Yang Hang, Wu Guowei, Li Yaoxin, Xu Xiaoyu, Cong Jing, Xu Haoshu, Ma Yiyao, Li Yang, Chen Runsen, Pines Adam, Xu Ting, Sydnor Valerie J, Satterthwaite Theodore D, Cui Zaixu
Beijing Institute for Brain Research, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 102206, China.
Chinese Institute for Brain Research, Beijing, 102206, China.
bioRxiv. 2025 Jan 31:2023.03.08.531800. doi: 10.1101/2023.03.08.531800.
The human cerebral cortex exhibits intricate interareal functional synchronization at the macroscale, with substantial individual variability in these functional connections. However, the spatial organization of functional connectivity (FC) variability across the human connectome edges and its significance in cognitive development remain unclear. Here, we identified a connectional axis in the edge-level FC variability. The variability declined continuously along this axis from within-network to between-network connections, and from the edges linking association networks to those linking the sensorimotor and association networks. This connectional axis of functional variability is associated with spatial pattern of structural connectivity variability. Moreover, the connectional variability axis evolves in youth with an increasing flatter axis slope. We also observed that the slope of connectional variability axis was positively related to the performance in the higher-order cognition. Together, our results reveal a connectional axis in functional variability that is linked with structural connectome variability, refines during development, and is relevant to cognition.
人类大脑皮层在宏观尺度上表现出复杂的区域间功能同步,这些功能连接存在显著的个体差异。然而,跨人类连接组边缘的功能连接(FC)变异性的空间组织及其在认知发展中的意义仍不清楚。在这里,我们在边缘水平的FC变异性中确定了一个连接轴。变异性沿着这个轴从网络内连接到网络间连接,以及从连接联合网络的边缘到连接感觉运动和联合网络的边缘连续下降。这种功能变异性的连接轴与结构连接变异性的空间模式相关。此外,连接变异性轴在青少年时期随着轴斜率越来越平缓而演变。我们还观察到连接变异性轴的斜率与高阶认知表现呈正相关。总之,我们的结果揭示了一个与结构连接组变异性相关、在发育过程中得到完善且与认知相关的功能变异性连接轴。