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ADJOINT CURRENT-BASED APPROACHES TO PROSTATE BRACHYTHERAPY OPTIMIZATION

机译:前列腺癌根治性治疗的基于电流的辅助方法

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This paper builds on previous work done at the University of Wisconsin - Madison to employ the adjoint concept of nuclear reactor physics in the so-called greedy heuristic of brachytherapy optimization. Whereas that previous work focused on the adjoint flux, I.e. the importance, this work has included use of the adjoint current to increase the amount of information available in optimizing. Two current-based approaches were developed for 2-D problems, and each was compared to the most recent form of the flux-based methodology. The first method aimed to take a treatment plan from the flux-based greedy heuristic and adjust via application of the current-displacement, or a vector displacement based on a combination of tissue (adjoint) and seed (forward) currents acting as forces on a seed. This method showed promise in improving key urethral and rectal dosimetric quantities. The second method uses the normed current-displacement as the greedy criterion such that seeds are placed in regions of least force. This method, coupled with the dose-update scheme, generated treatment plans with better target irradiation and sparing of the urethra and normal tissues than the flux-based approach. Tables of these parameters are given for both approaches. In summary, these preliminary results indicate adjoint current methods are useful in optimization and further work in 3-D should be performed.
机译:本文基于威斯康星大学麦迪逊分校以前所做的工作,在所谓的近距离放射疗法优化贪婪启发法中采用了核反应堆物理学的伴随概念。鉴于先前的工作重点是伴随通量,即重要的是,这项工作包括使用伴随电流来增加优化中可用的信息量。针对二维问题开发了两种基于电流的方法,并将每种方法与基于通量的方法的最新形式进行了比较。第一种方法旨在从基于通量的贪婪启发式算法中得出治疗计划,并通过应用电流位移或基于组织(伴随)和种子(正向)电流的组合的矢量位移来进行调整,该电流起着作用于种子。这种方法在改善关键的尿道和直肠剂量方面显示出了希望。第二种方法使用规范的电流位移作为贪婪标准,以便将种子放置在作用力最小的区域中。与基于通量的方法相比,该方法与剂量更新方案相结合,生成了具有更好的目标照射以及尿道和正常组织保留的治疗方案。给出了两种方法的这些参数表。总而言之,这些初步结果表明,当前的辅助方法在优化中很有用,应在3-D中进行进一步的工作。

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