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首页> 外文期刊>Australasian physical & engineering sciences in medicine >IEC accelerator beam coordinate transformations for clinical Monte Carlo simulation from a phase space or full BEAMnrc particle source
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IEC accelerator beam coordinate transformations for clinical Monte Carlo simulation from a phase space or full BEAMnrc particle source

机译:从相空间或完整BEAMnrc粒子源进行临床Monte Carlo模拟的IEC加速器束坐标转换

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Monte Carlo simulation of clinical treatment plans require, in general, a coordinate transformation to describe the incident radiation field orientation on a patient phantom coordinate system. The International Electrotech-nical Commission (IEC) has denned an accelerator coordinate system along with positive directions for gantry, couch and collimator rotations. In order to describe the incident beam's orientation with respect to the patient's coordinate system, DOSXYZnrc simulations often require transformation of the accelerator's gantry, couch and collimator angles to describe the incident beam. Similarly, versions of the voxelized Monte Carlo code (VMC++) require non-trivial transformation of the accelerator's gantry, couch and collimator angles to standard Euler angles α, β, γ, to describe an incident phase space source orientation with respect to the patient's coordinate system. The transformations, required by each of these Monte Carlo codes to transport phase spaces through a phantom, have been derived with a rotation operator approach. The transformations have been tested and verified against the Eclipse treatment planning system.
机译:通常,临床治疗计划的蒙特卡罗模拟需要进行坐标变换,以描述患者幻象坐标系上的入射辐射场方向。国际电工技术委员会(IEC)定义了加速器坐标系以及用于机架,卧榻和准直仪旋转的正方向。为了描述入射光束相对于患者坐标系的方向,DOSXYZnrc模拟通常需要转换加速器的龙门架,卧榻和准直仪角度来描述入射光束。类似地,体素化的蒙特卡洛代码(VMC ++)的版本要求将加速器的龙门,卧榻和准直仪角度进行非平凡的转换,以转换为标准的欧拉角α,β,γ,以描述入射相空间源相对于患者坐标的方向系统。这些蒙特卡洛代码中的每一个通过幻像传输相空间所需的变换,都是通过旋转算子方法得出的。已经针对Eclipse处理计划系统对转换进行了测试和验证。

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