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适形放射治疗中射束方向和射束权重的同步优化

Simultaneous optimization of beam orientations and beam weights in conformal radiotherapy.

作者信息

Rowbottom C G, Khoo V S, Webb S

机构信息

Joint Department of Physics, Institute of Cancer Research & The Royal Marsden NHS Trust, Sutton, Surrey, United Kingdom.

出版信息

Med Phys. 2001 Aug;28(8):1696-702. doi: 10.1118/1.1387274.

Abstract

A methodology for the concurrent optimization of beam orientations and beam weights in conformal radiotherapy treatment planning has been developed and tested on a cohort of five patients. The algorithm is based on a beam-weight optimization scheme with a downhill simplex optimization engine. The use of random voxels in the dose calculation provides much of the required speed up in the optimization process, and allows the simultaneous optimization of beam orientations and beam weights in a reasonable time. In the implementation of the beam-weight optimization algorithm just 10% of the original patient voxels are used for the dose calculation and cost function evaluation. A fast simulated annealing algorithm controls the optimization of the beam arrangement. The optimization algorithm was able to produce clinically acceptable plans for the five patients in the cohort study. The algorithm equalized the dose to the optic nerves compared to the standard plans and reduced the mean dose to the brain stem by an average of 4.4% (+/- 1.9, 1 SD), p value = 0.007. The dose distribution to the PTV was not compromised by developing beam arrangements via the optimization algorithm. In conclusion, the simultaneous optimization of beam orientations and beam weights has been developed to be routinely used in a realistic time. The results of optimization in a small cohort study show that the optimization can reliably produce clinically acceptable dose distributions and may be able to improve dose distributions compared to those from a human planner.

摘要

一种用于适形放射治疗治疗计划中射束方向和射束权重同步优化的方法已被开发出来,并在一组五名患者身上进行了测试。该算法基于一种带有下山单纯形优化引擎的射束权重优化方案。在剂量计算中使用随机体素在优化过程中提供了大部分所需的加速,并允许在合理时间内同时优化射束方向和射束权重。在射束权重优化算法的实现中,仅使用原始患者体素的10%进行剂量计算和成本函数评估。一种快速模拟退火算法控制射束排列的优化。在队列研究中,优化算法能够为五名患者生成临床可接受的计划。与标准计划相比,该算法使视神经的剂量均衡,并使脑干的平均剂量平均降低了4.4%(±1.9,1个标准差),p值 = 0.007。通过优化算法制定射束排列并未损害靶体积(PTV)的剂量分布。总之,射束方向和射束权重的同步优化已被开发出来以便在实际时间内常规使用。一项小型队列研究中的优化结果表明,与人工计划者制定的剂量分布相比,该优化能够可靠地产生临床可接受的剂量分布,并且可能能够改善剂量分布。

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