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Ridha Hambli

Showing results (11-20 of 33) with videos related to

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Journal of Theoretical Biology|January 12, 2011
Modeling of biological doses and mechanical effects on bone transductionRomain Rieger, Ridha Hambli, Rachid Jennane
Bonekey Reports|September 13, 2016
Osteoporosis drug effects on cortical and trabecular bone microstructure: a review of HR-pQCT analysesEric Lespessailles, Ridha Hambli, Serge Ferrari
Medical Engineering & Physics|August 10, 2011
Finite element prediction of proximal femur fracture pattern based on orthotropic behaviour law coupled to quasi-brittle damageRidha Hambli, Awad Bettamer, Samir Allaoui
Journal of the Mechanical Behavior of Biomedical Materials|July 15, 2019
On dynamic behavior of bone: Experimental and numerical study of porcine ribs subjected to impact loads in dynamic three-point bending testsAravind Rajan Ayagara, André Langlet, Ridha Hambli
Journal of the Mechanical Behavior of Biomedical Materials|November 6, 2012
Integrated remodeling-to-fracture finite element model of human proximal femur behaviorRidha Hambli, Eric Lespessailles, Claude-Laurent Benhamou
Frontiers in Bioengineering and Biotechnology|June 26, 2023
Editorial: Bone integrity in patients with osteoporosis: Evaluation of fracture risk and influence of pharmacological treatments and mechanical aspectsJavier Martínez-Reina, Peter Pivonka, Ridha Hambli
Biomechanics and Modeling in Mechanobiology|May 28, 2010
Multiscale methodology for bone remodelling simulation using coupled finite element and neural network computationRidha Hambli, Houda Katerchi, Claude-Laurent Benhamou
Clinical Biomechanics (Bristol, Avon)|January 22, 2023
Effect of a new transpedicular vertebral device for the treatment or prevention of vertebral compression fractures: A finite element studyRidha Hambli, Reade De Leacy, Cécile Vienney
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|July 19, 2021
A multiscale four-layer finite element model to predict the effects of collagen fibers on skin behavior under tensionInes Guissouma, Ridha Hambli, Amna Rekik, et al.
International Journal for Numerical Methods in Biomedical Engineering|April 25, 2021
Mesh-independent damage model for trabecular bone fracture simulation and experimental validationXuan Nam Do, Ridha Hambli, Jean-François Ganghoffer
Pageof 4

Showing results (11-20 of 33) with videos related to

Sort By:
Pageof 4
Journal of Theoretical Biology|January 12, 2011
Modeling of biological doses and mechanical effects on bone transductionRomain Rieger, Ridha Hambli, Rachid Jennane
Bonekey Reports|September 13, 2016
Osteoporosis drug effects on cortical and trabecular bone microstructure: a review of HR-pQCT analysesEric Lespessailles, Ridha Hambli, Serge Ferrari
Medical Engineering & Physics|August 10, 2011
Finite element prediction of proximal femur fracture pattern based on orthotropic behaviour law coupled to quasi-brittle damageRidha Hambli, Awad Bettamer, Samir Allaoui
Journal of the Mechanical Behavior of Biomedical Materials|July 15, 2019
On dynamic behavior of bone: Experimental and numerical study of porcine ribs subjected to impact loads in dynamic three-point bending testsAravind Rajan Ayagara, André Langlet, Ridha Hambli
Journal of the Mechanical Behavior of Biomedical Materials|November 6, 2012
Integrated remodeling-to-fracture finite element model of human proximal femur behaviorRidha Hambli, Eric Lespessailles, Claude-Laurent Benhamou
Frontiers in Bioengineering and Biotechnology|June 26, 2023
Editorial: Bone integrity in patients with osteoporosis: Evaluation of fracture risk and influence of pharmacological treatments and mechanical aspectsJavier Martínez-Reina, Peter Pivonka, Ridha Hambli
Biomechanics and Modeling in Mechanobiology|May 28, 2010
Multiscale methodology for bone remodelling simulation using coupled finite element and neural network computationRidha Hambli, Houda Katerchi, Claude-Laurent Benhamou
Clinical Biomechanics (Bristol, Avon)|January 22, 2023
Effect of a new transpedicular vertebral device for the treatment or prevention of vertebral compression fractures: A finite element studyRidha Hambli, Reade De Leacy, Cécile Vienney
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|July 19, 2021
A multiscale four-layer finite element model to predict the effects of collagen fibers on skin behavior under tensionInes Guissouma, Ridha Hambli, Amna Rekik, et al.
International Journal for Numerical Methods in Biomedical Engineering|April 25, 2021
Mesh-independent damage model for trabecular bone fracture simulation and experimental validationXuan Nam Do, Ridha Hambli, Jean-François Ganghoffer
Pageof 4