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Original Research Article

Finite element modeling and validation of a four-bar linkage prosthetic knee under static and cyclic strength tests

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Article: 23211 | Received 31 Oct 2013, Accepted 18 Jan 2014, Published online: 25 Jan 2017

References

  • International Organization for Standardization. Prosthetics—structural testing of lower-limb prostheses—requirements and test methods. 2006; Geneva, Switzerland: International Organization for Standardization.
  • Silver-Thorn MB.Kutz M. Design of artificial limbs for lower extremity amputees. Standard handbook of biomedical engineering and design. 2002. pp. 33.1–33.30; New York, USA: McGraw-Hill Professional.
  • Dechaumphai P. Finite element method: fundamentals and applications. 2010; Oxford, UK: Alpha Science International.
  • Godest AC, Beaugonin M, Haug E, Taylor M, Gregson PJ. Simulation of a knee joint replacement during a gait cycle using explicit finite element analysis. Journal of Biomechanics. 2002; 35(2):267–75. [PubMed Abstract].
  • Mallesh G, Sanjay SJ. Finite element modeling and analysis of prosthetic knee joint. International Journal of Emerging Technology and Advanced Engineering. 2012; 2(8):264–69.
  • Niu Y, Wang F. A finite element analysis of the human knee joint: menisci prosthesis instead of the menisci and articular cartilage. 28–30 May 2012, Macau, China. In: 2012 International Conference on Biomedical Engineering and Biotechnology.
  • Ingrassia T, Nalbone L, Nigrelli V, Tumino D, Ricotta V. Finite element analysis of two total knee joint prostheses. International Journal on Interactive Design and Manufacturing. 2013; 7(2):91–101.
  • Kumbhalkar MA, Nawghare U, Ghode R, Deshmukh Y, Armarkar B. Modeling and finite element analysis of knee prosthesis with and without implant. Universal Journal of Computational Mathematics. 2013; 1(2):56–66.
  • Zhang C, Lord M, Turner-Smith AR, Roberts VC. Development of a non-linear finite element modelling of the below-knee prosthetic socket interface. Medical Engineering & Physics. 1995; 17(8):559–66. [PubMed Abstract] [PubMed CentralFull Text].
  • Quesada P, Skinner HB. Analysis of a below-knee patellar tendon-bearing prosthesis: a finite element study. Journal of Rehabilitation Research. 1991; 28(3):1–12.
  • Zhang M, Mak AFT, Roberts VC. Finite element modelling of a residual lower-limb in a prosthetic socket: a survey of the development in the first decade. Medical Engineering & Physics. 1998; 20(5):360–73. [PubMed Abstract] [PubMed CentralFull Text].
  • Zhang M, Roberts C. Comparison of computational analysis with clinical measurement of stresses on below-knee residual limb in a prosthetic socket. Medical Engineering & Physics. 2000; 22(9):607–12. [PubMed Abstract] [PubMed CentralFull Text].
  • Radcliffe CW. The Knud Jansen lecture: above-knee prosthetics. Prosthetics and Orthotics International. 1977; 1(3):146–60. [PubMed Abstract].
  • Shigley JE, Uicker JJ. Theory of machines and mechanisms. 1995; Singapore: McGraw-Hill.
  • MSC Software Corporation. MSC Nastran 2012 quick reference guide. 2012; Santa Ana, CA: MSC Software Corporation.
  • MSC Software Corporation. MSC/Fatigue V2012 user's manual. 2012; Los Angeles, CA: MSC Software Corporation.