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首页> 外文期刊>Physics in medicine and biology. >Spherical cluster analysis for beam angle optimization in intensity-modulated radiation therapy treatment planning.
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Spherical cluster analysis for beam angle optimization in intensity-modulated radiation therapy treatment planning.

机译:球形聚类分析,用于在强度调制的放射治疗治疗计划中优化射束角度。

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摘要

An intuitive heuristic to establish beam configurations for intensity-modulated radiation therapy is introduced as an extension of beam ensemble selection strategies applying scalar scoring functions. It is validated by treatment plan comparisons for three intra-cranial, pancreas, and prostate cases each. Based on a patient specific matrix listing the radiological quality of candidate beam directions individually for every target voxel, a set of locally ideal beam angles is generated. The spherical distribution of locally ideal beam angles is characteristic for every treatment site and patient: ideal beam angles typically cluster around distinct orientations. We interpret the cluster centroids, which are identified with a spherical K-means algorithm, as irradiation angles of an intensity-modulated radiation therapy treatment plan. The fluence profiles are subsequently optimized during a conventional inverse planning process. The average computation time for the pre-optimization of a beam ensemble is six minutes on a state-of-the-art work station. The treatment planning study demonstrates the potential benefit of the proposed beam angle optimization strategy. For the three prostate cases under investigation, the standard treatment plans applying nine coplanar equi-spaced beams and treatment plans applying an optimized non-coplanar nine-beam ensemble yield clinically comparable dose distributions. For symmetric patient geometries, the dose distribution formed by nine equi-spaced coplanar beams cannot be improved significantly. For the three pancreas and intra-cranial cases under investigation, the optimized non-coplanar beam ensembles enable better sparing of organs at risk while guaranteeing equivalent target coverage. Beam angle optimization by spherical cluster analysis shows the biggest impact for target volumes located asymmetrically within the patient and close to organs at risk.
机译:引入直观的启发式方法来建立强度调制放射治疗的射束配置,作为应用标量评分功能的射束集成选择策略的扩展。通过针对三个颅内,胰腺和前列腺病例的治疗计划比较来验证这一点。基于患者特定矩阵,该矩阵分别列出了每个目标体素的候选射线方向的放射线质量,生成了一组局部理想的射线角度。局部理想光束角的球形分布是每个治疗部位和患者的特征:理想光束角通常围绕不同的方向聚集。我们将通过球面K均值算法确定的簇质心解释为强度调制放射治疗方案的照射角度。在常规的反向计划过程中,通量分布随后被优化。在最先进的工作站上,对光束集成进行预优化的平均计算时间为六分钟。治疗计划研究证明了所提出的束角优化策略的潜在益处。对于正在研究的三个前列腺病例,应用九个共面等距光束的标准治疗计划和应用优化的非共面九束整体的治疗计划可产生临床上可比的剂量分布。对于对称的患者几何形状,九个等距共面光束形成的剂量分布无法显着改善。对于正在研究的三个胰腺和颅内病例,优化的非共面束集成体可以更好地保留处于危险中的器官,同时保证相等的靶标覆盖率。通过球面聚类分析进行的射束角度优化显示,对不对称位于患者体内且靠近有风险器官的目标体积的影响最大。

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