Abstract
Abstract
Purpose
It is speculated that diving might be harmful to the nervous system. The aim of this study was to determine if established markers of neuronal injury were increased in the blood after diving.
Methods
Thirty-two divers performed two identical dives, 48 h apart, in a water-filled hyperbaric chamber pressurized to an equivalent of 42 m of sea water for 10 min. After one of the two dives, normobaric oxygen was breathed for 30 min, with air breathed after the other. Blood samples were obtained before and at 30–45 and 120 min after diving. Concentrations of glial fibrillary acidic, neurofilament light, and tau proteins were measured using single molecule array technology. Doppler ultrasound was used to detect venous gas emboli.
Results
Tau was significantly increased at 30–45 min after the second dive (p < 0.0098) and at 120 min after both dives (p < 0.0008/p < 0.0041). Comparison of matching samples showed that oxygen breathing after diving did not influence tau results. There was no correlation between tau concentrations and the presence of venous gas emboli. Glial fibrillary acidic protein was decreased 30–45 min after the first dive but at no other point. Neurofilament light concentrations did not change.
Conclusions
Tau seems to be a promising marker of dive-related neuronal stress, which is independent of the presence of venous gas emboli. Future studies could validate these results and determine if there is a quantitative relationship between dive exposure and change in tau blood concentration.
Funder
Swedish society for military medical officers
Swedish research council
European research council
Swedish state support for clinical research
University of Gothenburg
Publisher
Springer Science and Business Media LLC
Subject
Physiology (medical),Public Health, Environmental and Occupational Health,Orthopedics and Sports Medicine,General Medicine,Public Health, Environmental and Occupational Health,Physiology
Reference59 articles.
1. Balestra C, Germonpré P (2016) Correlation between patent foramen ovale, cerebral “lesions” and neuropsychometric testing in experienced sport divers: does diving damage the brain? Front Psychol 7:696 (PMID 27242609)
2. Bast-Pettersen R, Skare Ø, Nordby K-C, Skogstad M (2015) A twelve-year longditudinal study of neuropsychological function in non-saturation professional divers. Int Arch Occup Environ Haelth 88(6):669–682 (PMID 25355537)
3. Bergman J, Dring A, Zetterberg H et al (2016) Neurofilament light in CSF and serum is a sensitive marker for axonal white matter injury in MS. Neurol Neuroimmunol Neuroinflamm 3(5):e271 (PMID 27536708)
4. Bhullar J, Bhopale VM, Yang M, Sethuraman K, Thom SR (2016) Microparticle formation by platelets exposed to high gas pressures—an oxidative stress response. Free Radic Biol Med 101:154–162 (PMID 27751909)
5. Billaut F, Gueit P, Faure S, Costalat G, Lemaitre F (2018) Do elite breath-hold divers suffer from mild-short term memory impairments? Appl Physiol Nutr Metab 43(3):247–251 (PMID 29053942)
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