Impact of periprosthetic femoral fracture fixation plating constructs on local stiffness, load transfer, and bone strains
Author:
Publisher
Elsevier BV
Subject
Mechanics of Materials,Biomedical Engineering,Biomaterials
Reference27 articles.
1. Epidemiology of periprosthetic fracture of the femur in 32 644 primary total hip arthroplasties: a 40-year experience;Abdel;Bone Jt. J.,2016
2. Standard specification for wrought 18 Chromium-14 Nickel-2.5 Molybdenum stainless steel bar and wire for surgical implants (UNS S31673);Astm F138-13a;ASTM Int.,2013
3. Isolated locked compression plating for Vancouver Type B1 periprosthetic femoral fractures;Bryant;Injury,2009
4. Finite element analysis of different repair methods of Vancouver B1 periprosthetic fractures after total hip arthroplasty;Chen;Injury,2012
5. Development of axial compression and combined axial compression and torque loading configurations to reproduce strain in the implanted femur during activities of daily living;Chen;J. Biomech.,2021
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1. A modified testing method based on ASTM F382 considering the practical physiological loading and boundary conditions applying on bone plates;Measurement;2025-02
2. Therapy aspects of peri-implant femoral fractures—a retrospective analysis of 64 patients;European Journal of Trauma and Emergency Surgery;2024-03-26
3. CASE STUDY OF A DISTAL FEMUR TI6Al4V LOCKED COMPRESSION PLATE FAILURE SURFACE INVESTIGATION AND FINITE ELEMENT ANALYSIS;Journal of Mechanics in Medicine and Biology;2023-10-07
4. Impact of bone health on the mechanics of plate fixation for Vancouver B1 periprosthetic femoral fractures;Clinical Biomechanics;2022-12
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