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Applying graphics processor units to Monte Carlo dose calculation in radiation therapy

机译:将图形处理器单元应用于放射治疗中的蒙特卡洛剂量计算

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We investigate the potential in using of using a graphics processor unit (GPU) for Monte-Carlo (MC)-based radiation dose calculations. The percent depth dose (PDD) of photons in a medium with known absorption and scattering coefficients is computed using a MC simulation running on both a standard CPU and a GPU. We demonstrate that the GPU's capability for massive parallel processing provides a significant acceleration in the MC calculation, and offers a significant advantage for distributed stochastic simulations on a single computer. Harnessing this potential of GPUs will help in the early adoption of MC for routine planning in a clinical environment.Keywords: Graphics processor unit, Monte Carlo
机译:我们调查了使用图形处理器单元(GPU)进行基于蒙特卡洛(MC)的辐射剂量计算的潜力。使用在标准CPU和GPU上运行的MC模拟计算具有已知吸收系数和散射系数的介质中光子的深度剂量百分比(PDD)。我们证明了GPU的大规模并行处理能力极大地提高了MC计算的速度,并为单台计算机上的分布式随机仿真提供了显着优势。利用GPU的这一潜力将有助于MC在临床环境中的日常计划中早日采用。关键字:图形处理器单元,蒙特卡洛

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