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An Analytical Model of Leakage Neutron Equivalent Dose for Passively-Scattered Proton Radiotherapy and Validation with Measurements

机译:被动散射质子放射治疗的泄漏中子当量分析模型及测量验证

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Exposure to stray neutrons increases the risk of second cancer development after proton therapy. Previously reported analytical models of this exposure were difficult to configure and had not been investigated below 100 MeV proton energy. The purposes of this study were to test an analytical model of neutron equivalent dose per therapeutic absorbed dose ( H / D ) at 75 MeV and to improve the model by reducing the number of configuration parameters and making it continuous in proton energy from 100 to 250 MeV. To develop the analytical model, we used previously published H/D values in water from Monte Carlo simulations of a general-purpose beamline for proton energies from 100 to 250 MeV. We also configured and tested the model on in-air neutron equivalent doses measured for a 75 MeV ocular beamline. Predicted H/D values from the analytical model and Monte Carlo agreed well from 100 to 250 MeV (10% average difference). Predicted H/D values from the analytical model also agreed well with measurements at 75 MeV (15% average difference). The results indicate that analytical models can give fast, reliable calculations of neutron exposure after proton therapy. This ability is absent in treatment planning systems but vital to second cancer risk estimation.
机译:暴露于杂散中子会增加质子治疗后发生第二种癌症的风险。以前报道的这种暴露的分析模型很难配置,并且尚未在100 MeV质子能量以下进行研究。本研究的目的是测试75 MeV时每治疗吸收剂量(H / D)的中子当量剂量的分析模型,并通过减少配置参数的数量并使质子能量从100变为250连续来改进模型。 MeV。为了开发分析模型,我们使用了以前发布的通用束线的蒙特卡罗模拟在水中的H / D值,用于100到250 MeV的质子能量。我们还针对75 MeV眼线束测量了在航空中子当量剂量上的模型并对其进行了测试。根据分析模型预测的H / D值,Monte Carlo从100到250 MeV(平均差异为10%)很好地吻合。分析模型预测的H / D值也与75 MeV(平均差异为15%)下的测量值非常吻合。结果表明,分析模型可以对质子治疗后的中子暴露进行快速,可靠的计算。这种能力在治疗计划系统中不存在,但对第二次癌症风险评估至关重要。

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