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首页> 外文期刊>Neuron >Optogenetic Activation of an Inhibitory Network Enhances Feedforward Functional Connectivity in Auditory Cortex
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Optogenetic Activation of an Inhibitory Network Enhances Feedforward Functional Connectivity in Auditory Cortex

机译:抑制网络的光遗传激活增强了听觉皮层的前馈功能连接性。

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The mammalian neocortex is a highly interconnected network of different types of neurons organized intoboth layers and columns. Overlaid on this structural organization is a pattern of functional connectivity that can be rapidly and flexibly altered during behavior. Parvalbumin-positive (PV+) inhibitory neurons, which are implicated in cortical oscillations and can change neuronal selectivity, may play a pivotal role in these dynamic changes. We found that optogenetic activation of PV+ neurons in the auditory cortex enhanced feedforward functional connectivity in the putative thalamorecipient circuit and in cortical columnar circuits. In contrast, stimulation of PV+ neurons induced no change in connectivity between sites in the same layers. The activity of PV+ neurons may thus serve as a gating mechanism to enhance feedforward, but not lateral or feedback, information flow in cortical circuits. Functionally, it may preferentially enhance the contribution of bottom-up sensory inputs to perception.
机译:哺乳动物新皮层是由不同类型的神经元组成的高度互连的网络,这些神经元分为层和列。在这种结构性组织上覆盖着一种功能连接模式,可以在行为过程中快速灵活地对其进行更改。涉及皮层振荡并能改变神经元选择性的小白蛋白阳性(PV +)抑制神经元可能在这些动态变化中起关键作用。我们发现,听觉皮层中PV +神经元的光遗传激活增强了假定的丘脑回路和皮层柱状回路中的前馈功能连通性。相反,对PV +神经元的刺激不会引起相同层中位点之间的连通性变化。 PV +神经元的活动因此可以充当门控机制,以增强前馈功能,但不能增强皮质回路中的横向或反馈信息流。在功能上,它可以优先增强自下而上的感觉输入对感知的贡献。

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