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内侧前额叶皮层谷氨酸浓度可预测人类静息状态皮质-皮质下功能连接。

Glutamate concentration in the medial prefrontal cortex predicts resting-state cortical-subcortical functional connectivity in humans.

机构信息

Mind, Brain Imaging and Neuroethics Research Unit, University of Ottawa Institute of Mental Health Research, Ottawa, Canada.

出版信息

PLoS One. 2013;8(4):e60312. doi: 10.1371/journal.pone.0060312. Epub 2013 Apr 3.

Abstract

Communication between cortical and subcortical regions is integral to a wide range of psychological processes and has been implicated in a number of psychiatric conditions. Studies in animals have provided insight into the biochemical and connectivity processes underlying such communication. However, to date no experiments that link these factors in humans in vivo have been carried out. To investigate the role of glutamate in individual differences in communication between the cortex--specifically the medial prefrontal cortex (mPFC)--and subcortical regions in humans, a combination of resting-state fMRI, DTI and MRS was performed. The subcortical target regions were the nucleus accumbens (NAc), dorsomedial thalamus (DMT), and periaqueductal grey (PAG). It was found that functional connectivity between the mPFC and each of the NAc and DMT was positively correlated with mPFC glutamate concentrations, whilst functional connectivity between the mPFC and PAG was negatively correlated with glutamate concentration. The correlations involving mPFC glutamate and FC between the mPFC and each of the DMT and PAG were mirrored by correlations with structural connectivity, providing evidence that the glutamatergic relationship may, in part, be due to direct connectivity. These results are in agreement with existing results from animal studies and may have relevance for MDD and schizophrenia.

摘要

皮质和皮质下区域之间的通讯对于广泛的心理过程至关重要,并且与许多精神疾病有关。动物研究为这种通讯的生化和连接过程提供了深入的了解。然而,迄今为止,在人类体内将这些因素联系起来的实验尚未进行。为了研究谷氨酸在人类大脑皮质-特别是内侧前额叶皮质(mPFC)-与皮质下区域之间通讯的个体差异中的作用,进行了静息态 fMRI、DTI 和 MRS 的组合研究。皮质下目标区域是伏隔核(NAc)、背内侧丘脑(DMT)和导水管周围灰质(PAG)。结果发现,mPFC 与 NAc 和 DMT 之间的功能连接与 mPFC 谷氨酸浓度呈正相关,而 mPFC 与 PAG 之间的功能连接与谷氨酸浓度呈负相关。涉及 mPFC 谷氨酸和 mPFC 与 DMT 和 PAG 之间的功能连接的相关性与结构连接的相关性相匹配,这表明谷氨酸能关系可能部分归因于直接连接。这些结果与动物研究的现有结果一致,可能与 MDD 和精神分裂症有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e3e/3616113/5adf8c1a6eb9/pone.0060312.g001.jpg

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