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A Method for Automated Cortical Surface Registration and Labeling

机译:一种自动化皮质表面注册和标记的方法

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Registration and delineation of anatomical features in MRI of the human brain play an important role in the investigation of brain development and disease. Accurate, automatic and computationally efficient cortical surface registration and delineation of surface-based landmarks, including regions of interest (ROIs) and sulcal curves (sulci), remain challenging problems due to substantial variation in the shapes of these features across populations. We present a method that performs a fast and accurate registration, labeling and sulcal delineation of brain images. The new method presented in this paper uses a multiresolution, curvature based approach to perform a registration of a subject brain surface model to a delineated atlas surface model; the atlas ROIs and sulcal curves are then mapped to the subject brain surface. A geodesic curvature flow on the cortical surface is then used to refine the locations of the sulcal curves sulci and label boundaries further, such that they follow the true sulcal fundi more closely. The flow is formulated using a level set based method on the cortical surface, which represents the curves as zero level sets. We also incorporate a curvature based weighting that drives the curves to the bottoms of the sulcal valleys in the cortical folds. Finally, we validate our new approach by comparing sets of automatically delineated sulcal curves it produced to corresponding sets of manually delineated sulcal curves. Our results indicate that the proposed method is able to find these landmarks accurately.
机译:人脑MRI中解剖学特征的注册和描绘在脑发育和疾病调查中发挥着重要作用。准确,自动和计算上有效的皮质表面注册和描绘基于表面的地标,包括感兴趣的地区(ROI)和硫曲线(Sulci),由于这些特征的形状跨越群体的形状而持挑战性问题。我们介绍了一种方法,该方法进行快速准确的注册,标记和硫划分的脑图像。本文呈现的新方法采用多分辨率,基于曲率的基于曲率的方法来对受试者脑表面模型进行登记到划算的地图集表面模型;然后将地图集罗斯和硫曲线映射到对象脑表面。然后使用皮质表面上的测地曲率流动进一步优化硫曲线和标记边界的位置,使得它们更接近真正的硫基底。在皮质表面上使用基于水平集的方法配制流程,该方法表示为零电平集的曲线。我们还包含一种基于曲率的权重,将曲线驱动到皮质折叠中的硫谷的底部。最后,我们通过将其产生的自动描绘的硫曲线集进行比较来验证我们的新方法,它产生给相应的手动描绘的硫曲线组。我们的结果表明,该方法能够准确地找到这些地标。

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