Literature DB >> 20003979

Compressive axial mechanical properties of rat bone as functions of bone volume fraction, apparent density and micro-ct based mineral density.

Esther Cory1, Ara Nazarian, Vahid Entezari, Vartan Vartanians, Ralph Müller, Brian D Snyder.   

Abstract

Mechanical testing has been regarded as the gold standard to investigate the effects of pathologies on the structure-function properties of the skeleton. With recent advances in computing power of personal computers, virtual alternatives to mechanical testing are gaining acceptance and use. We have previously introduced such a technique called structural rigidity analysis to assess mechanical strength of skeletal tissue with defects. The application of this technique is predicated upon the use of relationships defining the strength of bone as a function of its density for a given loading mode. We are to apply this technique in rat models to assess their compressive skeletal response subjected to a host of biological and pharmaceutical stimulations. Therefore, the aim of this study is to derive a relationship expressing axial compressive mechanical properties of rat cortical and cancellous bone as a function of equivalent bone mineral density, bone volume fraction or apparent density over a range of normal and pathologic bones. We used bones from normal, ovariectomized and partially nephrectomized animals. All specimens underwent micro-computed tomographic imaging to assess bone morphometric and densitometric indices and uniaxial compression to failure. We obtained univariate relationships describing 71-78% of the mechanical properties of rat cortical and cancellous bone based on equivalent mineral density, bone volume fraction or apparent density over a wide range of density and common skeletal pathologies. The relationships reported in this study can be used in the structural rigidity analysis introduced by the authors to provide a non-invasive method to assess the compressive strength of bones affected by pathology and/or treatment options. Copyright (c) 2009 Elsevier Ltd. All rights reserved.

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Year:  2009        PMID: 20003979      PMCID: PMC4405886          DOI: 10.1016/j.jbiomech.2009.10.047

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  74 in total

Review 1.  Advanced imaging of the macrostructure and microstructure of bone.

Authors:  H K Genant; C Gordon; Y Jiang; T M Link; D Hans; S Majumdar; T F Lang
Journal:  Horm Res       Date:  2000

2.  Tissue stresses and strain in trabeculae of a canine proximal femur can be quantified from computer reconstructions.

Authors:  B Van Rietbergen; R Müller; D Ulrich; P Rüegsegger; R Huiskes
Journal:  J Biomech       Date:  1999-02       Impact factor: 2.712

3.  Estimation of mechanical properties of cortical bone by computed tomography.

Authors:  S M Snyder; E Schneider
Journal:  J Orthop Res       Date:  1991-05       Impact factor: 3.494

4.  Predicting fracture through benign skeletal lesions with quantitative computed tomography.

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Authors:  T Lang; P Augat; S Majumdar; X Ouyang; H K Genant
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6.  Yield behavior of bovine cancellous bone.

Authors:  C H Turner
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7.  Elastic modulus of trabecular bone material.

Authors:  R B Ashman; J Y Rho
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Authors:  J L Ferretti; R F Capozza; J R Zanchetta
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Authors:  T J Wronski; M Cintrón; L M Dann
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10.  Microfocus computed tomography analysis of early changes in bone microstructure in rats with chronic renal failure.

Authors:  Junichiro J Kazama; Yoshiko Iwasaki; Hideyuki Yamato; Hisashi Murayama; Masami Sato; Fumitake Gejyo; Masafumi Kurokawa; Kiyoshi Fukagawa
Journal:  Nephron Exp Nephrol       Date:  2003
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  20 in total

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3.  Application of structural rigidity analysis to assess fidelity of healed fractures in rat femurs with critical defects.

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Review 4.  Biomechanics and mechanobiology of trabecular bone: a review.

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5.  Hierarchical analysis and multi-scale modelling of rat cortical and trabecular bone.

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7.  Improved prediction of rat cortical bone mechanical behavior using composite beam theory to integrate tissue level properties.

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Journal:  J Biomech       Date:  2012-09-25       Impact factor: 2.712

8.  Preclinical Dosimetry, Imaging, and Targeted Radionuclide Therapy Studies of Lu-177-Labeled Albumin-Binding, PSMA-Targeted CTT1403.

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