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Investigation of optimized prompt gamma detection strategy for real-time Bragg Peak tracking in proton radiation therapy

机译:质子放射治疗中实时布拉格峰跟踪的优化快速伽玛检测策略研究

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摘要

Prompt gamma (PG) ray signal from proton radiation has been proposed for in vivo beam range verification to provide unique real-time tracking of the Bragg Peak (BP) during proton therapy (PT) delivery. In this study, we investigate possible strategies to optimize PG detection for BP tracking in proton radiation therapy. Extensive Geant4 Monte Carlo (MC) simulations have been used to study the energy spectral, spatial and timing characteristics of PG emission signal from 200 MeV proton pencil beam irradiations with water and PMMA phantoms. These include their relationship with the position of the BP and the background of the neutron field originated by the proton beams. Then the optimal energy window, angular window and timing window for PG imaging detection can be determined. Our results show that there could exist an optimal energy window for PG detection around 4.44 MeV. PG emissions show a backward angular preference while neutron emissions have a forward angular preference. Furthermore, employing a timing window could further improve the PG signal detection from strong background interferences of neutrons. Both energy and time resolved PG detection is a promising solution. These results indicate that there could exist an optimized strategy for PG signal detection. Utilizing appropriate energy window, angular window and timing window, PG image formation could be significantly improved for BP tracking.
机译:已经提出了来自质子辐射的快速伽玛(PG)射线信号用于体内束范围验证,以在质子治疗(PT)传递期间提供布拉格峰(BP)的独特实时跟踪。在这项研究中,我们调查了质子放射治疗中优化BP跟踪的PG检测的可能策略。广泛的Geant4蒙特卡洛(MC)模拟已用于研究水和PMMA体模在200 MeV质子铅笔束照射下PG发射信号的能谱,空间和定时特性。这些包括它们与BP的位置以及质子束产生的中子场背景的关系。然后可以确定用于PG成像检测的最佳能量窗,角度窗和定时窗。我们的结果表明,在4.44 MeV附近可能存在用于PG检测的最佳能量窗口。 PG排放显示后向角度优先,而中子排放显示前向角度优先。此外,采用定时窗口可以进一步改善中子对本底信号的检测。能量和时间分辨的PG检测都是有前途的解决方案。这些结果表明,可能存在用于PG信号检测的优化策略。利用适当的能量窗口,角度窗口和定时窗口,可以显着改善PG图像的形成以进行BP跟踪。

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