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◆ Nature communications2026-08-13

Assessing molecular, cellular and transcriptomic bases of laminar perfusion and cytoarchitecture coupling in the human cortex.

Fanhua Guo, Chenyang Zhao, Ravi R Bhatt, Zixuan Liu, Andy Jeesu Kim, Zidong Yang, Siyi Xu, Kay Jann, Xingfeng Shao, Mara Mather, Neda Jahanshad, Danny Jj Wang

原始摘要(英文原文)· Original abstract
Understanding how cellular architecture shapes cortical function requires mesoscopic approaches that resolve structure-function relationships in vivo. Here we introduce the cerebral blood flow (CBF) - cell-body staining intensity (CSI) similarity index (CCSI), a quantitative measure of laminar perfusion-cytoarchitecture coupling derived from whole-brain 1-mm isotropic 7 T arterial spin labeling and cell-body staining intensity profiles from the BigBrain atlas. Across 30 participants, CCSI revealed reproducible, region-specific alignment between laminar perfusion and cellular density distributions. CCSI was selectively associated with mitochondrial respiratory capacity per mitochondrion and colocalized with capillary endothelial and end-state oligodendrocyte populations. Gene ontology enrichment converged on metabolic regulation, neurovascular organization, and mitochondrial homeostasis. A parallel control analysis using quantitative T1 yielded no significant associations, supporting the specificity of these findings. At the systems level, CCSI improved structure-function gradient correspondence in higher-hierarchy association cortices. These results support CCSI as a reproducible, non-invasive mesoscopic index linking cortical perfusion, microstructure, and metabolism.
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Assessing molecular, cellular and transcriptomic bases of laminar perfusion and cytoarchitecture coupling in the human cortex. — 科研速览 Science Skim