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High field imaging of large-scale neurotransmitter networks: Proof of concept and initial application to epilepsy

机译:大型神经递质网络的高场成像:概念验证和癫痫的初步应用

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摘要

The brain can be considered a network, existing of multiple interconnected areas with various functions. MRI provides opportunities to map the large-scale network organization of the brain. We tap into the neurobiochemical dimension of these networks, as neuronal functioning and signal trafficking across distributed brain regions relies on the release and presence of neurotransmitters. Using high-field MR spectroscopic imaging at 7.0 T, we obtained a non-invasive snapshot of the spatial distribution of the neurotransmitters GABA and glutamate, and investigated interregional associations of these neurotransmitters. We demonstrate that interregional correlations of glutamate and GABA concentrations can be conceptualized as networks. Furthermore, patients with epilepsy display an increased number of glutamate and GABA connections and increased average strength of the GABA network. The increased glutamate and GABA connectivity in epilepsy might indicate a disrupted neurotransmitter balance. In addition to epilepsy, the ‘neurotransmitter networks’ concept might also provide new insights for other neurological diseases.
机译:大脑可以被认为是一个网络,存在着具有各种功能的多个相互连接的区域。 MRI提供了映射大脑的大规模网络组织的机会。我们利用这些网络的神经生化维度,因为跨分布的大脑区域的神经元功能和信号运输依赖于神经递质的释放和存在。使用7.0 T的高场MR光谱成像,我们获得了神经递质GABA和谷氨酸的空间分布的非侵入性快照,并研究了这些神经递质的区域间关联。我们证明谷氨酸和GABA浓度的区域间相关性可以被概念化为网络。此外,患有癫痫的患者显示出谷氨酸和GABA连接的数目增加,并且GABA网络的平均强度增加。癫痫病中谷氨酸和GABA连接性增加可能表明神经递质平衡被破坏。除癫痫外,“神经递质网络”概念还可能为其他神经系统疾病提供新的见解。

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