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成像诱发活动在桶状皮层中显著横向扩展至皮质柱之外,为编码触须身份提供了基础。

Prominent lateral spread of imaged evoked activity beyond cortical columns in barrel cortex provides foundation for coding whisker identity.

作者信息

Jacobs Nathan S, Frostig Ron D

机构信息

University of California, Department of Neurobiology and Behavior, Irvine, California, United States.

University of California, Center for Learning and Memory, Irvine, California, United States.

出版信息

Neurophotonics. 2017 Jul;4(3):031218. doi: 10.1117/1.NPh.4.3.031218. Epub 2017 Jun 8.

Abstract

The posterior medial barrel subfield (PMBSF) of a rat primary somatosensory cortex exquisitely demonstrates topography and columnar organization, defining features of sensory cortices in the mammalian brain. Optical imaging and neuronal recordings in rat PMBSF demonstrate how evoked cortical activity following single whisker stimulation also rapidly spreads laterally into surrounding cortices, disregarding columnar and modality boundaries. The current study quantifies the spatial prominence of such lateral activity spreads by demonstrating that functional connectivity between laterally spaced cortical locations is actually stronger than between vertically spaced cortical locations. Further, the total amount of evoked activity within and beyond single column boundaries was quantified based on intrinsic signal optical imaging, single units and local field potentials recordings, revealing that the vast majority of whisker evoked activity in PMBSF occurs beyond columnar boundaries. Finally, a simple two-layer artificial neural network model of PMBSF demonstrates the capacity of extracolumnar evoked activity spread to provide a foundation for accurate whisker stimulus classification that is robust to random scaling of inputs and local noise. Indeed, classification performance improved when more of the lateral spread was included in the model, providing further evidence for the relevance of the lateral spread.

摘要

大鼠初级体感皮层的后内侧桶状亚区(PMBSF)精确地展示了拓扑结构和柱状组织,这是哺乳动物大脑感觉皮层的定义特征。大鼠PMBSF中的光学成像和神经元记录表明,单根触须刺激后诱发的皮层活动是如何迅速横向扩散到周围皮层的,而无视柱状和模态边界。当前的研究通过证明横向间隔的皮层位置之间的功能连接实际上比垂直间隔的皮层位置之间的功能连接更强,来量化这种横向活动扩散的空间显著性。此外,基于内在信号光学成像、单个神经元和局部场电位记录,对单个柱状边界内外诱发活动的总量进行了量化,结果显示PMBSF中绝大多数触须诱发活动发生在柱状边界之外。最后,一个简单的PMBSF两层人工神经网络模型证明了柱外诱发活动扩散的能力,为准确的触须刺激分类提供了基础,该分类对输入的随机缩放和局部噪声具有鲁棒性。事实上,当模型中包含更多的横向扩散时,分类性能得到了改善,这为横向扩散的相关性提供了进一步的证据。

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Excitatory neuronal connectivity in the barrel cortex.桶状皮层中的兴奋性神经元连接。
Front Neuroanat. 2012 Jul 11;6:24. doi: 10.3389/fnana.2012.00024. eCollection 2012.

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