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首页> 外文期刊>Hippocampus >Parvalbumin interneuron mediated feedforward inhibition controls signal output in the deep layers of the perirhinal‐entorhinal cortex
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Parvalbumin interneuron mediated feedforward inhibition controls signal output in the deep layers of the perirhinal‐entorhinal cortex

机译:Parvalbumin Interneuron介导的前馈抑制控制Perirhinal-Entorhinal皮层的深层中的信号输出

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Abstract The perirhinal (PER) and lateral entorhinal (LEC) cortex form an anatomical link between the neocortex and the hippocampus. However, neocortical activity is transmitted through the PER and LEC to the hippocampus with a low probability, suggesting the involvement of the inhibitory network. This study explored the role of interneuron mediated inhibition, activated by electrical stimulation in the agranular insular cortex (AiP), in the deep layers of the PER and LEC. Activated synaptic input by AiP stimulation rarely evoked action potentials in the PER‐LEC deep layer excitatory principal neurons, most probably because the evoked synaptic response consisted of a small excitatory and large inhibitory conductance. Furthermore, parvalbumin positive (PV) interneurons—a subset of interneurons projecting onto the axo‐somatic region of principal neurons—received synaptic input earlier than principal neurons, suggesting recruitment of feedforward inhibition. This synaptic input in PV interneurons evoked varying trains of action potentials, explaining the fast rising, long lasting synaptic inhibition received by deep layer principal neurons. Altogether, the excitatory input from the AiP onto deep layer principal neurons is overruled by strong feedforward inhibition. PV interneurons, with their fast, extensive stimulus‐evoked firing, are able to deliver this fast evoked inhibition in principal neurons. This indicates an essential role for PV interneurons in the gating mechanism of the PER‐LEC network.
机译:摘要百灵脉(每个)和横向梭形(LEC)皮质形成新生导管和海马之间的解剖联系。然而,Neocortical活性通过每次和LEC传输到海马,概率低,表明抑制网络的参与。本研究探讨了intereuron介导的抑制作用的作用,通过在半层和LEC的深层中通过电刺激激活的电刺激激活。通过AIP刺激激活的突触输入很少诱发每lec深层兴奋性主神经元的动作电位,最重要的是因为诱发的突触反应包括小的兴奋性和大的抑制性导电。此外,Parvalbumin阳性(PV)中间核 - 突出到比主要神经元早期的主要神经元接受突触输入的轴身区域的中间核心的子集,旨在招募前馈抑制。这种突触输入在PV Interneurons中唤起了不同的动作电位列表,解释了深层主神经元接收的快速上升,持久的突触抑制。总共,通过强向前馈抑制来估计从AIP到深层主神经元的兴奋输入。 PV Interneurons,其快速,广泛的刺激射击射击,能够在主神经元中提供这种快速诱发的抑制。这表明PV Interneurons在PER-LEC网络的门控机构中的基本作用。

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