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一种用于强度调制放射治疗中快速射束角度选择的算法。

An algorithm for fast beam angle selection in intensity modulated radiotherapy.

机构信息

Healthcare Sector, Siemens Ltd., 403A, Senapati Bapat Road, Pune-411016, Maharashtra, India.

出版信息

Med Phys. 2010 Dec;37(12):6443-52. doi: 10.1118/1.3517866.

Abstract

PURPOSE

This article aims to introduce a novel algorithm for fast beam angle selection in intensity modulated radiotherapy (IMRT).

METHODS

The algorithm models the optimization problem as a beam angle ranking problem and chooses suitable beam angles according to their rank. A new parameter called "beam intensity profile perturbation score (BIPPS)" is used for ranking the beam angles. The BIPPS-based beam angle ranking implicitly accounts for the dose-volume effects of the involved structures. A simulated phantom case with obvious optimal beam angles is used to verify the validity of the presented technique. In addition, the efficiency of the algorithm was examined in three clinical cases (prostate, pancreas, and head and neck) in terms of DVH and dose distribution. In all cases, the judgment of the algorithm's efficiency was based on the comparison between plans with equidistant beams (equal-angle-plan) and plans with beams obtained using the algorithm (suitable-angle-plan).

RESULTS

It is observed from the study that the beam angle ranking function over BIPPS instantly picks up a suitable set of beam angles for a specific case. It takes only about 15 min for choosing the suitable beam angles even for the most complicated cases. The DVHs and dose distributions confirm that the proposed algorithm can efficiently reduce the mean or maximum dose to OARs, while guaranteeing the target coverage and dose uniformity. On the average, about 17% reduction in the mean dose to critical organs, such as rectum, bladder, kidneys and parotids, is observed. Also, about 12% (averaged) reduction in the maximum dose to critical organs (spinal cord) is observed in the clinical cases presented in this study.

CONCLUSIONS

This study demonstrates that the algorithm can be effectively applied to IMRT scenarios to get fast and case specific beam angle configurations.

摘要

目的

本文旨在介绍一种用于强度调制放射治疗(IMRT)中快速选择射束角度的新算法。

方法

该算法将优化问题建模为射束角度排序问题,并根据其排序选择合适的射束角度。使用一个新的参数“射束强度分布摄动评分(BIPPS)”来对射束角度进行排序。基于 BIPPS 的射束角度排序隐含地考虑了涉及结构的剂量体积效应。使用具有明显最优射束角度的模拟体模病例来验证所提出技术的有效性。此外,还根据剂量体积直方图(DVH)和剂量分布,在前列腺、胰腺和头颈部三个临床病例中检查了该算法的效率。在所有情况下,算法效率的判断都是基于等距射束(等角计划)和使用该算法获得的射束的计划(合适角度计划)之间的比较。

结果

研究表明,BIPPS 上的射束角度排序函数可以立即为特定病例选择一组合适的射束角度。即使对于最复杂的病例,选择合适的射束角度也只需要大约 15 分钟。DVH 和剂量分布证实,所提出的算法可以有效地降低 OAR 的平均或最大剂量,同时保证靶区覆盖和剂量均匀性。平均而言,观察到危及器官(如直肠、膀胱、肾脏和腮腺)的平均剂量降低了约 17%。此外,在本研究中呈现的临床病例中,观察到危及器官(脊髓)的最大剂量降低了约 12%(平均)。

结论

本研究表明,该算法可以有效地应用于 IMRT 场景,以获得快速且特定于病例的射束角度配置。

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