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Prestimulus EEG Power Predicts Conscious Awareness But Not Objective Visual Performance

机译:Prestimulus EEG Power可以预测意识但不能预测客观视觉效果

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摘要

Prestimulus oscillatory neural activity has been linked to perceptual outcomes during performance of psychophysical detection and discrimination tasks. Specifically, the power and phase of low frequency oscillations have been found to predict whether an upcoming weak visual target will be detected or not. However, the mechanisms by which baseline oscillatory activity influences perception remain unclear. Recent studies suggest that the frequently reported negative relationship between α power and stimulus detection may be explained by changes in detection criterion (i.e., increased target present responses regardless of whether the target was present/absent) driven by the state of neural excitability, rather than changes in visual sensitivity (i.e., more veridical percepts). Here, we recorded EEG while human participants performed a luminance discrimination task on perithreshold stimuli in combination with single-trial ratings of perceptual awareness. Our aim was to investigate whether the power and/or phase of prestimulus oscillatory activity predict discrimination accuracy and/or perceptual awareness on a trial-by-trial basis. Prestimulus power (3–28 Hz) was inversely related to perceptual awareness ratings (i.e., higher ratings in states of low prestimulus power/high excitability) but did not predict discrimination accuracy. In contrast, prestimulus oscillatory phase did not predict awareness ratings or accuracy in any frequency band. These results provide evidence that prestimulus α power influences the level of subjective awareness of threshold visual stimuli but does not influence visual sensitivity when a decision has to be made regarding stimulus features. Hence, we find a clear dissociation between the influence of ongoing neural activity on conscious awareness and objective performance.
机译:刺激前振荡神经活动已与执行心理物理检测和辨别任务期间的知觉结果相关联。具体而言,已发现低频振荡的功率和相位可预测是否将检测到即将到来的弱视觉目标。但是,基线振荡活动影响感知的机制仍不清楚。最近的研究表明,频繁报道的α功率与刺激检测之间的负相关关系可以通过神经兴奋性状态驱动的检测标准的变化(即,无论靶标是否存在而增加的靶标当前反应)来解释。视觉敏感度的变化(即更多的垂直感知)。在这里,我们记录了脑电图,而人类参与者结合感知体验的单次试验,对感知阈刺激执行亮度判别任务。我们的目的是研究是否刺激前振荡活动的力量和/或阶段在逐项试验的基础上预测辨别准确性和/或感知意识。前刺激能力(3–28 Hz)与知觉意识等级(即在低前刺激能力/高兴奋性状态下更高的等级)成反比,但并未预测歧视的准确性。相反,刺激前振荡阶段不能预测任何频段的意识等级或准确性。这些结果提供了证据,即当必须对刺激特征做出决定时,刺激前的α能力会影响阈值视觉刺激的主观意识水平,但不会影响视觉敏感性。因此,我们发现正在进行的神经活动对意识意识和客观表现的影响之间存在明显的分离。

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