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The barrel cortex as a model to study dynamic neuroglial interaction.

机译:桶皮层作为研究动态神经胶质相互作用的模型。

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There is increasing evidence that glial cells, in particular astrocytes, interact dynamically with neurons. The well-known anatomofunctional organization of neurons in the barrel cortex offers a suitable and promising model to study such neuroglial interaction. This review summarizes and discusses recent in vitro as well as in vivo works demonstrating that astrocytes receive, integrate, and respond to neuronal signals. In addition, they are active elements of brain metabolism and exhibit a certain degree of plasticity that affects neuronal activity. Altogether these findings indicate that the barrel cortex presents glial compartments overlapping and interacting with neuronal compartments and that these properties help define barrels as functional and independent units. Finally, this review outlines how the use of the barrel cortex as a model might in the future help to address important questions related to dynamic neuroglia interaction.
机译:越来越多的证据表明,神经胶质细胞,特别是星形胶质细胞,与神经元动态相互作用。桶状皮质中神经元的众所周知的解剖功能组织为研究这种神经胶质相互作用提供了一种合适且有希望的模型。这篇综述总结并讨论了最近的体外研究以及体内研究,这些研究表明星形胶质细胞可以接收,整合并响应神经元信号。此外,它们是大脑代谢的活跃元素,并表现出一定程度的可塑性,影响神经元的活动。总而言之,这些发现表明,桶状皮质的神经胶质区室与神经元区室重叠并相互作用,这些特性有助于将桶区定义为功能性和独立的单位。最后,本文概述了桶状皮质作为模型的使用在将来如何帮助解决与动态神经胶质细胞相互作用有关的重要问题。

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