Tagliabue Chiara F, Mazzi Chiara, Bagattini Chiara, Savazzi Silvia
University of Verona and National Institute of Neuroscience, VeronaItaly; Perception and Awareness Laboratory, Department of Neurological, Biomedical and Movement Sciences, University of Verona, VeronaItaly.
Cognitive Neuroscience Section, IRCCS Centro San Giovanni di Dio Fatebenefratelli, Brescia Italy.
Front Psychol. 2016 Apr 25;7:572. doi: 10.3389/fpsyg.2016.00572. eCollection 2016.
In visual cognitive neuroscience the debate on consciousness is focused on two major topics: the search for the neural correlates of the different properties of visual awareness and the controversy on the graded versus dichotomous nature of visual conscious experience. The aim of this study is to search for the possible neural correlates of different grades of visual awareness investigating the Event Related Potentials to reduced contrast visual stimuli whose perceptual clarity was rated on the four-point Perceptual Awareness Scale. Results revealed a left centro-parietal negative deflection (Visual Awareness Negativity; VAN) peaking at 280-320 ms from stimulus onset, related to the perceptual content of the stimulus, followed by a bilateral positive deflection (Late Positivity; LP) peaking at 510-550 ms over almost all electrodes, reflecting post-perceptual processes performed on such content. Interestingly, the amplitude of both deflections gradually increased as a function of visual awareness. Moreover, the intracranial generators of the phenomenal content (VAN) were found to be located in the left temporal lobe. The present data thus seem to suggest (1) that visual conscious experience is characterized by a gradual increase of perceived clarity at both behavioral and neural level and (2) that the actual content of perceptual experiences emerges from early local activation in temporal areas, without the need of later widespread frontal engagement.
在视觉认知神经科学中,关于意识的争论集中在两个主要话题上:寻找视觉意识不同属性的神经关联,以及关于视觉意识体验的渐变性质与二分性质的争议。本研究的目的是通过研究对对比度降低的视觉刺激的事件相关电位来寻找不同等级视觉意识的可能神经关联,这些视觉刺激的感知清晰度是根据四点感知意识量表进行评分的。结果显示,从刺激开始起,在280 - 320毫秒时出现一个左中央顶叶负向偏转(视觉意识负波;VAN),与刺激的感知内容相关,随后在几乎所有电极上,在510 - 550毫秒时出现一个双侧正向偏转(晚期正波;LP),反映了对该内容进行的感知后处理。有趣的是,这两种偏转的幅度都随着视觉意识的增强而逐渐增加。此外,发现现象内容(VAN)的颅内发生器位于左颞叶。因此,目前的数据似乎表明:(1)视觉意识体验在行为和神经层面都具有感知清晰度逐渐增加的特征;(2)感知体验的实际内容源于颞叶区域早期的局部激活,而无需后期广泛的额叶参与。