Huang Zien, Urale Poutasi W B, Morgan Catherine A, Rees Geraint, Schwarzkopf D Samuel
School of Optometry and Vision Science, University of Auckland, Auckland, New Zealand.
School of Psychology and Centre for Brain Research, University of Auckland, Auckland, New Zealand.
R Soc Open Sci. 2023 Aug 9;10(8):230380. doi: 10.1098/rsos.230380. eCollection 2023 Aug.
The visual cortex contains information about stimuli even when they are not consciously perceived. However, it remains unknown whether the visual system integrates local features into global objects without awareness. Here, we tested this by measuring brain activity in human observers viewing fragmented shapes that were either visible or rendered invisible by fast counterphase flicker. We then projected measured neural responses to these stimuli back into visual space. Visible stimuli caused robust responses reflecting the positions of their component fragments. Their neural representations also strongly resembled one another regardless of local features. By contrast, representations of invisible stimuli differed from one another and, crucially, also from visible stimuli. Our results demonstrate that even the early visual cortex encodes unconscious visual information differently from conscious information, presumably by only encoding local features. This could explain previous conflicting behavioural findings on unconscious visual processing.
即使在没有有意识地感知到刺激时,视觉皮层中也包含有关这些刺激的信息。然而,视觉系统是否能在无意识的情况下将局部特征整合为全局对象,目前仍不清楚。在这里,我们通过测量人类观察者观看被快速反相闪烁使其可见或不可见的碎片化形状时的大脑活动来测试这一点。然后,我们将对这些刺激的测量神经反应投射回视觉空间。可见刺激引起了反映其组成片段位置的强烈反应。无论局部特征如何,它们的神经表征彼此之间也非常相似。相比之下,不可见刺激的表征彼此不同,而且至关重要的是,也与可见刺激不同。我们的结果表明,即使是早期视觉皮层,对无意识视觉信息的编码也与有意识信息不同,大概是通过仅编码局部特征来实现的。这可以解释先前关于无意识视觉处理的相互矛盾的行为学发现。