Literature DB >> 12455845

In vitro evaluation of nonrigid support systems for the equine metacarpophalangeal joint.

R K W Smith1, M P McGuigan, J T Hyde, A S G Daly, C H Pardoe, A N Lock, A M Wilson.   

Abstract

Metacarpophalangeal (MCP) joint extension is primarily resisted by the digital flexor tendons and suspensory ligament. A variety of external support techniques are used to protect these supporting structures from or after injury by resisting MCP joint extension, although not all are effective and/or practical for use in an exercising horse. In this study, 7 forelimbs were loaded in vitro to determine the effect of a simple gamgee bandage, a 3-layered bandage with and without a contoured palmar splint, a neoprene exercise boot, and an innovative carbon fibre composite exercise boot (Dalmar tendon support boot). There was no significant resistance to MCP joint extension by the gamgee or neoprene exercise boot. The 3-layered bandage had a significant (P<0.01) supporting effect at MCP angles of > or = 245 degrees, and when combined with the contoured splint at angles of > or = 230 degrees. The Dalmar tendon support boot resisted MCP extension at angles of > or = 245 degrees (settings 1 and 2) and > or = 225 degrees (setting 3). These data demonstrate that the contoured splint and the Dalmar tendon support boot (which is also easily fitted for use during exercise) are useful for the management of tendon/ligament injury and during rehabilitation.

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Year:  2002        PMID: 12455845     DOI: 10.2746/042516402776250423

Source DB:  PubMed          Journal:  Equine Vet J        ISSN: 0425-1644            Impact factor:   2.888


  2 in total

1.  The influence of the metacarpophalangeal joint angle on the transversal area and mean echogenicity of the superficial digital flexor tendon and suspensory ligament in gaited horses.

Authors:  Jackson Schade; Anderson Fernando de Souza; Lorenzo Costa Vincensi; Joandes Henrique Fonteque
Journal:  J Equine Sci       Date:  2021-12-28

2.  Mechanical Effect of Performance Pressure Boots on Cadaveric Equine Hindlimb Fetlock Biomechanics.

Authors:  Jennifer Symons
Journal:  Animals (Basel)       Date:  2021-03-30       Impact factor: 2.752

  2 in total

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