Literature DB >> 17175210

Age-related changes in trabecular bone microdamage initiation.

Srinidhi Nagaraja1, Angela S P Lin, Robert E Guldberg.   

Abstract

With age, alterations occurring in bone quality, quantity, and microarchitecture affect the resistance of trabecular bone to local failure. The clinical implications of these changes are evident by the observed exponential increase in fracture incidence with age. Although age-related development of skeletal fragility is well established, it is unclear how the local failure properties of bone change with age. We previously reported a specimen-specific technique to assess microstructural stresses and strains associated with microdamage initiation but did not assess age-related changes. In this study, we compared younger (average age 2 years) and older (average age 10 years) bovine trabecular bone to evaluate how alterations in bovine bone quantity and quality with age affect the local mechanical environment associated with microdamage formation. The results show strong positive correlations between microdamage and local stresses and strains for both younger and older bovine trabecular bone. Correlation strength was slightly improved (<8%) for some parameters by incorporating heterogeneous local material properties based on mineral density into the finite element models. Within individual trabeculae, average stresses and strains were significantly higher in microdamaged trabeculae compared to randomly selected undamaged trabeculae, regardless of age. However, damaged trabeculae in older bone were found to have higher stresses and lower strains than those from younger bone. Corresponding differences in mineral density, microarchitecture, and FEM-determined local material properties were also observed between the two groups. Taken together, these data suggest marked age-related changes in the mechanics of microdamage initiation at the trabecular level. The combined experimental, computational, and histochemical approaches used in this study provide an improved understanding of microdamage initiation and bone quality.

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Year:  2006        PMID: 17175210     DOI: 10.1016/j.bone.2006.10.028

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


  21 in total

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3.  Measurement of the mechanical properties of bone: a recent history.

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5.  Anticipating bipedalism: trabecular organization in the newborn ilium.

Authors:  Craig A Cunningham; Sue M Black
Journal:  J Anat       Date:  2009-06       Impact factor: 2.610

6.  Spatial correlations of trabecular bone microdamage with local stresses and strains using rigid image registration.

Authors:  Srinidhi Nagaraja; Oskar Skrinjar; Robert E Guldberg
Journal:  J Biomech Eng       Date:  2011-06       Impact factor: 2.097

7.  Mechanical failure begins preferentially near resorption cavities in human vertebral cancellous bone under compression.

Authors:  C R Slyfield; E V Tkachenko; S E Fischer; K M Ehlert; I H Yi; M G Jekir; R G O'Brien; T M Keaveny; C J Hernandez
Journal:  Bone       Date:  2012-03-09       Impact factor: 4.398

8.  Age-related changes in human trabecular bone: Relationship between microstructural stress and strain and damage morphology.

Authors:  Jessica O Green; Srinidhi Nagaraja; Tamim Diab; Brani Vidakovic; Robert E Guldberg
Journal:  J Biomech       Date:  2011-07-02       Impact factor: 2.712

9.  Mechanical and microarchitectural analyses of cancellous bone through experiment and computer simulation.

Authors:  Ardiyansyah Syahrom; Mohammed Rafiq Abdul Kadir; Jaafar Abdullah; Andreas Öchsner
Journal:  Med Biol Eng Comput       Date:  2011-09-24       Impact factor: 2.602

Review 10.  Bone microdamage: a clinical perspective.

Authors:  R D Chapurlat; P D Delmas
Journal:  Osteoporos Int       Date:  2009-03-17       Impact factor: 4.507

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