Open Access

Biomechanical Analysis Of The Intervertebral Disc Implant Using The Finite Element Method


Cite

1. Kiwerski J., Kowalski M., Krasuski M.: Schorzenia i urazy kręgosłupa, PZWL, Warszawa (1997).Search in Google Scholar

2. Gaździk T.: Ortopedia i traumatologia. Tom I, Wydanie III uaktualnione i rozszerzone, PZWL, Warszawa (2008).Search in Google Scholar

3. Putza R., Pabsta R.: Sobotta, Atlas Anatomii Człowieka, Tom II Klatka piersiowa, brzuch, miednica, kończyna dolna. Wydanie II Polskie opracowane przez M. Ziółkowskiego, Urban & Partner, Wrocław (1997).Search in Google Scholar

4. Stajgis M.: Urazy kręgosłupa i rdzenia kręgowego, II Zakład Radiologii Ogólnej UM, Kielce (2009), 2-12.Search in Google Scholar

5. Pezowicz C.: Biomechanika Krążka Międzykręgowego, Ocena Przeciążeń oraz Skutki Wprowadzania Implantów, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław (2008).Search in Google Scholar

6. Borkowski P.: Biomechanical analysis of artificial lumbar disc, Bio-algorithms and med-systems journal edited by medical college – Jagiellonian University 1 (2005), 143-146.Search in Google Scholar

7. Barczewska M., Maksymowicz W., Beta J.: Artificial discs as a new alternative treatment method for selected patients with cervical or lumbar, Problemy Lekarskie 45 (2006), 7-10.Search in Google Scholar

8. Świeczko-Żurek B., Serbiński W., Szumlański A.: Analisys of the failure of fixator used in bone surgery. Advances in Materials Science, 8, 2 (2008), 84-88.Search in Google Scholar

9. Kajzer W., Kajzer A, Szewczenko J., Marciniak J.: FEM Analysis of Locked Intramedullary Nails Used For Femur Fractures Treatment. Engineering of Biomaterials, 13 (2010), 54-57.Search in Google Scholar

10. Pochrząst M., Basiaga M., Marciniak J, Kaczmarek M.: Biomechanical analysis of limited-contact plate used for osteosynthesis. Acta of Bioengineering and Biomechanics 16, 1, (2014), 99-105.Search in Google Scholar

11. Ziębowicz A., Kajzer A., Kajzer W., Marciniak J.: Metatarsal osteotomy using double-threaded screws - biomechanical analysis, Conference on Information Technologies in Biomedicine. Advances in soft computing 69. Springer-Verlag, Berlin Heidelberg (2010), 465-472.10.1007/978-3-642-13105-9_47Search in Google Scholar

12. Kajzer A., Kajzer W., Gzik-Zroska B., Wolański W., Janicka I., Dzielicki J.: Experimental Biomechanical Assessment of Plate Stabilizers for Treatment of Pectus Excavatum. Acta of Bioengineering and Biomechanics, 15, 3, (2013), 113-121.Search in Google Scholar

13. Basiaga M., Paszenda Z., Szewczenko J., Kaczmarek M.: Numerical and experimental analysis of drills used in osteosynthesis. Acta of Bioengineering and Biomechanics, 13, 4, (2011), 29-36.Search in Google Scholar

14. Kajzer W., Kajzer A, Kaczmarek M., Marciniak J.: FEM analisys of the expandable intramedullary nail. Advances in soft computing, Springer-Verlag 47 (2008), 537-544.Search in Google Scholar

15. www page: http://www.whichmedicaldevice.com/by-manufacturer/234/372/prodisc-l-prosthesis.Search in Google Scholar

16. Gzik M.: Biomechanika Kręgosłupa Człowieka, Wydawnictwo Politechniki Śląskiej, Gliwice (2007).Search in Google Scholar

17. Kurtz S.M.: The UHMWPE Handbook, Ultra-High Molecular Weight Polyethylene in Total Joint Replacement, Elsevier Academic Press (2004), 219-325.Search in Google Scholar

18. Standard ASTM F 75-82 - Standard Specification for Cast Cobalt-Chromium-Molybdenum alloy for Surgical Implant Applications.Search in Google Scholar

19. Tejszerska D., Mańka I.: Modelowanie skrzywień bocznych kręgosłupa człowieka, Wydawnictwo Politechniki Śląskiej, Gliwice (2010), 56-64.Search in Google Scholar

20. Rundell S.A., Isaza J.E., Kurtz S.M.: Biomechanical evaluation of a spherical lumbar interbody device at varying levels of subsidence, SAS Journal 5 (2011), 16-25.10.1016/j.esas.2010.12.001436561625802664Search in Google Scholar

21. Shikinami Y., Kawabe Y., Yasukawa K., Tsuta K., Kotani Y., Abumi K.: A biomimetic artificial intervertebral disc system composed of a cubic three-dimensional fabric. The Spine Journal 10 (2010), 141-152.Search in Google Scholar

22. Haiyun Li, Zheng W.: Intervertebral disc biomechanical analysis using the finite element modeling based on medical images, Medical Imaging and Telemedicine, Computerized Medical Imaging and Graphics 30 (2006), 363-370.10.1016/j.compmedimag.2006.09.00417074465Search in Google Scholar

23. Denozière G., Ku D.N.: Biomechanical comparison between fusion of two vertebrae and implantation of an artificial intervertebral disc, Journal of Biomechanics 39 (2006), 766-775.10.1016/j.jbiomech.2004.07.03916439247Search in Google Scholar

24. Grauer J.N., Biyani A., Faizan A., Kiapour A., Sairyo K., Ivanov A., Ebraheim N.A., Patel T.Ch., Goel V.K.: Biomechanics of two-level Charité artificial disc placement in comparison to fusion plus single-level disc placement combination, The Spine Journal 6 (2006), 659–666.10.1016/j.spinee.2006.03.01117088196Search in Google Scholar

25. Wanga W., Zhangb H., Sadeghipoura K., Baran G.: Effect of posterolateral disc replacement on kinematics and stress distribution in the lumbar spine: A finite element study, Medical Engineering & Physics 35 (2013), 357–364.10.1016/j.medengphy.2012.05.01322742932Search in Google Scholar

eISSN:
2083-4799
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Materials Sciences, Functional and Smart Materials