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Journal Abstract Search


98 related items for PubMed ID: 26484559

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  • 4. Appropriate radial clearance of ceramic-on-ceramic total hip prostheses to realize squeeze-film lubrication.
    Mabuchi K, Sakai R, Ota M, Ujihira M.
    Clin Biomech (Bristol); 2004 May; 19(4):362-9. PubMed ID: 15109756
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  • 5. Wear of 36-mm BIOLOX(R) delta ceramic-on-ceramic bearing in total hip replacements under edge loading conditions.
    Al-Hajjar M, Fisher J, Tipper JL, Williams S, Jennings LM.
    Proc Inst Mech Eng H; 2013 May; 227(5):535-42. PubMed ID: 23637263
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  • 6. Wear simulation of the ProDisc-L disc replacement using adaptive finite element analysis.
    Rawlinson JJ, Punga KP, Gunsallus KL, Bartel DL, Wright TM.
    J Neurosurg Spine; 2007 Aug; 7(2):165-73. PubMed ID: 17688056
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  • 8. Preferential superior surface motion in wear simulations of the Charité total disc replacement.
    Goreham-Voss CM, Vicars R, Hall RM, Brown TD.
    Eur Spine J; 2012 Jun; 21 Suppl 5(Suppl 5):S700-8. PubMed ID: 20582556
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  • 9. In vivo functional performance of failed Prodisc-L devices: retrieval analysis of lumbar total disc replacements.
    Lebl DR, Cammisa FP, Girardi FP, Wright T, Abjornson C.
    Spine (Phila Pa 1976); 2012 Sep 01; 37(19):E1209-17. PubMed ID: 22531474
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  • 10. Analysis of contact mechanics in ceramic-on-ceramic hip joint replacements.
    Mak MM, Jin ZM.
    Proc Inst Mech Eng H; 2002 Sep 01; 216(4):231-6. PubMed ID: 12206519
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  • 11. Concave polyethylene component improves biomechanical performance in lumbar total disc replacement--modified compressive-shearing test by finite element analysis.
    Chen WC, Liu YL, Lin KJ, McClean CJ, Lai HJ, Chou CW, Chang TW, Yang CT, Huang CH, Lai YS, Cheng CK.
    Med Eng Phys; 2012 May 01; 34(4):498-505. PubMed ID: 21925921
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  • 12. Temperature prediction in a finite element model for sliding contact analysis of total hip prosthesis.
    Suhendra N, Stachowiak GW.
    Proc Inst Mech Eng H; 2004 May 01; 218(5):361-70. PubMed ID: 15533001
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  • 13. Influence of acetabular cup rim design on the contact stress during edge loading in ceramic-on-ceramic hip prostheses.
    Mak M, Jin Z, Fisher J, Stewart TD.
    J Arthroplasty; 2011 Jan 01; 26(1):131-6. PubMed ID: 20149581
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  • 14. The effect of anterior-posterior shear on the wear of CHARITÉ total disc replacement.
    Vicars R, Prokopovich P, Brown TD, Tipper JL, Ingham E, Fisher J, Hall RM.
    Spine (Phila Pa 1976); 2012 Apr 20; 37(9):E528-34. PubMed ID: 22037530
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  • 15. Restoration of compressive loading properties of lumbar discs with a nucleus implant-a finite element analysis study.
    Strange DG, Fisher ST, Boughton PC, Kishen TJ, Diwan AD.
    Spine J; 2010 Jul 20; 10(7):602-9. PubMed ID: 20547110
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  • 16. Spatial variation of wear on Charité lumbar discs.
    Prokopovich P, Perni S, Fisher J, Hall RM.
    Acta Biomater; 2011 Nov 20; 7(11):3914-26. PubMed ID: 21745608
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  • 17. Lubrication regimes in lumbar total disc arthroplasty.
    Shaheen A, Shepherd DE.
    Proc Inst Mech Eng H; 2007 Aug 20; 221(6):621-7. PubMed ID: 17937201
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  • 18. Influence of the loading frequency on the wear rate of a polyethylene-on-metal lumbar intervertebral disc replacement.
    Kettler A, Bushelow M, Wilke HJ.
    Eur Spine J; 2012 Jun 20; 21 Suppl 5(Suppl 5):S709-16. PubMed ID: 20936310
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  • 19. Stress analysis of hemispherical ceramic hip prosthesis bearings.
    Anderson IA, Bowden M, Wyatt TP.
    Med Eng Phys; 2005 Mar 20; 27(2):115-22. PubMed ID: 15642507
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  • 20. Lumbar total disc replacement impingement sensitivity to disc height distraction, spinal sagittal orientation, implant position, and implant lordosis.
    Rundell SA, Day JS, Isaza J, Guillory S, Kurtz SM.
    Spine (Phila Pa 1976); 2012 May 01; 37(10):E590-8. PubMed ID: 22146286
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