Capability of auxetic femoral stems to reduce stress shielding after total hip arthroplasty

Journal of Orthopaedic TranslationVolume 38, January 2023, Pages 220-228Journal of Orthopaedic TranslationAuthor links open overlay panelAbstractBackground

Stress shielding ​(SS) is considered the main mechanical cause of femoral stem loosening after total hip arthroplasty (THA). This study introduces an auxetic lattice femoral stem structure with negative Poisson's ratio that can expand laterally, with the intent of transferring more load to surrounding bone and thereby reducing SS. This study aims to evaluate how the geometry profile of different femoral stems with auxetic structures affects the level of SS. Different re-entrant angles for the auxetic unit cells were also evaluated.

Methods

This study assessed three commercial femoral stem designs (Mayo, CLS and Fitmore) and three re-entrant angles for the auxetic structures (60°, 70° and 80°). Nine auxetic femoral stems (three M-type, three C-type and three F-type) and three solid femoral stems (control group) were designed. All femoral stems were implanted into a finite element model of the human femur to compare levels of SS between the auxetic stems and their traditional solid counterparts.

Results

The results showed that incorporating an auxetic structure into the stem design caused less SS of the surrounding bone than the control models. The M-type stems had the lowest level of SS, followed by the C-type and F-type stems. A re-entrant angle of 70° for the M-type stem, 80° for the C-type stem and 60° for the F-type stem were the designs most capable of reducing SS.

Conclusions

This study found that femoral stems with an auxetic lattice structure caused less SS after THA than comparable solid femoral stems. A femoral stem based on the M-type geometry profile is recommended when designing auxetic femoral stems to minimize SS of surrounding bone.

The translational potential of this article

The novel solution provided in this study may serve to increase the survival rate of femoral stems by reducing SS after THA.

Keywords

Auxetic structure

Femoral stem

Negative Poisson's ratio

Stress shielding

Total hip arthroplasty

© 2022 The Authors. Published by Elsevier B.V. on behalf of Chinese Speaking Orthopaedic Society.

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