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A Combinatorial Solution for Model-Based Image Segmentation and Real-Time Tracking

机译:基于模型的图像分割和实时跟踪的组合解决方案

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摘要

We propose a combinatorial solution to determine the optimal elastic matching of a deformable template to an image. The central idea is to cast the optimal matching of each template point to a corresponding image pixel as a problem of finding a minimum cost cyclic path in the three-dimensional product space spanned by the template and the input image. We introduce a cost functional associated with each cycle, which consists of three terms: a data fidelity term favoring strong intensity gradients, a shape consistency term favoring similarity of tangent angles of corresponding points, and an elastic penalty for stretching or shrinking. The functional is normalized with respect to the total length to avoid a bias toward shorter curves. Optimization is performed by Lawler's Minimum Ratio Cycle algorithm parallelized on state-of-the-art graphics cards. The algorithm provides the optimal segmentation and point correspondence between template and segmented curve in computation times that are essentially linear in the number of pixels. To the best of our knowledge, this is the only existing globally optimal algorithm for real-time tracking of deformable shapes.
机译:我们提出了一种组合解决方案,以确定可变形模板与图像的最佳弹性匹配。中心思想是将每个模板点的最佳匹配转换为对应的图像像素,这是在模板和输入图像所跨越的三维乘积空间中找到最小成本循环路径的问题。我们介绍了与每个循环相关的成本函数,其中包括三个项:一个数据保真度项,它支持强的强度梯度;一个形状一致性项,它支持相应点的切线角的相似性;以及拉伸或收缩时的弹性损失。相对于总长度对功能进行归一化,以避免偏向较短的曲线。优化是通过Lawler的最小比率循环算法在最先进的图形卡上并行执行的。该算法在计算时间上提供了模板和分段曲线之间的最佳分段和点对应关系,该计算时间在像素数量上基本上是线性的。据我们所知,这是目前唯一可实时跟踪可变形形状的全局最优算法。

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