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Inhibitory Gating of Input Comparison in the CA1 Microcircuit

机译:CA1微电路中输入比较的抑制门控

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Spatial and temporal features of synaptic inputs engage integration mechanisms on multiple scales, including presynaptic release sites, postsynaptic dendrites, and networks of inhibitory interneurons. Here we investigate how these mechanisms cooperate to filter synaptic input in hippocampal area CA1. Dendritic recordings from CA1 pyramidal neurons reveal that proximal inputs from CA3 as well as distal inputs from entorhinal cortex layer III (ECIII) sum sublinearly or linearly at low firing rates due to feedforward inhibition, but sum supralinearly at high firing rates due to synaptic facilitation, producing a high-pass filter. However, during ECIII and CA3 input comparison, supralinear dendritic integration is dynamically balanced by feedforward and feedback inhibition, resulting in suppression of dendritic complex spiking. We find that a particular subpopulation of CA1 interneurons expressing neuropeptide Y (NPY) contributes prominently to this dynamic filter by integrating both ECIII and CA3 input pathways and potently inhibiting CA1 pyramidal neuron dendrites. CA3 and ECIII inputs to CA1 target distinct dendritic domains of pyramidal cells and recruit specific classes of interneurons. Milstein et al. quantify contributions by short-term plasticity, dendritic amplification, and compartmentalized inhibition to synaptic filtering dynamics during dual pathway integration.
机译:突触输入的时空特征参与多种尺度的整合机制,包括突触前释放位点,突触后树突和抑制性中间神经元网络。在这里,我们研究了这些机制如何协同作用来过滤海马区CA1中的突触输入。来自CA1锥体神经元的树突状记录显示,由于前馈抑制,CA3的近端输入以及内嗅皮质层III(ECIII)的远端输入在低放电速率下呈亚线性或线性相加,但在高放电速率下由于突触促进而呈超线性相加,产生一个高通滤波器。但是,在ECIII和CA3输入比较期间,超线性树突积分通过前馈和反馈抑制来动态平衡,从而抑制了树突复合体尖峰的产生。我们发现表达神经肽Y(NPY)的CA1 interneurons的特定亚群通过整合ECIII和CA3输入途径并有效抑制CA1锥体神经元树突而对该动态过滤器做出了突出贡献。 CA1的CA3和ECIII输入靶向锥体细胞的独特树突结构域,并募集特定类别的中间神经元。米尔斯坦(Milstein)等。通过双通道整合过程中的短期可塑性,树突放大和对突触过滤动力学的分区抑制来量化贡献。

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    《Neuron》 |2015年第6期|共16页
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  • 正文语种 eng
  • 中图分类 神经病学;
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