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3. Modeling attachment and compressive loading of locking and non-locking plate fixation: a finite element investigation of a supracondylar femur fracture model.

4. Biomechanical Response under Stress-Controlled Tension-Tension Fatigue of a Novel Carbon Fiber/Epoxy Intramedullary Nail for Femur Fractures.

5. Elevated Microdamage Spatially Correlates with Stress in Metastatic Vertebrae.

6. Rotating hinge knee causes lower bone-implant interface stress compared to constrained condylar knee replacement.

7. The impact of surgical manipulation on lower lateral cartilage stiffness.

8. Biomechanical analysis using FEA and experiments of a standard plate method versus three cable methods for fixing acetabular fractures with simultaneous THA.

9. Biomechanical optimization of the angle and position for surgical implantation of a straight short stem hip implant.

10. Biomechanical properties of a structurally optimized carbon-fibre/epoxy intramedullary nail for femoral shaft fracture fixation.

11. The biomechanical effect of anteversion and modular neck offset on stress shielding for short-stem versus conventional long-stem hip implants.

12. Long-term response of femoral density to hip implant and bone fracture plate: Computational study using a mechano-biochemical model.

13. An Effective Approach for Optimization of a Composite Intramedullary Nail for Treating Femoral Shaft Fractures.

14. QCT-based failure analysis of proximal femurs under various loading orientations.

15. On optimization of a composite bone plate using the selective stress shielding approach.

16. Investigating stress shielding spanned by biomimetic polymer-composite vs. metallic hip stem: A computational study using mechano-biochemical model.

17. Biomechanical assessment of composite versus metallic intramedullary nailing system in femoral shaft fractures: A finite element study.

18. Effect of patellar thickness on knee flexion in total knee arthroplasty: a biomechanical and experimental study.

19. Displacement of the hip center of rotation after arthroplasty of Crowe III and IV dysplasia: a radiological and biomechanical study.

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