Differences in spirometry and diffusing capacity after a 3-h wet or dry oxygen dive with a PO 2 of 150kPa

17Citations
Citations of this article
14Readers
Mendeley users who have this article in their library.
Get full text

Abstract

Rationale: Breathing oxygen with a partial pressure of >50kPa causes pulmonary oxygen toxicity (POT), resulting in a decrease in vital capacity (VC) and in diffusing capacity for carbon monoxide (DLco). As submersion is thought to potentiate POT, we hypothesized that submerged oxygen divers are at increased risk for POT. Objective: To compare changes in lung function after submerged (wet) and non-submerged (dry) oxygen dives. Method: Thirteen healthy male divers (mean±SD: 25±2years, 184±7cm, 85±10kg) made a dry and a wet dive to 150kPa for 3h, during which they breathed 100% oxygen. At baseline, within 1 and 4h after their dives, spirometry and diffusing capacity were measured. Data were analysed with ANOVA using Bonferroni correction and paired t-tests. Results: Compared with baseline, there was a significant reduction in DLco (-1·6mmolkPa -1min -1) after a wet oxygen dive but not after a dry dive. In addition, relative to baseline, there was a significant difference in ΔDLco and ΔVC when comparing wet and dry oxygen dives. Conclusion: Diffusing capacity is more impaired after a wet oxygen dive than after a dry one. This suggests that wet oxygen divers are at increased risk for POT. Monitoring studies during daily practice of professional divers are mandatory to determine the exact operational relevance of the present findings. © 2011 The Authors. Clinical Physiology and Functional Imaging © 2011 Scandinavian Society of Clinical Physiology and Nuclear Medicine.

Cite

CITATION STYLE

APA

van Ooij, P. J. A. M., van Hulst, R. A., Houtkooper, A., & Sterk, P. J. (2011). Differences in spirometry and diffusing capacity after a 3-h wet or dry oxygen dive with a PO 2 of 150kPa. Clinical Physiology and Functional Imaging, 31(5), 405–410. https://doi.org/10.1111/j.1475-097X.2011.01034.x

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free