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Activation of specific interneurons improves V1 feature selectivity and visual perception

机译:特定中间神经元的激活改善了V1特征的选择性和视觉感知

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摘要

Inhibitory interneurons are essential components of the neural circuits underlying various brain functions. In the neocortex, a large diversity of GABA (γ-aminobutyric acid) interneurons has been identified on the basis of their morphology, molecular markers, biophysical properties and innervation pattern1"3. However, how the activity of each subtype of interneurons contributes to sensory processing remains unclear. Here we show that optogenetic activation of parvalbumin-positive (PV~+) interneurons in the mouse primary visual cortex (VI) sharpens neuronal feature selectivity and improves perceptual discrimination. Using multichannel recording with silicon probes and channelrhodopsin-2 (ChR2)mediated optical activation, we found that increased spiking of PV~+ interneurons markedly sharpened orientation tuning and enhanced direction selectivity of nearby neurons. These effects were caused by the activation of inhibitory neurons rather than a decreased spiking of excitatory neurons, as archaerhodopsin-3 (Arch)-mediated optical silencing of calcium/calmodulindependent protein kinase IIα (CAMKIIa)-positive excitatory neurons caused no significant change in VI stimulus selectivity. Moreover, the improved selectivity specifically required PV~+ neuron activation, as activating somatostatin or vasointestinal peptide interneurons had no significant effect. Notably, PV~+ neuron activation in awake mice caused a significant improvement in their orientation discrimination, mirroring the sharpened VI orientation tuning. Together, these results provide the first demonstration that visual coding and perception can be improved by increased spiking of a specific subtype of cortical inhibitory interneurons.
机译:抑制性中间神经元是构成各种大脑功能的神经回路的重要组成部分。在新皮层中,已经根据它们的形态,分子标记,生物物理特性和神经支配模式[1] 3鉴定出多种多样的GABA(γ-氨基丁酸)中间神经元。然而,每种类型的中间神经元的活性如何促进感觉此处的研究表明,小鼠初级视觉皮层(VI)中小白蛋白阳性(PV〜+)中间神经元的光遗传激活可增强神经元特征选择性并改善感知辨别力。使用硅探针和Channelrhodopspsin-2(ChR2 )介导的光激活,我们发现PV〜+间神经元的尖峰增加显着增强了附近神经元的定向调谐和增强的方向选择性,这些作用是由抑制神经元的激活而不是兴奋性神经元的尖峰减少而引起的,如古细菌视紫红质3 (Arch)介导的钙/钙调蛋白依赖性蛋白激酶IIα(CAMKII)的光学沉默a)阳性兴奋性神经元对VI刺激的选择性无明显影响。此外,提高选择性特别需要PV +神经元的激活,因为激活生长抑素或血管肠肽间神经元没有明显作用。值得注意的是,清醒小鼠的PV〜+神经元活化导致其方向辨别力显着改善,反映出锐化的VI方向调整。这些结果共同提供了第一个证明,即通过增加皮层抑制性中间神经元的特定亚型的尖峰可以改善视觉编码和感知。

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  • 来源
    《Nature》 |2012年第7411期|p.379-383|共5页
  • 作者单位

    Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute. University of California. Berkeley, California 94720, USA,Howard Hughes Medical Institute, University of California, Berkeley, California 94720, USA;

    Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute. University of California. Berkeley, California 94720, USA;

    Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute. University of California. Berkeley, California 94720, USA;

    Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute. University of California. Berkeley, California 94720, USA;

    Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute. University of California. Berkeley, California 94720, USA;

    Broad Fellows Program in Brain Circuitry, Kavli Nanoscience Institute, California Institute of Technology, Pasadena, California 91125, USA;

    Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA;

    Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA;

    Department of Bioengineering, Howard Hughes Medical Institute, Stanford University. Stanford, California 94305, USA;

    Media Laboratory, Biological Engineering, Brain and Cognitive Sciences, and McGovern Institute, Massachusetts Institute of Technology. Cambridge. Massachusetts 02139, USA;

    Department of Bioengineering, Howard Hughes Medical Institute, Stanford University. Stanford, California 94305, USA;

    Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute. University of California. Berkeley, California 94720, USA,Howard Hughes Medical Institute, University of California, Berkeley, California 94720, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 入库时间 2022-08-18 02:54:17

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