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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >GATE simulation of the intrinsic radioactivity in LYSO scintillation crystals
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GATE simulation of the intrinsic radioactivity in LYSO scintillation crystals

机译:GATE模拟LYSO闪烁晶体的固有放射性

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摘要

Many PET scanner detectors use LSO or LYSO as their scintillation crystals. Since natural lutetium contains 2.6% radioactive Lu-176, which decays beta(-) followed by the emission of three gamma rays or internal conversion electrons, its intrinsic radioactivity needs to be considered. This work compares the energy spectrum obtained with Monte Carlo simulations of ionizing radiation transport using the Lu-176 ion source defined in GATE v8.1, for different LYSO crystal sizes with experimental and analytical data. In addition, we performed a set of simulations of 88, 202 and 307 keV monoenergetic photons, the gamma rays of the isomeric transitions of the Hf-176 excited states, to quantify the Compton scattered photons interacting in or escaping the crystal. Even though the optical transport effects were not simulated, the results show a very good agreement with analytical and experimental data and support the accuracy for modeling the intrinsic radioactivity of LSO/LYSO crystals with GATE.
机译:许多PET扫描仪检测器使用LSO或LYSO作为闪烁晶体。由于天然含有2.6%的放射性Lu-176,它会衰减beta(-),然后发射三个伽马射线或内部转换电子,因此需要考虑其固有的放射性。这项工作比较了使用GATE v8.1中定义的Lu-176离子源的电离辐射传输的蒙特卡洛模拟获得的能谱,以及不同的LYSO晶体尺寸以及实验和分析数据。此外,我们对88、202和307 keV keV单能光子(Hf-176激发态的异构体跃迁的伽马射线)进行了一组模拟,以量化在晶体中相互作用或逃逸的康普顿散射光子。即使未模拟光传输效应,结果也显示出与分析和实验数据非常吻合,并支持了使用GATE对LSO / LYSO晶体的固有放射性建模的准确性。

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