首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Determination of distal dose edge location by measuring right-angled prompt-gamma rays from a 38 MeV proton beam
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Determination of distal dose edge location by measuring right-angled prompt-gamma rays from a 38 MeV proton beam

机译:通过测量38 MeV质子束的直角瞬发伽玛射线确定远端剂量边缘位置

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In clinical applications, it is very important to accurately determine the range of a proton beam in a patient. Recently, a prototype prompt-gamma scanning system, called a prompt-gamma scanner (PGS), has been constructed at Hanyang University in Korea with the collaboration of the Korean national cancer center (NCC), based on a series of Monte Carlo simulations. The PGS system is composed of a prompt-gamma collimator, a CsI(Tl) scintillation detector, a multi-channel analyzer (MCA), a precision movement system, and an integrated readout system. The prompt-gamma collimator is designed to effectively shield high-energy neutrons from the proton beam passage and subsequent capture gammas. The PGS system can be used to scan the distribution of the prompt gammas in the patient from the proton beam passage. The distribution of the prompt gammas can then be used to determine the proton beam range or the distal dose edge in the patient. In this study, the PGS system was tested with a 38 MeV proton beam at the Korea cancer center hospital (KCCH). The experiment was also simulated, using a Monte Carlo particle transport simulation code, MCNPX. Our result is very encouraging, showing that there is a clear correlation between the distribution of the prompt gammas and the location of the distal dose edge for the 38 MeV proton beam. According to our result, we believe that the location of the distal dose edge can be determined within 1-2 mm from the distribution of the prompt gammas.
机译:在临床应用中,准确确定患者体内质子束的范围非常重要。最近,在韩国的汉阳大学与韩国国家癌症中心(NCC)的合作下,基于一系列的蒙特卡洛模拟,在韩国的汉阳大学建造了一种名为瞬发伽马扫描仪(PGS)的瞬发伽马扫描仪原型。 PGS系统由即时伽马准直仪,CsI(Tl)闪烁检测器,多通道分析仪(MCA),精密运动系统和集成读数系统组成。瞬发伽马准直仪设计用于有效屏蔽高能中子免受质子束通过和随后的捕获伽马。 PGS系统可用于从质子束通道中扫描患者中即时伽马的分布。即时伽马的分布然后可以用于确定患者中的质子束范围或远端剂量边缘。在这项研究中,PGS系统在韩国癌症中心医院(KCCH)上用38 MeV质子束进行了测试。还使用蒙特卡洛粒子传输模拟代码MCNPX对实验进行了模拟。我们的结果令人鼓舞,表明对于38 MeV质子束,快速伽马分布与远端剂量边缘位置之间存在明显的相关性。根据我们的结果,我们认为可以从即时伽玛分布确定1-2毫米以内确定远端剂量边缘的位置。

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