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Evaluation of proton inelastic reaction models in Geant4 for prompt gamma production during proton radiotherapy

机译:Geant4中质子非弹性反应模型的评估,用于质子放疗期间迅速产生的γ

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摘要

During proton beam radiotherapy, discrete secondary prompt gamma rays are induced by inelastic nuclear reactions between protons and nuclei in the human body. In recent years, the Geant4 Monte Carlo toolkit has played an important role in the development of a device for real time dose range verification purposes using prompt gamma radiation. Unfortunately the default physics models in Geant4 do not reliably replicate the measured prompt gamma emission. Determining a suitable physics model for low energy proton inelastic interactions will boost the accuracy of prompt gamma simulations. Among the built-in physics models, we found that the precompound model with a modified initial exciton state of 2 (1 particle, 1 hole) produced more accurate discrete gamma lines from the most important elements found within the body such as O-16, C-12 and N-14 when comparing them with the available gamma production cross section data. Using the modified physics model, we investigated the prompt gamma spectra produced in a water phantom by a 200 MeV pencil beam of protons. The spectra were attained using a LaBr3 detector with a time-of-flight (TOF) window and BGO active shield to reduce the secondary neutron and gamma background. The simulations show that a 2 ns TOF window could reduce 99% of the secondary neutron flux hitting the detector. The results show that using both timing and active shielding can remove up to 85% of the background radiation which includes a 33% reduction by BGO subtraction.
机译:在质子束放射治疗期间,人体中质子与核之间的无弹性核反应会诱发离散的次要即时伽马射线。近年来,Geant4蒙特卡洛工具包在开发使用即时伽马射线进行实时剂量范围验证的设备中发挥了重要作用。不幸的是,Geant4中的默认物理模型不能可靠地复制所测得的即时伽马发射。为低能质子非弹性相互作用确定合适的物理模型将提高快速伽马模拟的准确性。在内置的物理模型中,我们发现,预复合模型的初始激子态为2(1个粒子,1个孔),它从体内最重要的元素(例如O-16)产生了更精确的离散伽玛线,将C-12和N-14与可用的伽马生产横截面数据进行比较时。使用改进的物理模型,我们研究了200 MeV铅笔质子束在水体模中产生的快速伽玛光谱。使用带有飞行时间(TOF)窗口和BGO有源屏蔽以减少次级中子和伽马背景的LaBr3检测器获得光谱。仿真表明,2 ns的TOF窗口可以减少撞击探测器的二次中子通量的99%。结果表明,同时使用定时和主动屏蔽可以消除多达85%的背景辐射,其中包括通过BGO减法减少了33%的辐射。

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