Topographical Patterns of Slow Wave Activity in Sleep Talking: An Exploratory Polysomnographic Investigation

ABSTRACT Sleep talking (ST) is a parasomnia characterized by the utterance of unaware linguistic activations during sleep. Electrophysiological evidence is scarce, and it remains unclear whether local electroencephalographic (EEG) alterations characterize the sleep of STs outside of parasomnia episodes. Findings from NREM parasomnias suggest that local slow‐wave activity (SWA) abnormalities may characterize a full night's sleep beyond behavioural manifestations. Accordingly, this study investigates SWA topography and the spatial distribution of the single SWA bins across sleep stages in a group of 12 young STs compared to 10 healthy controls (HCs) matched for sex and age, who underwent overnight laboratory polysomnographic recordings. The relationship between SWA pattern and parasomnia frequency was explored, and the overnight decline in SWA was examined to assess the potential impact of homeostatic processes. Our findings point to a peculiar SWA pattern characterized by a substantially stable central increase across sleep stages and a frontopolar decrease primarily in N2 sleep, suggesting a local and frequency‐specific (≥ 1 Hz) SWA regulation in STs that may interact with homeostatic processes. These results provide new insights into the sleep electrophysiology of STs and shed light on trait‐like regional alterations in SWA that may facilitate parasomnia events. Our findings align with the concept of local sleep, which posits that distinct cortical regions may simultaneously exhibit diverse functional states. In this view, different parasomnias may be characterized by specific SWA topographical patterns reflecting the peculiar behaviours enacted during sleep.

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Publication Details

Journal
Journal of Sleep Research
Published
2026-10-08
DOI
https://doi.org/10.1111/jsr.70474
Primary Topic
Sleep and Wakefulness Research
Type
article
Field-Weighted Citation Impact
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article

Topographical Patterns of Slow Wave Activity in Sleep Talking: An Exploratory Polysomnographic Investigation

Anastasia Mangiaruga, Valentina Alfonsi, Armando D’Agostino, Anna Castelnovo et al.
Journal of Sleep Research
Sleep and Wakefulness Research
article

Topographical Patterns of Slow Wave Activity in Sleep Talking: An Exploratory Polysomnographic Investigation

Anastasia Mangiaruga, Valentina Alfonsi, Armando D’Agostino, Anna Castelnovo, Ludovica Annarumma, Milena Camaioni, Maurizio Gorgoni, Luigi De Gennaro, Serena Scarpelli, Claudio Sanguineti, Elisa Pellegrini, Daniel Pumo
article en

Abstract

ABSTRACT Sleep talking (ST) is a parasomnia characterized by the utterance of unaware linguistic activations during sleep. Electrophysiological evidence is scarce, and it remains unclear whether local electroencephalographic (EEG) alterations characterize the sleep of STs outside of parasomnia episodes. Findings from NREM parasomnias suggest that local slow‐wave activity (SWA) abnormalities may characterize a full night's sleep beyond behavioural manifestations. Accordingly, this study investigates SWA topography and the spatial distribution of the single SWA bins across sleep stages in a group of 12 young STs compared to 10 healthy controls (HCs) matched for sex and age, who underwent overnight laboratory polysomnographic recordings. The relationship between SWA pattern and parasomnia frequency was explored, and the overnight decline in SWA was examined to assess the potential impact of homeostatic processes. Our findings point to a peculiar SWA pattern characterized by a substantially stable central increase across sleep stages and a frontopolar decrease primarily in N2 sleep, suggesting a local and frequency‐specific (≥ 1 Hz) SWA regulation in STs that may interact with homeostatic processes. These results provide new insights into the sleep electrophysiology of STs and shed light on trait‐like regional alterations in SWA that may facilitate parasomnia events. Our findings align with the concept of local sleep, which posits that distinct cortical regions may simultaneously exhibit diverse functional states. In this view, different parasomnias may be characterized by specific SWA topographical patterns reflecting the peculiar behaviours enacted during sleep.

Journal of Sleep Research
University of Milan (IT), Ospedale regionale di Lugano (CH), Ente Ospedaliero Cantonale (CH), Saint Camillus International University of Health and Medical Sciences (IT), Fondazione Santa Lucia (IT), Azienda Socio Sanitaria Territoriale Santi Paolo e Carlo, Università della Svizzera italiana (CH), Sapienza University of Rome (IT)
Openalex Percentile: Top 13%
Sleep and Wakefulness Research
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