Literature DB >> 32320044

Biomechanical Analysis to Probe Role of Bone Condition and Subject Weight in Stiffness Customization of Femoral Stem for Improved Periprosthetic Biomechanical Response.

Subhomoy Chatterjee1, Sandipan Roy2, Santanu Majumder3, Amit RoyChowdhury3.   

Abstract

Stress shielding due to difference in stiffness of bone and implant material is one among the foremost causes of loosening and failure of load-bearing implants. Thus far, femoral geometry has been given priority for the customization of total hip joint replacement (THR) implant design. This study, for the first time, demonstrates the key role of bone condition and subject-weight on the customization of stiffness and design of the femoral stem. In particular, internal hollowness was incorporated to reduce the implant stiffness and such designed structure has been customized based on subject parameters, including bone condition and bodyweight. The primary aim was to tailor these parameters to achieve close to natural strain distribution at periprosthetic bone and to reduce interfacial bone loss over time. The maintenance of interfacial bone density over time has been studied here through analysis of bone remodeling (BR). For normal bodyweight, the highest hollowness exhibited clinically relevant biomechanical response, for all bone conditions. However, for heavier subjects, consideration of bone quality was found to be essential as higher hollowness induced bone failure in weaker bones and implant failure in stronger bones. Moreover, for stronger bone, thinner medial wall was found to reduce bone resorption over time on the proximo-lateral zone of stress shielding, while lateral thinning was found advantageous for weaker bones. The findings of this study are likely to facilitate designing of femoral stems for achieving better physiological outcomes and enhancement of the quality of life of patients undergoing THR surgery.
Copyright © 2020 by ASME.

Entities:  

Keywords:  bone condition; bone remodeling; finite element analysis; implant hollowness and stiffness; total hip replacement

Mesh:

Year:  2020        PMID: 32320044     DOI: 10.1115/1.4046973

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  3 in total

Review 1.  Effects of physical exercise on bone mineral density in older postmenopausal women: a systematic review and meta-analysis of randomized controlled trials.

Authors:  Keyvan Hejazi; Roya Askari; Martin Hofmeister
Journal:  Arch Osteoporos       Date:  2022-07-27       Impact factor: 2.879

2.  Outcomes of primary total hip arthroplasty using 3D image-based custom stems in unselected patients: a systematic review.

Authors:  A Nogier; I Tourabaly; S Ramos-Pascual; J H Müller; M Saffarini; C Courtin
Journal:  EFORT Open Rev       Date:  2021-12-10

3.  Comparison of Femoral Bone Mineral Density Changes around 3 Common Designs of Cementless Stems after Total Hip Arthroplasty-A Retrospective Cohort Study.

Authors:  Yuan Liu; Wen-Xing Wei; Yi Zeng; Jun Ma; Jing Yang; Bin Shen
Journal:  Orthop Surg       Date:  2022-04-25       Impact factor: 2.279

  3 in total

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