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Interactive contour delineation and refinement in treatment planning of image‐guided radiation therapy

机译:影像引导放射治疗的治疗计划中的交互式轮廓描绘和优化

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The accurate contour delineation of the target and/or organs at risk (OAR) is essential in treatment planning for image-guided radiation therapy (IGRT). Although many automatic contour delineation approaches have been proposed, few of them can fulfill the necessities of applications in terms of accuracy and efficiency. Moreover, clinicians would like to analyze the characteristics of regions of interests (ROI) and adjust contours manually during IGRT. Interactive tool for contour delineation is necessary in such cases. In this work, a novel approach of curve fitting for interactive contour delineation is proposed. It allows users to quickly improve contours by a simple mouse click. Initially, a region which contains interesting object is selected in the image, then the program can automatically select important control points from the region boundary, and the method of Hermite cubic curves is used to fit the control points. Hence, the optimized curve can be revised by moving its control points interactively. Meanwhile, several curve fitting methods are presented for the comparison. Finally, in order to improve the accuracy of contour delineation, the process of the curve refinement based on the maximum gradient magnitude is proposed. All the points on the curve are revised automatically towards the positions with maximum gradient magnitude. Experimental results show that Hermite cubic curves and the curve refinement based on the maximum gradient magnitude possess superior performance on the proposed platform in terms of accuracy, robustness, and time calculation. Experimental results of real medical images demonstrate the efficiency, accuracy, and robustness of the proposed process in clinical applications.PACS number: 87.53.Tf
机译:靶标和/或处于危险中的器官(OAR)的精确轮廓描绘对于图像引导放射治疗(IGRT)的治疗计划至关重要。尽管已经提出了许多自动轮廓描绘方法,但是在精确度和效率方面,它们中很少能满足应用的需要。此外,临床医生想分析感兴趣区域(ROI)的特征并在IGRT期间手动调整轮廓。在这种情况下,必须使用交互式工具来勾勒轮廓。在这项工作中,提出了一种用于交互式轮廓描绘的曲线拟合的新方法。它使用户可以通过简单的鼠标单击快速改善轮廓。首先,在图像中选择一个包含感兴趣对象的区域,然后程序可以从区域边界自动选择重要的控制点,然后使用Hermite三次曲线的方法拟合控制点。因此,可以通过交互移动控制点来修改优化曲线。同时,提出了几种曲线拟合方法进行比较。最后,为了提高轮廓描绘的精度,提出了基于最大梯度幅值的曲线细化方法。曲线上的所有点将自动朝最大梯度幅度的位置修改。实验结果表明,在精度,鲁棒性和时间计算方面,Hermite三次曲线和基于最大梯度量的曲线细化在所提出的平台上均具有优越的性能。真实医学图像的实验结果证明了该方法在临床应用中的效率,准确性和鲁棒性。PACS编号:87.53.Tf

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