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体内自发局部网络活动增强视觉反应性

Enhancement of visual responsiveness by spontaneous local network activity in vivo.

作者信息

Haider Bilal, Duque Alvaro, Hasenstaub Andrea R, Yu Yuguo, McCormick David A

机构信息

Department of Neurobiology, Yale University, School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Neurophysiol. 2007 Jun;97(6):4186-202. doi: 10.1152/jn.01114.2006. Epub 2007 Apr 4.

Abstract

Spontaneous activity within local circuits affects the integrative properties of neurons and networks. We have previously shown that neocortical network activity exhibits a balance between excitatory and inhibitory synaptic potentials, and such activity has significant effects on synaptic transmission, action potential generation, and spike timing. However, whether such activity facilitates or reduces sensory responses has yet to be clearly determined. We examined this hypothesis in the primary visual cortex in vivo during slow oscillations in ketamine-xylazine anesthetized cats. We measured network activity (Up states) with extracellular recording, while simultaneously recording postsynaptic potentials (PSPs) and action potentials in nearby cells. Stimulating the receptive field revealed that spiking responses of both simple and complex cells were significantly enhanced (>2-fold) during network activity, as were spiking responses to intracellular injection of varying amplitude artificial conductance stimuli. Visually evoked PSPs were not significantly different in amplitude during network activity or quiescence; instead, spontaneous depolarization caused by network activity brought these evoked PSPs closer to firing threshold. Further examination revealed that visual responsiveness was gradually enhanced by progressive membrane potential depolarization. These spontaneous depolarizations enhanced responsiveness to stimuli of varying contrasts, resulting in an upward (multiplicative) scaling of the contrast response function. Our results suggest that small increases in ongoing balanced network activity that result in depolarization may provide a rapid and generalized mechanism to control the responsiveness (gain) of cortical neurons, such as occurs during shifts in spatial attention.

摘要

局部回路中的自发活动会影响神经元和神经网络的整合特性。我们之前已经表明,新皮层网络活动在兴奋性和抑制性突触电位之间呈现出一种平衡,并且这种活动对突触传递、动作电位的产生以及峰电位时间具有显著影响。然而,这种活动是促进还是降低感觉反应尚未明确确定。我们在氯胺酮 - 赛拉嗪麻醉的猫的慢振荡期间,对其初级视觉皮层进行了体内实验来检验这一假设。我们通过细胞外记录测量网络活动(上行状态),同时记录附近细胞的突触后电位(PSP)和动作电位。刺激感受野发现,在网络活动期间,简单细胞和复杂细胞的放电反应均显著增强(>2倍),对细胞内注入不同幅度人工电导刺激的放电反应也是如此。在网络活动或静息期间,视觉诱发的PSP幅度没有显著差异;相反,由网络活动引起的自发去极化使这些诱发的PSP更接近发放阈值。进一步研究表明,视觉反应性通过逐渐的膜电位去极化而逐渐增强。这些自发去极化增强了对不同对比度刺激的反应性,导致对比度反应函数向上(乘法)缩放。我们的结果表明,持续平衡网络活动的小幅增加导致去极化,可能提供一种快速且普遍的机制来控制皮层神经元的反应性(增益),比如在空间注意力转移期间所发生的情况。

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