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Revisiting the Role of Neurons in Neurovascular Coupling

机译:回顾神经元在神经血管耦合中的作用

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摘要

In this article, we will review molecular, anatomical, physiological and pharmacological data in an attempt to better understand how excitatory and inhibitory neurons recruited by distinct afferent inputs to the cerebral cortex contribute to the coupled hemodynamic response, and how astrocytes can act as intermediaries to these neuronal populations. We aim at providing the pros and cons to the following statements that, depending on the nature of the afferent input to the neocortex, (i) different neuronal or astroglial messengers, likely acting in sequence, mediate the hemodynamic changes, (ii) some recruited neurons release messengers that directly alter blood vessel tone, (iii) others act by modulating neuronal and astroglial activity, and (iv) astrocytes act as intermediaries for both excitatory and inhibitory neurotransmitters. We will stress that a given afferent signal activates a precise neuronal circuitry that determines the mediators of the hemodynamic response as well as the level of interaction with surrounding astrocytes.
机译:在本文中,我们将审查分子,解剖学,生理学和药理学数据,以试图更好地了解大脑皮层的不同传入输入所招募的兴奋性和抑制性神经元如何对耦合的血流动力学反应作出贡献,以及星形胶质细胞如何充当神经元这些神经元群体。我们旨在针对以下陈述提供利弊,这些陈述取决于对新皮质的传入输入的性质,(i)可能依次起作用的不同神经元或星形胶质信使介导血液动力学变化,(ii)神经元释放直接改变血管张力的信使;(iii)其他信使通过调节神经元和星形胶质细胞的活动发挥作用;(iv)星形胶质细胞充当兴奋性和抑制性神经递质的中介。我们将强调,给定的传入信号会激活一个精确的神经元电路,该电路确定血液动力学反应的介质以及与周围星形胶质细胞相互作用的水平。

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