Fleck A, Jiang R, Schaly B, Charland P, Osei Et
Grand River Regional Cancer Centre.
Department of Physics and Astronomy, University of Waterloo.
Med Phys. 2012 Jul;39(7Part4):4638. doi: 10.1118/1.4740179.
One of the greatest challenges in radiation therapy is the ability to deliver a lethal dose of radiation to a tumour while sparing the surrounding normal tissues. In theory, the dose delivered to a tumour during photon-based radiation therapy can be enhanced by loading high atomic number (Z) materials into the tumour, which results in greater photoelectric absorption and hence increased photoelectron fluence within the tumour than in surrounding tissues. The EGSnrcMP Monte Carlo code, together with DOSXYZnrc, a three-dimensional voxel dose calculation module has been used to study the macroscopic dose enhancement factor (MDEF) in a tumour infused with gold nanoparticles at the kilo-voltage energies. We observed that gold nanoparticles infused in a tumour irradiated with kilo-voltage energies has the potential to enhance the tumour dose by a factor ranging from 0.25 to about 5 depending on the mean energy of the beam and the concentration of gold nanoparticles in the tumour. The increase in dose can be attributed to the significant increase in the photoelectron fluence within the tumour loaded with gold particles during the irradiation. Future studies will involve the characterization of the MDEF at megavoltage energies.
放射治疗中最大的挑战之一是在不损伤周围正常组织的情况下,向肿瘤输送致死剂量的辐射。理论上,在基于光子的放射治疗期间,通过向肿瘤中注入高原子序数(Z)的材料,可以提高输送到肿瘤的剂量,这会导致更大的光电吸收,从而使肿瘤内的光电子注量比周围组织更高。EGSnrcMP蒙特卡罗代码与三维体素剂量计算模块DOSXYZnrc一起,被用于研究在千伏能量下注入金纳米颗粒的肿瘤中的宏观剂量增强因子(MDEF)。我们观察到,在千伏能量照射下注入金纳米颗粒的肿瘤,根据束流的平均能量和肿瘤中金纳米颗粒的浓度,有潜力将肿瘤剂量提高0.25至约5倍。剂量的增加可归因于在照射过程中,充满金颗粒的肿瘤内光电子注量的显著增加。未来的研究将涉及兆伏能量下MDEF的特性描述。