Have a personal or library account? Click to login
Securing the hyperbaric treatment of decompression sickness in the polish navy Cover

Securing the hyperbaric treatment of decompression sickness in the polish navy

By: Ryszard Kłos  
Open Access
|Mar 2019

References

  1. 1. US Navy diving manual. Collective work (revision 7). The Direction of Commander : Naval Sea Systems Command, 2016. SS521-AG-PRO-010 0910-LP-115-1921;
  2. 2. Berghage T.E., Vorosmarti Jr. J., Barnard E.E.P. Recompression Treatment Tables Used Throughout the World by Government and Industry. Bethesda Maryland : US Naval Medical Research Center, 1978. NMRI 78-16;
  3. 3. Wienke B.R. Basic decompression theory and application. Flagstaff : Best Publishing Co., 2003. ISBN 1-930536-14-3;
  4. 4. Kłos R. Heliox saturation diving – theoretical basis to conduct dives and training. Edition II (revised). Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2014. ISBN 978-83-938322-1-7;
  5. 5. Cole B. Decompression and computer assisted diving: Dive Information Company, 1993. ISBN 0-9520934-0-5;
  6. 6. Hills B.A. A thermodynamic and kinetic approach to decompression sickness. Adelaide : Libraries Board of South Australia, 1966. Occasional papers in physiology No 1;
  7. 7. Kembłowski Z., Michałowski S., Strumiłło Cz. Zarzyski R. The theoretical bases of chemical engineering. Warsaw : Wydawnictwo Naukowo-Techniczne, 1985. ISBN 83-204-0649-8;
  8. 8. Kłos R., Konarski M., Olszański R. The implementation of factor analysis for the evaluation of selected blood parameter changes induced by hyperbaric exposure. International Maritime Health. 2004, vol. 55, pp. 87-101;
  9. 9. Kłos R. Diving apparatuses with regeneration of breathing gas mixture. Poznań : COOPgraf, 2000. ISBN 83-909187-2-2;
  10. 10. Doolette D.J., Mitchell S.J. Biophysical basis for inner ear decompression sickness. J. Appl. Physiol. 2003, vol. 94, pp. 2145–2150;10.1152/japplphysiol.01090.2002
  11. 11. Lambertsen C. J., Idicula J. A new gas lesion syndrome in man, induced by “isobaric gas counterdiffusion”. J. Appl. Physiol. 1975, vol. 39, 3, pp. 434-443;10.1152/jappl.1975.39.3.434
  12. 12. Lambertsen C.J. Studies in isobaric counterdiffusion. Filadelfia : Institute for Environmental Medicine, 1986;
  13. 13. Strauss R.H. Diving medicine. New York : Grune & Stratton Inc., 1976. ISBN 0-8089-0699-2;
  14. 14. Comex Marseille. Medical Book. Marseille : Comex, 1986;
  15. 15. US Navy diving manual. Collective work (revision 7). The Direction of Commander : Naval Sea Systems Command, 2011. SS521-AG-PRO-010 0910-LP-115-1921;
  16. 16. Kłos R. The pathophysiology related to the toxic effect of oxygen. The hazard of central oxygen toxicity. Part 2. Polish Hyperbaric Research. 2, 2014, vol. 47, ISSN 1734-7009, pp. 15-34;10.13006/phr.47.2
  17. 17. Wienke B.R. Technical diving in depth. Flagstaff : Best Publishing Co., 2001. ISBN 0-941332-97-7;
  18. 18. Imbert J-P. Proposition of a perfusion limited model for isobaric counterdiffusion. Philadelphia : University of Pennsylvania Medical Center, 1975. Report Number 07-01-1975;
  19. 19. Karreman G., Lambertsen C.J. Kinetics of isobaric counterdiffusion. Bulletin of Mathematical Biology. 1977, Vol. 39, ISSN 0092-8240, pp. 587-595;10.1016/S0092-8240(77)80060-8
  20. 20. Kłos R. Possibilities of selection of oxygen-nitrox exposures for the AMPHORA dive device — assumptions for standard and experimental dives. Gdynia: Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2012. ISBN 978-83-924989-8-8;
  21. 21. DCIEM. Diving Manual. North York : Defence and Civil Institute of Environmental Medicine, 1995. DCIEM No. 86-R-35A;
  22. 22. NOAA. NOAA diving manual - diving for science and technology. [ed.] Administration National Oceanic and Atmospheric. VI. Flagstaff : Best Publishing Co., 2017. ISBN 9781930536883;
  23. 23. Praca zbiorowa. Vertical excursions breathing air from nitrogen-oxygen or air saturation exposures. Rockville : National Oceanic and Atmospheric Administration, 1976. U.S. Government Printing Office 1976-210-801/366;
  24. 24. NSO. Allied guide to diving medical disorders – national information. Edition A Version 1. Brussels : NATO Standardization Office (NSO), 2016. Standards Related Document ADivP-02.1 (STANAG 1432);
  25. 25. Donald K.W. Oxygen Bends. J Appl Physiol. 1955, Vol. 7, pp. 639-644;10.1152/jappl.1955.7.6.63914381341
  26. 26. Donald K. Oxygen and the diver. Harley Swan : The SPA Ltd., 1992. ISBN 1-85421-176-5;
  27. 27. Kłos R. Methods for treatment of decompression sickness developed during wreck penetration. Scientific Journal of Polish Naval Academy. 212, 2018, Tom 1, DOI: 10.2478/sjpna-2018-0002, pp. 27-53;10.2478/sjpna-2018-0002,pp.27-53
  28. 28. Przybyłowski T. Air travel safety for patients with chronic respiratory diseases. Medycyna po dyplomie. 11, 2010, Vol. 19, ISSN: 1689-4332, pp. 22-23.
DOI: https://doi.org/10.2478/phr-2018-0020 | Journal eISSN: 2084-0535 | Journal ISSN: 1734-7009
Language: English
Page range: 7 - 24
Submitted on: Sep 3, 2018
Accepted on: Oct 20, 2018
Published on: Mar 29, 2019
Published by: Polish Hyperbaric Medicine and Technology Society
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Ryszard Kłos, published by Polish Hyperbaric Medicine and Technology Society
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.