Literature DB >> 8301277

Computer simulations of stress-related bone remodeling around noncemented acetabular components.

M E Levenston1, G S Beaupré, D J Schurman, D R Carter.   

Abstract

The authors have used computer modeling techniques to examine stress-related bone changes in the acetabular region. Using a previously developed theory for bone development and adaptation, the authors simulated the distribution of bone density in the natural pelvis as well as changes in bone density following total hip arthroplasty. The geometry of the finite element model was based on a two-dimensional slice through the pelvis. Starting from a solid, homogeneous structure, the computer simulations predicted the distribution of bone density throughout the natural pelvis. The predicted bone density distribution in this first simulation agreed well with the actual bone density distribution only when loads representing multiple activities were incorporated. Using the predicted density distribution as a starting point the authors modified the finite element models to study two designs of noncemented, metal-backed acetabular cups. The simulations with fully fixed bone-implant interfaces predicted extensive loss of bone density medial and inferior to the prosthetic components. The simulations with loose interfaces led to more moderate losses of bone density, indicating a load transfer more similar to that which occurs in the natural joint. The differences in simulated bone remodeling between the two component designs were quite minimal. These results indicate that acetabular components with full bony ingrowth may induce significant stress-related bone remodeling due to a nonphysiologic transfer of load.

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Year:  1993        PMID: 8301277     DOI: 10.1016/0883-5403(93)90006-p

Source DB:  PubMed          Journal:  J Arthroplasty        ISSN: 0883-5403            Impact factor:   4.757


  10 in total

Review 1.  How do tissues respond and adapt to stresses around a prosthesis? A primer on finite element stress analysis for orthopaedic surgeons.

Authors:  Richard A Brand; Clark M Stanford; Colby C Swan
Journal:  Iowa Orthop J       Date:  2003

2.  Computational simulations of stress shielding and bone resorption around existing and computer-designed orthopaedic screws.

Authors:  A Gefen
Journal:  Med Biol Eng Comput       Date:  2002-05       Impact factor: 2.602

3.  Three-dimensional stress analysis of threaded cups - a finite element analysis.

Authors:  U Witzel; W Rieger; H Effenberger
Journal:  Int Orthop       Date:  2007-02-21       Impact factor: 3.075

4.  Pre-clinical evaluation of the Cambridge acetabular cup.

Authors:  Richard E Field; Eric Jones; Peter Nuijten; Andrew Storer; Michael Cronin; Neil Rushton
Journal:  J Mater Sci Mater Med       Date:  2008-02-28       Impact factor: 3.896

5.  [Periprosthetic femoral bone reaction after total hip arthroplasty with preservation of the collum femoris : CT-assisted osteodensitometry 1 and 3 years postoperatively].

Authors:  R Schmidt; S Gollwitzer; T E Nowak; M Nowak; L Häberle; A Kress; R Forst; L A Müller
Journal:  Orthopade       Date:  2011-07       Impact factor: 1.087

6.  Bone remodelling around HA-coated acetabular cups : a DEXA study with a 3-year follow-up in a randomised trial.

Authors:  M B Laursen; P T Nielsen; K Søballe
Journal:  Int Orthop       Date:  2006-06-08       Impact factor: 3.075

7.  Classification of acetabular changes in osteoarthritis: a histological and radiological analysis of 122 consecutive drill biopsies routinely taken during THA.

Authors:  Martin Clauss; Thomas Ilchmann; Peter Zimmermann; Matthias U Schafroth; Martin Lüem; Peter E Ochsner
Journal:  Surg Radiol Anat       Date:  2008-05-27       Impact factor: 1.246

8.  Quantifying Pelvic Periprosthetic Bone Remodeling Using Dual-Energy X-Ray Absorptiometry Region-Free Analysis.

Authors:  Andrew M Parker; Lang Yang; Mohsen Farzi; José M Pozo; Alejandro F Frangi; J Mark Wilkinson
Journal:  J Clin Densitom       Date:  2017-06-23       Impact factor: 2.617

9.  Peri-acetabular bone mineral densityin total hip replacement.

Authors:  L Gauthier; L Dinh; P E Beaulé
Journal:  Bone Joint Res       Date:  2013-08-02       Impact factor: 5.853

10.  Cancellous and cortical bone mineral density around an elastic press-fit socket in total hip arthroplasty.

Authors:  Dean F M Pakvis; Petra J C Heesterbeek; Marianne Severens; Maarten Spruit
Journal:  Acta Orthop       Date:  2016-09-23       Impact factor: 3.717

  10 in total

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