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Neuro-Dynamic Programming for Radiation Treatment Planning

机译:神经动力学规划的放射治疗计划

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摘要

In many cases a radiotherapy treatment is delivered as a series of smaller dosages over a period of time. Currently, it is difficult to determine the actual dose that has been delivered at each stage, precluding the use of adaptive treatment plans. However, new generations of machines will give more accurate information of actual dose delivered, allowing a planner to compensate for errors in delivery. We formulate a model of the day-to-day planning problem as a stochastic linear program and exhibit the gains that can be achieved by incorporating uncertainty about errors during treatment into the planning process. Due to size and time restrictions, the model becomes intractable for realistic instances. We show how neuro-dynamic programming can be used to approximate the stochastic solution, and derive results from our models for realistic time periods. These results allow us to generate practical rules of thumb that can be immediately implemented in current planning technologies.ududThis material is based on research partially supported by the National Science Foundation Grants ACI-0113051 and CCR-9972372, the Air Force Office of Scientific Research Grant F49620-01-1-0040, Microsoft Corporation and the Guggenheim Foundation.
机译:在许多情况下,放射治疗会在一段时间内以一系列较小的剂量提供。目前,很难确定每个阶段已交付的实际剂量,这排除了使用适应性治疗计划的可能性。但是,新一代机器将提供有关实际输送剂量的更准确信息,从而使计划人员可以补偿输送中的错误。我们将日常计划问题的模型公式化为随机线性程序,并展示将处理过程中的错误不确定性纳入计划过程可以实现的收益。由于大小和时间的限制,该模型对于实际实例变得难以处理。我们展示了如何使用神经动力学程序设计来逼近随机解,并从我们的模型中得出真实时间段的结果。这些结果使我们能够生成可在当前计划技术中立即实施的实用经验法则。 ud ud本材料基于美国国家科学基金会授权ACI-0113051和CCR-9972372(美国空军办公室)的部分研究微软公司和古根海姆基金会的科研补助金F49620-01-1-0040。

著录项

  • 作者单位
  • 年度 2002
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  • 原文格式 PDF
  • 正文语种 {"code":"cs","name":"Czech","id":5}
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