Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen, Nijmegen, The Netherlands.
PLoS One. 2013 Jun 10;8(6):e65511. doi: 10.1371/journal.pone.0065511. Print 2013.
Hubs within the neocortical structural network determined by graph theoretical analysis play a crucial role in brain function. We mapped neocortical hubs topographically, using a sample population of 63 young adults. Subjects were imaged with high resolution structural and diffusion weighted magnetic resonance imaging techniques. Multiple network configurations were then constructed per subject, using random parcellations to define the nodes and using fibre tractography to determine the connectivity between the nodes. The networks were analysed with graph theoretical measures. Our results give reference maps of hub distribution measured with betweenness centrality and node degree. The loci of the hubs correspond with key areas from known overlapping cognitive networks. Several hubs were asymmetrically organized across hemispheres. Furthermore, females have hubs with higher betweenness centrality and males have hubs with higher node degree. Female networks have higher small-world indices.
脑皮质结构网络中的枢纽由图论分析确定,在脑功能中起着至关重要的作用。我们使用一个由 63 名年轻人组成的样本群体,对脑皮质枢纽进行了拓扑定位。受检者接受了高分辨率结构和弥散加权磁共振成像技术的成像。然后,为每位受检者构建了多个网络配置,使用随机分区定义节点,并使用纤维束追踪确定节点之间的连接。使用图论测量方法对网络进行了分析。我们的结果给出了使用介数中心性和节点度测量的枢纽分布参考图谱。枢纽的位置与已知重叠认知网络中的关键区域相对应。一些枢纽在左右半球之间呈不对称分布。此外,女性的枢纽具有更高的介数中心性,而男性的枢纽具有更高的节点度。女性的网络具有更高的小世界指数。