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A common neural code for similar conscious experiences in different individuals

Lorina Naci, Rhodri Cusack, Mimma Anello, Adrian M. Owen

Proceedings of the National Academy of Sciences September 15, 2014 DOI: 10.1073/pnas.1407007111 (opens in new tab) via OpenAlex

Summary

AI-generated from the abstract

A common neural code underpins similar conscious experiences across people, allowing the decoding of experience without behavior. Brain activity synchronized across healthy participants' frontal and parietal cortices while watching an engaging movie, and the timing of this activity matched their shared qualitative experience of the movie's moment-to-moment executive demands. A neural index based on executive function reliably predicted each healthy individual's similar conscious experience. This approach provided strong evidence for the conscious experience of a brain-injured patient who had been entirely behaviorally nonresponsive for 16 years, showing highly similar executive engagement and moment-to-moment perception of the movie content.

Study at a glance

Characteristics Observational cohort Qualitative Peer reviewed
Population Healthy participants and one brain-injured patient
Keywords Consciousness Perception Cognitive psychology Action physics Function biology
Citations 239
Key finding A neural index based on executive function reliably predicted similar conscious experiences across individuals and revealed conscious experience in a behaviorally nonresponsive patient.

Abstract

The interpretation of human consciousness from brain activity, without recourse to speech or action, is one of the most provoking and challenging frontiers of modern neuroscience. We asked whether there is a common neural code that underpins similar conscious experiences, which could be used to decode these experiences in the absence of behavior. To this end, we used richly evocative stimulation (an engaging movie) portraying real-world events to elicit a similar conscious experience in different people. Common neural correlates of conscious experience were quantified and related to measurable, quantitative and qualitative, executive components of the movie through two additional behavioral investigations. The movie's executive demands drove synchronized brain activity across healthy participants' frontal and parietal cortices in regions known to support executive function. Moreover, the timing of activity in these regions was predicted by participants' highly similar qualitative experience of the movie's moment-to-moment executive demands, suggesting that synchronization of activity across participants underpinned their similar experience. Thus we demonstrate, for the first time to our knowledge, that a neural index based on executive function reliably predicted every healthy individual's similar conscious experience in response to real-world events unfolding over time. This approach provided strong evidence for the conscious experience of a brain-injured patient, who had remained entirely behaviorally nonresponsive for 16 y. The patient's executive engagement and moment-to-moment perception of the movie content were highly similar to that of every healthy participant. These findings shed light on the common basis of human consciousness and enable the interpretation of conscious experience in the absence of behavior.

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