首页> 外文期刊>Computerized Medical Imaging and Graphics: The Official Jounal of the Computerized Medical Imaging Society >Active contours driven by local and global intensity fitting energy with application to brain MR image segmentation.
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Active contours driven by local and global intensity fitting energy with application to brain MR image segmentation.

机译:由局部和全局强度拟合能量驱动的活动轮廓应用于脑MR图像分割。

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摘要

In this paper, we propose an improved region-based active contour model in a variational level set formulation. We define an energy functional with a local intensity fitting term, which induces a local force to attract the contour and stops it at object boundaries, and an auxiliary global intensity fitting term, which drives the motion of the contour far away from object boundaries. Therefore, the combination of these two forces allows for flexible initialization of the contours. This energy is then incorporated into a level set formulation with a level set regularization term that is necessary for accurate computation in the corresponding level set method. The proposed model is first presented as a two-phase level set formulation and then extended to a multi-phase formulation. Experimental results show the advantages of our method in terms of accuracy and robustness. In particular, our method has been applied to brain MR image segmentation with desirable results.
机译:在本文中,我们提出了一种改进的基于区域的活动轮廓模型,该模型采用了变分水平集公式。我们用局部强度拟合项定义一个能量函数,该局部强度拟合项引起局部力吸引轮廓并将其停在对象边界处,而辅助全局强度拟合项则驱动轮廓运动远离对象边界。因此,这两个力的组合允许轮廓的灵活初始化。然后将此能量合并到具有水平集正则项的水平集公式中,该水平集正则项对于相应的水平集方法中的精确计算是必需的。所提出的模型首先以两阶段水平集公式表示,然后扩展为多阶段公式。实验结果表明了我们方法在准确性和鲁棒性方面的优势。特别是,我们的方法已应用于脑部MR图像分割,并获得了理想的结果。

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