed for block detectors that use light sharing in scintillators. To investigate the effect, I tested the effect for single- and dual-layer block detectors. In the single-layer block detector, Ce doped Gd 2SiO 5 (GSO) crystals of 1.9 × 1.9 × 15 mm 3 (0.5 mol% Ce) were used. In the dual-layer block detector, GSO crystals of a 1.9 × 1.9 × 6 mm 3 (1.5 mol% Ce) were used for the front layer and GSO crystals of 1.9 × 1.9 × 9 mm 3 (0.5 mol% Ce) for the back layer. These scintillators were arranged to form an 8 x 8 matrix with multi-layer optical film inserted partly between the scintillators for obtaining an optimized position response with use of two dual-PMTs. Position histograms and energy responses were measured for these block detectors at three different DOI positions, and the flood histograms were obtained. The results indicated that DOI effects are observed in both block detectors, but the dual-layer block showed more severe distortion in the position histogram as well as larger energy variations. We conclude that, in the block detectors that use light sharing in the scintillators, the DOI effect is an important factor for the performance of the detectors, especially for DOI block detectors.
机译:在使用闪烁体中不同长度的缝隙在光电倍增管(PMT)之间共享光的PET扫描仪的块检测器中,当伽马光子的相互作用深度(DOI)接近PMT时,位置直方图会失真(DOI效应)。然而,对于在闪烁体中使用光共享的块探测器,是否观察到DOI效果尚不清楚。为了研究这种效果,我测试了单层和双层阻塞检测器的效果。在单层阻挡检测器中,使用了1.9×1.9×15mm 3(0.5mol%Ce)的Ce掺杂的Gd 2SiO 5(GSO)晶体。在双层块检测器中,前层使用1.9×1.9×6 mm 3(1.5 mol%Ce)的GSO晶体,而前层使用1.9×1.9×9 mm 3(0.5 mol%Ce)的GSO晶体。背层。这些闪烁体被安排形成一个8 x 8矩阵,其中多层光学膜部分插入在闪烁体之间,以便使用两个双重PMT获得最佳的位置响应。在三个不同的DOI位置测量了这些块探测器的位置直方图和能量响应,并获得了洪水直方图。结果表明,在两个块检测器中都观察到了DOI效应,但是双层块在位置直方图中显示了更严重的失真以及更大的能量变化。我们得出的结论是,在闪烁器中使用光共享的块检测器中,DOI效应是影响检测器性能的重要因素,尤其是对于DOI块检测器而言。

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