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首页> 外文期刊>Medical Physics >Search for IMRT inverse plans with piecewise constant fluence maps using compressed sensing techniques.
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Search for IMRT inverse plans with piecewise constant fluence maps using compressed sensing techniques.

机译:使用压缩传感技术使用分段恒定注量图搜索IMRT逆计划。

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摘要

An intensity-modulated radiation therapy (IMRT) field is composed of a series of segmented beams. It is practically important to reduce the number of segments while maintaining the conformality of the final dose distribution. In this article, the authors quantify the complexity of an IMRT fluence map by introducing the concept of sparsity of fluence maps and formulate the inverse planning problem into a framework of compressing sensing. In this approach, the treatment planning is modeled as a multiobjective optimization problem, with one objective on the dose performance and the other on the sparsity of the resultant fluence maps. A Pareto frontier is calculated, and the achieved dose distributions associated with the Pareto efficient points are evaluated using clinical acceptance criteria. The clinically acceptable dose distribution with the smallest number of segments is chosen as the final solution. The method is demonstrated in the application of fixed-gantry IMRT on a prostate patient. The result shows that the total number of segments is greatly reduced while a satisfactory dose distribution is still achieved. With the focus on the sparsity of the optimal solution, the proposed method is distinct from the existing beamlet- or segment-based optimization algorithms.
机译:强度调制放射治疗(IMRT)场由一系列分段光束组成。在保持最终剂量分布的一致性的同时,减少段数在实践中非常重要。在本文中,作者通过引入能量密度图稀疏性的概念,将IMRT能量密度图的复杂性量化,并将逆规划问题表述为压缩感知的框架。在这种方法中,将治疗计划建模为一个多目标优化问题,一个目标是剂量性能,另一个目标是最终通量图的稀疏性。计算帕累托边界,并使用临床接受标准评估与帕累托有效点相关的已达到剂量分布。选择具有最小数量节段的临床可接受剂量分布作为最终解决方案。该方法在固定机架IMRT在前列腺患者上的应用中得到了证明。结果表明,节段的总数大大减少,同时仍获得令人满意的剂量分布。着眼于最优解的稀疏性,所提出的方法与现有的基于小波或基于分段的优化算法不同。

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