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Range Verification using Prompt Gamma-rays with Energy Spectral Analysis in Geant4 Based Proton Therapy Simulation

机译:基于Geant4的质子治疗模拟中,使用及时的伽马射线和能谱分析进行距离验证

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Range verification of therapeutic proton beam is crucial in proton therapy to confirm the irradiation field for ensuring effects and safety of the treatment. The irradiation field reconstruction using prompt gamma-rays generated from excited nuclides by proton beam has being studied for the purpose of precision medicine. A simulation tool based on fundamental physics processes employs an important role to understand intermediate relationship between physics interactions and detected observables, and to optimize a detector system with its analysis method. Previously, we reported on the simulation study about an irradiation field reconstruction by using prompt gamma-rays of whole energy range. In this study, we analyzed the energy spectrum and reconstructed the image of irradiation field by using prompt gamma-rays corresponding to a particular energy peak. The simulation was performed for proton beam with a target placed at the isocenter by using Geant4 based particle therapy system simulation framework. A simple tubular detector was placed around the target, in which the kinetic energy and the detected position of each gamma-ray were recorded. The irradiation field was then reconstructed in the ordered subset expectation maximization method. The reconstructed irradiation fields were compared with the dose distribution in the target. The peak positions of these depth distributions were compared each other and discussed about the range verification of therapeutic proton beam.
机译:治疗性质子束的范围验证在质子治疗中确定辐射场以确保治疗效果和安全性至关重要。为了精确医学的目的,已经研究了利用质子束从激发的核素产生的快速伽马射线重建辐照场。基于基本物理过程的仿真工具发挥了重要作用,以了解物理相互作用与检测到的可观测物之间的中间关系,并利用其分析方法优化检测器系统。以前,我们报道了通过使用整个能量范围的快速伽马射线重建辐照场的模拟研究。在这项研究中,我们分析了能谱并通过使用对应于特定能量峰的即时伽马射线重建了辐照场的图像。通过使用基于Geant4的粒子治疗系统仿真框架,对质子束进行了仿真,目标位于等中心点。在目标周围放置一个简单的管状检测器,在其中记录动能和每个伽马射线的检测位置。然后以有序子集期望最大化方法重建辐照场。将重建的辐射场与目标中的剂量分布进行比较。相互比较了这些深度分布的峰值位置,并讨论了治疗性质子束的范围验证。

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