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首页> 外文期刊>Physics in medicine and biology. >Offline imaging of positron emitters induced by therapeutic helium, carbon and oxygen ion beams with a full-ring PET/CT scanner: Experiments in reference targets
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Offline imaging of positron emitters induced by therapeutic helium, carbon and oxygen ion beams with a full-ring PET/CT scanner: Experiments in reference targets

机译:用全环PET / CT扫描仪的治疗氦气,碳和氧离子束引起的正电子发射器的离线成像:参考目标的实验

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ABSTRACT: In vivo verification of light ion therapy based on positron-emission tomography (PET) imaging of irradiation induced patient activation relies on activity predictions from Monte-Carlo (MC) or analytical computational engines for comparison to the measurements. In order to achieve the necessary accuracy, experimental data are indispensable for the validation of the calculation models. For this we irradiated thick reference targets with mono-energetic helium, carbon and oxygen ion beams and measured the resulting material activation offline with a commercial full-ring PET/CT scanner located nearby the treatment room. Acquired PET data were analysed over time to separate the activity contribution of different radionuclides. Determined production yields were compared to published findings obtained from in-beam activation measurements with a limited-angle double-head PET camera. In addition, we investigated the time-dependence of the measured radionuclide-specific contributions and of the distal activity range, as well as the lateral spread of the activity signal as a function of beam penetration depth. We present radionuclide-specific depth-resolved activity distributions and production yields for the radionuclides , and , dominating irradiation-induced patient activation. We observe systematically lower production yields with a ratio between the dual-head and our full-ring PET measurements of, on average, 1.7 and 1.3 for the oxygen and carbon beam irradiations, and 1.7 (2.1) for the high (low) energy helium beam irradiations. Findings on the temporal development of the activity range confirm the expectation, with the oxygen beam induced signal being the most sensitive scenario. The experimental data reported in this work, acquired with a state-of-the-art full ring PET scanner, provide a comprehensive and consistent basis for the benchmarking of PET signal calculation engines. In particular, they can support a fine-tuning of the underlying physics models used by the respective implementation and therefore improve the accuracy of PET-based therapy verifications at current and future treatment facilities. ? 2019 Institute of Physics and Engineering in Medicine.
机译:摘要:基于正电子排放断层扫描(PET)辐照诱导患者激活的体内验证光离子疗法(PET)成像依赖于来自Monte-Carlo(MC)或分析计算发动机的活动预测,以与测量相比。为了达到必要的准确性,实验数据对于计算模型的验证是必不可少的。为此,我们用单能级氦气,碳和氧离子束照射厚的参考目标,并用位于处理室附近的商业全环PET / CT扫描仪测量所得到的材料活化。随着时间的推移分析了所获得的宠物数据,以分离不同放射性核素的活动贡献。将确定的产率与从带有有限角双头PET相机的束束激活测量获得的公布发现进行了比较。此外,我们研究了测量的放射性核素特异性贡献和远端活动范围的时间依赖性,以及作为光束穿透深度的函数的活性信号的横向扩展。我们呈现放射性核素特异性深度分辨的活性分布和产量,用于放射性核素,以及主导辐照诱导的患者活化。我们在系统地降低生产产量,双头和我们的全环PET测量与平均为1.7和1.3的比例,用于氧气和碳束照射,1.7(2.1)为高(低)能量氦气梁辐射。关于活动范围的时间发展的调查结果确认期望,氧气光束诱导信号是最敏感的情景。通过最先进的全环PET扫描仪获得本工作中报告的实验数据,为PET信号计算发动机的基准提供了全面且一致的基础。特别是,它们可以支持各个实施使用的底层物理模型的微调,从而提高了当前和未来治疗设施的基于宠物的治疗验证的准确性。还是2019年医学院物理与工程研究所。

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