Porous versus solid shoulder implants in humeri of different bone densities: A finite element analysis

Author:

Hitchon Sydney12ORCID,Soltanmohammadi Pendar1,Milner Jaques S.3,Holdsworth David234,Willing Ryan125

Affiliation:

1. School of Biomedical Engineering Western University London Ontario Canada

2. Bone and Joint Institute Western University London Ontario Canada

3. Robarts Research Institute Western University London Ontario Canada

4. Department of Medical Biophysics, Schulich School of Medicine & Dentistry Western University London Ontario Canada

5. Department of Mechanical and Materials Engineering Western University London Ontario Canada

Abstract

AbstractPorous metallic prosthesis components can now be manufactured using additive manufacturing techniques, and may prove beneficial for promoting bony ingrowth, for accommodating drug delivery systems, and for reducing stress shielding. Using finite element modeling techniques, 36 scenarios (three porous stems, three bone densities, and four held arm positions) were analysed to assess the viability of porous humeral stems for use in total shoulder arthroplasty, and their resulting mechanobiological impact on the surrounding humerus bone. All three porous stems were predicted to experience stresses below the yield strength of Ti6Al4V (880 MPa) and to be capable of withstanding more than 10 million cycles of each loading scenario before failure. There was an indication that within an 80 mm region of the proximal humerus, there would be a reduction in bone resorption as stem porosity increased. Overall, this study shows promise that these porous structures are mechanically viable for incorporation into permanent shoulder prostheses to combat orthopedic infections.

Publisher

Wiley

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