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Cortical Correspondence via Sulcal Curve-Constrained Spherical Registration with Application to Macaque Studies

机译:通过沟曲线约束的球形配准的皮层通信及其在猕猴研究中的应用

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In this work, we present a novel cortical correspondence method with application to the macaque brain. The correspondence method is based on sulcal curve constraints on a spherical deformable registration using spherical harmonics to parameterize the spherical deformation. Starting from structural MR images, we first apply existing preprocessing steps: brain tissue segmentation using the Automatic Brain Classification tool (ABC), as well as cortical surface reconstruction and spherical parametrization of the cortical surface via Constrained Laplacian-based Automated Segmentation with Proximities (CLASP). Then, initial correspondence between two cortical surfaces is automatically determined by a curve labeling method using sulcal landmarks extracted along sulcal fundic regions. Since the initial correspondence is limited to sulcal regions, we use spherical harmonics to extrapolate and regularize this correspondence to the entire cortical surface. To further improve the correspondence, we compute a spherical registration that optimizes the spherical harmonic parameterized deformation using a metric that incorporates the error over the sulcal landmarks as well as the normalized cross correlation of sulcal depth maps over the whole cortical surface. For evaluation, a normal 18-months-old macaque brain (for both left and right hemispheres) was matched to a prior macaque brain template with 9 manually labeled, major sulcal curves. The results show successful registration using the proposed registration approach. Evaluation results for optimal parameter settings are presented as well.
机译:在这项工作中,我们提出了一种具有应用于猕猴的皮质对应方法。对应方法基于使用球形谐波的球形可变形配准对球形变形来参数化的硫曲线约束。从结构MR图像开始,我们首先应用现有的预处理步骤:使用自动脑分类工具(ABC)进行脑组织分割,以及通过基于Laplacian的自动分割的皮质表面的皮质表面重建和皮质表面的球形参数化与近距离(扣环)。然后,通过使用沿硫基极地区域提取的硫的标签方法,通过曲线标记方法自动确定两个皮质表面之间的初始对应。由于初始对应物限于硫的区域,因此我们使用球形谐波来推断并将这种对应的对应于整个皮质表面进行。为了进一步改进对应关系,我们计算使用将误差的度量与硫的地标一起优化的球面注册,该球面注册,该球形注册可以利用误差并在整个皮质表面上呈现出误差的误差以及硫深图的标准化交叉相关性。对于评估,正常的18个月末期的猕猴(左右半球)与先前标记的主要硫曲线的先前猕猴脑模板相匹配。结果显示使用拟议的登记方式进行成功注册。还提供了最佳参数设置的评估结果。

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