Load transmission through the callus site with external fixation systems: Theoretical and experimental analysis

Author:

Prat J.,Juan J.A.,Vera P.,Hoyos J.V.,Dejoz R.,Peris J.L.,Sánchez-Lacuesta J.,Comín M.

Publisher

Elsevier BV

Subject

Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics

Reference64 articles.

1. Le fixateur externe d'Hoffmann couplé en cardre. Etude biomécanique dans les fractures de jambe;Adrey;Thèse,1970

2. The effects of physiologic dynamic compression on bone healing under external fixation;Aro;Clin. Orthop.,1990

3. Facteurs de rigidité des montages par fixateurs externes;Bisserie;Rev. Chir. Orthop.,1983

4. Etude biomécanique comparative des fixateurs externes (tibia et fémur);Bonnel;Rev. Chir. Orthop.,1983

5. Measurement of stiffness of fracture callus ‘in vivo’. A theoretical study;Bourgois;J. Biomechanics,1972

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1. 3D Printing Adjustable Stiffness External Fixator for Mechanically Stimulated Healing of Tibial Fractures;BioMed Research International;2021-12-23

2. A probabilistic approach for modelling bone fracture healing under Ilizarov circular fixator;International Journal for Numerical Methods in Biomedical Engineering;2021-04-26

3. Numerical Analysis of Taylor-Type External Fixator by Means of FEM;Advances in Intelligent Systems and Computing;2014

4. Effect of callus development on the deformation of external fixation frames;International Orthopaedics;2012-10-17

5. Monitoring In Vivo Load Transmission Through an External Fixator;Annals of Biomedical Engineering;2010-01-06

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