Literature DB >> 17317352

Strain redistribution and cracking behavior of human bone during bending.

Vincent Ebacher1, Cecelia Tang, Heather McKay, Thomas R Oxland, Pierre Guy, Rizhi Wang.   

Abstract

Long bones often fail due to bending loads. Understanding the fracture process during bending is of great importance to the prevention and treatment of bone fractures. In this study, we investigated the origin of long bone's bending strength through the study of the dynamic strain redistribution happening during the post-yield stage of deformation and its relation to microdamage at the microstructural level. This was accomplished by comparing the behaviors of human long bones with standard cortical bone specimens in terms of strain redistribution, Poisson's ratios, microdamage morphologies, and macro-scale fracture patterns. It was found that human tibia failure in bending was very similar to that of standard beam cortical bone specimens with respect to the four previous aspects. Also, the examination of bone's Poisson's ratio indicated very different inelastic deformation mechanisms under tension and compression: bone volume expanded in tension but was nearly conserved in compression. Finally, as a result of strain redistribution, bone's bending strength mainly depended on its compressive strength, which was significantly influenced by the osteonal "porous" microstructure of human bone as compared to its tensile behavior. Thus, we concluded that bone microstructure at the Haversian system level plays an important role in bone deformation and fracture.

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Year:  2007        PMID: 17317352     DOI: 10.1016/j.bone.2006.12.065

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


  19 in total

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2.  Spatial variation in osteon population density at the human femoral midshaft: histomorphometric adaptations to habitual load environment.

Authors:  Timothy P Gocha; Amanda M Agnew
Journal:  J Anat       Date:  2015-12-28       Impact factor: 2.610

Review 3.  Measuring bone quality.

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Journal:  Curr Rheumatol Rep       Date:  2013-11       Impact factor: 4.592

4.  Analysis of osteon morphotype scoring schemes for interpreting load history: evaluation in the chimpanzee femur.

Authors:  John G Skedros; Casey J Kiser; Kendra E Keenan; Samuel C Thomas
Journal:  J Anat       Date:  2011-02-16       Impact factor: 2.610

5.  Collagen fiber orientation pattern, osteon morphology and distribution, and presence of laminar histology do not distinguish torsion from bending in bat and pigeon wing bones.

Authors:  John G Skedros; Madison S Doutré
Journal:  J Anat       Date:  2019-03-29       Impact factor: 2.610

6.  Secondary osteon structural heterogeneity between the cranial and caudal cortices of the proximal humerus in white-tailed deer.

Authors:  Jack T Nguyen; Meir M Barak
Journal:  J Exp Biol       Date:  2020-06-11       Impact factor: 3.312

Review 7.  Bone microdamage: a clinical perspective.

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

8.  New insights in the analysis of blunt force trauma in human bones. Preliminary results.

Authors:  Sarah Scheirs; Assumpció Malgosa; David Sanchez-Molina; Marisa Ortega-Sánchez; Joan Velázquez-Ameijide; Carlos Arregui-Dalmases; Jordi Medallo-Muñiz; Ignasi Galtés
Journal:  Int J Legal Med       Date:  2016-12-10       Impact factor: 2.686

9.  Differences in the mechanical behavior of cortical bone between compression and tension when subjected to progressive loading.

Authors:  Jeffry S Nyman; Huijie Leng; X Neil Dong; Xiaodu Wang
Journal:  J Mech Behav Biomed Mater       Date:  2008-12-13

10.  Progressive post-yield behavior of human cortical bone in shear.

Authors:  Xuanliang N Dong; Qing Luo; Xiaodu Wang
Journal:  Bone       Date:  2012-12-04       Impact factor: 4.398

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