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The role of the primary visual cortex in perceptual suppression of salient visual stimuli

机译:初级视觉皮层在显着视觉刺激感知抑制中的作用

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摘要

The role of primary visual cortex (area V1) in subjective perception has intrigued students of vision for decades. Specifically, the extent to which the activity of different types of cells (monocular versus binocular) and electrophysiological signals (i.e., local field potentials versus spiking activity) reflect perception is still debated. To address these questions we recorded from area V1 of the macaque using tetrodes during the paradigm of binocular flash suppression, where incongruent images presented dichoptically compete for perceptual dominance. We found that the activity of a minority (20%) of neurons reflect the perceived visual stimulus and these cells exhibited perceptual modulations substantially weaker compared with their sensory modulation induced by congruent stimuli. Importantly, perceptual modulations were found equally often for monocular and binocular cells, demonstrating that perceptual competition in V1 involves mechanisms across both types of neurons. The power of the local field potential (LFP) also showed moderate perceptual modulations with similar percentages of sites showing significant effects across frequency bands (18-22%). The possibility remains that perception may be strongly reflected in more elaborate aspects of activity in V1 circuits (e.g., specific neuronal subtypes) or perceptual states might have a modulatory role on more intricate aspects of V1 firing patterns (e.g., synchronization), not necessarily altering the firing rates of single cells or the LFP power dramatically. Copyright © 2010 the authors.
机译:几十年来,初级视觉皮层(区域V1)在主观感知中的作用吸引了视觉学生。具体而言,仍在争论不同类型的细胞的活动(单眼的与双眼的)和电生理信号(即局部场电势与尖峰活动)反映到何种程度。为了解决这些问题,我们在双眼闪光抑制范例中使用四极体从四头猕猴的V1区域记录下来,其中双歧性呈现的不一致图像争夺感知优势。我们发现少数(20%)神经元的活动反映了感知到的视觉刺激,并且与同等刺激所致的感觉调节相比,这些细胞表现出的感知调节明显较弱。重要的是,在单眼和双眼细胞中,同等频率地发现了感知调节,这表明V1的感知竞争涉及两种神经元的机制。局部场电势(LFP)的功率还显示出中等的感知调制,具有相似百分比的位点,在整个频带上均表现出显着影响(18-22%)。可能性仍然存在,即感知可能会强烈反映在V1回路的活动的更为复杂的方面(例如特定的神经元亚型),或者感知状态可能对V1触发模式的更复杂的方面(例如同步)具有调节作用,而不必改变单电池的发射速率或LFP功率显着提高。版权所有©2010作者。

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