An investigation of the inelastic behaviour of trabecular bone during the press-fit implantation of a tibial component in total knee arthroplasty

N. Kelly, D. T. Cawley, F. J. Shannon, J. P. McGarry

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

24 Citations (Scopus)

Abstract

The stress distribution and plastic deformation of peri-prosthetic trabecular bone during press-fit tibial component implantation in total knee arthroplasty is investigated using experimental and finite element techniques. It is revealed that the computed stress distribution, implantation force and plastic deformation in the trabecular bone is highly dependent on the plasticity formulation implemented. By incorporating pressure dependent yielding using a crushable foam plasticity formulation to simulate the trabecular bone during implantation, highly localised stress concentrations and plastic deformation are computed at the bone-implant interface. If the pressure dependent yield is neglected using a traditional von Mises plasticity formulation, a significantly different stress distribution and implantation force is computed in the peri-prosthetic trabecular bone. The results of the study highlight the importance of: (i) simulating the insertion process of press-fit stem implantation; (ii) implementing a pressure dependent plasticity formulation, such as the crushable foam plasticity formulation, for the trabecular bone; (iii) incorporating friction at the implant-bone interface during stem insertion. Simulation of the press-fit implantation process with an appropriate pressure dependent plasticity formulation should be implemented in the design and assessment of arthroplasty prostheses.

Original languageEnglish
Pages (from-to)1599-1606
Number of pages8
JournalMedical Engineering and Physics
Volume35
Issue number11
DOIs
Publication statusPublished - Nov 2013

Keywords

  • Finite element analysis
  • Polyurethane foam
  • Press-fit implantation
  • Pressure dependent yielding
  • Total knee arthroplasty
  • Trabecular bone plasticity

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