Xu Xiaoyu, Yang Hang, Cong Jing, Sydnor Valerie, Cui Zaixu
State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University; Beijing, 100875, China.
Chinese Institute for Brain Research, Beijing; Beijing, 102206, China.
bioRxiv. 2024 Jun 17:2024.06.17.599267. doi: 10.1101/2024.06.17.599267.
Childhood and adolescence are associated with protracted developmental remodeling of cortico-cortical structural connectivity. However, how heterochronous development in white matter structural connectivity spatially and temporally unfolds across the macroscale human connectome remains unknown. Leveraging non-invasive diffusion MRI data from both cross-sectional (N = 590) and longitudinal (baseline: N = 3,949; two-year follow-up: N = 3,155) developmental datasets, we found that structural connectivity development diverges along a pre-defined sensorimotor-association (S-A) connectional axis from ages 8.1 to 21.9 years. Specifically, we observed a continuum of developmental profiles that spans from an early childhood increase in connectivity strength in sensorimotor-sensorimotor connections to a late adolescent increase in association-association connectional strength. The S-A connectional axis also captured spatial variations in associations between structural connectivity and both higher-order cognition and general psychopathology. Together, our findings reveal a hierarchical axis in the development of structural connectivity across the human connectome.
童年和青少年时期与皮质-皮质结构连接的长期发育重塑相关。然而,白质结构连接的异时性发育如何在宏观尺度的人类连接组中在空间和时间上展开,仍然未知。利用来自横断面(N = 590)和纵向(基线:N = 3949;两年随访:N = 3155)发育数据集的非侵入性扩散MRI数据,我们发现从8.1岁到21.9岁,结构连接发育沿着预先定义的感觉运动-联合(S-A)连接轴发生分化。具体而言,我们观察到一系列发育模式,从幼儿期感觉运动-感觉运动连接中连接强度的增加,到青少年晚期联合-联合连接强度的增加。S-A连接轴还捕捉到了结构连接与高阶认知和一般精神病理学之间关联的空间变化。总之,我们的研究结果揭示了人类连接组中结构连接发育的层次轴。