驱动神经血管耦合和神经影像信号的神经生理、代谢和细胞区。

Frontiers in neuroenergetics Pub Date : 2013-03-28 eCollection Date: 2013-01-01 DOI:10.3389/fnene.2013.00003
Andrea Moreno, Pierrick Jego, Feliberto de la Cruz, Santiago Canals
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摘要

全面了解协调大脑工作和能量供应的机制,即所谓的神经-血管耦合,对于解读大脑能量及其对神经元编码策略的影响,以及解读功能磁共振成像等大脑成像技术所获得的信号,都是至关重要的。神经元活动与脑血流调节之间的相互作用在很大程度上是分区的。首先,谷氨酸能突触周围活动及其电生理事件与血管反应之间存在功能区隔。其次,促进突触周围活动的代谢过程在糖酵解区和氧化区之间部分分离。最后,星形胶质细胞和神经细胞之间存在细胞隔离,这可能对神经血管耦合产生重要影响。实验数据逐渐显示,能量消耗的产物与调节血流的神经递质驱动信号分子之间存在紧密的相互作用。在此,我们将根据最近的研究结果回顾其中的一些问题,并特别关注神经元-胶质细胞在神经影像信号产生过程中的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Neurophysiological, metabolic and cellular compartments that drive neurovascular coupling and neuroimaging signals.

Complete understanding of the mechanisms that coordinate work and energy supply of the brain, the so called neurovascular coupling, is fundamental to interpreting brain energetics and their influence on neuronal coding strategies, but also to interpreting signals obtained from brain imaging techniques such as functional magnetic resonance imaging. Interactions between neuronal activity and cerebral blood flow regulation are largely compartmentalized. First, there exists a functional compartmentalization in which glutamatergic peri-synaptic activity and its electrophysiological events occur in close proximity to vascular responses. Second, the metabolic processes that fuel peri-synaptic activity are partially segregated between glycolytic and oxidative compartments. Finally, there is cellular segregation between astrocytic and neuronal compartments, which has potentially important implications on neurovascular coupling. Experimental data is progressively showing a tight interaction between the products of energy consumption and neurotransmission-driven signaling molecules that regulate blood flow. Here, we review some of these issues in light of recent findings with special attention to the neuron-glia interplay on the generation of neuroimaging signals.

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