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Excitatory cortical neurons form fine-scale functional networks

机译:兴奋皮层神经元形成精细的功能网络

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The specificity of cortical neuron connections creates columns of functionally similar neurons spanning from the pia to the white matter(1-6). Here we investigate whether there is an additional, finer level of specificity that creates subnetworks of excitatory neurons within functional columns. We tested for fine-scale specificity of connections to cortical layer 2/3 pyramidal neurons in rat visual cortex by using cross-correlation analyses of synaptic currents evoked by photostimulation. Recording simultaneously from adjacent layer 2/3 pyramidal cells, we find that when they are connected to each other (20% of all recorded pairs) they share common input from layer 4 and within layer 2/3. When adjacent layer 2/3 neurons are not connected to each other, they share very little ( if any) common excitatory input from layers 4 and 2/3. In contrast, all layer 2/3 neurons share common excitatory input from layer 5 and inhibitory input from layers 2/3 and 4, regardless of whether they are connected to each other. Thus, excitatory connections from layer 4 to layer 2/3 and within layer 2/3 form fine-scale assemblies of selectively interconnected neurons; inhibitory connections and excitatory connections from layer 5 link neurons across these fine-scale subnetworks. Relatively independent subnetworks of excitatory neurons are therefore embedded within the larger-scale functional architecture; this allows neighbouring neurons to convey information more independently than suggested by previous descriptions of cortical circuitry.
机译:皮层神经元连接的特异性产生了功能相似的神经元列,其范围从小脑到白质(1-6)。在这里,我们调查是否存在额外的,更精细的特异性水平,从而在功能性列内创建兴奋性神经元的子网络。我们通过使用光刺激诱发的突触电流的互相关分析,测试了大鼠视觉皮层中皮层2/3锥体神经元连接的精细尺度特异性。从相邻的第2/3层锥体细胞同时进行记录,我们发现当它们彼此连接(占所有记录对的20%)时,它们共享第4层和第2/3层内的公共输入。当相邻的第2/3层神经元彼此不连接时,它们共享来自第4层和第2/3层的极少(如果有)共同的兴奋性输入。相反,所有第2/3层神经元共享来自第5层的公共兴奋性输入,以及来自第2/3和4层的抑制性输入,无论它们是否彼此连接。因此,从第4层到第2/3层以及在第2/3层之内的兴奋性连接形成了选择性互连的神经元的精细集合。来自第5层的抑制性连接和兴奋性连接将神经元跨这些精细规模的子网络连接起来。因此,相对独立的兴奋性神经元子网络被嵌入到较大的功能结构中。与先前的皮层电路描述相比,这使得邻近的神经元可以更独立地传达信息。

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