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首页> 外文期刊>SIAM Journal on Optimization: A Publication of the Society for Industrial and Applied Mathematics >A column generation approach to radiation therapy treatment planning using aperture modulation
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A column generation approach to radiation therapy treatment planning using aperture modulation

机译:使用孔径调制的放射疗法治疗计划的列生成方法

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This paper considers the problem of radiation therapy treatment planning for cancer patients. During radiation therapy, beams of radiation pass through a patient. This radiation kills both cancerous and normal cells, so the radiation therapy must be carefully planned to deliver a clinically prescribed dose to certain targets while sparing nearby organs and tissues. Currently, a technique called intensity modulated radiation therapy (IMRT) is considered to be the most effective radiation therapy for many forms of cancer. In IMRT, the patient is irradiated from several different directions. From each direction, one or more irregularly shaped radiation beams of uniform intensity are used to deliver the treatment. This paper deals with the problem of designing a treatment plan for IMRT that determines an optimal set of such shapes ( called apertures) and their corresponding intensities. This is in contrast with established two-stage approaches where, in the first phase, each radiation beam is viewed as consisting of a set of individual beamlets, each with its own intensity. A second phase is then needed to approximate and decompose the optimal intensity pro. le into a set of apertures with corresponding intensities. The problem is formulated as a large-scale convex programming problem, and a column generation approach to deal with its dimensionality is developed. The associated pricing problem determines, in each iteration, one or more apertures to be added to our problem. Several variants of this pricing problem are discussed, each corresponding to a particular set of constraints that the apertures must satisfy in one or more of the currently available types of commercial IMRT equipment. Polynomial- time algorithms are presented for solving each of these variants of the pricing problem to optimality. Finally, the effectiveness of our approach is demonstrated on clinical data.
机译:本文考虑了针对癌症患者的放射治疗计划的问题。在放射治疗期间,放射束穿过患者。这种辐射会杀死癌细胞和正常细胞,因此必须精心计划放射疗法,以在不影响附近器官和组织的情况下向某些靶标提供临床规定剂量。当前,被称为强度调制放射疗法(IMRT)的技术被认为是针对多种形式的癌症的最有效的放射疗法。在IMRT中,从几个不同的方向照射患者。从每个方向,使用一个或多个强度均匀的不规则形状的辐射束来进行治疗。本文涉及为IMRT设计治疗计划的问题,该计划确定此类形状(称为光圈)及其对应强度的最佳集合。这与已建立的两阶段方法相反,在两阶段方法中,在第一阶段,每个辐射束被视为由一组单独的子束组成,每个子束具有自己的强度。然后需要第二阶段来近似和分解最佳强度pro。进入具有相应强度的一组孔中。该问题被公式化为大规模凸规划问题,并提出了一种处理其维数的列生成方法。相关的定价问题在每次迭代中确定一个或多个要添加到我们的问题中的漏洞。讨论了此定价问题的几种变体,每种变体对应于在一种或多种当前可用类型的商用IMRT设备中孔必须满足的一组特定约束。提出了多项式时间算法,用于将定价问题的这些变体中的每一个求解为最优。最后,我们的方法的有效性在临床数据上得到了证明。

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