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Discrimination of hydroxyl radical yields due to thermal neutrons, fast neutrons, and gamma rays in accelerator-based neutron fields

机译:由于热中子,快速中子和基于加速器的中子场中的热中子,快节奏和伽马射线的鉴别

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We proposed a depth-intensity curve discrimination (DCD) method for assessing absorbed dose contributions of hydroxyl radicals (HO center dot) due to thermal neutrons, fast neutrons, and gamma rays in accelerator-based mixed radiation fields, that are relevant to boron neutron capture therapy (BNCT). The HO center dot yields of thermal neutrons, fast neutrons, and gamma-rays measured by coumarin-3-carboxylic acid solutions were discriminately evaluated using depth-intensity curves of their radiations and maximum likelihood-expectation maximization algorithm. The discrimination accuracies of the three types of radiation were 2.8%, 4.2%, and 1.0%, respectively. We demonstrated that the DCD method is appropriate to determine absorbed dose contributions of HO center dot in complex accelerator-based neutron fields for BNCT.
机译:我们提出了一种深度强度曲线辨别(DCD)方法,用于评估由于热中子,快速中子和基于加速器的混合辐射场中的热中子,快中子和伽马射线的吸收剂量贡献,与硼中子相关 捕获治疗(BNCT)。 通过辐射的深度强度曲线和最大似然预期最大化算法,分别评估由香豆素-3-羧酸溶液测量的热中子,快中子和γ射线的HO中心点根。 三种辐射的歧视性能分别为2.8%,4.2%和1.0%。 我们证明了DCD方法适用于确定HO中心点的吸收剂量贡献,用于BNCT的基于复合加速器的中子场。

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