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Dose calculation of 3D printing lead shield covered by biocompatible silicone for electron beam therapy

机译:剂量计算3 d打印技术领先的盾牌由生物相容性为电子硅胶梁疗法

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This study aims to calculate the dose delivered to the upstream surface of a biocompatible flexible absorber covering lead for electron beam treatment of skin and subcutaneous tumour lesions for head and neck. Silicone (Ecoflex (TM) 00-30, SmoothOn, Easton, PA, USA) was used to cover the lead to absorb backscattered electrons from lead. A 3D printer (Zortrax M300, Zortrax, Olsztyn, Poland) was used to fabricate the lead shield. Analytic calculation, simplified Monte Carlo (MC) simulation, and detailed MC simulation which includes a modeling of metal-oxide-semiconductor field-effect transistor (MOSFET) detector were performed to determine the electron backscatter factor (EBF) for 6 MeV and 9 MeV electron beams of a Varian iX Silhouette. MCNP6.2 was used to calculate the EBF and corresponding measurements were carried out by using MOSFET detectors. The EBF was experimentally measured by the ratio of dose at the upstream surface of the silicone to the same point without the presence of the lead shield. The results derived by all four methods agreed within 2.8% for 6 MeV and 3.4% for 9 MeV beams. In detailed MC simulations, for 6 MeV, dose to the surface of 7-mm-thick absorber was 103.7 +/- 1.9% compared to dose maximum (D-max) without lead. For 9 MeV, the dose to the surface of the 10-mm-thick absorber was 104.1 +/- 2.1% compared to D-max without lead. The simplified MC simulation was recommended for practical treatment planning due to its acceptable calculation accuracy and efficiency. The simplified MC simulation was completed within 20 min using parallel processing with 80 CPUs, while the detailed MC simulation required 40 h to be done. In this study, we outline the procedures to use the lead shield covered by silicone in clinical practice from fabrication to dose calculation.
机译:本研究旨在计算剂量交付上游表面生物相容性的灵活吸收器覆盖铅的电子束治疗皮肤和皮下肿瘤病变头部和颈部。SmoothOn,伊斯顿,美国宾夕法尼亚州)被用来覆盖导致从铅吸收背散射电子。一个3 d打印机(Zortrax M300、Zortrax Olsztyn,波兰)被用来制造铅屏蔽。分析计算,简化蒙特卡罗(MC)模拟,和详细的MC模拟包括金属氧化物半导体的建模场效应晶体管(MOSFET)检测器执行确定电子后向散射因子(EBF) 6伏9伏,电子束瓦里安iX的轮廓。计算EBF和相应的测量进行了利用MOSFET探测器。EBF实验用的比例来衡量在上游的硅酮表面剂量同一点没有铅的存在盾牌。同意2.8%以内,6兆电子伏为3.4%,9兆电子伏梁。剂量7毫米厚的表面吸收器103.7 + / - 1.9%相比,最大剂量(D-max)没有领先。10-mm-thick吸收器是104.1 + / - 2.1%相比D-max没有领先。仿真是实用的建议治疗计划由于其可接受的计算精度和效率。简化MC模拟内完成20分钟使用并行处理80 cpu,而详细的MC模拟需要40 h完成了。用铅屏蔽由硅胶临床实践从制造到剂量计算。

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