Melbourne Neuropsychiatry Centre, Department of Psychiatry, The University of Melbourne, Parkville, Victoria, Australia.
Centre National de la Recherche Scientifique (CNRS) UMR 8002, Integrative Neuroscience and Cognition Center, Université de Paris, Paris, France.
Nat Neurosci. 2020 Nov;23(11):1421-1432. doi: 10.1038/s41593-020-00711-6. Epub 2020 Sep 28.
Brain atlases are fundamental to understanding the topographic organization of the human brain, yet many contemporary human atlases cover only the cerebral cortex, leaving the subcortex a terra incognita. We use functional MRI (fMRI) to map the complex topographic organization of the human subcortex, revealing large-scale connectivity gradients and new areal boundaries. We unveil four scales of subcortical organization that recapitulate well-known anatomical nuclei at the coarsest scale and delineate 27 new bilateral regions at the finest. Ultrahigh field strength fMRI corroborates and extends this organizational structure, enabling the delineation of finer subdivisions of the hippocampus and the amygdala, while task-evoked fMRI reveals a subtle subcortical reorganization in response to changing cognitive demands. A new subcortical atlas is delineated, personalized to represent individual differences and used to uncover reproducible brain-behavior relationships. Linking cortical networks to subcortical regions recapitulates a task-positive to task-negative axis. This new atlas enables holistic connectome mapping and characterization of cortico-subcortical connectivity.
脑图谱对于理解人类大脑的拓扑结构至关重要,但许多当代人类图谱仅涵盖大脑皮层,而皮质下结构仍是未知领域。我们使用功能磁共振成像(fMRI)来绘制人类皮质下结构的复杂拓扑结构,揭示出大规模的连接梯度和新的区域边界。我们揭示了皮质下组织的四个尺度,在最粗糙的尺度上再现了众所周知的解剖核,在最精细的尺度上描绘了 27 个新的双侧区域。超高场强 fMRI 证实并扩展了这种组织结构,使海马体和杏仁核的更精细细分得以描绘,而任务诱发 fMRI 则揭示了对不断变化的认知需求的微妙皮质下重新组织。描绘了一个新的皮质下图谱,个性化地代表个体差异,并用于发现可重复的大脑-行为关系。将皮质网络与皮质下区域联系起来再现了任务正性到任务负性轴。这个新的图谱使整体连接组图绘制和皮质下连接特征化成为可能。