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Visual Processing by Calretinin Expressing Inhibitory Neurons in Mouse Primary Visual Cortex

机译:Calretinin在小鼠原发性视觉皮层中表达抑制性神经元的视觉处理

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摘要

Inhibition in the cerebral cortex is delivered by a variety of GABAergic interneurons. These cells have been categorized by their morphology, physiology, gene expression and connectivity. Many of these classes appear to be conserved across species, suggesting that the classes play specific functional roles in cortical processing. What these functions are, is still largely unknown. The largest group of interneurons in the upper layers of mouse primary visual cortex (V1) is formed by cells expressing the calcium-binding protein calretinin (CR). This heterogeneous class contains subsets of vasoactive intestinal polypeptide (VIP) interneurons and somatostatin (SOM) interneurons. Here we show, using in vivo two-photon calcium imaging in mice, that CR neurons can be sensitive to stimulus orientation, but that they are less selective on average than the overall neuronal population. Responses of CR neurons are suppressed by a surrounding stimulus, but less so than the overall population. In rats and primates, CR interneurons have been suggested to provide disinhibition, but we found that in mice their in vivo activation by optogenetics causes a net inhibition of cortical activity. Our results show that the average functional properties of CR interneurons are distinct from the averages of the parvalbumin, SOM and VIP interneuron populations.
机译:大脑皮层中的抑制作用是由多种GABA能神经元传递的。这些细胞已经按照其形态,生理,基因表达和连通性进行了分类。这些类别中的许多似乎在物种间都是保守的,这表明这些类别在皮层加工中起特定的功能作用。这些功能是什么,在很大程度上仍然未知。小鼠初级视觉皮层(V1)上层中最大的中间神经元群是由表达钙结合蛋白钙黄蛋白(CR)的细胞形成的。此异质类包含血管活性肠多肽(VIP)中枢神经元和生长抑素(SOM)中枢神经元的子集。在这里,我们通过使用小鼠体内的双光子钙成像显示,CR神经元对刺激方向可能敏感,但它们的选择性平均低于整个神经元种群。 CR神经元的反应受到周围刺激的抑制,但程度不及总体。已建议在大鼠和灵长类动物中使用CR间神经元提供去抑制作用,但我们发现在小鼠中它们通过光遗传学在体内激活会导致对皮质活性的净抑制。我们的结果表明,CR中间神经元的平均功能特性与小白蛋白,SOM和VIP中间神经元群体的平均值不同。

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