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Construction of spatiotemporal infant cortical surface atlas of rhesus macaque

机译:猕猴时空婴儿皮质表面图谱的构建

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As a widely used animal model in MR imaging studies, rhesus macaque helps to better understand both normal and abnormal neural development in the human brain. However, the available adult macaque brain atlases are not well suitable for study of brain development at the early postnatal stage, since this stage undergoes dramatic changes in brain appearances and structures. Building age matched atlases for this critical period is thus highly desirable yet still lacking. In this paper, we construct the first spatiotemporal (4D) cortical surface atlases for rhesus macaques from 2 weeks to 24 months, using 138 longitudinal MRI scans from 32 healthy rhesus monkeys. Specifically, we first perform intra-subject cortical surface registration to obtain within-subject mean cortical surfaces. Then, we perform inter-subject registration of within-subject mean surfaces to obtain unbiased and longitudinally-consistent 4D cortical surface atlases. Based on our 4D rhesus monkey atlases, we further chart the first developmental-trajectories-based parcellation maps using the local surface area and spectral clustering algorithm. Our 4D macaque surface atlases and parcellation maps will greatly facilitate early brain development studies of macaques.
机译:作为在MR成像研究中广泛使用的动物模型,恒河猴有助于更好地了解人脑的正常和异常神经发育。但是,现有的成年猕猴脑图谱不太适合在出生后早期研究大脑发育,因为该阶段的大脑外观和结构发生了巨大变化。因此,非常需要但仍缺乏在这个关键时期匹配年龄的地图集。在本文中,我们使用32只健康恒河猴的138幅纵向MRI扫描图像,为2周至24个月的恒河猴构建了第一个时空(4D)皮质表面地图集。具体来说,我们首先执行受试者内部的皮质表面配准,以获得受试者内部的平均皮质表面。然后,我们对受试者内部的平均表面进行受试者间配准,以获得无偏差且纵向一致的4D皮质表面图集。基于我们的4D恒河猴地图集,我们使用局部表面积和光谱聚类算法进一步绘制了基于发展轨迹的第一个碎片图。我们的4D猕猴表面地图集和碎片图将极大地促进猕猴的早期大脑发育研究。

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