Merrill Palmer Skillman Institute for Child and Family Development, Wayne State University, Detroit, MI 48202, USA; Perinatology Research Branch, NICHD/NIH/DHHS, Detroit, MI, USA; Department of Cognitive Neuropsychology, Tilburg University, Tilburg, The Netherlands.
Brain Center Rudolf Magnus, Department of Neonatology, University Medical Center, Utrecht, The Netherlands.
Dev Cogn Neurosci. 2018 Apr;30:108-115. doi: 10.1016/j.dcn.2018.02.001. Epub 2018 Feb 6.
Advances in neuroimaging and network analyses have lead to discovery of highly connected regions, or hubs, in the connectional architecture of the human brain. Whether these hubs emerge in utero, has yet to be examined. The current study addresses this question and aims to determine the location of neural hubs in human fetuses. Fetal resting-state fMRI data (N = 105) was used to construct connectivity matrices for 197 discrete brain regions. We discovered that within the connectional functional organization of the human fetal brain key hubs are emerging. Consistent with prior reports in infants, visual and motor regions were identified as emerging hub areas, specifically in cerebellar areas. We also found evidence for network hubs in association cortex, including areas remarkably close to the adult fusiform facial and Wernicke areas. Functional significance of hub structure was confirmed by computationally deleting hub versus random nodes and observing that global efficiency decreased significantly more when hubs were removed (p < .001). Taken together, we conclude that both primary and association brain regions demonstrate centrality in network organization before birth. While fetal hubs may be important for facilitating network communication, they may also form potential points of vulnerability in fetal brain development.
神经影像学和网络分析的进展使得人们发现了人类大脑连接结构中高度连接的区域,或枢纽。这些枢纽是否在子宫内出现,尚未得到检验。本研究旨在确定人类胎儿中神经枢纽的位置。使用胎儿静息态 fMRI 数据(N=105)构建了 197 个离散脑区的连接矩阵。我们发现,在人类胎儿大脑的连接功能组织中,关键枢纽正在出现。与婴儿的先前报告一致,视觉和运动区域被确定为新兴的枢纽区域,特别是在小脑区域。我们还在联合皮层中发现了网络枢纽的证据,包括与成人梭状回面部和韦尼克区非常接近的区域。通过计算删除枢纽与随机节点,并观察到当删除枢纽时全局效率显著降低(p<.001),从而证实了枢纽结构的功能意义。总的来说,我们得出结论,在出生前,大脑的主要区域和联合区域都表现出网络组织的中心性。虽然胎儿枢纽可能对促进网络通信很重要,但它们也可能成为胎儿大脑发育中潜在的脆弱点。