High-density EEG power topography and connectivity during confusional arousal.
Anna Castelnovo, Julian Amacker, Massimo Maiolo, Ninfa Amato, Matteo Pereno, Silvia Riccardi, Andrea Danani, Simone Ulzega, Mauro Manconi
Cortex; a journal devoted to the study of the nervous system and behavior October 1, 2022 DOI: 10.1016/j.cortex.2022.05.021 via PubMed
Summary
AI-generated from the abstractConfusional arousal episodes, a milder form of Disorders of Arousal (DOA), reveal intriguing brain activity patterns. In a study involving a 12-year-old child with sleepwalking, 20 episodes were analyzed using high-density EEG. Findings showed a significant increase in slow wave activity (SWA) across theta, alpha, beta, and gamma frequencies during episodes compared to baseline sleep. Notably, connectivity analysis indicated enhanced communication between brain regions, particularly from the prefrontal cortex and temporal lobe, suggesting a unique brain state associated with night terrors and somnambulism.
Study at a glance
| Characteristics | Case study Case report Peer reviewed |
|---|---|
| Sample size | 1 |
| Population | 12-year-old drug-naïve and otherwise healthy child with long-lasting history of sleepwalking |
| Duration | 2 consecutive in-laboratory sleep recordings |
| Keywords | Disorders of arousal Nrem-sleep parasomnia Night terror Pavor nocturnus Somnambulism |
| Citations | 26 |
| Key finding | Confusional arousal episodes showed widespread increases in slow wave, theta, alpha, beta, and gamma power with decreased sigma power, and increased functional connectivity from fronto-medial prefrontal cortex and left temporal lobe, starting before behavioral onset. |
Abstract
Confusional arousal is the milder expression of a family of disorders known as Disorders of Arousal (DOA) from non-REM sleep. These disorders are characterized by recurrent abnormal behaviors that occur in a state of reduced awareness for the external environment. Despite frequent amnesia for the nocturnal events, when actively probed, patients are able to report vivid hallucinatory/dream-like mental imagery. Traditional (low-density) scalp and stereo-electroencephalographic (EEG) recordings previously showed a pathological admixture of slow oscillations typical of NREM sleep and wake-like fast-mixed frequencies during these phenomena. However, our knowledge about the specific neural EEG dynamics over the entire brain is limited. We collected 2 consecutive in-laboratory sleep recordings using high-density (hd)-EEG (256 vertex-referenced geodesic system) coupled with standard video-polysomnography (v-PSG) from a 12-year-old drug-naïve and otherwise healthy child with a long-lasting history of sleepwalking. Source power topography and functional connectivity were computed during 20 selected confusional arousal episodes (from -6 to +18 sec after motor onset), and during baseline slow wave sleep preceding each episode (from - 3 to -2 min before onset). We found a widespread increase in slow wave activity (SWA) theta, alpha, beta, gamma power, associated with a parallel decrease in the sigma range during behavioral episodes compared to baseline sleep. Bilateral Broadman area 7 and right Broadman areas 39 and 40 were relatively spared by the massive increase in SWA power. Functional SWA connectivity analysis revealed a drastic increase in the number and complexity of connections from baseline sleep to full-blown episodes, that mainly involved an increased out-flow from bilateral fronto-medial prefrontal cortex and left temporal lobe to other cortical regions. These effects could be appreciated in the 6 sec window preceding behavioral onset. Overall, our results support the idea that DOA are the expression of peculiar brain states, compatible with a partial re-emergence of consciousness.