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Comparison of knife-edge and multi-slit camera for proton beam range verification by Monte Carlo simulation

机译:蒙特卡洛模拟用于质子束射程验证的刀口式和多缝式相机的比较

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The mechanical-collimation imaging is the most mature technology in prompt gamma (PG) imaging which is considered the most promising technology for beam range verification in proton therapy. The purpose of the present study is to compare the performances of two mechanical-collimation PG cameras, knife-edge (KE) camera and multi-slit (MS) camera. For this, the PG cameras were modeled by Geant4 Monte Carlo code, and the performances of the cameras were compared for imaginary point and line sources and for proton beams incident on a cylindrical PMMA phantom. From the simulation results, the KE camera was found to show higher counting efficiency than the MS camera, being able to estimate the beam range even for 107protons. Our results, however, confirmed that in order to estimate the beam range correctly, the KE camera should be aligned, at least approximately, to the location of the proton beam range. The MS camera was found to show lower efficiency, being able to estimate the beam range correctly only when the number of the protons is at least 108. For enough number of protons, however, the MS camera estimated the beam range correctly, errors being less than 1.2?mm, regardless of the location of the camera.
机译:机械准直成像是即时伽玛(PG)成像中最成熟的技术,被认为是质子治疗中电子束范围验证的最有前途的技术。本研究的目的是比较两个机械准直PG相机,刀口(KE)相机和多缝(MS)相机的性能。为此,使用Geant4蒙特卡洛代码对PG摄像机进行建模,并比较了假想点和线源以及入射到圆柱形PMMA体模上的质子束的摄像机性能。根据仿真结果,发现KE摄像机比MS摄像机具有更高的计数效率,甚至可以估算107质子的射束范围。然而,我们的结果证实,为了正确估计射束范围,KE照相机应至少近似对准质子射束范围的位置。发现MS相机显示出较低的效率,仅当质子数至少为108时才能够正确估计射束范围。但是,对于足够数量的质子,MS相机可以正确估计射束范围,误差较小不论相机的位置如何,都应小于1.2?mm。

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