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Título
Do auditory deviants evoke cortical state changes under anaesthesia? A proof‐of‐concept study
Autor(es)
Palabras clave
auditory cortex
cortical slow oscillations
Up state
Clasificación UNESCO
2411.11 Neurofisiología
Fecha de publicación
2025-11-25
Editor
Wiley
Citación
Bohórquez, Laura H, et al. «Do Auditory Deviants Evoke Cortical State Changes under Anaesthesia? A Proof‐of‐concept Study». Experimental Physiology, noviembre de 2025, p. EP093378. DOI.org (Crossref), https://doi.org/10.1113/EP093378.
Resumen
[EN]Context-dependent sensory processing within the predictive coding framework relies on detecting mismatches between incoming stimuli and internal predictive models. Sensory deviants elicit prediction errors, seen as enhanced neural responses, that update these models and influence attention and behaviour. Although prediction errors have been widely observed across brain regions, the downstream processes remain poorly understood. In this study, we recorded electrocorticography in five urethane-anaesthetised rats and identified cortical slow oscillations, characterised by spontaneous transitions between ‘Up’ and ‘Down’ states. Deviant stimuli in an auditory oddball paradigm evoked an initial positive prediction error, followed by a prolonged, all-or-nothing response which spread in a travelling wave across the cortex. Identified as putative evoked cortical Up states, these responses were not evoked by standards, omissions or a many-standards control. Up states following deviants occurred more recently after a previous Up state when compared to spontaneous Up states. In preliminary data from an awake rat, long-latency Up states were not present spontaneously or evoked. In a different rat, anaesthetic depth was key to spontaneous and evoked Up states, with more robust Up/Down states and more reliable triggering of Up states under deeper anaesthesia. These results suggest that sensory deviants may cause shifts in cortical state under anaesthesia, explaining the long-latency mismatch response under anaesthesia and sleep.
URI
ISSN
0958-0670
DOI
10.1113/EP093378
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