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Application of Traditional and Nanostructure Materials for Medical Electron Beams Collimation: Numerical Simulation

机译:用于医用电子束准直的传统和纳米结构材料的应用:数值模拟

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Nowadays, the commercial application of the electron accelerators grows in the industry, in the research investigations, in the medical diagnosis and treatment. In this regard, the electron beam profile modification in accordance with specific purposes is an actual task. In this paper the model of the TPU microtron extracted electron beam developed in the program "Computer Laboratory (PCLab)" is described. The internal beam divergence influence for the electron beam profile and depth dose distribution in the air is considered. The possibility of using the nanostructure materials for the electron beam formation was analyzed. The simulation data of the electron beam shape collimated by different materials (lead, corund-zirconia nanoceramic, gypsum) are shown. The collimator material influence for the electron beam profile and shape are analyzed.
机译:如今,电子加速器的商业应用在工业中,在研究调查中,在医学诊断和治疗中。在这方面,电子束轮廓修改根据特定目的是实际任务。在本文中,描述了在程序“计算机实验室(PCLAB)”中开发的TPU Microtron提取电子束的模型​​。考虑了电子束型材和空气中深度剂量分布的内部光束发散影响。分析了使用用于电子束形成的纳米结构材料的可能性。示出了由不同材料准直的电子束形状的模拟数据(铅,氧化锆纳米核酸,石膏)。分析了电子束轮廓和形状的准直器材料的影响。

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