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Cerebral energy metabolism and the brains functional network architecture: an integrative review

机译:脑能量代谢和大脑的功能网络体系结构:综合综述

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摘要

Recent functional magnetic resonance imaging (fMRI) studies have emphasized the contributions of synchronized activity in distributed brain networks to cognitive processes in both health and disease. The brain's ‘functional connectivity' is typically estimated from correlations in the activity time series of anatomically remote areas, and postulated to reflect information flow between neuronal populations. Although the topological properties of functional brain networks have been studied extensively, considerably less is known regarding the neurophysiological and biochemical factors underlying the temporal coordination of large neuronal ensembles. In this review, we highlight the critical contributions of high-frequency electrical oscillations in the γ-band (30 to 100 Hz) to the emergence of functional brain networks. After describing the neurobiological substrates of γ-band dynamics, we specifically discuss the elevated energy requirements of high-frequency neural oscillations, which represent a mechanistic link between the functional connectivity of brain regions and their respective metabolic demands. Experimental evidence is presented for the high oxygen and glucose consumption, and strong mitochondrial performance required to support rhythmic cortical activity in the γ-band. Finally, the implications of mitochondrial impairments and deficits in glucose metabolism for cognition and behavior are discussed in the context of neuropsychiatric and neurodegenerative syndromes characterized by large-scale changes in the organization of functional brain networks.
机译:最近的功能磁共振成像(fMRI)研究强调了分布式脑网络中同步活动对健康和疾病认知过程的贡献。通常从解剖学上偏远地区的活动时间序列中的相关性来估计大脑的“功能连接性”,并假设其反映了神经元种群之间的信息流。尽管功能性大脑网络的拓扑特性已得到广泛研究,但对于大型神经元集合的时间协调所基于的神经生理和生化因素知之甚少。在这篇综述中,我们重点介绍了γ波段(30至100 Hz)中高频电振荡对功能性大脑网络的出现的关键作用。在描述了γ波段动力学的神经生物学底物之后,我们专门讨论了高频神经振荡的能量需求升高,这代表了大脑区域的功能连通性与其各自的代谢需求之间的机械联系。实验证明了高的氧气和葡萄糖消耗量以及支持γ波段节律性皮层活动所需的强大的线粒体性能。最后,在以功能性脑网络的组织发生大规模变化为特征的神经精神病和神经退行性综合症的背景下,讨论了线粒体损伤和葡萄糖代谢不足对认知和行为的影响。

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