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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Electrophysiological and firing properties of neurons: Categorizing soloists and choristers in primary visual cortex
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Electrophysiological and firing properties of neurons: Categorizing soloists and choristers in primary visual cortex

机译:神经元的电生理特性和放电特性:将初级视觉皮层中的独奏者和助听器分类

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摘要

Visual processing in the cortex involves various aspects of neuronal properties such as morphological, electrophysiological and molecular. In particular, the neural firing pattern is an important indicator of dynamic circuitry within a neuronal population. Indeed, in microcircuits, neurons act as soloists or choristers wherein the characteristical activity of a 'soloist' differs from the firing pattern of a 'chorister'. Both cell types correlate their respective firing rate with the global populational activity in a unique way. In the present study, we sought to examine the relationship between the spike shape (thin spike neurons and broad spike neurons) of cortical neurons recorded from V1, their firing levels and their propensity to act as soloists or choristers. We found that thin spike neurons, which exhibited higher levels of firing, generally correlate their activity with the neuronal population (choristers). On the other hand, broad spike neurons showed lower levels of firing and demonstrated weak correlations with the assembly (soloists). A major consequence of the present study is: estimating the correlation of neural spike trains with their neighboring population is a predictive indicator of spike waveforms and firing level. Indeed, we found a continuum distribution of coupling strength ranging from weak correlation-strength (attributed to lowfiring neurons) to high correlation-strength (attributed to high-firing neurons). The tendency to exhibit high- or low-firing is conducive to the spike shape of neurons. Our results offer new insights into visual processing by showing how high-firing rate neurons (mostly thin spike neurons) could modulate the neuronal responses within cell-assemblies. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:皮层中的视觉处理涉及神经元特性的各个方面,例如形态学,电生理学和分子学。特别地,神经放电模式是神经元群体内动态电路的重要指示。确实,在微电路中,神经元充当独奏者或合唱者,其中“独奏者”的特征性活动不同于“合唱者”的触发方式。两种细胞类型均以独特的方式将其各自的放电速率与总体种群活动相关联。在本研究中,我们试图检查从V1记录的皮质神经元的峰形(薄峰神经元和宽峰神经元)之间的关系,它们的发射水平以及他们充当独奏者或合唱者的倾向。我们发现,表现出较高激发水平的尖峰神经元通常将其活动与神经元群体(合唱团)相关联。另一方面,宽尖峰神经元的放电水平较低,并且与装配体(独奏者)的相关性较弱。本研究的主要结果是:估计神经峰值序列与其邻近种群的相关性是峰值波形和发射水平的预测指标。确实,我们发现耦合强度的连续分布范围从弱的相关强度(归因于低发射神经元)到高的相关强度(归因于高发射神经元)。呈现高发或低发的趋势有利于神经元的尖峰形状。我们的结果通过显示高发射率的神经元(主要是细穗神经元)如何调节细胞装配体内的神经元反应,为视觉处理提供了新的见解。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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