一种改进的主动轮廓模型轮廓初始化算法

Fang Yanbin, Liu Caixia, Zhang Bingsen, Pan Zhenkuan
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引用次数: 21

摘要

本文在详细分析当前活动轮廓模型存在的干扰下性能差、计算量大、无法收敛到复杂或粗糙轮廓以及初始轮廓设置困难等问题的基础上,提出了一种改进的GVF Snake模型轮廓初始化算法。该方法通过连接基于小波变换的多尺度边缘检测方法得到的不同分辨率的初始点,并适当控制梯度矢量流场迭代次数,有效地解决了复杂或粗糙轮廓初始化问题。实验表明,该方法能够准确地将初始轮廓设置在接近目标轮廓的位置,并成功地提取出具有干涉边缘和点的目标轮廓。新的轮廓初始化算法进一步降低了计算成本,提高了抗干扰能力,扩展了GVF Snake模型的应用范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Improved Algorithm of Contour Initialization in Active Contour Model
An improved algorithm of Contour Initialization in GVF Snake Model is proposed in this paper based on detailed analysis of the problems in current active contour models: poor performance under interference, large computational cost, inability to converge to complex or rough contours and difficulty for setting initial contour, etc. Our method efficiently solved the problems in complex or rough contours initialization by connecting the initial points of different resolutions obtained by multi-scale edge detection methods based on wavelet transform and suitably controlling the number of GVF force field iterations. Experiments show that the initial contour can be accurately set close to the objective contour and successfully extract the objective contours with interferential edges and points. The new contour initialization algorithm has further reduced computational cost, improved the anti-jamming ability and extended the application range of GVF Snake model.
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