Finite element analysis of hip fracture risk in elderly female: The effects of soft tissue shape, fall direction, and interventions
Author:
Funder
Takeda Science Foundation
Japan Society for the Promotion of Science
Publisher
Elsevier BV
Reference39 articles.
1. Effect of fall direction on the lower hip fracture risk in athletes with different loading histories: a finite element modeling study in multiple sideways fall configurations;Abe;Bone,2022
2. Personalised 3D assessment of trochanteric soft tissues improves HIP fracture classification accuracy;Aldieri;Ann. Biomed. Eng.,2022
3. The effect of boundary and loading conditions on patient classification using finite element predicted risk of fracture;Altai;Clin. Biomech.,2019
4. Analysis of loading to the hip joint in fall using whole-body FE model;Aoshima;J. Biomech.,2022
5. Prediction of proximal femur strength using a CT-based nonlinear finite element method: differences in predicted fracture load and site with changing load and boundary conditions;Bessho;Bone,2009
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1. Effectiveness of energy absorbing floors in reducing hip fractures risk among elderly women during sideways falls;Journal of the Mechanical Behavior of Biomedical Materials;2024-09
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