Delayed, Reduced, and Redundant: Information Processing of Prediction Errors during Human Sleep

C Christine Blume M Marina Dauphin M Maria Niedernhuber M Manuel Spitschan (Manuel Spitschan is a professor at the Technical University of Munich and research group leader at the Max Planck Institute for Biological Cybernetics.) M Martin P. Meyer C Christian Cajochen T Tristan Bekinschtein A Andrés Canales-Johnson

Abstract

During sleep, the human brain transitions to a “sentinel processing mode,” enabling the continued processing of environmental stimuli despite the absence of consciousness. We employed advanced information-theoretic analyses, including mutual information (MI) and co-information (co-I), alongside event-related potential (ERP) and temporal generalization analyses (TGA), to characterize auditory prediction error processing across wakefulness and sleep. We hypothesized that a shared neural code would be present across sleep stages, with deeper sleep being associated with reduced information content and increased information redundancy. Twenty-nine participants (15 women) underwent an auditory “local–global” oddball paradigm during wakefulness and an 8 h sleep opportunity monitored via polysomnography. We focused on “local” mismatch responses to a deviating fifth tone after four standards. ERP analyses showed that prediction error processing continued throughout all sleep stages (N1–N3, REM). Mutual information analyses revealed a substantial reduction in encoded prediction error information particularly during N3 and REM, although ERP amplitudes increased with deeper NREM sleep. We also observed delayed information encoding during sleep, and co-information analyses showed neural dynamics became increasingly redundant with increasing sleep depth. TGA revealed a largely shared neural code between N2 and N3, though it differed between wakefulness and sleep. We demonstrate how the neural code of the “sentinel processing mode” changes from wake to light to deep sleep and REM, characterized by delayed processing, more redundant and less rich neural information in the human cortex as consciousness wanes. This altered stimulus processing reveals how neural information evolves with variations in consciousness across the night.

Article Details

Volume / Issue Vol. 46, Issue 11
Published March 18, 2026
Pages e1648252026
ISSN 0270-6474
Publisher Society for Neuroscience

Journal Info

Journal of Neuroscience

Society for Neuroscience

ISSN: 0270-6474 Life Sciences

Authors (8)

C

Christine Blume

M

Marina Dauphin

M

Maria Niedernhuber

M

Manuel Spitschan

Manuel Spitschan is a professor at the Technical University of Munich and research group leader at the Max Planck Institute for Biological Cybernetics.

M

Martin P. Meyer

C

Christian Cajochen

T

Tristan Bekinschtein

A

Andrés Canales-Johnson