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雪貂视觉皮层中的γ-氨基丁酸能神经元参与功能特异性网络。

GABAergic Neurons in Ferret Visual Cortex Participate in Functionally Specific Networks.

作者信息

Wilson Daniel E, Smith Gordon B, Jacob Amanda L, Walker Theo, Dimidschstein Jordane, Fishell Gord, Fitzpatrick David

机构信息

Max Planck Florida Institute for Neuroscience, Jupiter, FL 33458, USA; Integrative Biology and Neuroscience Graduate Program, Florida Atlantic University, Jupiter, FL 33458, USA; International Max Planck Research School for Brain and Behavior, Florida Atlantic University, Jupiter, FL 33458, USA.

Max Planck Florida Institute for Neuroscience, Jupiter, FL 33458, USA.

出版信息

Neuron. 2017 Mar 8;93(5):1058-1065.e4. doi: 10.1016/j.neuron.2017.02.035.

Abstract

Functional circuits in the visual cortex require the coordinated activity of excitatory and inhibitory neurons. Molecular genetic approaches in the mouse have led to the "local non-specific pooling principle" of inhibitory connectivity, in which inhibitory neurons are untuned for stimulus features due to the random pooling of local inputs. However, it remains unclear whether this principle generalizes to species with a columnar organization of feature selectivity such as carnivores, primates, and humans. Here we use virally mediated GABAergic-specific GCaMP6f expression to demonstrate that inhibitory neurons in ferret visual cortex respond robustly and selectively to oriented stimuli. We find that the tuning of inhibitory neurons is inconsistent with the local non-specific pooling of excitatory inputs and that inhibitory neurons exhibit orientation-specific noise correlations with local and distant excitatory neurons. These findings challenge the generality of the non-specific pooling principle for inhibitory neurons, suggesting different rules for functional excitatory-inhibitory interactions in non-murine species.

摘要

视觉皮层中的功能回路需要兴奋性和抑制性神经元的协同活动。小鼠中的分子遗传学方法引出了抑制性连接的“局部非特异性汇聚原则”,即由于局部输入的随机汇聚,抑制性神经元对刺激特征不具有选择性。然而,目前尚不清楚这一原则是否适用于具有特征选择性柱状组织的物种,如食肉动物、灵长类动物和人类。在这里,我们利用病毒介导的GABA能特异性GCaMP6f表达来证明,雪貂视觉皮层中的抑制性神经元对定向刺激有强烈且选择性的反应。我们发现,抑制性神经元的调谐与兴奋性输入的局部非特异性汇聚不一致,并且抑制性神经元与局部和远处的兴奋性神经元表现出方向特异性的噪声相关性。这些发现挑战了抑制性神经元非特异性汇聚原则的普遍性,表明非小鼠物种中功能性兴奋性-抑制性相互作用存在不同规则。

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