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一种针对分次间变化的在线重新计划方案。

An on-line replanning scheme for interfractional variations.

作者信息

Ahunbay Ergun E, Peng Cheng, Chen Guang-Pei, Narayanan Sreeram, Yu Cedric, Lawton Colleen, Li X Allen

机构信息

Department of Radiation Oncology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

Med Phys. 2008 Aug;35(8):3607-15. doi: 10.1118/1.2952443.

Abstract

Ability of online adaptive replanning is desirable to correct for interfraction anatomic changes. A full-scope replanning/reoptimization with the current planning techniques takes too long to be practical. A novel online replanning strategy to correct for interfraction anatomic changes in real time is presented. The scheme consists of three steps: (1) rapidly delineating targets and organs at risk on the computed tomography of the day by modifying original planning contours using robust tools in a semiautomatic manner, (2) online segment aperture morphing (SAM) (adjusting beam/ segment apertures) by applying the spatial relationship between the planning target contour and the apertures to the new target contour, and (3) performing segment weight optimization (SWO) for the new apertures if necessary. The entire scheme was tested for direct-aperture-based IMRT on representative prostate and abdomen cases. Dose volume histograms obtained with the online scheme are practically equivalent to those obtained with full-scope reoptimization. For the days of small to moderate organ deformations, only the SAM is necessary, while for the large deformation days, both SAM and SWO are required to adequately account for the deformation. Both the SAM and SWO programs can be completed within 1 min, and the overall process can be completed within 10 min. The proposed SAM-SWO scheme is practically comparable to full-scope reoptimization, but is fast enough to be implemented for on-line adaptive replanning, enabling dose-guided RT.

摘要

在线自适应重新计划的能力对于校正分次间的解剖结构变化是很有必要的。采用当前的计划技术进行全面的重新计划/再优化耗时过长,不切实际。本文提出了一种新颖的在线重新计划策略,用于实时校正分次间的解剖结构变化。该方案包括三个步骤:(1)通过使用稳健工具以半自动方式修改原始计划轮廓,在当天的计算机断层扫描上快速勾勒靶区和危及器官;(2)通过将计划靶区轮廓与射野/子野孔径之间的空间关系应用于新的靶区轮廓,进行在线射野孔径变形(SAM)(调整射野/子野孔径);(3)必要时对新的孔径进行子野权重优化(SWO)。整个方案在代表性的前列腺和腹部病例上针对基于直接孔径的调强放疗进行了测试。通过在线方案获得的剂量体积直方图与通过全面重新优化获得的剂量体积直方图实际相当。对于器官变形较小至中等的日子,仅需进行SAM,而对于变形较大的日子,则需要SAM和SWO来充分考虑变形。SAM和SWO程序均可在1分钟内完成,整个过程可在10分钟内完成。所提出的SAM-SWO方案在实际效果上与全面重新优化相当,但速度足够快,可用于在线自适应重新计划,实现剂量引导放疗。

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