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Treatment Planning for Accelerator-Based Boron Neutron Capture Therapy

机译:加速器的硼中子捕获治疗治疗规划

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Glioblastoma multiforme and metastatic melanoma are frequent brain tumors in adults and presently still incurable diseases. Boron Neutron Capture Therapy (BNCT) is a promising al-ternative for this kind of pathologies. Accelerators have been proposed for BNCT as a way to circumvent the problem of siting reactors in hospitals and for their relative simplicity and lower cost among other advantages. Considerable effort is going into the development of accelerator-based BNCT neutron sources in Argentina. Epithennal neutron beams will be produced through appropriate proton-induced nuclear reactions and optimized beam shaping assemblies. Using these sources, computational dose distributions were evaluated in a real patient with diagnosed glioblastoma treated with BNCT. The simulated irradiation was delivered in order to optimize dose to the tumors within the normal tissue constraints. Using Monte Carlo radiation transport calculations, dose distributions were generated for brain, skin and tumor. Also, the dosimetry was studied by computing cumulative dose-volume histograms for volumes of interest. The results suggest acceptable skin average dose and a significant dose delivered to tumor with low average whole brain dose for irradiation times less than 60 minutes, indicating a good performance of an accelerator-based BNCT treatment.
机译:胶质母细胞瘤多形形和转移性黑色素瘤是成人常见的脑肿瘤,目前仍然是可治区的疾病。硼中子捕获疗法(BNCT)是这种病理学的有希望的Al-Ternative。已经提出了加速器的BNCT作为一种旨在规避医院选址反应堆的方法,以及它们相对简单,更低的成本等待其他优点。相当大的努力正在进入阿根廷加速器的BNCT中子来源。将通过适当的质子诱导的核反应和优化的光束整形组件制造齐升中子束。使用这些来源,在具有用BNCT处理的诊断胶质母细胞瘤的真实患者中评估计算剂量分布。递送模拟辐射,以优化对正常组织限制内的肿瘤的剂量。使用蒙特卡罗辐射传输计算,为脑,皮肤和肿瘤产生剂量分布。而且,通过计算累积剂量的速度表,用于对感兴趣的体积计算的累积剂量直方图进行研究。结果表明可接受的皮肤平均剂量和递送至肿瘤的显着剂量,具有低于平均全脑剂量的肿瘤,用于照射时间小于60分钟,表明基于加速器的BNCT处理的良好性能。

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