Engineering Physics Program, University of British Columbia, Vancouver, Canada.
Phys Med Biol. 2010 Aug 21;55(16):4431-43. doi: 10.1088/0031-9155/55/16/S01. Epub 2010 Jul 29.
We present two new Monte Carlo sources for the DOSXYZnrc code, which can be used to compute dose distributions due to continuously variable beam configurations. These sources support a continuously rotating gantry and collimator, dynamic multileaf collimator (MLC) motion, variable monitor unit (MU) rate, couch rotation and translation in any direction, arbitrary isocentre motion with respect to the patient and variable source-to-axis distance (SAD). These features make them applicable to Monte Carlo simulations for RapidArc, Elekta VMAT, TomoTherapy and CyberKnife. Unique to these sources is the synchronization between the motion in the DOSXYZnrc geometry and the motion within the linac head, represented by a shared library (either a BEAMnrc accelerator with dynamic component modules, or an external library). The simulations are achieved in single runs, with no intermediate phase space files.
我们为 DOSXYZnrc 代码呈现了两个新的蒙特卡罗源,可用于计算由于连续变化的射束配置而导致的剂量分布。这些源支持连续旋转机架和准直器、动态多叶准直器(MLC)运动、可变监测器单位(MU)率、任意方向的治疗床旋转和平移、相对于患者的任意等中心运动以及可变源轴距(SAD)。这些功能使其适用于 RapidArc、Elekta VMAT、TomoTherapy 和 CyberKnife 的蒙特卡罗模拟。这些源的独特之处在于 DOSXYZnrc 几何中的运动与直线加速器头部内的运动之间的同步,这由一个共享库(无论是带动态组件模块的 BEAMnrc 加速器,还是外部库)表示。模拟是在单个运行中完成的,没有中间相空间文件。