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Factor XII – A Limitation for Divers? Cover

References

  1. 1. Kawashima M, Hayashi K, Torsiu T, Kitano M. Hystopathology of the early stage of osteonecrosis in vivers. Undersea Biomed Res 1977;4:409-417.
  2. 2. Kawashima M, Torisu T, Hayashi K, Kitano M. Pathological review of osteonecrosis in divers. Clin Orthop Relat Res 1978;130:107-117.10.1097/00003086-197801000-00010
  3. 3. Kitano M. Three autopsy cases of acute decompression sickness-Consideration of pathogenesis about spinal cord damage in decompression sickness. J West Jap Orthop Traum 1977;26:402-408.
  4. 4. Kawashima M, Tamura H, Noro Y, Takao K, Kitano M, Lehner ChE, Taya Y, Mano Y, Tsunosue T. Pathogenesis and prevention of dysbaric osteonecrosis. Decompression Sickness in Divers. Kagashima Univ Res Center S Pac Occasional Papers 1995;25:37-46.
  5. 5. Slichter SJ, Stegall P, Smith K, Huang TW, Harker LA. Dysbaric osteonecrosis a consequence of intravascular bubble formation, endothelial damage, and platelet thrombosis. J Lab Clin Med 1981;98:69-90.
  6. 6. Kuroiwa K. The functional and biochemical changes of platelets in experimental decompression sickness of rabbits. Bull Tokyo Med Dent Univ 1984;31:73-84.
  7. 7. Paradowski A, Wronkowska G. Decompression profiles in experiments on animals versus changes of the selected haemostasis indicators. Polski przegląd medycyny lotniczej 1999;2:125-132.
  8. 8. Philp RB. Involvement of platelets and microthrombi in experimental decompression sickness: Similarities with disseminated intravascular coagulation. Aerospace Med 1971;42:494-502.
  9. 9. Tanoue K, Mano Y, Kuroiwa K, Suzuki H, Shibayama M, Yamazaki H. Consumption of platelets in decompression sickness of rabbits. J Appl Physiol 1987;2:1772-1779.10.1152/jappl.1987.62.5.1772
  10. 10. Baj Z, Olszański R, Majewska E, Konarski M. The effect of air and nitrox diving on platelet activation tested by flow cytometry. Aviat Space Environ Med 2000;71:925-928.
  11. 11. Olszański R. Evaluation of heliox saturated diving on the basis of selected haemostasis parameters. Bull Inst. Marit Trop Med 1998;49:117-121.
  12. 12. Hyldegaard O, Madsen J. Effect of air, heliox and oxygen breathing on air bubbles in aqueous tissues in the rat. Undersea Hyper Med 1994;21:413-424.
  13. 13. Softeland E, Framstad T, Nordvik A, Strand I, Thorsen T, Holmsen H. Nitrogen microbubbles induce a disappearance of single platelets aggregation with porcine platelets: a comparative study of anticoagulants and blood collection methods. Thromb Res 1994;1:61-67.10.1016/0049-3848(94)90207-0
  14. 14. Warren BA. The ultrastructural morphology of air embolism : Platelet adhesion to the interface and endothelial damage. Br J Exp Path 1973;54:163-172.
  15. 15. Pickles DM, Ogston D, MacDonald AG. Effects of gas bubbling and other forms of convection on platelets in vitro. J Appl Physiol 1989;67:250-255.10.1152/jappl.1989.67.3.1250
  16. 16. Thorsen T, Brubakk A, Ovstedal T, Farstad M, Holmsen H. A method for production of N2 microbubbles in platelet-rich plasma in an aggregometer-like apparatus and effect on the platelet density in vitro. Undersae Biomed Res 1986;13:271-288.
  17. 17. Thorsen T, Lie RT, Holmsen H. Induction of platelet aggregation in vitro by microbubbles of nitrogen. Undersea Biomed Res 1898;16:453-464.
  18. 18. Goad RF, Neuman TS, Linaweaver PGJr. Hematologic changes in man during decompression: relations to overt decompression sickness and bubble scores. Aviat Space Environ Med 1976;47:863-867.
  19. 19. Hart GB. Screening test for decompression sickness. Aviat Space Environ Med 1976;47:993-994.
  20. 20. Boussuges A, Succo E, Juhan-Vague I, Sainty JM. Activation of coagulation in decompression illness. Aviat Space Environ Med 1998;69:129-132.
  21. 21. Eckenhoff RG, Hughes JS. Hematologic and hemostatic changes with repetitive air diving. Aviat. Space Environ Med 1984;55:592-597.
