Literature DB >> 25384445

A novel method to assess primary stability of press-fit acetabular cups.

Emilie A Crosnier1, Patrick S Keogh2, Anthony W Miles2.   

Abstract

Initial stability is an essential prerequisite to achieve osseointegration of press-fit acetabular cups in total hip replacements. Most in vitro methods that assess cup stability do not reproduce physiological loading conditions and use simplified acetabular models with a spherical cavity. The aim of this study was to investigate the effect of bone density and acetabular geometry on cup stability using a novel method for measuring acetabular cup micromotion. A press-fit cup was inserted into Sawbones(®) foam blocks having different densities to simulate normal and osteoporotic bone variations and different acetabular geometries. The stability of the cup was assessed in two ways: (a) measurement of micromotion of the cup in 6 degrees of freedom under physiological loading and (b) uniaxial push-out tests. The results indicate that changes in bone substrate density and acetabular geometry affect the stability of press-fit acetabular cups. They also suggest that cups implanted into weaker, for example, osteoporotic, bone are subjected to higher levels of micromotion and are therefore more prone to loosening. The decrease in stability of the cup in the physiological model suggests that using simplified spherical cavities to model the acetabulum over-estimates the initial stability of press-fit cups. This novel testing method should provide the basis for a more representative protocol for future pre-clinical evaluation of new acetabular cup designs. © IMechE 2014.

Entities:  

Keywords:  Total hip replacement; acetabular cups; biomechanical study; initial stability; press-fit fixation

Mesh:

Year:  2014        PMID: 25384445     DOI: 10.1177/0954411914557714

Source DB:  PubMed          Journal:  Proc Inst Mech Eng H        ISSN: 0954-4119            Impact factor:   1.617


  5 in total

1.  How screw connections influence the primary stability of acetabular cups under consideration of different bone models.

Authors:  Gafar Adam Ahmed; Linda Auge; Jessica Loke; Carlos Alfonso Fonseca Ulloa; Christian Fölsch; Markus Rickert; Bernd Alexander Ishaque; Alexander Jahnke
Journal:  J Orthop       Date:  2020-06-06

2.  Impaction technique influences implant stability in low-density bone model.

Authors:  Ruben Doyle; Richard J van Arkel; Sarah Muirhead-Allwood; Jonathan R T Jeffers
Journal:  Bone Joint Res       Date:  2020-07-31       Impact factor: 5.853

3.  Redesigning Metal Interference Screws Can Improve Ease of Insertion While Maintaining Fixation of Soft-Tissue Anterior Cruciate Ligament Reconstruction Grafts.

Authors:  Kiron K Athwal; Breck R Lord; Piers E Milner; Alex Gutteridge; Andy Williams; Andrew A Amis
Journal:  Arthrosc Sports Med Rehabil       Date:  2020-04-06

4.  Two Different Methods to Measure the Stability of Acetabular Implants: A Comparison Using Artificial Acetabular Models.

Authors:  Quentin Goossens; Leonard Cezar Pastrav; Michiel Mulier; Wim Desmet; Jos Vander Sloten; Kathleen Denis
Journal:  Sensors (Basel)       Date:  2020-01-01       Impact factor: 3.576

5.  Effect of impaction energy on dynamic bone strains, fixation strength, and seating of cementless acetabular cups.

Authors:  Ruben Doyle; Richard J van Arkel; Jonathan R T Jeffers
Journal:  J Orthop Res       Date:  2019-08-02       Impact factor: 3.494

  5 in total

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