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头颈部自适应放疗的在线重计划方法。

An on-line replanning method for head and neck adaptive radiotherapy.

机构信息

Department of Radiation Oncology, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, Wisconsin 53226, USA.

出版信息

Med Phys. 2009 Oct;36(10):4776-90. doi: 10.1118/1.3215532.

Abstract

Daily setup for head and neck (HN) radiotherapy (RT) can vary randomly due to neck rotation and anatomy change. These differences cannot be totally corrected by the current practice of image guided RT with translational repositioning. The authors present a novel rapid correction scheme that can be used on-line to correct both interfractional setup variation and anatomy change for HN RT. The scheme consists of two major steps: (1) Segment aperture morphing (SAM) and (2) segment weight optimization (SWO). SAM is accomplished by applying the spatial relationship between the apertures and the contours of the planning target and organs at risk (OARs) to the new target and OAR contours. The new target contours are transferred from planning target contours to the CT of the day by means of deformable registration (MIMVISTA). The dose distribution for each new aperture was generated using a planning system with a fast dose engine and hardware and was input into a newly developed SWO package using fast sequential quadratic programming. The entire scheme was tested based on the daily CT images acquired for representative HN IMRT cases treated with a linac and CT-on-Rails combo. It was found that the target coverage and/or OAR sparing was degraded based on the CT of the day with the current standard repositioning from rigid registration. This degradation can be corrected by the SAM/SWO scheme. The target coverage and OAR sparing for the SAM/SWO plans were found to be equivalent to the original plan. The SAM/SWO process took 5-8 min for the head and neck cases studied. The proposed aperture morphing with weight optimization is an effective on-line approach for correcting interfractional patient setup and anatomic changes for head and neck cancer radiotherapy.

摘要

由于颈部旋转和解剖结构变化,头颈部(HN)放射治疗(RT)的日常设置可能会随机变化。这些差异不能通过目前使用带有平移重新定位的图像引导 RT 的实践完全纠正。作者提出了一种新颖的快速校正方案,可以在线用于校正 HN RT 的分次间设置变化和解剖变化。该方案由两个主要步骤组成:(1)孔径形态(SAM)和(2)段权重优化(SWO)。SAM 通过将孔径与计划靶区和危及器官(OAR)的轮廓之间的空间关系应用于新的靶区和 OAR 轮廓来完成。通过使用可变形配准(MIMVISTA)将新的靶区轮廓从计划靶区轮廓转移到当天的 CT 上。使用具有快速剂量引擎和硬件的规划系统为每个新孔径生成剂量分布,并将其输入到使用快速顺序二次规划开发的新 SWO 包中。该方案基于使用直线加速器和 CT-on-Rails 组合治疗的代表性 HN IMRT 病例每天获取的 CT 图像进行了测试。结果发现,基于当天的 CT,通过刚性配准从当前标准重新定位会降低目标覆盖范围和/或 OAR 保留率。这种退化可以通过 SAM/SWO 方案来纠正。SAM/SWO 计划的靶区覆盖范围和 OAR 保留率与原始计划相当。SAM/SWO 过程对于所研究的头颈部病例需要 5-8 分钟。提出的带有权重优化的孔径形态变化是一种有效的在线方法,可用于校正头颈部癌症放射治疗的分次间患者设置和解剖变化。

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