  22. 22. Olszański R, Radziwon P, Baj Z, Kaczmarek P, Giedrojć J, Galar M, Kłoczko J. Changes in the extrinsic and intrinsic coagulation pathways in humans after decompression following saturation diving. Blood, 2001;12:1-6
  23. 23. Gris JC, Arquizan T, Brunel C, Gillet JL, Grand D. Acute haemostasis activation after a scuba diving: generation if circulating activated factor VII and cellderived microparticles. Bulletin de Medicine Subaquatique et Hyperbare 1997;7:21-23.
  24. 24. Balk M, Goldman JM. Alveolar hemorrhage as a manifestation of pulmonary barotrauma after scuba diving. Ann Emerg Med 1990;19:930-934.10.1016/S0196-0644(05)81573-2
  25. 25. Boussuges A, Succo E, Bergmann E, Sainty JM. Intra-alveolar hemorrhage. An uncommon accident in breath holding diver. Presse Med 1995;2:1169-1170.
  26. 26. Chen JC, Kucharczyk W. Nontraumatic orbital subperiosteal hematoma in scuba diver: CT and MR findings. J Comput Assist Tomogr 1988;12:504-506.10.1097/00004728-198805010-000313366973
  27. 27. Green SM, Rothrock SG, Green EA. Tympanometrice-valuation of middle ear barotrauma during recreational scuba diving. Int J Sports Med 1993;14:411-415.10.1055/s-2007-10212018244609
  28. 28. Josefsen R, Wester K. Cerebellar hemorrhage - rare, but serious complication in decompression disease. Tidsskr Nor Laegeforen 1999;119:3901-3902.
  29. 29. Sheridan MF, Hetherington HH, Hull JJ. Inner ear barotrauma from scuba diving. Ear Nose Throat J 1999;78:186-187.10.1177/014556139907800312
  30. 30. Yoshimura K, Nakagawa S, Koyama S, Kobayashi T, Homma T. Roles of neutrophil elastase and superoxide anion in leukotriene B4-induced lung injury in rabbit. J Appl Physiol 1994;76:91-96.10.1152/jappl.1994.76.1.918175552
  31. 31. Radziwon P, Olszański R, Tomaszewski R, Lipska A, Dąbrowicki Z, Korzeniewski K, Siermontowski P, Boczkowska-Radziwon B. Decreased levels of PAI-1 and alpha2-antiplasmin contribute to enhanced fibrinolytic activity in divers. Thromb Res 2007;121:235-240.10.1016/j.thromres.2007.03.02717521709
  32. 32. Wu K, Urano T, Ihara H, Takada Y, Fujie M, Shikimori M, Hashimoto K, Takada A. The cleavage and inactivation of plasminogen activator inhibitor type 1 by neutrophil elastase: the evaluation of its physiologic relevance in fibrinolysis. Blood 1995;86:1056-1061.10.1182/blood.V86.3.1056.1056
  33. 33. Olszański R, Konarski M, Kierznikowicz B. Changes of selected morphotic parameters and blood plasma proteins in blood of divers after a single shortterm operational exposure. Intern Marit Health 2002;53:111-121.
  34. 34. Tanaka A, Suzuki Y, Sugihara K, Kanayama N, Urano T. Inactivation of plasminogen activator inhibitor type 1 by activated factor XII plays a role in the enhancement of fibrinolysis by contact factors in vivo. Life Sci 2009;85:220-225.10.1016/j.lfs.2009.05.014
  35. 35. Lohman S, Folkow LP, Osterud B, Sager G. Changes in fibrinolytic activity in diving grey seals. Comp Biochem Physiol A Mol Integr Physiol 1998;120:693-698.10.1016/S1095-6433(98)10088-0
  36. 36. Robinson AJ, Kropatkin M, Aggeler PM. Hageman factor (factor XII) deficiency in marine mammals. Science 1969;166:1420-1422.10.1126/science.166.3911.1420
  37. 37. Semba U, Shibuya Y, Okabe H, Yamamoto T. Whale Hageman Factor (Factor XII): Prevented Production Due to Pseudogene Conversion. Thromb Res 1998;90:31-37.10.1016/S0049-3848(97)00307-1
DOI: https://doi.org/10.1515/phr-2015-0012 | Journal eISSN: 2084-0535 | Journal ISSN: 1734-7009
Language: English
Page range: 7 - 12
Submitted on: Jun 15, 2015
Accepted on: Jul 12, 2015
Published on: Dec 30, 2015
Published by: Polish Hyperbaric Medicine and Technology Society
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2015 Piotr Radziwon, Romuald Olszański, Jolanta Korsak, Piotr Siermontowski, published by Polish Hyperbaric Medicine and Technology Society
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.