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A Monte Carlo approach for small electron beam dosimetry.

机译:小电子束剂量学的蒙特卡洛方法。

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摘要

BACKGROUND AND PURPOSE: In treatments where it is necessary to conform the field shape yielding a very small effective beam area, dosimetry and conventional treatment planning may be inaccurate. The Monte Carlo (MC) method can be an alternative to verify dose calculations. A conjunctival mucosa-associated lymphoid tissues lymphoma is presented, to show the importance of an independent assessment in critical situations. MATERIALS AND METHODS: In this work, the MC technique has been employed using the program BEAM (based on EGS4 code). Electron beam simulation has been performed and the results have been compared with those obtained with films. The patient dose distribution has been obtained by two methods: the full Monte Carlo (FMC) simulation and a conventional planning system (PLATO). RESULTS: Concerning dosimetry, some differences have been observed in the comparison of profiles obtained with film and those obtained with the MC method. Moreover, significant differences were found in the patient isodose distribution between both calculation methods. CONCLUSIONS: The results highlight that, in treatments where small beams are needed, conventional dosimetry and planning systems have some limitations. Therefore, an independent and more accurate assessment, such as MC, would be desirable.
机译:背景与目的:在必须使场形保持一致以产生非常小的有效射束面积的治疗中,剂量测定法和常规治疗计划可能不准确。蒙特卡洛(MC)方法可以替代验证剂量计算。结膜黏膜相关淋巴组织淋巴瘤被提出,以表明在危急情况下进行独立评估的重要性。材料与方法:在这项工作中,使用了MC技术,使用了BEAM程序(基于EGS4代码)。进行了电子束模拟,并将结果与​​胶片获得的结果进行了比较。通过两种方法获得了患者的剂量分布:完整的蒙特卡洛(FMC)模拟和常规计划系统(PLATO)。结果:关于剂量测定,在比较用胶片获得的轮廓和用MC方法获得的轮廓时观察到了一些差异。此外,在两种计算方法之间的患者等剂量分布中发现了显着差异。结论:结果突出表明,在需要小光束的治疗中,常规剂量和计划系统存在一定局限性。因此,需要独立且更准确的评估,例如MC。

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