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Validated simulation for LYSO:Ce scintillator based PET detector modules built on fully digital SiPM arrays

机译:基于完全数字SIPM阵列的基于CE闪烁的宠物探测器模块的经过验证的模拟:CE闪烁体的宠物探测器模块

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摘要

In the recent years new digital photon counter devices (also known as silicon photomultipliers, SiPMs) were designed and manufactured to be used specifically in positron emission tomography (PET) scanners. These finely pixelated devices opened new opportunities in PET detector development, hence their application with monolithic scintillator crystals now are of particular interest. We worked out a simulation tool and a corresponding validation method to assist the optimization and characterization of such PET detector modules. During our work we concentrated on the simulation of SPADnet sensors and the LYSO:Ce scintillator material. Validation of our algorithms combines measurements and simulations performed on UV-excited detector modules. In this paper we describe the operation of the simulation method in detail and present the validation scheme for two demonstrative PET detector-like modules: one built of a scintillator with blackpainted faces and another with polished faces. By evaluating the results we show that the shape deviation of the average light distributions is lower than 13%, and the pixel count statistics follow Poisson distribution for both measurement and simulation. The calculated total count values have less than 10% deviation from the measured ones.
机译:近年来,设计和制造了新的数字光子计数器设备(也称为硅光电塑料,SIPMS),专门用于正电子发射断层扫描(PET)扫描仪。这些精细的像素设备为宠物探测器开发开辟了新的机会,因此,它们使用整体闪烁体晶体的应用尤其令人感兴趣。我们制定了一个仿真工具和相应的验证方法,以帮助此类PET探测器模块的优化和表征。在我们的工作中,我们集中于Spadnet传感器和Lyso:CE CE闪烁体材料的模拟。我们算法的验证结合了对UV激发的检测器模块进行的测量和模拟。在本文中,我们详细描述了仿真方法的操作,并介绍了两个示范性宠物探测器样模块的验证方案:一个由带有黑色面孔的闪烁体建造,另一个带有抛光的脸。通过评估结果,我们表明平均光分布的形状偏差低于13%,并且像素计数统计量遵循泊松分布进行测量和模拟。计算出的总计数值与测量值的偏差小于10%。

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