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Synaptic mechanisms underlying the intense firing of neocortical layer 5B pyramidal neurons in response to cortico-cortical inputs

机译:突触机制依赖于Cortico-Portical投入响应于Cortico-Portical Inputs

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摘要

In the neocortex, large layer 5B pyramidal neurons implement a high-density firing code. In contrast, other subtypes of pyramidal neurons, including those in layer 2/3, are functionally characterized by their sparse firing rate. Here, we investigate the synaptic basis of this behavior by comparing the properties of the postsynaptic responses evoked by cortical inputs in layer 5B and layer 2/3 pyramidal neurons in vitro. We demonstrate that a major determinant of the larger responsiveness of layer 5B with respect to layer 2/3 pyramidal neurons is the different properties in their inhibitory postsynaptic currents (IPSCs): layer 5B pyramidal neurons have IPSCs of lower amplitude and the temporal delay between the excitatory and inhibitory synaptic components is also larger in these cells. Our data also suggest that this difference depends on the lower gain of the cortical response of layer 5 parvalbumin-positive fast-spiking (PV-FS) interneurons with respect to PV-FS cells from layer 2/3. We propose that, while superficial PV-FS interneurons are well suited to provide a powerful feed-forward inhibitory control of pyramidal neuron responses, layer 5 PV-FS interneurons are mainly engaged in a feedback inhibitory loop and only after a substantial recruitment of surrounding pyramidal cells do they respond to an external input.
机译:在Neocortex中,大层5B金字塔内神经元实施了高密度的触发码。相反,金字塔神经元的其他亚型,包括层2/3中的那些,其功能性地具有它们的稀疏烧制率。在这里,我们通过比较由层5B层和2/3层2/3金字塔神经元的皮质输入引起的后腹膜响应的性质来研究这种行为的突触基。我们证明层5B相对于第2/3层锥体神经元的较大响应性的主要决定因素是其抑制突触突触电流(IPSC)的不同性质:第5B层金字塔神经元具有较低幅度的IPSC和时间延迟这些细胞中兴奋性和抑制突触组分也更大。我们的数据还表明,这种差异取决于层5的PV-FS阳性快速尖峰(PV-FS)中间峰的皮质响应的低增益相对于来自层2/3的PV-FS细胞。我们提出的是,虽然浅表PV-FS中间核非常适合提供对金字塔神经元响应的强大馈通抑制控制,但是第5层PV-FS中间核主要从事反馈抑制回路,只有在大量招募金字塔之后细胞它们会响应外部输入。

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