Literature DB >> 15846396

Musculoskeletal responses of 2-year-old Thoroughbred horses to early training. 8. Quantitative back-scattered electron scanning electron microscopy and confocal fluorescence microscopy of the epiphysis of the third metacarpal bone.

A Boyde1, E C Firth.   

Abstract

AIM: To characterise and explain the increase in density evident by computerised tomography (CT) and radiography in companion studies as a response to training, in bone in the palmar and dorsal regions of the condyles of the third metacarpal bone (Mc3) of 2-year-old Thoroughbred horses.
METHODS: Compositional back-scattered electron (BSE) imaging in scanning electron microscopy (SEM) and confocal scanning laser microscopy (CSLM) were conducted on polymethyl methacrylate (PMMA)-embedded mediolateral slices of the right distal Mc3 from seven 2-year-old Thoroughbred horses trained on a racetrack and seven untrained horses kept at pasture. One left Mc3 from each group was studied in transverse section planes. This study focussed on regions of Mc3 found to differ in density between the trained and untrained horses in companion studies using CT and radiography.
RESULTS: The increase of bone density in the condyles of Mc3 in trained horses compared with untrained horses occurred, without prior osteoclastic resorption, via the deposition of new bone on pre-existing internal surfaces. Within prior marrow spaces of cancellous bone, there was also rapid formation of immature strands and fronds of bone which were more cellular and mineralised, and more lamellar bone tissue was deposited on these new scaffolding elements in the trained horses. Both resulted in increased bone volume fraction (BVF). The microscopic mineralisation density of the bulk of the new tissue was lower than in pre-existing bone, and CT and radiography underestimated the increase in BVF. The new tissue was thus probably less stiff at the microscopic scale than pre-existing bone, though its addition would stiffen the global structure.
CONCLUSIONS: In Mc3 of all the trained horses, there were obvious differences in microscopic structure compared with those from the untrained horses. Moderate, industry-standard levels of exercise used to prepare young horses for racing induced the formation of new bone in non-bone spaces in bone tissue, such that the bone organ should better withstand later increased levels of exercise.

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Year:  2005        PMID: 15846396     DOI: 10.1080/00480169.2005.36489

Source DB:  PubMed          Journal:  N Z Vet J        ISSN: 0048-0169            Impact factor:   1.628


  17 in total

Review 1.  The response of bone, articular cartilage and tendon to exercise in the horse.

Authors:  Elwyn C Firth
Journal:  J Anat       Date:  2006-04       Impact factor: 2.610

2.  Articular calcified cartilage canals in the third metacarpal bone of 2-year-old thoroughbred racehorses.

Authors:  A Boyde; E C Firth
Journal:  J Anat       Date:  2004-12       Impact factor: 2.610

3.  Bisphosphonate-induced zebra lines in fibrous dysplasia of bone: histo-radiographic correlation in a case of McCune-Albright syndrome.

Authors:  Alessandro Corsi; Ernesto Ippolito; Pamela G Robey; Mara Riminucci; Alan Boyde
Journal:  Skeletal Radiol       Date:  2017-06-28       Impact factor: 2.199

4.  Subchondral bone morphology in the metacarpus of racehorses in training changes with distance from the articular surface but not with age.

Authors:  Sandra Martig; Peta L Hitchens; Mark A Stevenson; R Chris Whitton
Journal:  J Anat       Date:  2018-02-15       Impact factor: 2.610

5.  Exercise-induced metacarpophalangeal joint adaptation in the Thoroughbred racehorse.

Authors:  P Muir; A L Peterson; S J Sample; M C Scollay; M D Markel; V L Kalscheur
Journal:  J Anat       Date:  2008-12       Impact factor: 2.610

6.  Exercise-induced inhibition of remodelling is focally offset with fatigue fracture in racehorses.

Authors:  R C Whitton; M Mirams; E J Mackie; G A Anderson; E Seeman
Journal:  Osteoporos Int       Date:  2013-02-01       Impact factor: 4.507

7.  Growth-related structural, biochemical, and mechanical properties of the functional bone-cartilage unit.

Authors:  Nina Hamann; Frank Zaucke; Münire Dayakli; Gert-Peter Brüggemann; Anja Niehoff
Journal:  J Anat       Date:  2012-10-22       Impact factor: 2.610

8.  Microstructure and mineral composition of dystrophic calcification associated with the idiopathic inflammatory myopathies.

Authors:  Naomi Eidelman; Alan Boyde; Andrew J Bushby; Peter G T Howell; Jirun Sun; Dale E Newbury; Frederick W Miller; Pamela G Robey; Lisa G Rider
Journal:  Arthritis Res Ther       Date:  2009-10-26       Impact factor: 5.156

9.  A lack of thyroid hormones rather than excess thyrotropin causes abnormal skeletal development in hypothyroidism.

Authors:  J H Duncan Bassett; Allan J Williams; Elaine Murphy; Alan Boyde; Peter G T Howell; Rowan Swinhoe; Marta Archanco; Frédéric Flamant; Jacques Samarut; Sabine Costagliola; Gilbert Vassart; Roy E Weiss; Samuel Refetoff; Graham R Williams
Journal:  Mol Endocrinol       Date:  2007-10-11

10.  Osteoblast-specific expression of the fibrous dysplasia (FD)-causing mutation Gsα(R201C) produces a high bone mass phenotype but does not reproduce FD in the mouse.

Authors:  Cristina Remoli; Stefano Michienzi; Benedetto Sacchetti; Alberto Di Consiglio; Stefania Cersosimo; Emanuela Spica; Pamela G Robey; Kenn Holmbeck; Ana Cumano; Alan Boyde; Graham Davis; Isabella Saggio; Mara Riminucci; Paolo Bianco
Journal:  J Bone Miner Res       Date:  2015-06       Impact factor: 6.741

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