Lyu Wenjiao, Thung Kim-Han, Huynh Khoi Minh, Wang Li, Lin Weili, Ahmad Sahar, Yap Pew-Thian
Department of Radiology, University of North Carolina, Chapel Hill, NC, USA.
Biomedical Research Imaging Center, University of North Carolina, Chapel Hill, NC, USA.
Nat Commun. 2025 Jul 10;16(1):6350. doi: 10.1038/s41467-025-61465-y.
Despite the cerebellum's crucial role in brain function, its early development, particularly in relation to the cerebrum, remains poorly understood. Here, we examine cerebellocortical connectivity using over 1000 high-quality resting-state functional MRI scans from children between birth and five years of age. By mapping cerebellar topography with fine temporal granularity, we unveil the hierarchical organization of cerebellocortical functional connectivity from infancy. We observe dynamic shifts in cerebellar functional topography, which become more focal with age while largely maintaining stable anchor regions similar to adults, highlighting the cerebellum's evolving yet organized role in functional integration during early development. Our findings demonstrate cerebellar connectivity to higher-order networks at birth, which generally strengthen with age, emphasizing the cerebellum's early role in cognitive processing beyond sensory and motor functions. Our study provides insights into early cerebellocortical interactions, reveals functional asymmetry and sex-specific patterns in cerebellar development, and lays the groundwork for future research on cerebellum-related disorders in children.
尽管小脑在脑功能中起着关键作用,但其早期发育,尤其是与大脑相关的发育,仍知之甚少。在此,我们使用来自出生至五岁儿童的1000多次高质量静息态功能磁共振成像扫描,研究小脑皮质连接性。通过以精细的时间粒度绘制小脑地形图,我们揭示了婴儿期小脑皮质功能连接的层次组织。我们观察到小脑功能地形图的动态变化,随着年龄增长,这些变化变得更加集中,同时在很大程度上保持与成年人相似的稳定锚定区域,突出了小脑在早期发育过程中功能整合中不断演变但有组织的作用。我们的研究结果表明,小脑在出生时就与高阶网络相连,这种连接通常会随着年龄增长而增强,强调了小脑在超越感觉和运动功能的认知处理中的早期作用。我们的研究为早期小脑皮质相互作用提供了见解,揭示了小脑发育中的功能不对称和性别特异性模式,并为未来儿童小脑相关疾病的研究奠定了基础。