Dose and linear energy transfer distributions of primary and secondary particles in carbon ion radiation therapy: A Monte Carlo simulation study in water

Daniel A Johnson, Yong Chen, Salahuddin Ahmad
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引用次数: 7

Abstract

The factors influencing carbon ion therapy can be predicted from accurate knowledge about the production of secondary particles from the interaction of carbon ions in water/tissue-like materials, and subsequently the interaction of the secondary particles in the same materials. The secondary particles may have linear energy transfer (LET) values that potentially increase the relative biological effectiveness of the beam. Our primary objective in this study was to classify and quantify the secondary particles produced, their dose averaged LETs, and their dose contributions in the absorbing material. A 1 mm diameter carbon ion pencil beam with energies per nucleon of 155, 262, and 369 MeV was used in a geometry and tracking 4 Monte Carlo simulation to interact in a 27 L water phantom containing 3000 rectangular detector voxels. The dose-averaged LET and the dose contributions of primary and secondary particles were calculated from the simulation. The results of the simulations show that the secondary particles that contributed a major dose component had LETs <100 keV/µm. The secondary particles with LETs >600 keV/µm contributed only <0.3% of the dose.
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碳离子放射治疗中一次和二次粒子的剂量和线性能量转移分布:水中蒙特卡罗模拟研究
影响碳离子治疗的因素可以通过准确了解碳离子在水/类组织材料中的相互作用以及随后在相同材料中的次级粒子的相互作用产生的次级粒子来预测。二次粒子可能具有线性能量转移(LET)值,这可能会增加光束的相对生物有效性。本研究的主要目的是对产生的二次粒子、它们的剂量平均let以及它们在吸收材料中的剂量贡献进行分类和量化。利用直径为1 mm、每核子能量分别为155、262和369 MeV的碳离子铅笔束,在含有3000个矩形探测器体素的27 L水幻影中进行了几何和跟踪蒙特卡罗模拟。通过模拟计算得到了剂量平均LET以及一次粒子和二次粒子的剂量贡献。模拟结果表明,贡献主要剂量成分的二次粒子的let为600 keV/µm,仅贡献<0.3%的剂量。
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