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The effects of visual stimulation and selective visual attention on rhythmic neuronal synchronization in macaque area V4

机译:视觉刺激和选择性视觉注意对猕猴V4节律性神经元同步的影响

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摘要

Selective attention lends relevant sensory input priority access to higher-level brain areas and ultimately to behavior. Recent studies have suggested that those neurons in visual areas that are activated by an attended stimulus engage in enhanced gamma-band (30-70 Hz) synchronization compared with neurons activated by a distracter. Such precise synchronization could enhance the postsynaptic impact of cells carrying behaviorally relevant information. Previous studies have used the local field potential (LFP) power spectrum or spike-LFP coherence (SFC) to indirectly estimate spike synchronization. Here, we directly demonstrate zero-phase gamma-band coherence among spike trains of V4 neurons. This synchronization was particularly evident during visual stimulation and enhanced by selective attention, thus confirming the pattern inferred from LFP power and SFC. We therefore investigated the time course of LFP gamma-band power and found rapid dynamics consistent with interactions of top-down spatial and feature attention with bottom-up saliency. In addition to the modulation of synchronization during visual stimulation, selective attention significantly changed the prestimulus pattern of synchronization. Attention inside the receptive field of the recorded neuronal population enhanced gamma-band synchronization and strongly reduced alpha-band (9-11 Hz) synchronization in the prestimulus period. These results lend further support for a functional role of rhythmic neuronal synchronization in attentional stimulus selection.
机译:选择性注意使相关的感觉输入优先进入较高级别的大脑区域,最终导致行为。最近的研究表明,与由干扰物激活的神经元相比,由有人参与的刺激激活的视觉区域中的神经元具有增强的伽马波段(30-70 Hz)同步性。这种精确的同步可以增强携带行为相关信息的细胞的突触后影响。先前的研究已使用局域电势(LFP)功率谱或尖峰LFP相干性(SFC)间接估计了尖峰同步。在这里,我们直接证明V4神经元的尖峰序列之间的零相位伽马带相干性。这种同步在视觉刺激过程中尤为明显,并通过选择性注意得到增强,从而证实了从LFP功率和SFC推断出的模式。因此,我们研究了LFP伽马能的时程,发现快速动态与自上而下的空间相互作用以及特征关注与自下而上的显着性一致。除了在视觉刺激过程中调节同步之外,选择性注意还显着改变了同步的刺激模式。记录的神经元群体的感受野内的注意力增强了刺激前期的伽马波段同步并大大降低了阿尔法波段(9-11 Hz)同步。这些结果进一步支持了有节奏的神经元同步在注意刺激选择中的功能性作用。

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