Literature DB >> 2213341

A study of fracture callus material properties: relationship to the torsional strength of bone.

M D Markel1, M A Wikenheiser, E Y Chao.   

Abstract

This study was designed to quantitate the local material properties of fracture callus during gap healing and to relate these local properties to the torsional strength of bone in a canine model under external fixation. Bilateral tibial transverse osteotomies were performed in 32 dogs and stabilized using unilateral external skeletal fixators with a 2-mm gap. Dogs were divided into four equal groups and euthanized at either 2, 4, 8, or 12 weeks. The torsional properties of one bone of each pair were determined. In both bones of each pair, the indentation stiffness, calcium content, and histomorphometric properties of six sites of periosteal callus, six sites of endosteal callus, four sites of cortical bone, and two sites of gap tissue were determined. Each of the four types of tissue had a specific structural or material property change during the study period. The indentation stiffness of periosteal callus increased up to 8 weeks and then plateaued. Endosteal callus stiffness peaked at 8 weeks and then decreased by 12 weeks. Gap tissue stiffness increased linearly over time. Cortical bone stiffness decreased over time. Indentation stiffness was significantly associated with the calcium content of periosteal callus (R2 = 0.50, p less than 0.0001) and gap tissue (R2 = 0.66, p less than 0.0001). The local stiffnesses of gap tissue and periosteal callus were significantly associated with the maximum torque (gap, R2 = 0.50, p less than 0.0001; periosteal, R2 = 0.34, p less than 0.05) and the torsional stiffness (gap, R2 = 0.44, p less than 0.0001; periosteal, R2 = 0.65, p less than 0.0001) of the bone.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1990        PMID: 2213341     DOI: 10.1002/jor.1100080609

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  6 in total

1.  The effects of bovine trabecular bone matrix particulates on cortical bone repair.

Authors:  M T Mushipe; P A Revell; J C Shelton
Journal:  J Mater Sci Mater Med       Date:  2002-01       Impact factor: 3.896

2.  Correlations between indentation modulus and mineral density in bone-fracture calluses.

Authors:  Pui L Leong; Elise F Morgan
Journal:  Integr Comp Biol       Date:  2009-05-15       Impact factor: 3.326

3.  Measurement of fracture callus material properties via nanoindentation.

Authors:  P L Leong; E F Morgan
Journal:  Acta Biomater       Date:  2008-03-19       Impact factor: 8.947

4.  Regenerative effects of transplanted mesenchymal stem cells in fracture healing.

Authors:  Froilán Granero-Moltó; Jared A Weis; Michael I Miga; Benjamin Landis; Timothy J Myers; Lynda O'Rear; Lara Longobardi; E Duco Jansen; Douglas P Mortlock; Anna Spagnoli
Journal:  Stem Cells       Date:  2009-08       Impact factor: 6.277

5.  Quantitative CT for the evaluation of bone healing.

Authors:  M D Markel; R L Morin; M A Wikenheiser; D G Lewallen; E Y Chao
Journal:  Calcif Tissue Int       Date:  1991-12       Impact factor: 4.333

6.  Optimization of a closed rat tibial fracture model.

Authors:  Kareem Obayes Handool; Sahar Mohammed Ibrahim; Ubedullah Kaka; Muhammad Aarif Omar; Jalila Abu; Md Sabri Mohd Yusoff; Loqman Mohamad Yusof
Journal:  J Exp Orthop       Date:  2018-05-02
  6 in total

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