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小鼠初级视觉皮层中刺激选择性反应可塑性的体细胞与树突表达的对立关系

Opposing Somatic and Dendritic Expression of Stimulus-Selective Response Plasticity in Mouse Primary Visual Cortex.

作者信息

Kim Taekeun, Chaloner Francesca A, Cooke Sam F, Harnett Mark T, Bear Mark F

机构信息

Department of Brain and Cognitive Sciences, Picower Institute for Learning and Memory, Massachusetts Institute of Technology, Cambridge, MA, United States.

MRC Centre for Neurodevelopmental Disorders (CNDD), King's College London, London, United Kingdom.

出版信息

Front Cell Neurosci. 2020 Jan 14;13:555. doi: 10.3389/fncel.2019.00555. eCollection 2019.

Abstract

Daily exposure of awake mice to a phase-reversing visual grating stimulus leads to enhancement of the visual-evoked potential (VEP) in layer 4 of the primary visual cortex (V1). This stimulus-selective response potentiation (SRP) resembles and shares mechanistic requirements with canonical long-term synaptic potentiation (LTP). However, it remains to be determined how this augmentation of a population response translates into altered neuronal activity of individual V1 neurons. To address this question, we performed longitudinal calcium imaging of layer 4 excitatory neurons in V1 and tracked changes associated with the induction and expression of SRP. We found no evidence for a net change in the fraction of visually responsive neurons as the stimulus became familiar. However, endoscopic calcium imaging of layer 4 principal neurons revealed that somatic calcium transients in response to phase-reversals of the familiar visual stimulus are reduced and undergo strong within-session adaptation. Conversely, neuropil calcium responses and VEPs are enhanced during familiar stimulus viewing, and the VEPs show reduced within-session adaptation. Consistent with the exquisite selectivity of SRP, the plasticity of cellular responses to phase-reversing gratings did not translate into altered orientation selectivity to drifting gratings. Our findings suggest a model in which augmentation of fast, short-latency synaptic (dendritic) responses, manifested as enhanced layer 4 VEPs, recruits inhibition to suppress cellular activity. Reduced cellular activity to the familiar stimulus may account for the behavioral correlate of SRP, orientation-selective long-term habituation.

摘要

使清醒小鼠每日暴露于相位反转的视觉光栅刺激下,会导致初级视觉皮层(V1)第4层的视觉诱发电位(VEP)增强。这种刺激选择性反应增强(SRP)与典型的长期突触增强(LTP)相似,并具有共同的机制要求。然而,群体反应的这种增强如何转化为单个V1神经元的神经元活动改变仍有待确定。为了解决这个问题,我们对V1第4层兴奋性神经元进行了纵向钙成像,并追踪了与SRP诱导和表达相关的变化。我们没有发现随着刺激变得熟悉,视觉反应性神经元比例发生净变化的证据。然而,对第4层主要神经元的内窥镜钙成像显示,对熟悉的视觉刺激相位反转的体细胞钙瞬变减少,并在实验过程中经历强烈的适应性变化。相反,在观看熟悉刺激时,神经毡钙反应和VEP增强,并且VEP在实验过程中的适应性降低。与SRP的高度选择性一致,细胞对相位反转光栅的反应可塑性并未转化为对漂移光栅的方向选择性改变。我们的研究结果提出了一个模型,其中快速、短潜伏期突触(树突)反应的增强表现为第4层VEP增强,会募集抑制作用来抑制细胞活动。对熟悉刺激的细胞活动降低可能解释了SRP的行为相关性,即方向选择性长期习惯化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/934d/6971207/ba48794964dc/fncel-13-00555-g0001.jpg

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