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Application of a Monte Carlo‐based method for total scatter factors of small beams to new solid state micro‐detectors

机译:基于蒙特卡罗方法的小束总散射因子在新型固态微探测器中的应用

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摘要

The scope of this work was to apply a method for estimation of total scatter factors of the smallest beams of the Cyberknife radiosurgery system to newly available solid‐state detectors: the PTW 60008 diode, the SunNuclear EdgeDetector™ diode, and the Thomson and Nielsen TN502RDM micromosfet. The method is based on a consistency check between Monte Carlo simulation of the detectors and experimental results, and was described in a recent publication. Corrected total scatter factors were in excellent agreement with the findings of the former study. The results showed that the diodes tend to overestimate the total scatter factor of small beams, probably due to excessive scatter from the material surrounding the active layer. The correction factor for diodes and for the micromosfet, however, was found to be independent of the electron beam width. This is a desirable characteristic because it allows standard correction factors to be used for treatment units of the same type, without the need of case‐by‐case Monte Carlo simulation.PACS numbers: 87.55.kh; 87.55.ne; 87.56.Fc.
机译:这项工作的范围是将一种用于估算射波刀放射外科系统最小光束总散射因子的方法应用于新的固态探测器:PTW 60008二极管,SunNuclear EdgeDetector™二极管以及Thomson和Nielsen TN502RDM微mosfet。该方法基于检测器的蒙特卡洛模拟与实验结果之间的一致性检查,并在最近的出版物中进行了描述。校正后的总散射因子与以前的研究结果非常吻合。结果表明,二极管可能会高估小光束的总散射因子,这可能是由于有源层周围材料的过度散射所致。但是,发现二极管和微mosfet的校正因子与电子束宽度无关。这是一个理想的特性,因为它允许将标准校正因子用于相同类型的处理单元,而无需逐案进行蒙特卡洛模拟。PACS编号:87.55.kh; 87.55.ne; 87.56.Fc。

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