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Developmental Changes in Organization of Structural Brain Networks

机译:结构性脑网络组织的发展变化

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摘要

Recent findings from developmental neuroimaging studies suggest that the enhancement of cognitive processes during development may be the result of a fine-tuning of the structural and functional organization of brain with maturation. However, the details regarding the developmental trajectory of large-scale structural brain networks are not yet understood. Here, we used graph theory to examine developmental changes in the organization of structural brain networks in 203 normally growing children and adolescents. Structural brain networks were constructed using interregional correlations in cortical thickness for 4 age groups (early childhood: 4.8–8.4 year; late childhood: 8.5–11.3 year; early adolescence: 11.4–14.7 year; late adolescence: 14.8–18.3 year). Late childhood showed prominent changes in topological properties, specifically a significant reduction in local efficiency, modularity, and increased global efficiency, suggesting a shift of topological organization toward a more random configuration. An increase in number and span of distribution of connector hubs was found in this age group. Finally, inter-regional connectivity analysis and graph-theoretic measures indicated early maturation of primary sensorimotor regions and protracted development of higher order association and paralimbic regions. Our finding reveals a time window of plasticity occurring during late childhood which may accommodate crucial changes during puberty and the new developmental tasks that an adolescent faces.
机译:发育神经影像学研究的最新发现表明,发育过程中认知过程的增强可能是由于大脑的结构和功能组织随着成熟而微调的结果。但是,有关大规模结构性脑网络的发展轨迹的细节尚未了解。在这里,我们使用图论来研究203名正常成长的儿童和青少年的结构性大脑网络组织的发展变化。使用4个年龄组(幼儿:4.8–8.4岁;幼儿:8.5-11.3岁;青春期:11.4-14.7岁;青春期:14.8-18.3岁)的皮层厚度之间的区域间相关性,构建了结构化的大脑网络。儿童晚期显示出拓扑特性的显着变化,特别是局部效率,模块性和整体效率的显着降低,这表明拓扑组织向更加随机的配置转变。在该年龄组中发现连接器集线器的数量和分布范围有所增加。最后,区域间的连通性分析和图论测量结果表明,主要的感觉运动区域较早成熟,高阶关联区和下肢区域的发育持续时间较长。我们的发现揭示了在儿童后期发生可塑性的时间窗口,这可能适应青春期期间的重要变化以及青少年面临的新的发育任务。

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