An on-line replanning scheme for interfractional variationsa)

光圈(计算机存储器) 变形 计算机科学 范围(计算机科学) 方案(数学) 直线(几何图形) 计算机视觉 人工智能 数学 物理 几何学 声学 数学分析 程序设计语言
作者
E Ahunbay,Cheng Peng,Guang‐Pei Chen,Sreeram Narayanan,C Yu,C.A. Lawton,X. Allen Li
出处
期刊:Medical Physics [Wiley]
卷期号:35 (8): 3607-3615 被引量:113
标识
DOI:10.1118/1.2952443
摘要

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.
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