Department of Biomedical Engineering, University of Miami, Coral Gables, Florida 33143.
Department of Psychology, Reed College, Portland, Oregon 97202.
J Neurosci. 2024 Feb 21;44(8):e0145232023. doi: 10.1523/JNEUROSCI.0145-23.2023.
Identifying neural correlates of conscious perception is a fundamental endeavor of cognitive neuroscience. Most studies so far have focused on visual awareness along with trial-by-trial reports of task-relevant stimuli, which can confound neural measures of perceptual awareness with postperceptual processing. Here, we used a three-phase sine-wave speech paradigm that dissociated between conscious speech perception and task relevance while recording EEG in humans of both sexes. Compared with tokens perceived as noise, physically identical sine-wave speech tokens that were perceived as speech elicited a left-lateralized, near-vertex negativity, which we interpret as a phonological version of a perceptual awareness negativity. This response appeared between 200 and 300 ms after token onset and was not present for frequency-flipped control tokens that were never perceived as speech. In contrast, the P3b elicited by task-irrelevant tokens did not significantly differ when the tokens were perceived as speech versus noise and was only enhanced for tokens that were both perceived as speech relevant to the task. Our results extend the findings from previous studies on visual awareness and speech perception and suggest that correlates of conscious perception, across types of conscious content, are most likely to be found in midlatency negative-going brain responses in content-specific sensory areas.
确定意识感知的神经关联是认知神经科学的一个基本任务。到目前为止,大多数研究都集中在视觉意识上,以及与任务相关刺激的逐次报告,这可能会将感知意识的神经测量与知觉后处理混淆。在这里,我们使用了一个三阶段正弦波语音范式,在记录人类两性的 EEG 的同时,将意识语音感知与任务相关性分离开来。与被感知为噪声的标记相比,被感知为语音的物理上相同的正弦波语音标记会引起左侧、近顶点的负向性,我们将其解释为感知意识负向性的语音版本。这种反应出现在标记起始后 200 到 300 毫秒之间,并且对于从未被感知为语音的频率翻转控制标记不存在。相比之下,当标记被感知为语音与噪声时,由与任务无关的标记引发的 P3b 没有显著差异,只有当标记被感知为与任务相关的语音时,P3b 才会增强。我们的结果扩展了之前关于视觉意识和语音感知的研究结果,并表明意识感知的相关物,在各种意识内容中,最有可能在特定于内容的感觉区域的中潜伏期负向脑反应中找到。