Literature DB >> 25715640

Effect of oxygen on neuronal excitability measured by critical flicker fusion frequency is dose dependent.

Jacek Kot1, Pawel J Winklewski, Zdzislaw Sicko, Yurii Tkachenko.   

Abstract

INTRODUCTION: Reactive oxygen species are involved in the functional changes necessary for synaptic plasticity, memory, and cognitive function. It is far from clear whether the increased excitability, and which forms of neuronal excitability, should be considered a part of the learning process or, rather, cellular manifestation of neuronal oxygen poisoning. It is yet to be elucidated whether oxygen (O2)-induced learning and poisoning use the same or distinct cellular pathways.
PURPOSE: We hypothesized that O2-induced neuronal excitability might use the same or an intertwined signaling cascade as the poisoning cellular pathway.
METHOD: Eighty-one healthy, young males, mean age 27.7 ± 4.1 (SD) years, were exposed in the hyperbaric chamber to 0.7 atmosphere absolute (ATA) O2, 1.4 ATA O2, and 2.8 ATA O2. The critical flicker fusion frequency (CFFF), oxyhemoglobin saturation (SiO2), and heart rate (HR) were measured before exposure, after 30 min of oxygen breathing while still at pressure and then after exposure.
RESULTS: Normobaric (0.7 ATA) O2 exposure did not affect CFFF and HR. Medium hyperbaric O2 exposure (1.4 ATA) decreased CFFF but HR remained unchanged. High hyperbaric O2 exposure (2.8 ATA) increased CFFF and diminished HR. SiO2 was similar in all investigated groups. A correlation between CFFF, HR, and SiO2 was observed only at low oxygen (0.7 ATA).
CONCLUSIONS: The effect of O2 on neuronal excitability measured by CFFF in young healthy men was dose dependent: 0.7 ATA O2 did not affect CFFF; CFFF were significantly jeopardized at 1.4 ATA O2, while CFFF recovered at 2.8 ATA. With 2.8 ATA O2, the CFFF and oxygen poisoning transduction pathways seemed to be intertwined.

Entities:  

Keywords:  Critical flicker fusion frequency; Hyperbaric oxygen; Neuronal excitability; Normobaric oxygen; Oxygen poisoning

Mesh:

Substances:

Year:  2015        PMID: 25715640     DOI: 10.1080/13803395.2015.1007118

Source DB:  PubMed          Journal:  J Clin Exp Neuropsychol        ISSN: 1380-3395            Impact factor:   2.475


  9 in total

1.  Early detection of diving-related cognitive impairment of different nitrogen-oxygen gas mixtures using critical flicker fusion frequency.

Authors:  Pierre Lafère; Walter Hemelryck; Peter Germonpré; Lyubisa Matity; François Guerrero; Costantino Balestra
Journal:  Diving Hyperb Med       Date:  2019-06-30       Impact factor: 0.887

2.  Investigating critical flicker fusion frequency for monitoring gas narcosis in divers.

Authors:  Xavier Ce Vrijdag; Hanna van Waart; Jamie W Sleigh; Costantino Balestra; Simon J Mitchell
Journal:  Diving Hyperb Med       Date:  2020-12-20       Impact factor: 0.887

Review 3.  Reply to Vrijdag et al. Comment on "Mankowska et al. Critical Flicker Fusion Frequency: A Narrative Review. Medicina 2021, 57, 1096".

Authors:  Natalia D Mankowska; Anna B Marcinkowska; Monika Waskow; Rita I Sharma; Jacek Kot; Pawel J Winklewski
Journal:  Medicina (Kaunas)       Date:  2022-06-06       Impact factor: 2.948

4.  Inert gas narcosis in scuba diving, different gases different reactions.

Authors:  Monica Rocco; P Pelaia; P Di Benedetto; G Conte; L Maggi; S Fiorelli; M Mercieri; C Balestra; R A De Blasi
Journal:  Eur J Appl Physiol       Date:  2018-10-22       Impact factor: 3.078

5.  Commentary on using critical flicker fusion frequency to measure gas narcosis.

Authors:  Jacek Kot; Pawel J Winklewski
Journal:  Diving Hyperb Med       Date:  2021-06-30       Impact factor: 1.228

6.  Reply: Commentary on using critical flicker fusion frequency to measure gas narcosis.

Authors:  Xavier Ce Vrijdag; Hanna van Waart; Jamie W Sleigh; Simon J Mitchell
Journal:  Diving Hyperb Med       Date:  2021-06-30       Impact factor: 1.228

7.  Does hyperbaric oxygen cause narcosis or hyperexcitability? A quantitative EEG analysis.

Authors:  Xavier C E Vrijdag; Hanna van Waart; Chris Sames; Simon J Mitchell; Jamie W Sleigh
Journal:  Physiol Rep       Date:  2022-07

Review 8.  Reactive Oxygen Species: Physiological and Physiopathological Effects on Synaptic Plasticity.

Authors:  Thiago Fernando Beckhauser; José Francis-Oliveira; Roberto De Pasquale
Journal:  J Exp Neurosci       Date:  2016-09-04

Review 9.  Impact of Hyperbaric Oxygen Therapy on Cognitive Functions: a Systematic Review.

Authors:  Anna B Marcinkowska; Natalia D Mankowska; Jacek Kot; Pawel J Winklewski
Journal:  Neuropsychol Rev       Date:  2021-04-13       Impact factor: 7.444

  9 in total

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