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Optimization of photon beam energies in gold nanoparticle enhanced arc radiation therapy using Monte Carlo methods

机译:蒙特卡罗方法优化金纳米粒子增强电弧辐射治疗中的光子束能量

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As a recent area of development in radiation therapy, gold nanoparticle (GNP) enhanced radiation therapy has shown potential to increase tumour dose while maintaining acceptable levels of healthy tissue toxicity. In this study, the effect of varying photon beam energy in GNP enhanced arc radiation therapy (GEART) is quantified through the introduction of a dose scoring metric, and GEART is compared to a conventional radiotherapy treatment. The PENELOPE Monte Carlo code was used to model several simple phantoms consisting of a spherical tumour containing GNPs (concentration: 15 mg Au g(-1) tumour, 0.8 mg Au g(-1) normal tissue) in a cylinder of tissue. Several monoenergetic photon beams, with energies ranging from 20 keV to 6 MeV, as well as 100, 200, and 300 kVp spectral beams, were used to irradiate the tumour in a 360 degrees arc treatment. A dose metric was then used to compare tumour and tissue doses from GEART treatments to a similar treatment from a 6 MV spectrum. This was also performed on a simulated brain tumour using patient computed tomography data. GEART treatments showed potential over the 6 MV treatment for many of the simulated geometries, delivering up to 88% higher mean dose to the tumour for a constant tissue dose, with the effect greatest near a source energy of 50 keV. This effect is also seen with the inclusion of bone in a brain treatment, with a 14% increase in mean tumour dose over 6 MV, while still maintaining acceptable levels of dose to the bone and brain.
机译:作为放射治疗的最新发展领域,金纳米粒子(GNP)增强的放射治疗已显示出在保持可接受的健康组织毒性水平的同时增加肿瘤剂量的潜力。在这项研究中,通过引入剂量评分标准来量化GNP增强电弧辐射治疗(GEART)中变化的光子束能量的影响,并将GEART与常规放射治疗进行比较。 PENELOPE蒙特卡洛代码用于对几个简单的模型进行建模,这些模型由组织圆柱体中包含GNP(浓度:15 mg Au g(-1)肿瘤,0.8 mg Au g(-1)正常组织)的球形肿瘤组成。能量范围从20 keV到6 MeV的数个单能光子束,以及100、200和300 kVp的光谱束用于在360度弧光治疗中照射肿瘤。然后使用剂量度量将GEART治疗的肿瘤和组织剂量与6 MV光谱的相似治疗进行比较。这也使用患者计算机断层扫描数据在模拟的脑肿瘤上进行。 GEART治疗在许多模拟几何结构上均显示出超过6 MV治疗的潜力,对于恒定的组织剂量,其向肿瘤的平均剂量高出88%,在50 keV的源能量附近效果最大。在脑部治疗中将骨骼包括在内也可以看到这种效果,在6 MV以上时,平均肿瘤剂量增加了14%,同时仍保持了可接受的骨骼和大脑剂量水平。

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