Zhong Suyu, He Yong, Shu Hua, Gong Gaolang
State Key Laboratory of Cognitive Neuroscience and Learning & IDG/McGovern Institute for Brain Research, Beijing Normal University, Beijing, China.
Cereb Cortex. 2017 Apr 1;27(4):2560-2570. doi: 10.1093/cercor/bhw109.
Human brain asymmetries have been well described. Intriguingly, a number of asymmetries in brain phenotypes have been shown to change throughout the lifespan. Recent studies have revealed topological asymmetries between hemispheric white matter networks in the human brain. However, it remains unknown whether and how these topological asymmetries evolve from adolescence to young adulthood, a critical period that constitutes the second peak of human brain and cognitive development. To address this question, the present study included a large cohort of healthy adolescents and young adults. Diffusion and structural magnetic resonance imaging were acquired to construct hemispheric white matter networks, and graph-theory was applied to quantify topological parameters of the hemispheric networks. In both adolescents and young adults, rightward asymmetry in both global and local network efficiencies was consistently observed between the 2 hemispheres, but the degree of the asymmetry was significantly decreased in young adults. At the nodal level, the young adults exhibited less rightward asymmetry of nodal efficiency mainly around the parasylvian area, posterior tempo-parietal cortex, and fusiform gyrus. These developmental patterns of network asymmetry provide novel insight into the human brain structural development from adolescence to young adulthood and also likely relate to the maturation of language and social cognition that takes place during this period.
人类大脑的不对称性已得到充分描述。有趣的是,一些大脑表型的不对称性已被证明会在整个生命周期中发生变化。最近的研究揭示了人类大脑半球白质网络之间的拓扑不对称性。然而,这些拓扑不对称性是否以及如何从青春期发展到青年期仍不清楚,而这一关键时期是人类大脑和认知发展的第二个高峰期。为了解决这个问题,本研究纳入了一大群健康的青少年和青年。采集了扩散和结构磁共振成像以构建半球白质网络,并应用图论来量化半球网络的拓扑参数。在青少年和青年中,两半球之间在全局和局部网络效率上均一致观察到向右的不对称性,但在青年中这种不对称程度显著降低。在节点水平上, 青年主要在颞周区、颞顶后皮质和梭状回周围表现出较小的节点效率向右不对称性。网络不对称性的这些发育模式为从青春期到青年期的人类大脑结构发育提供了新的见解,也可能与这一时期发生的语言和社会认知成熟有关。