Department of Bioengineering, National University of Singapore, Singapore, Singapore.
Singapore Institute for Clinical Sciences, the Agency for Science, Technology and Research, Singapore, Singapore.
Neuroimage. 2013 Jul 15;75:187-194. doi: 10.1016/j.neuroimage.2013.02.052. Epub 2013 Mar 14.
Asymmetry of the neonatal brain is not yet understood at the level of structural connectivity. We utilized DTI deterministic tractography and structural network analysis based on graph theory to determine the pattern of structural connectivity asymmetry in 124 normal neonates. We tracted white matter axonal pathways characterizing interregional connections among brain regions and inferred asymmetry in left and right anatomical network properties. Our findings revealed that in neonates, small-world characteristics were exhibited, but did not differ between the two hemispheres, suggesting that neighboring brain regions connect tightly with each other, and that one region is only a few paths away from any other region within each hemisphere. Moreover, the neonatal brain showed greater structural efficiency in the left hemisphere than that in the right. In neonates, brain regions involved in motor, language, and memory functions play crucial roles in efficient communication in the left hemisphere, while brain regions involved in emotional processes play crucial roles in efficient communication in the right hemisphere. These findings suggest that even at birth, the topology of each cerebral hemisphere is organized in an efficient and compact manner that maps onto asymmetric functional specializations seen in adults, implying lateralized brain functions in infancy.
新生儿大脑的不对称性在结构连接层面上尚未得到理解。我们利用基于图论的弥散张量成像(DTI)确定性追踪和结构网络分析,来确定 124 名正常新生儿的结构连接不对称模式。我们追踪了描述大脑区域之间区域间连接的白质轴突通路,并推断了左右解剖网络属性的不对称性。我们的研究结果表明,在新生儿中,表现出了小世界的特征,但左右半球之间没有差异,这表明相邻的大脑区域彼此紧密相连,并且每个半球内的一个区域仅通过少数路径与任何其他区域相连。此外,新生儿的左脑比右脑具有更高的结构效率。在新生儿中,参与运动、语言和记忆功能的脑区在左半球的有效沟通中起着至关重要的作用,而参与情感过程的脑区在右半球的有效沟通中起着至关重要的作用。这些发现表明,即使在出生时,每个大脑半球的拓扑结构也以一种高效和紧凑的方式组织起来,映射到成年人中看到的不对称功能特化,这意味着婴儿期的大脑功能具有偏侧性。