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首页> 外文期刊>Medical Physics >Patient-dependent beam-modifier physics in Monte Carlo photon dose calculations.
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Patient-dependent beam-modifier physics in Monte Carlo photon dose calculations.

机译:蒙特卡罗光子剂量计算中与患者有关的光束修改器物理学。

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摘要

Model pencil-beam on slab calculations are used as well as a series of detailed calculations of photon and electron output from commercial accelerators to quantify level(s) of physics required for the Monte Carlo transport of photons and electrons in treatment-dependent beam modifiers, such as jaws, wedges, blocks, and multileaf collimators, in photon teletherapy dose calculations. The physics approximations investigated comprise (1) not tracking particles below a given kinetic energy, (2) continuing to track particles, but performing simplified collision physics, particularly in handling secondary particle production, and (3) not tracking particles in specific spatial regions. Figures-of-merit needed to estimate the effects of these approximations are developed, and these estimates are compared with full-physics Monte Carlo calculations of the contribution of the collimating jaws to the on-axis depth-dose curve in a water phantom. These figures of merit are next used to evaluate various approximations used in coupled photon/electron physics in beam modifiers. Approximations for tracking electrons in air are then evaluated. It is found that knowledge of the materials used for beam modifiers, of the energies of the photon beams used, as well as of the length scales typically found in photon teletherapy plans, allows a number of simplifying approximations to be made in the Monte Carlo transport of secondary particles from the accelerator head and beam modifiers to the isocenter plane.
机译:使用板坯计算模型铅笔束,以及一系列从商业加速器输出的光子和电子的详细计算,以量化依赖处理剂的光束调节器中光子和电子的蒙特卡洛传输所需的物理水平,在光子远程治疗剂量计算中,例如颌,楔,块和多叶准直器。所研究的物理近似包括:(1)不跟踪低于给定动能的粒子;(2)继续跟踪粒子,但执行简化的碰撞物理学,尤其是在处理次级粒子生成中;(3)不跟踪特定空间区域中的粒子。开发了估算这些近似效果所需的品质因数,并将这些估算值与全物理蒙特卡洛计算法(该模型对准直颚对水体模中轴上深度剂量曲线的贡献)进行了比较。接下来,将这些品质因数用于评估束修改器中耦合的光子/电子物理中使用的各种近似值。然后评估跟踪空气中电子的近似值。已经发现,对于用于束调节器的材料,所使用的光子束的能量以及在光子远距离治疗计划中通常发现的长度标度的了解,使得可以在蒙特卡洛传输中做出许多简化的近似。从加速器头和光束调节器到等中心平面的二次粒子。

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