Literature DB >> 11765238

Effects of 'navicular' shoeing on equine distal forelimb kinematics on different track surface.

C J Scheffer1, W Back.   

Abstract

Orthopaedic shoeing applied for disorders such as navicular disease is mostly evaluated on hard track surfaces, but very often horses are ridden only on soft tracks. To compare the effects of normal shoes, eggbar shoes, and shoes with heel wedges (5 degrees) on the kinematics of the distal forelimb on hard and soft track surfaces, eleven sound Dutch Warmblood horses were led across three different tracks (an asphalt, a fibre/sand mix (= Agterberg), and a pure sand track) with three different shoe types (a normal shoe, an eggbar shoe, and a shoe with heel wedges). The hoof rotation and the maximal extension of the fetlock joint at midstance period were recorded by an infrared-light based gait analysis system (ProReflex) at walk and at trot. Statistical analysis revealed significant effects of track and shoe type, and a shoe-track interaction (p<0.05). On soft track surfaces, the equilibrium of the distal forelimb dictated a 1.5-4 degrees forward rotation of the normal or eggbar shod foot, the most on a sand track. The wedge effect on hoof rotation, however, was always significantly greater, but similar to that on the hard track surface (5 degrees forward rotation). The maximal fetlock extension was less on a soft surface, in particular on the sand track (p<0.05). This decrease was most pronounced when the horses were shod with heel wedges and was least pronounced with normal shoes. In conclusion, in particular the sand track allows a forward rotation of the hoof and thus relief of pressure in the navicular area, and a decrease in maximal fetlock extension and thus unloading of the fetlock joint. The extra forward rotation of the hoof induced by heel wedges on hard tracks was almost the same on soft track surfaces. Eggbars and fibre/sand mix tracks have intermediate effects on unloading of the distal forelimb.

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Year:  2001        PMID: 11765238     DOI: 10.1080/01652176.2001.9695111

Source DB:  PubMed          Journal:  Vet Q        ISSN: 0165-2176            Impact factor:   3.320


  4 in total

1.  Effect of toe and heel elevation on calculated tendon strains in the horse and the influence of the proximal interphalangeal joint.

Authors:  Siân E M Lawson; Henry Chateau; Philippe Pourcelot; Jean-Marie Denoix; Nathalie Crevier-Denoix
Journal:  J Anat       Date:  2007-05       Impact factor: 2.610

2.  Functional locomotor consequences of uneven forefeet for trot symmetry in individual riding horses.

Authors:  Nathan Wiggers; Sandra L P Nauwelaerts; Sarah Jane Hobbs; Sophie Bool; Claudia F Wolschrijn; Willem Back
Journal:  PLoS One       Date:  2015-02-03       Impact factor: 3.240

3.  Effect of three types of horseshoes and unshod feet on selected non-podal forelimb kinematic variables measured by an extremity mounted inertial measurement unit sensor system in sound horses at the trot under conditions of treadmill and soft geotextile surface exercise.

Authors:  Joëlle Christina Stutz; Beatriz Vidondo; Alessandra Ramseyer; Ugo Ettore Maninchedda; Antonio M Cruz
Journal:  Vet Rec Open       Date:  2018-06-18

4.  First phalanx exostosis in traditional equestrian horses in Western Libya.

Authors:  Mohamed H Abushhiwa; Taher N Elmeshreghi; Abdulrhman M Alrtib; Emad M Bennour; Aiman H Oheida
Journal:  Open Vet J       Date:  2022-01-25
  4 in total

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