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Increased heartbeat-evoked potential during REM sleep in nightmare disorder.

Lampros Perogamvros, Hyeong-Dong Park, Laurence Bayer, Aurore A Perrault, Olaf Blanke, Sophie Schwartz

NeuroImage. Clinical January 1, 2019 DOI: 10.1016/j.nicl.2019.101701 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

Patients with nightmare disorder show heightened heartbeat-evoked potentials (HEPs) during REM sleep compared to healthy controls, indicating increased emotional arousal and brain-body interaction specifically in REM sleep. No differences were found in cardiac control measures like heart rate variability. These findings suggest that nightmares are primarily a REM sleep pathology and that elevated emotional arousal during REM, as indexed by HEP, may underlie frequent nightmares. HEP could serve as a biomarker for increased emotional and sensory processing during REM sleep in these patients.

Study at a glance

Characteristics Observational cohort Peer reviewed
Population Patients with nightmare disorder and healthy participants
Keywords EEG Emotional arousal Heartbeat-evoked potential Nightmares Rem sleep
Key finding Higher HEP amplitude in nightmare patients compared to healthy controls over frontal regions only during REM sleep.

Abstract

Nightmares are characterized by the experience of strong negative emotions occurring mainly during REM sleep. Some people suffer from nightmare disorder, which is defined by the repeated occurrence of nightmares and by significant distress in wakefulness. Yet, whether frequent nightmares relate to a general increase in emotional reactivity or arousal during sleep remains unclear. To address this question, we recorded heartbeat-evoked potentials (HEPs) during wakefulness, NREM and REM sleep in patients with nightmare disorder and healthy participants. The HEP represents a cortical (EEG) response to the heartbeat and indexes brain-body interactions, such as interoceptive processing and intrinsic levels of arousal. HEP amplitude is typically increased during states of high emotional arousal and motivation, and is decreased in depression. Here we compared the amplitude of HEPs between nightmare patients and healthy controls separately during AWAKE, NREM, REM periods, and found higher HEP amplitude in nightmare patients compared to healthy controls over a cluster of frontal regions only during REM sleep. This effect was not paralleled by any group difference in cardiac control measures (e.g. heart rate variability, interbeat interval). These findings corroborate the notion that nightmares are essentially a REM pathology and suggest that increased emotional arousal during REM sleep, as measured by HEP, is a physiological condition responsible for frequent nightmares. This result also supports that HEP may be used as a biomarker of increased emotional and sensory processing during REM sleep in these patients.

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