Huntenburg Julia M, Bazin Pierre-Louis, Goulas Alexandros, Tardif Christine L, Villringer Arno, Margulies Daniel S
Max Planck Research Group for Neuroanatomy and Connectivity, Max Planck Institute for Human Cognitive and Brain Sciences, 04103 Leipzig, Germany.
Neurocomputation and Neuroimaging Unit, Department of Education and Psychology, Free University of Berlin, 14195 Berlin, Germany.
Cereb Cortex. 2017 Feb 1;27(2):981-997. doi: 10.1093/cercor/bhx030.
Research in the macaque monkey suggests that cortical areas with similar microstructure are more likely to be connected. Here, we examine this link in the human cerebral cortex using 2 magnetic resonance imaging (MRI) measures: quantitative T1 maps, which are sensitive to intracortical myelin content and provide an in vivo proxy for cortical microstructure, and resting-state functional connectivity. Using ultrahigh-resolution MRI at 7 T and dedicated image processing tools, we demonstrate a systematic relationship between T1-based intracortical myelin content and functional connectivity. This effect is independent of the proximity of areas. We employ nonlinear dimensionality reduction to characterize connectivity components and identify specific aspects of functional connectivity that are linked to myelin content. Our results reveal a consistent spatial pattern throughout different analytic approaches. While functional connectivity and myelin content are closely linked in unimodal areas, the correspondence is lower in transmodal areas, especially in posteromedial cortex and the angular gyrus. Our findings are in agreement with comprehensive reports linking histologically assessed microstructure and connectivity in different mammalian species and extend them to the human cerebral cortex in vivo.
对猕猴的研究表明,具有相似微观结构的皮质区域更有可能相互连接。在此,我们使用两种磁共振成像(MRI)测量方法来研究人类大脑皮质中的这种联系:定量T1图谱,其对皮质内髓磷脂含量敏感,并为皮质微观结构提供体内替代指标;以及静息态功能连接。使用7T超高分辨率MRI和专用图像处理工具,我们证明了基于T1的皮质内髓磷脂含量与功能连接之间存在系统关系。这种效应与区域的接近程度无关。我们采用非线性降维来表征连接成分,并确定与髓磷脂含量相关的功能连接的特定方面。我们的结果在不同的分析方法中揭示了一致的空间模式。虽然功能连接和髓磷脂含量在单峰区域紧密相连,但在跨模式区域,尤其是在后内侧皮质和角回中,这种对应关系较低。我们的发现与将组织学评估的微观结构和不同哺乳动物物种的连接性联系起来的综合报告一致,并将其扩展到人类大脑皮质的体内研究。