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Monte Carlo simulation of depth-dose distribution in several organic models for boron neutron capture therapy

机译:硼中子俘获治疗的几种有机模型中深度剂量分布的蒙特卡罗模拟

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Monte Carlo simulations are performed to evaluate depth-dose distributions for possible treatment of cancers by boron neutron capture therapy (BNCT). The ICRU computational model of ADAM & EVA was used as a phantom to simulate tumors at a depth of 5 cm in central regions of the lungs, liver and pancreas. Tumors of the prostate and osteosarcoma were also centered at the depth of 4.5 and 2.5 cm in the phantom models. The epithermal neutron beam from a research reactor was the primary neutron source for the MCNP calculation of the depth-dose distributions in those cancer models. For brain tumor irradiations, the whole-body dose was also evaluated. The MCNP simulations suggested that a lethal dose of 50 Gy to the tumors can be achieved without reaching the tolerance dose of 25 Gy to normal tissue. The whole-body phantom calculations also showed that the BNCT could be applied for brain tumors without significant damage to whole-body organs.
机译:进行蒙特卡洛模拟以评估通过硼中子俘获疗法(BNCT)可能治疗的癌症的深度剂量分布。 ADAM和EVA的ICRU计算模型用作模型,用于模拟位于肺,肝和胰腺中心区域5厘米深处的肿瘤。在幻影模型中,前列腺和骨肉瘤的肿瘤也集中在4.5和2.5 cm的深度处。来自研究堆的超热中子束是这些癌症模型中MCNP计算深度剂量分布的主要中子源。对于脑肿瘤照射,还评估了全身剂量。 MCNP模拟表明,在不达到正常组织25 Gy的耐受剂量的情况下,可以实现对肿瘤的50 Gy致死剂量。全身模型的计算还表明,BNCT可以用于脑肿瘤,而不会显着损害全身器官。

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