Pages that link to "Q81328075"
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The following pages link to Subject-specific finite element models of long bones: An in vitro evaluation of the overall accuracy (Q81328075):
Displaying 28 items.
- Predicting surface strains at the human distal radius during an in vivo loading task--finite element model validation and application (Q34592099) (← links)
- In situ parameter identification of optimal density-elastic modulus relationships in subject-specific finite element models of the proximal femur (Q34608602) (← links)
- Applications of numerical simulation in musculoskeletal research and its impact on orthopedic surgery (Q34631407) (← links)
- Use of embedded strain gages for the in-vitro study of proximal tibial cancellous bone deformation during knee flexion-extension movement: development, reproducibility and preliminary results of feasibility after frontal low femoral osteotomy (Q34687062) (← links)
- Quantitative computed tomography-based finite element analysis predictions of femoral strength and stiffness depend on computed tomography settings. (Q34919674) (← links)
- Development of a parametric finite element model of the proximal femur using statistical shape and density modelling (Q35050491) (← links)
- Modelling of bone fracture and strength at different length scales: a review (Q36390723) (← links)
- Robust QCT/FEA models of proximal femur stiffness and fracture load during a sideways fall on the hip. (Q37408085) (← links)
- Finite element analysis and CT-based structural rigidity analysis to assess failure load in bones with simulated lytic defects (Q37537907) (← links)
- Systems Biology and Physiome Projects (Q42049719) (← links)
- Study of the variations of fall induced hip fracture risk between right and left femurs using CT-based FEA. (Q42281138) (← links)
- Effects of Scan Resolutions and Element Sizes on Bovine Vertebral Mechanical Parameters from Quantitative Computed Tomography-Based Finite Element Analysis. (Q42998928) (← links)
- Optimal Fixation of Acute Scaphoid Fractures: Finite Element Analysis (Q46017429) (← links)
- Computed-tomography-based finite-element models of long bones can accurately capture strain response to bending and torsion (Q46282052) (← links)
- A Method to Estimate Cadaveric Femur Cortical Strains During Fracture Testing Using Digital Image Correlation (Q47584560) (← links)
- A quasi-brittle continuum damage finite element model of the human proximal femur based on element deletion. (Q47939429) (← links)
- Segmental acetabular rim defects, bone loss, oversizing, and press fit cup in total hip arthroplasty evaluated with a probabilistic finite element analysis (Q48051046) (← links)
- Development of quantitative computed-tomography-based strength indicators for the identification of low bone-strength individuals in a clinical environment (Q53194383) (← links)
- In-Silico Models of Trabecular Bone: A Sensitivity Analysis Perspective (Q56329812) (← links)
- In vitro biomechanical study of femoral torsion disorders: effect on tibial proximal epiphyseal cancellous bone deformation (Q58031571) (← links)
- Influence of uncemented humeral stem proximal geometry on stress distributions and torsional stability following total shoulder arthroplasty (Q64105605) (← links)
- Finite element analysis of a personalized femoral scaffold with designed microarchitecture (Q85027382) (← links)
- Development of Subject-Specific Proximal Femur Finite Element Models Of Older Adults with Obesity to Evaluate the Effects of Weight Loss on Bone Strength (Q88438599) (← links)
- Cam FAI and Smaller Neck Angles Increase Subchondral Bone Stresses During Squatting: A Finite Element Analysis (Q90272645) (← links)
- Load response of the natural tooth and dental implant: A comparative biomechanics study (Q91811996) (← links)
- Patient-Specific Bone Multiscale Modelling, Fracture Simulation and Risk Analysis-A Survey (Q92259536) (← links)
- Comparative analysis of the biomechanical behavior of two different design metaphyseal-fitting short stems using digital image correlation (Q98568301) (← links)
- Effect of CT imaging on the accuracy of the finite element modelling in bone (Q99637576) (← links)