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Frequency-band signatures of visual responses to naturalistic input in ferret primary visual cortex during free viewing

机译:在自由式观察期间,雪貂原色视觉皮层中自然输入的视觉响应频带签名

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Neuronal firing responses in visual cortex reflect the statistics of visual input and emerge from the interaction with endogenous network dynamics. Artificial visual stimuli presented to animals in which the network dynamics were constrained by anesthetic agents or trained behavioral tasks have provided fundamental understanding of how individual neurons in primary visual cortex respond to input. In contrast, very little is known about the mesoscale network dynamics and their relationship to microscopic spiking activity in the awake animal during free viewing of naturalistic visual input. To address this gap in knowledge, we recorded local field potential (LFP) and multiunit activity (MUA) simultaneously in all layers of primary visual cortex (V1) of awake, freely viewing ferrets presented with naturalistic visual input (nature movie clips). We found that naturalistic visual stimuli modulated the entire oscillation spectrum; low frequency oscillations were mostly suppressed whereas higher frequency oscillations were enhanced. In average across all cortical layers, stimulus-induced change in delta and alpha power negatively correlated with the MUA responses, whereas sensory-evoked increases in gamma power positively correlated with MUA responses. The time-course of the band-limited power in these frequency bands provided evidence for a model in which naturalistic visual input switched V1 between two distinct, endogenously present activity states defined by the power of low (delta, alpha) and high (gamma) frequency oscillatory activity. Therefore, the two mesoscale activity states delineated in this study may define the degree of engagement of the circuit with the processing of sensory input. (C) 2014 Elsevier B.V. All rights reserved.
机译:Visual Cortex中的神经元烧制响应反映了视觉输入的统计数据,并从与内源网络动态的相互作用中出现。人工视觉刺激呈现给动物动态被麻醉剂或受过训练的行为任务限制的动物,对原发性视觉皮质中的个体神经元响应输入的个体神经元提供了根本的理解。相比之下,在自然主义视觉输入的自由视期间,关于Mescreal Network Dynamics及其与唤醒动物微观尖刺活动的关系很少。为了解决知识中的这种差距,我们在唤醒的所有主要视觉皮层(V1)中的所有层中录制了本地现场潜力(LFP)和多单次活动(MUA),自由地观察含有自然主义视觉输入的雪貂(自然电影剪辑)。我们发现自然的视觉刺激调制了整个振荡谱;低频振荡大部分抑制,而较高的频率振荡增强了。平均跨所有皮质层,刺激诱导的Δ和α功率的变化与MUA响应负相关,而感觉诱发的伽马功率随着MUA反应呈正相关。这些频段中的带限量的时间过程提供了一种模型的证据,其中包括由低(Delta,Alpha)和高(Gamma)的功率定义的两个不同的内源性存在的活动状态之间的自然性视觉输入切换V1频率振荡活动。因此,在本研究中描述的两个Mescale活动状态可以利用感觉输入的处理来定义电路的接合程度。 (c)2014 Elsevier B.v.保留所有权利。

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