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层 4 锥体神经元树突爆发是视觉皮层后刺激α节律的基础。

Layer 4 pyramidal neuron dendritic bursting underlies a post-stimulus visual cortical alpha rhythm.

机构信息

IBM T.J. Watson Research Center, Yorktown Heights, NY, 10598, USA.

Department of Neurology, Columbia University, Columbia, NY, 10032, USA.

出版信息

Commun Biol. 2020 May 11;3(1):230. doi: 10.1038/s42003-020-0947-8.

Abstract

Alpha rhythms (9-11 Hz) are a dominant feature of EEG recordings, particularly over occipital cortex on cessation of a visual stimulation. Little is known about underlying neocortical mechanisms so here we constructed alpha rhythm models that follow cessation of cortical stimulation. The rhythm manifests following a period of gamma frequency activity in local V1 networks in layer 4. It associates with network level bias of excitatory synaptic activity in favour of NMDA- rather than AMPA-mediated signalling and reorganisation of synaptic inhibition in favour of fast GABA receptor-mediated events. At the cellular level the alpha rhythm depended upon the generation of layer 4 pyramidal neuron dendritic bursting mediated primarily by PPDA-sensitive NR2C/D-containing NMDA receptors, which lack the magnesium-dependent open channel block. Subthreshold potassium conductances are also critical. The rhythm dynamically filters outputs from sensory relay neurons (stellate neurons in layer 4) such that they become temporally uncoupled from downstream population activity.

摘要

阿尔法节律(9-11Hz)是脑电图记录的主要特征,特别是在视觉刺激停止时,在枕叶皮层上更为明显。目前对于潜在的新皮层机制知之甚少,因此我们在这里构建了跟随皮质刺激停止的阿尔法节律模型。在局部 V1 网络的第四层中,伽马频率活动之后会出现节律。它与兴奋性突触活动的网络水平偏向 NMDA 而不是 AMPA 信号转导以及有利于快速 GABA 受体介导事件的突触抑制的重新组织相关。在细胞水平上,阿尔法节律依赖于由层 4 锥体神经元树突爆发介导的产生,主要由 PPDA 敏感的含有 NR2C/D 的 NMDA 受体介导,这些受体缺乏镁依赖性开放通道阻断。亚阈值钾电流也很关键。该节律动态地过滤来自感觉中继神经元(第四层的星状神经元)的输出,使得它们与下游群体活动在时间上解耦。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f33b/7214406/d1bfc9ea89b2/42003_2020_947_Fig1_HTML.jpg

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