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The excitatory neuronal network of the C2 barrel column in mouse primary somatosensory cortex.

机译:小鼠原代体感皮层中C2桶形柱的兴奋性神经元网络。

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Local microcircuits within neocortical columns form key determinants of sensory processing. Here, we investigate the excitatory synaptic neuronal network of an anatomically defined cortical column, the C2 barrel column of mouse primary somatosensory cortex. This cortical column is known to process tactile information related to the C2 whisker. Through multiple simultaneous whole-cell recordings, we quantify connectivity maps between individual excitatory neurons located across all cortical layers of the C2 barrel column. Synaptic connectivity depended strongly upon somatic laminar location of both presynaptic and postsynaptic neurons, providing definitive evidence for layer-specific signaling pathways. The strongest excitatory influence upon the cortical column was provided by presynaptic layer 4 neurons. In all layers we found rare large-amplitude synaptic connections, which are likely to contribute strongly to reliable information processing. Our data set provides the first functional description of the excitatory synaptic wiring diagram of a physiologically relevant and anatomically well-defined cortical column at single-cell resolution.
机译:新皮质柱内的局部微电路形成感觉处理的关键决定因素。在这里,我们研究了解剖学定义的皮层列,即小鼠主要体感皮层的C2桶列的兴奋性突触神经元网络。已知该皮质柱可处理与C2晶须有关的触觉信息。通过多个同时进行的全细胞记录,我们量化了位于C2桶形柱的所有皮质层上的单个兴奋性神经元之间的连通性图。突触的连通性在很大程度上取决于突触前和突触后神经元的体细胞层状定位,从而为层特异性信号通路提供了明确的证据。突触前第4层神经元提供了对皮质柱最强的兴奋作用。在所有层中,我们都发现了罕见的大振幅突触连接,这很可能对可靠的信息处理有很大贡献。我们的数据集提供了在单细胞分辨率下生理相关且在解剖学上定义明确的皮质柱的兴奋性突触接线图的第一个功能描述。

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