The effect of body configuration on the strain magnitude and distribution within the acetabulum during sideways falls: A finite element approach
Author:
Funder
H2020 Marie Skłodowska-Curie Actions
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference62 articles.
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4. Bergmann, G., Deuretzbacher, G., Heller, M., Graichen, F., Rohlmann, A., 2001. Hip contact and gait patterns from routine activities.PDF, 34, 859–871
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1. Effect of osteoporosis-related reduction in the mechanical properties of bone on the acetabular fracture during a sideways fall: A parametric finite element approach;PLOS ONE;2022-02-07
2. The Role of Fall Biomechanics in the Cause and Prevention of Bone Fractures in Older Adults;Current Osteoporosis Reports;2021-06-09
3. Effect of Impact Velocity, Flooring Material, and Trochanteric Soft-Tissue Quality on Acetabular Fracture during a Sideways Fall: A Parametric Finite Element Approach;Applied Sciences;2021-01-01
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