Cheung Joel Y C, Yu K N, Yu C P, Ho Robert T K
Department of Physics and Materials Science, City University of Hong Kong, Kowloon Tong.
Med Phys. 2002 Oct;29(10):2260-1. doi: 10.1118/1.1508797.
In calculations for the Leksell Gamma Knife, GammaPlan employs a tissue equivalent material without the presence of a skull bone, while dosimetry work is based on a polystyrene phantom. The compatibility of these dose distributions is uncertain. The Monte Carlo technique was employed to determine the radial dose distributions from a single 14 mm collimator helmet in 160 mm diam phantoms with different materials. The materials studied were polystyrene, perspex, water, and water with skull bone. Results showed no significant differences among the radial doses in different phantom materials for the 14 mm collimator helmet. The Monte Carlo simulation was repeated with the inclusion of all 201 sources. Again, no significant differences were observed.
在Leksell伽玛刀的计算中,伽玛计划在不存在颅骨的情况下采用组织等效材料,而剂量测定工作是基于聚苯乙烯体模。这些剂量分布的兼容性尚不确定。采用蒙特卡罗技术来确定在直径为160 mm、具有不同材料的体模中,单个14 mm准直器头盔的径向剂量分布。所研究的材料有聚苯乙烯、有机玻璃、水以及含有颅骨的水。结果表明,对于14 mm准直器头盔,不同体模材料中的径向剂量之间没有显著差异。在纳入所有201个源的情况下重复进行蒙特卡罗模拟。同样,未观察到显著差异。