Physical Medicine Rehabilitation

Multi-axial Fatigue of Trabecular Bone with Respect to by Mohammad Mostakhdemin, Iraj Sadegh Amiri, Ardiyansyah

By Mohammad Mostakhdemin, Iraj Sadegh Amiri, Ardiyansyah Syahrom

This booklet specializes in the research and therapy of osteoporotic bone in response to drug management, monitoring fatigue habit and considering the mechanical interplay of implants with trabecular bone. vulnerable trabeculae are the most very important medical positive factors that must be addressed with a view to hinder hip joint fractures.

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Extra info for Multi-axial Fatigue of Trabecular Bone with Respect to Normal Walking

Sample text

Meccanica, 37(4–5), 419–429. Morgan, E. , et al. (2004). Contribution of inter-site variations in architecture to trabecular bone apparent yield strains. Journal of Biomechanics, 37(9), 1413–1420. , et al. (2013). Novel method to analyze post-yield mechanical properties at trabecular bone tissue level. Journal of the Mechanical Behavior of Biomedical Materials, 20, 6–18. , et al. (2007). Constitutive modeling and algorithmic implementation of a plasticitylike model for trabecular bone structures.

This analysis concerned about load type and its amplitude, however, bone morphological indices is counted as one another important part that can effect on fatigue life of bone. When bone faces with osteoporosis disease, volume fraction and bone density will be loosed. Then after, struts will not be able to tolerate 5 Conclusion and Recommendation of Multi-axial Fatigue … 55 against load since they have become weak. Furthermore, this part also can be considered in two types of analysis, first considering bone is dead structure and modelling and re-modelling cannot be done, second modelling and remodelling being done but with low rate, and in this considering a factor of modelling and remodelling which effect on bone life is highly recommended for further study.

2002). Finite element simulation of the fatigue behaviour of cancellous bone*. Meccanica, 37(4–5), 419–429. Morgan, E. , et al. (2004). Contribution of inter-site variations in architecture to trabecular bone apparent yield strains. Journal of Biomechanics, 37(9), 1413–1420. , et al. (2013). Novel method to analyze post-yield mechanical properties at trabecular bone tissue level. Journal of the Mechanical Behavior of Biomedical Materials, 20, 6–18. , et al. (2007). Constitutive modeling and algorithmic implementation of a plasticitylike model for trabecular bone structures.

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