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Identifying content-invariant neural signatures of perceptual vividness.

Benjy Barnett, Lau M Andersen, Stephen M Fleming, Nadine Dijkstra

PNAS nexus February 1, 2024 DOI: 10.1093/pnasnexus/pgae061 via PubMed

Summary

AI-generated from the abstract

Perceptual vividness—the intensity of conscious experience—varies across different experiences, but how the brain registers this variation is unclear. In other psychological domains like number or reward, magnitude is represented independently of sensory features. Reanalyzing existing magnetoencephalography and functional MRI data from two studies that quantified vividness via subjective awareness and visibility ratings, evidence emerged for content-invariant neural signatures of vividness distributed across visual, parietal, and frontal cortices. These findings suggest that neural correlates of subjective vividness may share properties with magnitude codes in other cognitive domains.

Study at a glance

Characteristics Reanalysis of existing data Peer reviewed
Keywords Meg Awareness FMRI Perception
Citations 7
Key finding Content-invariant neural signatures of perceptual vividness are distributed across visual, parietal, and frontal cortices.

Abstract

Some conscious experiences are more vivid than others. Although perceptual vividness is a key component of human consciousness, how variation in this magnitude property is registered by the human brain is unknown. A striking feature of neural codes for magnitude in other psychological domains, such as number or reward, is that the magnitude property is represented independently of its sensory features. To test whether perceptual vividness also covaries with neural codes that are invariant to sensory content, we reanalyzed existing magnetoencephalography and functional MRI data from two distinct studies which quantified perceptual vividness via subjective ratings of awareness and visibility. Using representational similarity and decoding analyses, we find evidence for content-invariant neural signatures of perceptual vividness distributed across visual, parietal, and frontal cortices. Our findings indicate that the neural correlates of subjective vividness may share similar properties to magnitude codes in other cognitive domains.

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