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首页> 外文期刊>Cerebral Cortex >Sex- and Brain Size–Related Small-World Structural Cortical Networks in Young Adults: A DTI Tractography Study
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Sex- and Brain Size–Related Small-World Structural Cortical Networks in Young Adults: A DTI Tractography Study

机译:性别和大脑大小相关的年轻人的小世界结构皮层网络:DTI术式研究

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The anatomical connectivity of the human cerebral cortex resembles a “small-world” architecture, which is characterized by the coexistence of structurally segregated and integrative connectivity patterns. However, organizational differences in networks among individuals remain largely unknown. Here, we utilize diffusion tensor imaging tractography and graph-theoretical approaches to investigate the effects of sex and brain size on the topological organization of human cortical anatomical network. Weighted cortical networks were constructed from 72 young healthy participants by measuring anatomical connection densities between 78 cortical regions. As expected, all participants showed a small-world topology (high local clustering and short paths between nodes), which suggests a highly efficient topological organization. Furthermore, we found that females had greater local efficiencies than males. Moreover, smaller brains showed higher local efficiency in females but not in males, suggesting an interaction between sex and brain size. Specifically, we show that several brain regions (e.g., the precuneus, precentral gyrus, and lingual gyrus) had significant associations between nodal centrality and sex or brain size. Our findings suggest that anatomical network organization in the human brain is associated with sex and brain size and provide insights into the understanding of the structural substrates that underlie individual differences in behavior and cognition.
机译:人类大脑皮层的解剖学连通性类似于“小世界”架构,其特征是结构隔离和整合的连通性模式并存。但是,个人之间的网络组织差异仍然未知。在这里,我们利用扩散张量成像术和图论方法来研究性别和大脑大小对人类皮层解剖网络拓扑结构的影响。通过测量78个皮层区域之间的解剖连接密度,由72位年轻健康参与者构建了加权皮层网络。正如预期的那样,所有参与者都显示了一个小世界的拓扑结构(较高的局部群集度和节点之间的短路径),这表明拓扑结构非常高效。此外,我们发现女性比男性具有更高的本地效率。此外,较小的大脑在女性中显示出更高的局部效率,而在男性中则没有,这表明性别与大脑大小之间存在相互作用。具体而言,我们显示了多个大脑区域(例如,前神经突,前中央回和舌状回)在节点中心性与性别或大脑大小之间具有显着关联。我们的发现表明,人脑中的解剖网络组织与性别和大脑大小有关,并为了解行为和认知个体差异基础的结构底物提供了见识。

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    《Cerebral Cortex 》 |2011年第2期| p.449-458| 共10页
  • 作者

    Yong He;

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