Characterization of Nonlinear Stress Relaxation of the Femoral and Tibial Bone for Computational Modeling
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Elsevier BV
Reference28 articles.
1. Experimental and computational analysis of micromotions of an uncemented femoral knee implant using elastic and plastic bone material models;S Berahmani;J Biomech,2017
2. Results from demineralized bone creep tests suggest that collagen is responsible for the creep behavior of bone;S M Bowman;J Biomech Eng,1999
3. Creep contributes to the fatigue behavior of bovine trabecular bone;S M Bowman;Journal of Biomechanical Engineering-Transactions of the Asme,1998
4. Compressive creep-behavior of bovine trabecular bone;S M Bowman;Journal of Biomechanics,1994
5. The effect of damage on the viscoelastic behavior of human vertebral trabecular bone;T L Bredbenner;Journal of Biomechanical Engineering-Transactions of the Asme,2006
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