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Case Study and Failure Analysis of a total hip Stem Fracture


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1. Gandhi R., Davey J.R., Mahomed N.: Patient expectations predict greater pain relief with joint arthroplasty. J. Arthroplasty, 24(5) (2009), 716-21.10.1016/j.arth.2008.05.01618701241Search in Google Scholar

2. Nunley R. M., Ruh E. L., Zhang Q., Della Valle C. J., Engh C. A,. Berend M. E, Parvizi J., Clohisy J. C., And Barrack R. L.: Do patients return to work after hip arthroplasty surgery. J. Arthroplasty, 26 (6 Suppl) (2011), 92-98.10.1016/j.arth.2011.03.03821602024Search in Google Scholar

3. Kamachi M. U., Sridhar T.M., Eliaz N., Baldev R.A.J.: Failures of stainless steel orthopaedic devices: causes and remedies. Corros Rev., 21 (2003), 231-67.Search in Google Scholar

4. Martens M., Aernoudt E., De Meester P., Ducheyne P., Muller J.C., Delangh R., Kestelijn P.: Factors in the mechanical failure of the femoral component in total hip prosthesis. Acta Orthop Scandinavica, 45(5) (1974), 693-710.10.3109/174536774089896794451073Search in Google Scholar

5. Kotela A., Ambroziak P., Deszczyński M.J.: Złamanie trzpienia endoprotezy stawu biodrowego - opis przypadku. Ostry Dyżur, 5, 1-2 (2012).Search in Google Scholar

6. Carlsson A. S., Gentz C. F., Stenport J.: Fracture of the femoral prosthesis in total hip replacement according to charnley. Acta Orthop Scand., 48(6) (1977), 650-5.10.3109/17453677708994812607753Search in Google Scholar

7. Wróblewski B.M.: Fractured stem in total hip replacement - a clinical review of 120 cases. Acta Orthop Scand., 53(2) (1982), 279-84.10.3109/174536782089922167136577Search in Google Scholar

8. Akinola B., Mahmud T., Deroeck N.: Fracture of an exeter stem - a case report. The Internet Journal of Orthopedic Surgery, 16, 1 (2009).Search in Google Scholar

9. Jarvi K., Kerry R.M.: Case report segmental stem fracture of a cemented femoral prosthesis. The Journal of Arthroplasty, 22 (2007).10.1016/j.arth.2006.03.01217562423Search in Google Scholar

10. Roffey P.: Case study: Failure of a high nitrogen stainless steel femoral stem. Engineering Failure Analysis, 20 (2012).10.1016/j.engfailanal.2011.11.010Search in Google Scholar

11. Sen R.K., Mootha A.K., Saini R., Kumar V.: Segmental fracture of a cemented femoral stem - a case report and review of literature. The Internet Journal of Orthopedic Surgery, 13, 1 (2009).Search in Google Scholar

12. Speidel M.O.: Nitrogen containing austenitic stainless steels. Materialwissenschaft Und Werkstofftechnik, 37, 10 (2006).Search in Google Scholar

13. Cieśla M., Ducki K.J.: Effect of increased nitrogen content on the structure and properties of tool steels. Journal of Achievements in Materials and Manufacturing Engineering, 29 (2008).Search in Google Scholar

14. Ducki K.J., Cieśla M., Hetmańczyk M., Kuc D., Kamiński P.: The influence of increased nitrogen contents on structure and selected properties of tool steels. Proceedings of the 7th Scientific Conference “New Production Technology and Materials in Metallurgy and Materials Engineering”, Katowice (2000), 123-128 (In Polish).Search in Google Scholar

15. Standard specification for wrought nitrogen strengthened 21 chromium-10 nickel- 3 manganese-2.5 molybdenum stainless steel alloy bar for surgical implants, American Society For Testing and Materials, West Conshohocken, Pa, ASTM F1586.Search in Google Scholar

16. Murty B.S., Shankar P., Baldev R., Rath B.B., Murday J.: Texstbook of Nanoscience and Nanotechnology, Springer (2013), 55 - 66.10.1007/978-3-642-28030-6Search in Google Scholar

17. Standard specification for stainless steel forgings for surgical implants, American Society For Testing And Materials, West Conshohocken, Pa, ASTM F621-12. Search in Google Scholar

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4 veces al año
Temas de la revista:
Materials Sciences, Functional and Smart Materials