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在体定量人类胼胝体的整体连接

In vivo quantification of global connectivity in the human corpus callosum.

机构信息

Learning Research and Development Center, Department of Psychology, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

Neuroimage. 2012 Feb 1;59(3):1988-96. doi: 10.1016/j.neuroimage.2011.09.056. Epub 2011 Oct 2.

Abstract

Histological studies on nonhuman primates have shown a rich topography of homotopic (i.e., going to the same regions) or heterotopic (i.e., going to different regions) callosal projections. Unfortunately, a complete within-subject mapping of commissural projections in humans has been limited due to the inability of typical imaging methods to detect lateral projections in posterior cortical regions. Here, we set out to map callosal projection connectivity, at the single subject level (N=6), by combining high angular resolution diffusion weighted imaging and a novel multi-stage, region-of-interest (ROI) based fiber tracking approach. With these methods we were able to obtain a consistent increase in coverage of lateral projections to posterior cortical regions. Using 70 automatically segmented ROIs in each hemisphere and permutation statistics, we characterized significant interhemispheric connectivity patterns within each subject and observed: (1) consistent projections to frontal, parietal and occipital, but not temporal, areas, (2) a greater relative proportion of homotopic than heterotopic connections, and (3) commissural projections to the basal ganglia and thalamus that are consistent with human and nonhuman primate neuroanatomical literature. These results illustrate the first full connectivity analysis of the human corpus callosum, revealing several patterns consistent with histological findings in the nonhuman primate.

摘要

对非人类灵长类动物的组织学研究表明,同型(即去往相同区域)或异型(即去往不同区域)的胼胝体投射具有丰富的拓扑结构。不幸的是,由于典型的成像方法无法检测到皮质后区的侧部投射,因此人类的胼胝体投射完整的个体内映射受到限制。在这里,我们通过结合高角度分辨率扩散加权成像和新颖的多阶段、基于感兴趣区(ROI)的纤维追踪方法,旨在在单个个体水平(N=6)上绘制胼胝体投射连接图。通过这些方法,我们能够获得对皮质后区的侧部投射的一致增加。使用每个半球的 70 个自动分割 ROI 和置换统计,我们描述了每个个体内部的显著的大脑半球间连通模式,并观察到:(1)与额、顶、枕叶一致的投射,但与颞叶不一致,(2)同型连接比异型连接的相对比例更大,(3)与基底神经节和丘脑的胼胝体投射与人类和非人类灵长类动物的神经解剖学文献一致。这些结果说明了人类胼胝体的第一次全连接分析,揭示了一些与非人类灵长类动物的组织学发现一致的模式。

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