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Rebound electroencephalographic responses to nitrous oxide exposure in men.

Petra Valtonen, Stanislav Rozov, Iina Annala, Kaija Järventausta, Narayan Puthanmadam Subramaniyam, Mirja Tenhunen, Jari Hyttinen, Arvi Yli-Hankala, Tomi Rantamäki, Maija-Liisa Kalliomäki

Journal of neurophysiology May 1, 2025 DOI: 10.1152/jn.00275.2024 via PubMed

Summary

AI-generated from the abstract

Short-term administration of nitrous oxide (N2O) increases power in the theta frequency range (4-7 Hz) of the electroencephalogram (EEG) after the gas is withdrawn, but does not affect delta frequency (0.5-4 Hz) power. In a study of 14 healthy male participants, those receiving 50% N2O either continuously for 20 minutes or in two 10-minute inhalations showed rapid EEG transitions during gas administration and withdrawal. Power in high-frequency gamma bands increased during N2O, while beta and alpha frequencies decreased. After withdrawal, theta power increased in several electrodes, with negligible differences between the two treatment groups. The effect was reproducible with repeated dosing.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Sample size 14
Population Healthy male participants
Dose 50%
Duration 20 minutes of continuous inhalation or two 10-minute inhalations
Keywords EEG N-methyl-d-aspartate nmda receptor Nitrous oxide Spectrogram
Key finding Short-term administration of N2O increases power in theta, but not delta, frequency band upon gas withdrawal.

Abstract

Nitrous oxide (N2O) may elicit antidepressant effects after its elimination from the brain. We sought to investigate whether short-term administration of N2O triggers power within the delta (0.5-4 Hz) and/or theta (4-7 Hz) frequency ranges in the electroencephalogram (EEG) after it's administration, as we have recently seen such rebound effects to N2O in studies conducted on mice. Twenty healthy male participants were randomly allocated to receive 50% N2O either continuously for 20 min (continuous group) or in two 10-min inhalations (repeated group) with 19-channel EEG. Median-averaged power spectral densities (PSDs) were calculated subject-, electrode-, and state-wise. Group-level data are topographically plotted and significant changes within specific frequency ranges for each condition are highlighted. The subjective effects in response to N2O were studied with questionnaires. Fourteen participants completed the study (n = 7 participants/group). Spectrograms showed that the EEG transitions between N2O and its withdrawal were extremely rapid in both groups and the effects remained stationary during specific states. Power in high-frequency bands (gamma) generally enhanced during N2O administration along with power reductions in beta (and alpha) frequencies. Power in specific theta, but not delta, frequencies increase after the cessation of N2O in several electrodes. However, direct comparison of the rebound EEG between the two treatment groups revealed negligible differences. Short-term administration of N2O evokes increase of power in theta frequency, but not delta, band power upon gas withdrawal.NEW & NOTEWORTHY This study specifically addressed rebound EEG alterations within slow-wave frequency range upon withdrawal from N2O in awake healthy participants. Short-term administration of N2O increased power in theta, but not delta, frequency range upon gas withdrawal and this effect was readily reproduced with repeated dose.

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