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Monte Carlo Simulation for Gamma Knife Radiosurgery using the Grid

机译:Monte Carlo用于使用电网的伽马刀放射柜的仿真

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Gamma Knife radiosurgery is an established technique for the treatment of intracranial lesions and vascular malformations in the brain. In this study, dose distributions in a phantom calculated by GammaPlan have been compared with dose distributions computed by a Monte Carlo code (RAPT) assuming the phantom as a homogenous medium. Comparisons have considered both single shot plans and treatment plans. Approximately 200 radiosurgery treatment plans have been simulated using the Monte Carlo method and the initial results are discussed in this paper. The features and application of the GEMSS Grid (cluster of powerful computers) used for our computational work is described here. Analysis of the number of photons required for adequate simulation is also presented. A preliminary study of the effects of in-homogeneity has also been carried out by incorporating a 5 mm thin bone shell into the water phantom and the observed differences in the dose distribution are presented here. MATLAB software has been used to view, overlay and compare the dose distributions. A classical method of visualization of isodose lines and conformity indices has been used to compare and quantify differences.
机译:伽玛刀放射炮手是治疗大脑颅内病变和血管畸形的既定技术。在该研究中,已经将由γplan计算的幻像中的剂量分布与假设幽灵作为均匀介质的蒙特卡罗码(RAPT)计算的剂量分布。比较已经考虑了单次计划和治疗计划。使用Monte Carlo方法模拟了大约200个放射外科治疗计划,本文讨论了初始结果。这里描述了Gemss网格(强大计算机集群)的特征和应用,用于我们的计算工作。还提出了对充分模拟所需的光子数量的分析。通过将5mm薄的骨壳掺入水体模型中,还通过将5mm薄的骨壳掺入水体模型中进行了初步研究,并且在此提出了观察到的剂量分布的差异。 MATLAB软件已用于查看,覆盖和比较剂量分布。一种经典的观点可视化体odose线和符合性指数用于比较和量化差异。

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