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Segmentation and measurement of the cortex from 3-D MR images using coupled-surfaces propagation

机译:使用耦合表面传播从3-D MR图像分割和测量皮质

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摘要

The cortex is the outermost thin layer of gray matter in the brain; geometric measurement of the cortex helps in understanding brain anatomy and function. In the quantitative analysis of the cortex from MR images, extracting the structure and obtaining a representation for various measurements are key steps. While manual segmentation is tedious and labor intensive, automatic reliable efficient segmentation and measurement of the cortex remain challenging problems, due to its convoluted nature. Here, the authors' present a new approach of coupled-surfaces propagation, using level set methods to address such problems. Their method is motivated by the nearly constant thickness of the cortical mantle and takes this tight coupling as an important constraint. By evolving two embedded surfaces simultaneously, each driven by its own image-derived information while maintaining the coupling, a final representation of the cortical bounding surfaces and an automatic segmentation of the cortex are achieved. Characteristics of the cortex, such as cortical surface area, surface curvature, and cortical thickness, are then evaluated. The level set implementation of surface propagation offers the advantage of easy initialization, computational efficiency, and the ability to capture deep sulcal folds. Results and validation from various experiments on both simulated and real three dimensional (3-D) MR images are provided.
机译:皮质是大脑灰质最外层的薄层。皮质的几何测量有助于理解大脑的解剖结构和功能。在从MR图像对皮质进行定量分析时,提取结构并获得各种测量结果的表示是关键步骤。尽管手动分割是繁琐且费力的工作,但由于其复杂的特性,自动可靠的有效分割和皮质测量仍然是具有挑战性的问题。在这里,作者提出了一种新的耦合面传播方法,它使用水平集方法来解决此类问题。他们的方法受到皮层覆盖层几乎恒定的厚度的激励,并将这种紧密的耦合作为重要的约束条件。通过同时演化两个嵌入的表面,每个嵌入表面都由其自身的图像派生信息驱动,同时保持耦合,从而实现了皮质边界表面的最终表示和皮质的自动分割。然后评估皮质的特征,例如皮质表面积,表面曲率和皮质厚度。表面传播的水平集实现方式具有易于初始化,计算效率高以及捕获深沟褶皱的能力。提供了来自模拟和真实三维(3-D)MR图像的各种实验的结果和验证。

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