PSI - Issue 25

G.M. Eremina et al. / Procedia Structural Integrity 25 (2020) 470–476 Galina Eremina et al./ Structural Integrity Procedia 00 (2019) 000–000

476

7

Cowin, S.C., 1999. Bone poroelasticity. Journal of Biomechanics 32, 217–38. Eremina, G.M. and Smolin, A.Y., 2019. Multilevel numerical model of hip joint accounting for friction in the hip resurfacing endoprosthesis.. Facta Universitatis. Series: Mechanical Engineering 17, 29–38. Fabbri D., Orsini R., Moroni A., 2018. Stress Fracture of Proximal Femur after Hip Resurfacing Treated with Cannulated Screw. Joints 6(2), 128– 30. Evans, J.T., Evans, J.P., Walker, R.W., Blom, A.W., Whitehouse, M.R., Sayers, A., 2019. How long does a hip replacement last? A systematic review and meta-analysis of case series and national registry reports with more than 15 years of follow-up. Lancet 393(10172), 647–54. James, S.L., Abate, D., Abate, K.H., 2018. Global, regional, and national incidence, prevalence, and years lived with disability for 354 diseases and injuries for 195 countries and territories, 1990-2017: a systematic analysis for the Global Burden of Disease Study 2017. Lancet 392, 1789– 858. Koutras, C., Antoniou, S.A., Talias, M.A., Heep, H., 2015. Impact of Total Hip Resurfacing Arthroplasty on Health-Related Quality of Life Measures: A Systematic Review and Meta-Analysis. The Journal of Arthroplasty 30(11), 1938–52. Kuhl, E., Balle, F., 2005. Computational modeling of hip replacement surgery: Total hip replacement vs. hip resurfacing. Technische mechanik 25(2), 107–14. Naal, F.D., Maffiuletti, N.A., Munzinger, U., Hersche, O., 2007. Sports after hip resurfacing arthroplasty. American Journal of Sports Medicine 35(5), 705–11. Putzer, D., Nogler, M., Terzini, M., Mannara, R., Bignardi, Cr., 2018. A Finite Element Analysis for a New Short Stem Concept Design With Spherical Bone Interface for Hip Resurfacing. International Journal of Mechanical Engineering and Technology 9 (3), 923–35. Shieh, M.-Ch., Lin, A.C., 2012. CAD-model-based Design and Stress Analysis of Resurfacing Hip Joint Prosthesis, Computer-Aided Design and Applications 9 (5), 609–19. Shilko, E.V., Psakhie, S.G., Schmauder, S., Popov, V.L., Astafurov, S.V. and Smolin, A.Yu., 2015. Overcoming the Limitations of Distinct Element Method for Multiscale Modeling of Materials with Multimodal Internal Structure. Computational Materials Science 102, 267–85. Smolin, A.Yu., Shilko, E.V., Astafurov, S.V., Kolubaev, E.A., Eremina, G.M., Psakhie, S.G., 2018. Understanding the Mechanisms of Friction Stir Welding Based on Computer Simulation Using Particles. Defence Technology 14, 643–56. Material Datasheet: TIMETAL 6-4s, Titanium Metals Corporation, 2000. Stansfield, B.W., Nicol, A.C., 2002. Hip Joint Contact Forces in Normal Subjects and Subjects With Total Hip Prostheses: Walking and Stair and Ramp Negotiation. Clinical Biomechanics 17(2), 130–9. Stansfield, B.W., Nicol, A.C., Paul, J.P., Kelly, I.G., Graichen, F., Bergmann, G., 2003. Direct Comparison of Calculated Hip Joint Contact Forces with Those Measured Using Instrumented Implants. An Evaluation of a Three-dimensional Mathematical Model of the Lower Limb. Journal of Biomechanics 36 (7), 929–36 Todo, M., 2018, Biomechanical Analysis of Hip Joint Arthroplasties using CT-Image Based Finite Element Method. Journal of Surgery and Research 1, 34–41.

Made with FlippingBook flipbook maker