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Monte Carlo calculation of VMAT and helical tomotherapy dose distributions for lung stereotactic treatments with intra-fraction motion

机译:分级运动内肺立体定向治疗的VMAT和螺旋CT剂量分布的Monte Carlo计算

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摘要

The aim of this study is to calculate realistic dose distributions that include the continuous deformation of organs and continuous motion of machine using 4D Monte Carlo methods for both volumetric modulated arc therapy and helical tomotherapy treatments. As part of a previous study, we presented a method to perform position-probability-sampled Monte Carlo dose calculations in the BEAMnrc and DOSXZYnrc user codes of EGSnrc. In this study, the DOSXYZnrc user code was further modified to account for the continuous intra-fraction deformation of the patient geometry. We implemented in the user code a method to update the transport grid densities as a function of time and map the energy deposited in the time dependent transport grid back to a reference grid. We provide information on the measurements performed to validate the implementation of this method and present an example of the application of the method for lung stereotactic treatments with intra-fraction motion. The results show that breathing motion is properly addressed with the internal target volume method for the cases studied.
机译:这项研究的目的是使用4D蒙特卡洛方法计算实际剂量分布,包括器官的连续变形和机器的连续运动,以进行容积调制电弧治疗和螺旋断层治疗。作为先前研究的一部分,我们介绍了一种在EGSnrc的BEAMnrc和DOSXZYnrc用户代码中执行位置概率采样的蒙特卡洛剂量计算的方法。在这项研究中,对DOSXYZnrc用户代码进行了进一步修改,以解决患者几何形状连续不断的内部变形的问题。我们在用户代码中实现了一种方法,以根据时间更新运输网格密度,并将沉积在与时间相关的运输网格中的能量映射回参考网格。我们提供有关执行的测量结果的信息,以验证该方法的实现,并提供该方法在小范围内运动的肺部立体定向治疗中的应用示例。结果表明,对于所研究的病例,使用内部目标体积法可以正确解决呼吸运动。

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