Nevelsky Alexander, Borzov Egor, Daniel Shahar, Bar-Deroma Raquel
Division of Oncology, Rambam Health Care Campus, Haifa, Israel.
J Appl Clin Med Phys. 2017 Jan;18(1):196-201. doi: 10.1002/acm2.12039.
Total Skin Electron Irradiation (TSEI) is a complex technique which usually involves the use of large electron fields and the dual-field approach. In this situation, many electrons scattered from the treatment room floor are produced. However, no investigations of the effect of scattered electrons in TSEI treatments have been reported. The purpose of this work was to study the contribution of floor scattered electrons to skin dose during TSEI treatment using Monte Carlo (MC) simulations.
All MC simulations were performed with the EGSnrc code. Influence of beam energy, dual-field angle, and floor material on the contribution of floor scatter was investigated. Spectrum of the scattered electrons was calculated. Measurements of dose profile were performed in order to verify MC calculations.
Floor scatter dependency on the floor material was observed (at 20 cm from the floor, scatter contribution was about 21%, 18%, 15%, and 12% for iron, concrete, PVC, and water, respectively). Although total dose profiles exhibited slight variation as functions of beam energy and dual-field angle, no dependence of the floor scatter contribution on the beam energy or dual-field angle was found. The spectrum of the scattered electrons was almost uniform between a few hundred KeV to 4 MeV, and then decreased linearly to 6 MeV.
For the TSEI technique, dose contribution due to the electrons scattered from the room floor may be clinically significant and should be taken into account during design and commissioning phases. MC calculations can be used for this task.
全身皮肤电子线照射(TSEI)是一项复杂的技术,通常涉及大电子野的使用和双野技术。在这种情况下,会产生许多从治疗室地面散射的电子。然而,尚未有关于TSEI治疗中散射电子影响的研究报道。本研究的目的是使用蒙特卡罗(MC)模拟来研究TSEI治疗过程中地面散射电子对皮肤剂量的贡献。
所有MC模拟均使用EGSnrc代码进行。研究了束流能量、双野角度和地面材料对地面散射贡献的影响。计算了散射电子的能谱。为验证MC计算结果,进行了剂量分布测量。
观察到地面散射对地面材料的依赖性(在距离地面20 cm处,铁、混凝土、PVC和水的散射贡献分别约为21%、18%、15%和12%)。尽管总剂量分布随束流能量和双野角度的变化略有不同,但未发现地面散射贡献对束流能量或双野角度的依赖性。散射电子的能谱在几百keV至4 MeV之间几乎是均匀的,然后线性下降至6 MeV。
对于TSEI技术,治疗室地面散射电子产生的剂量贡献在临床上可能具有重要意义,在设计和调试阶段应予以考虑。MC计算可用于此任务。