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皮质化学结构与宏观功能磁共振成像静息态功能连接的多模态分析

Multimodal analysis of cortical chemoarchitecture and macroscale fMRI resting-state functional connectivity.

作者信息

van den Heuvel Martijn P, Scholtens Lianne H, Turk Elise, Mantini Dante, Vanduffel Wim, Feldman Barrett Lisa

机构信息

Brain Center Rudolf Magnus, Department of Psychiatry, University Medical Center Utrecht, The Netherlands.

Laboratory for Neuro- and Psychophysiology, KU Leuven, Leuven, Belgium.

出版信息

Hum Brain Mapp. 2016 Sep;37(9):3103-13. doi: 10.1002/hbm.23229. Epub 2016 May 21.

Abstract

The cerebral cortex is well known to display a large variation in excitatory and inhibitory chemoarchitecture, but the effect of this variation on global scale functional neural communication and synchronization patterns remains less well understood. Here, we provide evidence of the chemoarchitecture of cortical regions to be associated with large-scale region-to-region resting-state functional connectivity. We assessed the excitatory versus inhibitory chemoarchitecture of cortical areas as an ExIn ratio between receptor density mappings of excitatory (AMPA, M1 ) and inhibitory (GABAA , M2 ) receptors, computed on the basis of data collated from pioneering studies of autoradiography mappings as present in literature of the human (2 datasets) and macaque (1 dataset) cortex. Cortical variation in ExIn ratio significantly correlated with total level of functional connectivity as derived from resting-state functional connectivity recordings of cortical areas across all three datasets (human I: P = 0.0004; human II: P = 0.0008; macaque: P = 0.0007), suggesting cortical areas with an overall more excitatory character to show higher levels of intrinsic functional connectivity during resting-state. Our findings are indicative of the microscale chemoarchitecture of cortical regions to be related to resting-state fMRI connectivity patterns at the global system's level of connectome organization. Hum Brain Mapp 37:3103-3113, 2016. © 2016 Wiley Periodicals, Inc.

摘要

众所周知,大脑皮层在兴奋性和抑制性化学结构上存在很大差异,但这种差异对全局功能性神经通信和同步模式的影响仍不太清楚。在这里,我们提供证据表明皮层区域的化学结构与大规模区域间静息态功能连接有关。我们根据人类(2个数据集)和猕猴(1个数据集)皮层放射自显影图谱的开创性研究整理的数据,计算兴奋性(AMPA,M1)和抑制性(GABAA,M2)受体密度图谱之间的ExIn比值,以此评估皮层区域的兴奋性与抑制性化学结构。ExIn比值的皮层差异与所有三个数据集皮层区域静息态功能连接记录得出的功能连接总水平显著相关(人类I:P = 0.0004;人类II:P = 0.0008;猕猴:P = 0.0007),这表明在静息态时,总体上具有更强兴奋性特征的皮层区域显示出更高水平的内在功能连接。我们的研究结果表明,皮层区域的微观化学结构与连接组组织的全局系统水平上的静息态功能磁共振成像连接模式有关。《人类大脑图谱》37:3103 - 3113,2016年。© 2016威利期刊公司。

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