Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, UK.
Nat Neurosci. 2011 Jan;14(1):100-7. doi: 10.1038/nn.2687. Epub 2010 Nov 14.
The cytoarchitectonic similarities of different neocortical regions have given rise to the idea of 'canonical' connectivity between excitatory neurons of different layers within a column. It is unclear whether similarly general organizational principles also exist for inhibitory neocortical circuits. Here we delineate and compare local inhibitory-to-excitatory wiring patterns in all principal layers of primary motor (M1), somatosensory (S1) and visual (V1) cortex, using genetically targeted photostimulation in a mouse knock-in line that conditionally expresses channelrhodopsin-2 in GABAergic neurons. Inhibitory inputs to excitatory neurons derived largely from the same cortical layer within a three-column diameter. However, subsets of pyramidal cells in layers 2/3 and 5B received extensive translaminar inhibition. These neurons were prominent in V1, where they might correspond to complex cells, less numerous in barrel cortex and absent in M1. Although inhibitory connection patterns were stereotypical, the abundance of individual motifs varied between regions and cells, potentially reflecting functional specializations.
不同新皮层区域的细胞构筑相似性使得人们产生了这样的想法,即在一个柱内的不同层的兴奋性神经元之间存在“典型”的连接。目前尚不清楚类似的一般组织原则是否也存在于抑制性新皮层回路中。在这里,我们使用一种在小鼠敲入系中条件表达通道视紫红质-2的基因靶向光刺激方法,描绘并比较了主要运动皮层(M1)、体感皮层(S1)和视觉皮层(V1)中所有主要层的局部抑制性到兴奋性的布线模式。兴奋性神经元的抑制性输入主要来源于三个柱直径范围内的同一皮质层。然而,来自层 2/3 和 5B 的锥体神经元的亚群接受广泛的跨层抑制。这些神经元在 V1 中很突出,它们可能对应于复杂细胞,在桶状皮层中数量较少,在 M1 中不存在。尽管抑制性连接模式是典型的,但个别基元的丰度在不同区域和细胞之间存在差异,这可能反映了功能的专业化。