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Rhythmic neuronal synchronization in visual cortex entails spatial phase relation diversity that is modulated by stimulation and attention

机译:视觉皮层的节律性神经元同步需要空间相位关系的多样性,该多样性受刺激和注意力的调节

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Groups of neurons tend to synchronize in distinct frequency bands. Within a given frequency band, synchronization is defined as the consistency of phase relations between site pairs, over time. This synchronization has been investigated in numerous studies and has been found to be modulated by sensory stimulation or cognitive conditions. Here, we investigate local field potentials (LFPs) and multi-unit activity (MUA) recorded from area V4 of two monkeys performing a selective visual attention task. We show that phase relations, that are consistent over time, are typically diverse across site pairs. That is, across site pairs, mean phase relations differ substantially and this across-site-pair phase-relation diversity (SPHARED, for Spatial PHAse RElation Diversity) is highly reliable. Furthermore, we show that visual stimulation and selective attention can shift the pattern of phase relations across site pairs. These shifts are again diverse and this across-site-pair phase-relation-shift diversity (SPHARESD) is again highly reliable. We find SPHARED for LFP-LFP, LFP-MUA and MUA-MUA pairs, stimulus-induced SPHARESD for LFP-LFP and LFP-MUA pairs, and attention-induced SPHARESD for LFP-LFP pairs. SPHARESD is a highly interesting signal from the perspective of impact on downstream neuronal activity. We provide several pieces of evidence for such a role.
机译:神经元组倾向于在不同的频带中同步。在给定的频带内,同步定义为站点对之间的相位关系随时间变化的一致性。在许多研究中已经研究了这种同步,并且发现其被感觉刺激或认知条件所调节。在这里,我们调查从执行选择性视觉注意任务的两只猴子的区域V4记录的局部场电势(LFP)和多单位活动(MUA)。我们显示,随着时间的推移,相位关系会保持一致,通常在站点对之间是不同的。也就是说,在跨站点对的平均相位关系上存在很大差异,并且跨站点对的相位关系多样性(SPHARED,用于空间PHAse关系多样性)非常可靠。此外,我们表明视觉刺激和选择性注意可以改变站点对之间的相位关系模式。这些移位又是多样的,并且这种跨站点对相位关系移位的多样性(SPHARESD)还是高度可靠的。我们发现LFP-LFP,LFP-MUA和MUA-MUA对的SPHARED,LFP-LFP和LFP-MUA对的刺激诱导的SPHARESD,以及LFP-LFP对的注意力诱导的SPHARESD。从对下游神经元活动的影响的角度来看,SPHARESD是一个非常有趣的信号。我们为这种作用提供了一些证据。

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