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采用单等中心容积调强弧形放疗优化治疗几何结构以降低多发脑转移瘤放射外科治疗中的正常脑剂量

Optimization of Treatment Geometry to Reduce Normal Brain Dose in Radiosurgery of Multiple Brain Metastases with Single-Isocenter Volumetric Modulated Arc Therapy.

作者信息

Wu Qixue, Snyder Karen Chin, Liu Chang, Huang Yimei, Zhao Bo, Chetty Indrin J, Wen Ning

机构信息

Department of Radiation Oncology, Henry Ford Health System, MI, USA.

出版信息

Sci Rep. 2016 Sep 30;6:34511. doi: 10.1038/srep34511.

Abstract

Treatment of patients with multiple brain metastases using a single-isocenter volumetric modulated arc therapy (VMAT) has been shown to decrease treatment time with the tradeoff of larger low dose to the normal brain tissue. We have developed an efficient Projection Summing Optimization Algorithm to optimize the treatment geometry in order to reduce dose to normal brain tissue for radiosurgery of multiple metastases with single-isocenter VMAT. The algorithm: (a) measures coordinates of outer boundary points of each lesion to be treated using the Eclipse Scripting Application Programming Interface, (b) determines the rotations of couch, collimator, and gantry using three matrices about the cardinal axes, (c) projects the outer boundary points of the lesion on to Beam Eye View projection plane, (d) optimizes couch and collimator angles by selecting the least total unblocked area for each specific treatment arc, and (e) generates a treatment plan with the optimized angles. The results showed significant reduction in the mean dose and low dose volume to normal brain, while maintaining the similar treatment plan qualities on the thirteen patients treated previously. The algorithm has the flexibility with regard to the beam arrangements and can be integrated in the treatment planning system for clinical application directly.

摘要

使用单等中心容积调强弧形治疗(VMAT)治疗多发脑转移瘤患者已被证明可缩短治疗时间,但代价是对正常脑组织的低剂量更大。我们开发了一种高效的投影求和优化算法来优化治疗几何形状,以减少单等中心VMAT治疗多发转移瘤时对正常脑组织的剂量。该算法:(a)使用Eclipse脚本应用程序编程接口测量每个待治疗病变外边界点的坐标,(b)使用关于坐标轴的三个矩阵确定治疗床、准直器和机架的旋转角度,(c)将病变的外边界点投影到射野视角(BEV)投影平面上,(d)通过为每个特定治疗弧选择最小的总未遮挡面积来优化治疗床和准直器角度,以及(e)生成具有优化角度的治疗计划。结果显示,在之前治疗的13例患者中,正常脑组织的平均剂量和低剂量体积显著降低,同时保持了相似的治疗计划质量。该算法在射束布置方面具有灵活性,可直接集成到治疗计划系统中用于临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e2e/5043272/6d8108582eb3/srep34511-f1.jpg

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