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The Energy Demand of Fast Neuronal Network Oscillations: Insights from Brain Slice Preparations

机译:快速神经元网络振荡的能量需求:脑切片准备的见解

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摘要

Fast neuronal network oscillations in the gamma range (30–100 Hz) in the cerebral cortex have been implicated in higher cognitive functions such as sensual perception, working memory, and, perhaps, consciousness. However, little is known about the energy demand of gamma oscillations. This is mainly caused by technical limitations that are associated with simultaneous recordings of neuronal activity and energy metabolism in small neuronal networks and at the level of mitochondria in vivo. Thus recent studies have focused on brain slice preparations to address the energy demand of gamma oscillations in vitro. Here, reports will be summarized and discussed that combined electrophysiological recordings, oxygen sensor microelectrodes, and live-cell fluorescence imaging in acutely prepared slices and organotypic slice cultures of the hippocampus from both, mouse and rat. These reports consistently show that gamma oscillations can be reliably induced in hippocampal slice preparations by different pharmacological tools. They suggest that gamma oscillations are associated with high energy demand, requiring both rapid adaptation of oxidative energy metabolism and sufficient supply with oxygen and nutrients. These findings might help to explain the exceptional vulnerability of higher cognitive functions during pathological processes of the brain, such as circulatory disturbances, genetic mitochondrial diseases, and neurodegeneration.
机译:大脑皮层在γ范围(30–100 Hz)中的快速神经元网络振荡与较高的认知功能有关,例如感官知觉,工作记忆以及意识。但是,对伽马振荡的能量需求知之甚少。这主要是由技术限制引起的,该技术限制与同时记录小型神经元网络中以及体内线粒体水平的神经元活动和能量代谢有关。因此,最近的研究集中在脑切片准备上,以解决体外伽马振荡的能量需求。在这里,将总结和讨论在急性制备的小鼠和大鼠海马切片和器官型切片培养物中组合的电生理记录,氧传感器微电极和活细胞荧光成像的报道。这些报告一致地表明,可以通过不同的药理学工具可靠地在海马切片制剂中诱发伽马振荡。他们认为,伽马振荡与高能量需求有关,既需要快速适应氧化能代谢,又需要充足的氧气和养分。这些发现可能有助于解释在脑部病理过程(例如循环系统紊乱,遗传线粒体疾病和神经退行性病变)中较高的认知功能的特殊脆弱性。

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