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首页> 外文期刊>Annals of Operations Research >The Least-Intensity Feasible Solution for Aperture-Based Inverse Planning in Radiation Therapy
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The Least-Intensity Feasible Solution for Aperture-Based Inverse Planning in Radiation Therapy

机译:基于孔径的放射治疗逆计划的最小强度可行解决方案

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摘要

Aperture-based inverse planning (ABIP) for intensity modulated radiation therapy (IMRT) treatment planning starts with external radiation fields (beams) that fully conform to the target(s) and then superimposes sub-fields called segments to achieve complex shaping of 3D dose distributions. The segments' intensities are determined by solving a feasibility problem. The least-intensity feasible (LIF) solution, proposed and studied here, seeks a feasible solution closest to the origin, thus being of least intensity or least energy. We present a new iterative, primal-dual, algorithm for finding the LIF solution and explain our experimental observation that Cimmino's algorithm for feasibility actually converges to a close approximation of the LIF solution. Comparison with linear programming shows that Cimmino's algorithm has the additional advantage of generating much smoother solutions.
机译:用于强度调制放射治疗(IMRT)治疗计划的基于孔径的逆向计划(ABIP)从完全符合目标的外部辐射场(光束)开始,然后叠加称为段的子场,以实现3D剂量的复杂整形分布。通过解决可行性问题来确定段的强度。本文提出和研究的最小强度可行(LIF)解决方案寻求最接近原点的可行解决方案,因此其强度或能量最低。我们提出了一种新的迭代对偶算法,用于查找LIF解决方案,并解释了我们的实验观察结果,即Cimmino的可行性算法实际上收敛于LIF解决方案的近似值。与线性规划的比较表明,Cimmino的算法还具有生成更平滑解的额外优势。

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