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首页> 外文期刊>Computational and mathematical methods in medicine >New Region-Scalable Discriminant and Fitting Energy Functional for Driving Geometric Active Contours in Medical Image Segmentation
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New Region-Scalable Discriminant and Fitting Energy Functional for Driving Geometric Active Contours in Medical Image Segmentation

机译:用于在医学图像分割中驾驶几何活动轮廓的新区域可扩展判别和拟合能量功能

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摘要

We propose a novel region-based geometric active contour modelthat uses region-scalable discriminant and fitting energy functional for handling the intensity inhomogeneity and weak boundary problems in medical image segmentation. The region-scalable discriminant and fitting energy functional is defined to capture the image intensity characteristics in local and global regions for driving the evolution of active contour. The discriminant term in the model aims at separating background and foreground in scalable regions while the fitting term tends to fit the intensity in these regions. This model is then transformed into a variational level set formulation with a level set regularization term for accurate computation. The new model utilizes intensity information in the local and global regions as much as possible; so it not only handles better intensity inhomogeneity, but also allows more robustness to noise and more flexible initialization in comparison to the original global region and regional-scalable based models. Experimental results for synthetic and real medical image segmentation show the advantages of the proposed method in terms of accuracy and robustness.
机译:我们提出了一种新的基于区域的几何有源轮廓模型,该判别和拟合能量功能用于处理医学图像分割中的强度不均匀性和弱边界问题。该区域可伸缩的判别和配合能量功能被定义为捕获局部和全局区域中的图像强度特征,以驱动活性轮廓的演变。模型中的判别术语旨在将背景和前景分离在可伸缩区域,而拟合项趋于适合这些区域的强度。然后将该模型转换为变形级别集配方,其具有级别的正则化术语以进行准确计算。新模型尽可能利用本地和全球地区的强度信息;因此,与原始全球区域和基于区域可扩展的模型相比,它不仅可以处理更好的强度不均匀性,还可以对噪声和更灵活的初始化进行更强大的初始化。合成和实验图像分割的实验结果表明了在准确性和鲁棒性方面的提出方法的优点。

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