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视皮层神经元相关性的层依赖。

Laminar dependence of neuronal correlations in visual cortex.

机构信息

Department of Ophthalmology, Center for Neural Basis of Cognition and Fox Center for Vision Restoration, University of Pittsburgh, Pittsburgh, Pennsylvania 15213, USA.

出版信息

J Neurophysiol. 2013 Feb;109(4):940-7. doi: 10.1152/jn.00846.2012. Epub 2012 Nov 28.

Abstract

Neuronal responses are correlated on a range of timescales. Correlations can affect population coding and may play an important role in cortical function. Correlations are known to depend on stimulus drive, behavioral context, and experience, but the mechanisms that determine their properties are poorly understood. Here we make use of the laminar organization of cortex, with its variations in sources of input, local circuit architecture, and neuronal properties, to test whether networks engaged in similar functions but with distinct properties generate different patterns of correlation. We find that slow timescale correlations are prominent in the superficial and deep layers of primary visual cortex (V1) of macaque monkeys, but near zero in the middle layers. Brief timescale correlation (synchrony), on the other hand, was slightly stronger in the middle layers of V1, although evident at most cortical depths. Laminar variations were also apparent in the power of the local field potential, with a complementary pattern for low frequency (<10 Hz) and gamma (30-50 Hz) power. Recordings in area V2 revealed a laminar dependence similar to V1 for synchrony, but slow timescale correlations were not different between the input layers and nearby locations. Our results reveal that cortical circuits in different laminae can generate remarkably different patterns of correlations, despite being tightly interconnected.

摘要

神经元的反应在多个时间尺度上相关。相关性可以影响群体编码,并可能在皮层功能中发挥重要作用。已知相关性取决于刺激驱动、行为背景和经验,但确定其特性的机制尚未得到很好的理解。在这里,我们利用皮层的层状组织,其输入源、局部回路结构和神经元特性的变化,来测试参与相似功能但具有不同特性的网络是否会产生不同的相关模式。我们发现,慢时间尺度的相关性在猕猴初级视觉皮层(V1)的浅层和深层中很明显,但在中层中几乎为零。另一方面,短暂时间尺度的相关性(同步)在 V1 的中层略强,尽管在大多数皮层深度都很明显。局部场电位的功率也表现出明显的分层变化,低频(<10 Hz)和伽马(30-50 Hz)功率呈现互补模式。在 V2 区的记录显示,同步的分层依赖性与 V1 相似,但输入层和附近位置之间的慢时间尺度相关性没有差异。我们的结果表明,尽管紧密互联,但不同层的皮层回路可以产生截然不同的相关模式。

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