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Parameters of unimplanted and explanted surfaces of Weller endoprosthesis stems

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
40 samples of stem surfaces of the Weller endoprosthesis of hip joint removed because of aseptic loosening were tested. The patients between the ages of 61 and 87 were examined and the exploitation time of endoprosthesis ranged from 1 to 20 years. The material analysed was as follows: I group - exploitation 1-3 years (5 surfaces), II group - exploitation 5-8 years (11 surfaces), III group - exploitation 10-14 years (14 surfaces), and IV group - exploitation 16-20 years (10 surface)). Additionally group 0 covered 4 unexploited endoprostheses. We analysed the 2-4 mm2 surfaces of the Weller endoprosthesis stems, with the scan velocity of 500 um/s. A decrease in stem amplitude parameters means some increase in stem microdisplacements in relation to cement. During the first three years, the decrease in the roughness of endoprosthesis surface was larger compared with that in further exploitation period. In the case of unexploited surfaces of stems, the values of fractal dimension are lower (2.34). During exploitation time the Sfd parameter decreases negligibly (2.28-2.24).
Rocznik
Strony
51--56
Opis fizyczny
Bibliogr. 17 poz., rys.
Twórcy
autor
  • Medical Department, Institute of Physiotherapy, University of Rzeszów
Bibliografia
  • [1] BOBYN J.D., JACOBS J.J., TAZNER J. et al., The susceptility of smooth surfaces to preimplant fibrosis and migration of polyethylene wear debris, Clinical Orthopaedics, 1995, 311, 25–32.
  • [2] CWANEK J., Amplitude parameters of stem and cement surfaces of Weller endoprosthesis (in Polish), Tribology Problems, 2005, 1, 149–153.
  • [3] GIERZYŃSKA-DOLNA M., Biotribology (in Polish), Technical University of Częstochowa, Częstochowa, 2002.
  • [4] KUSZ D., GAŹDZIK T., WÓJCIK K. et al., Biomechanical conditions of total arthroplasty of hip joint (in Polish), Orthopaedic Quarterly, 1998, 4, 335.
  • [5] SALVATI E.A., The contribution of metallic debris to osteolysis, Charnley Total Hip Arthroplasty, 33 year of world-wide experience, Groupe A.C.O.R.A., Lyon, 1995, 151.
  • [6] FROIMSON M.I., GARINO J., MACHENAUD A., VIDALAIN J.P., Minimum 10-year results of tapered, titanium, hydroxyapatite-coated hip stem, Journal of Arthroplasty, 2007, 1, 1–7.
  • [7] LEE A.J., LING R.S.M.M., PEARSON G.P., Fixation, [in:] Dowson D., Wright V. (eds.), Introduction to biomechanics of joint replacement, Mechanical Engineering Publication (MEP), London, 1981, 17.
  • [8] GROSMAN F., HETMAŃCZYK M., BALIN A., TOBOREK J., Mechanical and material conditions of arthroplasty development (in Polish), Material Engineering, 1994, 3–4, 73.
  • [9] MOW V.C., ATESHIAN G.A., Lubrication and wear of diarthrodial joints, [in:] Mow V.C., Hayes W.C. (eds.), Basic orthopaedic biomechanics, second edition, Lippincott Williams & Wilkins, A Wolters Kluwer Company, Philadelphia, Baltimore, New York, London, Buenos Aires, Hong Kong, Sydney, Tokio, 1997, 275–315.
  • [10] WANG A., STARK C., DUMBLETON J.H., Mechanistic and morphological origins of ultra-high molecular weight polyethylene wear derbis in total joint replacement prostheses, [in:] Dowson D. (ed.), Advances in medical tribology. Orthopaedic implants and implant materials, Mechanical Engineering Publications Limited, Bury St Edmunds and London, UK, 1998, 1–15.
  • [11] DOWSON D., UNSWORTH A., COOKE A.F., GVOZDANOVIC D., Lubrication of joints, [in:] Dowson D., WRIGHT V., An introduction to the bio-mechanics of joints and joint replacement, Mechanical Engineering Publications LTD, London, UK, 1981, 120–145.
  • [12] DOWSON D., Biotribology of natural and replacement synovial joints, [in:] Mow V.C., Ratcliffe A., Woo S.L.Y., Biomechanics of diarthrodial joints, Springer-Verlag, New York, Berlin, Heidelberg, London, Paris, Tokyo, Hong Kong, 1990, 305–345.
  • [13] CWANEK J., CZAJKOWSKI A.A., LUBIMOV W., Geometrical structure of surface of normal and osteoarthrotic articular cartilages of femoral heads, Acta of Bioengineering and Biomechanics, 2003, 5, Supplement 1, 81–86.
  • [14] CZERWIŃSKI E., PAWELEC A., MARCHEWCZYK J., Realloplasty problems of hip joint in Poland and world (in Polish), Orthopaedics Traumatology Rehabilitation, 2001, 1, 1–4.
  • [15] ISO 7206-2 Implants of surgery. Partial and total hip joint prosthesis, Part 2. Articulating surfaces made of metallic, ceramic and plastics materials.
  • [16] Technical conditions, requirements and investigations of total endoprosthesis of hip joint produced to implantation (in Polish), Medical Techniques, WT-Z2/E-1/89/R.
  • [17] CWANEK J., CZAJKOWSKI A.A., LIUBIMOV V., Causes of aseptic loosening of Weller endoprosthesis (in Polish), Methods of Applied Sciences, University of Szczecin, 2009, Vol. 4, 183–188.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPBB-0001-0023
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