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Tytuł artykułu

Project of hip joint endoprosthesis for an individual patient with materials selection

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Nowadays the joint replacement orthopaedic surgery is most frequently performed surgery associated with the damage of the join surface. The implantation is mainly placed in hip and knee area. This work includes the hip replacement design, based on the patient's medical records, the description of creation process and materials used for individual components.
Rocznik
Strony
30--36
Opis fizyczny
Bibliogr. 25 poz., rys.
Twórcy
  • Gdansk University of Technology, Department of Materials Science and Welding Engineering, Narutowicza 11/12, 80-233 Gdańsk, Poland
  • Gdansk University of Technology, Department of Materials Science and Welding Engineering, Narutowicza 11/12, 80-233 Gdańsk, Poland
Bibliografia
  • 1. Dorr L.D.: Alloplastic of hip joint. Elsevier Urban & Partner, Wroclaw 2006.
  • 2. Płomiński J., Watral Z.: Testing the stability of the polyethylene acetabulum of an artificial hip joint [in Polish], Diagnostyka, 3 (2006).
  • 3. Kowalczyk E., Sobczyk K.: Examination of time's influence on mechanical properties of polyethylene hip cup endoprosthesis [in Polish], Engineering of Biomaterials, 74 (2008), 11-15.
  • 4. Li S.: Ultra high molecular weight polyethylene: from charney to cross linked, Operative techniques in Orthopedics, 11 (2001), 288 - 295.
  • 5. Strzelec - Nowak D., Bogut A.: Microbiological diagnostics of the inflammation of hip joint implants, XXVII meeting of Polish Society of Microbiology in Lublin. 5-8 IX 2012.
  • 6. Semenowicz J., Mroczka A., Kajzer A., Kajzer W., Koczy B., Marciniak J.: Total hip arthroplasty using cementlees Avantage cup in patients with risk of hip prosthesis instability. Orthopedic, Traumatology, Rehabilitation, 16 (3) (2014), 253-263.
  • 7. Kubacki J.: Alloplastic of hip joints and rehabilitation. The Publishing house of Physical Training Academy. Katowice 2004.
  • 8. John A., Duda M., Kokot G.: The influance of shape endoprosthesis on state of stress and strain of femur, Modelling in engineering ISSN 1896- 771X 44, Gliwice 2012, 117-124.
  • 9. http://www.nfz.gov.pl/new/art/5432/2013_05_07_endoprotezy_2012_analiza.pdf 26.01.2013
  • 10. Głuszko P.: Osteoporosis - prospects for future. Rheumatology, 49 (2011) 372-377.
  • 11. Świeczko-Żurek B.: Biomaterials. The Publishing House of Technical University of Gdansk 2009.
  • 12. Jurczyk M., Jakubowicz J.: Biomaterials. The Publishing House of Technical University of Poznan. Poznan 2008.
  • 13. Niinomi M.: Fatigue characteristics of metallic biomaterials, International Journal of Fatigue, 29 (2007), 992-1000.
  • 14. Bauer S., Schmuki P., von der Mark K.: Engineering biocompatible implant surfaces Part I: Materials and surfaces, Progress in Materials Science, 58 (2013), 261-326.
  • 15. Ryniewicz A.: The analysis of lubrication mechanism of a human hip joint, Monograph no. 111, AGH University of Science and Technology Press, Krakow 2002.
  • 16. http://www.szpitalmsw.pl/mswia/cenniki/cennik_2014_01.pdf 20.12.2014
  • 17. Hallab N.J., Merritt K., Jacobs J.J.: Metal sensitivity in patients with orthopedic implants. J. Bone Joint Surg. Am., 83-A (2001), 428-436.
  • 18. Leszczyński P., Pawlak - Buś K.: Osteoarthritis - the epidemic of the 21th century, Contemporary Pharmacy, 1 (2008), 78-87.
  • 19. Door L. D.: Hip Arthroplasty, Elsevier Urban and Partners, Wroclaw 2009.
  • 20. Niezgodziński M. Niezgodziński T.: Strenght of Materials, Polish Scientific Publishers PWN, Warszawa 2009.
  • 21. Szarek A.: The assessment of wear of metal heads in hip joint prosthesis removed from human body due to aseptic loosening [in Polish], Inżynieria Biomateriałów, 74 (2008), 6-10.
  • 22. Szewczenko J., Pochrząst M., Walke W.: Evaluation of electrochemical properties of modified Ti-6Al-4V ELI alloy, Electrical Review, 12b (2011), 178-181.
  • 23. Kajzer A., Kajzer W., Semenowicz J., Mroczka A.: Corrosion resistance of hip endoprosthesis cups in the initial state and after implantation. Solid State Phenomena, 227 (2015) 523-526.
  • 24. Przondziono J., Walke W., Hadasik E, Szymszal J.: The effect of strain hardening on resistance to electrochemical corrosion of wires for orthopedics. Technologies and Properties of Modern Utilised Materials. IOP Conference Series: Materials Science and Engineering, 35, 012015, 2012, 1-9.
  • 25. Gierzyńska-Dolna M.: Biotribology and medical application, Tribology 4, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-27315ad4-2b76-4aa1-905f-55dd60244f40
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