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Linear Accelerator Photon Beam Interaction with the Virtual Physiological Human

机译:线性加速器光子束与虚拟生理人的相互作用

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We have successfully used Monte Carlo (MC) techniques to simulate the geometry of a linear accelerator (LINAC) and the photon beam interaction with the virtual physiological humanoid (VPH) head. We used EGSnrc software to perform the MC simulations. The accelerator geometry and materials were based on the manufacturer's specifications for Varian-CLINAC 2300 CD. In order to verify the accuracy of the simulation, the photon beam interaction with a water phantom was simulated. The percent depth dose (PDD) and beam profiles of the simulated beams were compared with experimental measurements. Dosxyznrc was used to model the interaction of this beam with a 3-D CT phantom reconstructed from TIFF images of the Virtual Physiological Humanoid (VPH). A 3-D dose distribution was obtained and superimposed onto the phantom to obtain the isodose curves. The dose distributions were compared to those obtained by treatment planning software developed at the University of North Carolina (PlanUNC version 6.7.01R). It was found that MC methods gave generally lower entrance and exit doses than PlanUNC with percentage differences of 25 % and 10 % relative to maximum dose. Generally, we obtained similar dose distributions except in regions of significant inhomogeneity such as bone-soft tissue interfaces. Disagreements between MC simulation and treatment planning software results in the skin dose and in inhomogeneous regions can have significant clinical implications.
机译:我们已经成功地使用了蒙特卡洛(MC)技术来模拟线性加速器(LINAC)的几何形状以及光子束与虚拟生理人形体(VPH)头的相互作用。我们使用EGSnrc软件执行MC仿真。加速器的几何形状和材料基于制造商针对Varian-CLINAC 2300 CD的规格。为了验证仿真的准确性,对光子束与水模的相互作用进行了仿真。将模拟光束的深度剂量百分比(PDD)和光束轮廓与实验测量值进行比较。 Dosxyznrc用于模拟该光束与从虚拟生理人形生物(VPH)的TIFF图像重建的3-D CT体模之间的相互作用。获得了3-D剂量分布,并将其叠加到体模上以获得等剂量线。将剂量分布与通过北卡罗莱纳大学开发的治疗计划软件(PlanUNC版本6.7.01R)获得的剂量分布进行比较。已经发现,MC方法通常提供比PlanUNC更低的进入和退出剂量,相对最大剂量的百分比差异为25%和10%。通常,我们获得了相似的剂量分布,除了在明显不均匀的区域(如骨软组织界面)。 MC模拟与治疗计划软件之间的分歧导致皮肤剂量和不均匀区域的使用可能具有重大的临床意义。

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