Literature DB >> 23850483

Micro-CT finite element model and experimental validation of trabecular bone damage and fracture.

Ridha Hambli1.   

Abstract

Most micro-CT finite element modeling of human trabecular bone has focused on linear and non-linear analysis to evaluate bone failure properties. However, prediction of the apparent failure properties of trabecular bone specimens under compressive load, including the damage initiation and its progressive propagation until complete bone failure into consideration, is still lacking. In the present work, an isotropic micro-CT FE model at bone tissue level coupled to a damage law was developed in order to simulate the failure of human trabecular bone specimens under quasi-static compressive load and predict the apparent stress and strain. The element deletion technique was applied in order to simulate the progressive fracturing process of bone tissue. To prevent mesh-dependence that generally affects the damage propagation rate, regularization technique was applied in the current work. The model was validated with experimental results performed on twenty-three human trabecular specimens. In addition, a sensitivity analysis was performed to investigate the impact of the model factors' sensitivities on the predicted ultimate stress and strain of the trabecular specimens. It was found that the predicted failure properties agreed very well with the experimental ones.
© 2013.

Entities:  

Keywords:  Apparent stress/strain at fracture; Damage law; Experimental validation; Micro-CT finite element damage modeling; Trabecular bone fracture

Mesh:

Year:  2013        PMID: 23850483     DOI: 10.1016/j.bone.2013.06.028

Source DB:  PubMed          Journal:  Bone        ISSN: 1873-2763            Impact factor:   4.398


  19 in total

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8.  Modeling the Mechanical Consequences of Age-Related Trabecular Bone Loss by XFEM Simulation.

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10.  Combined Effects of Exercise and Denosumab Treatment on Local Failure in Post-menopausal Osteoporosis-Insights from Bone Remodelling Simulations Accounting for Mineralisation and Damage.

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