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Analysis of scattered radiation cross-talk in a high-resolution gamma ray tomography detector with GATE Monte-Carlo simulation

机译:利用GATE蒙特卡罗模拟分析高分辨率伽马射线断层扫描探测器中的散射辐射串扰

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Limited energy resolution in scintillation type gamma ray detectors leads to systematic errors in photon counting because the pulse height discrimination stages cannot accurately discriminate interactions with full respectively partial deposition of isotopic emission energy. The resulting error is a systematic positive count rate offset originating from erroneously counted scattered photons. The origin of scattering may be the detector itself (scintillation crystals and other construction material) as well as components of the setup, including the object of investigation. In this article results of a simulation study are presented which was carried out to assess the role of different design parameters for the count rate accuracy of a high resolution gamma ray detector used for transmission tomography. Thereby the simulation software Geant4 Application for Emission Tomography (GATE) was used. As a target parameter we evaluated the radiation cross-talk, which is the amount of erroneously counted interactions from photons which have undergone Compton scattering in neighbouring crystals. For the given detector design it was found that cross-talk obtained from the simulated data is in good agreement with experimentally determined cross-talk. It could further be shown by virtual detector design changes that radiation cross-talk can be reduced only to a degree that would still require additional software correction measures, such as scattering correction algorithms, if quantitative accuracy it demanded.
机译:闪烁型伽马射线探测器中有限的能量分辨率会导致光子计数出现系统错误,因为脉冲高度识别阶段无法准确地区分同位素发射能量的全部或部分沉积而产生的相互作用。产生的误差是源自错误计数的散射光子的系统正计数率偏移。散射的起源可能是探测器本身(闪烁晶体和其他建筑材料)以及装置的组成部分,包括研究对象。在本文中,将提供仿真研究的结果,以评估不同设计参数对用于透射X射线断层摄影的高分辨率伽马射线探测器的计数率精度的作用。因此,使用了模拟软件Geant4的“放射断层扫描应用程序”(GATE)。作为目标参数,我们评估了辐射串扰,该辐射串扰是来自在相邻晶体中经历了康普顿散射的光子的错误计数的相互作用的数量。对于给定的检测器设计,发现从模拟数据获得的串扰与实验确定的串扰非常吻合。虚拟检测器设计更改可以进一步表明,如果需要定量精度,则辐射串扰只能降低到仍需要其他软件校正措施(例如散射校正算法)的程度。

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