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首页> 外文期刊>Physics in medicine and biology. >Linking computer-aided design (CAD) to Geant4-based Monte Carlo simulations for precise implementation of complex treatment head geometries.
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Linking computer-aided design (CAD) to Geant4-based Monte Carlo simulations for precise implementation of complex treatment head geometries.

机译:将计算机辅助设计(CAD)与基于Geant4的Monte Carlo仿真相链接,以精确实现复杂的治疗头几何形状。

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摘要

Most of the treatment head components of medical linear accelerators used in radiation therapy have complex geometrical shapes. They are typically designed using computer-aided design (CAD) applications. In Monte Carlo simulations of radiotherapy beam transport through the treatment head components, the relevant beam-generating and beam-modifying devices are inserted in the simulation toolkit using geometrical approximations of these components. Depending on their complexity, such approximations may introduce errors that can be propagated throughout the simulation. This drawback can be minimized by exporting a more precise geometry of the linac components from CAD and importing it into the Monte Carlo simulation environment. We present a technique that links three-dimensional CAD drawings of the treatment head components to Geant4 Monte Carlo simulations of dose deposition.
机译:放射治疗中使用的医用线性加速器的大多数治疗头组件均具有复杂的几何形状。它们通常使用计算机辅助设计(CAD)应用程序进行设计。在通过治疗头组件进行放射治疗束传输的蒙特卡洛模拟中,使用这些组件的几何近似值,将相关的束生成和束修改设备插入到仿真工具包中。根据其复杂程度,此类近似值可能会引入误差,这些误差会在整个仿真过程中传播。通过从CAD导出直线加速器组件的更精确的几何形状并将其导入到Monte Carlo仿真环境中,可以最大程度地减少此缺陷。我们提出了一种将治疗头组件的三维CAD图纸链接到剂量沉积的Geant4 Monte Carlo模拟的技术。

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