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Simulating dose and cancer risk due to low-dose neutron background in protonbeam therapy

机译:模拟质子中低剂量中子本底引起的剂量和癌症风险射线疗法

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In proton therapy secondary neutrons are produced due to protons undergoing nuclear interactions with the treatment head and the patient. The neutron contribution to various organs is difficult to measure but can be simulated using Monte Carlo methods and whole-body computational phantoms.For this study we considered a proton therapy treatment field to treat a CTV in the central spine, thus exposing the whole body to a low-dose neutron background. In order to mimic the treatment of a pediatric case, we have implemented phantoms resembling an 11-year old and a 14-year old patient. We considered six treatment fields with varying treatment volumes and depths.The results show that the cancer risk for most organs is lower than the natural baseline risk assuming risk models based on the BEIR VII report [1| and radiation weighting factors given by the ICRP |2|.
机译:在质子治疗中,由于质子与治疗头和患者发生核相互作用,因此产生了次级中子。中子对各种器官的贡献很难测量,但是可以使用蒙特卡洛方法和全身计算模型来模拟。 在本研究中,我们考虑了质子治疗领域来治疗中央脊柱的CTV,从而使整个身体处于低剂量中子背景下。为了模仿小儿病例的治疗,我们实施了类似11岁和14岁患者的幻像。我们考虑了六个治疗领域,这些领域具有不同的治疗量和深度。 结果表明,假设基于BEIR VII报告的风险模型,大多数器官的癌症风险均低于自然基线风险[1]。和由ICRP | 2 |给出的辐射加权因子。

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