The shift in vertical forces on the equine hoof surface by heart-bar, egg-bar, and wooden clog shoes can significantly impact gait kinetics. Hypotheses tested in this study were that vertical, braking, and propulsion peak force (PF) and impulse (IMP) are different while shod with heart-bar, egg-bar, open-heel, and wooden clog shoes, or while unshod, and the resultant ground reaction force vector ( ) has the longest duration of cranial angulation with open-heel shoes followed by unshod, then egg-bar and heart-bar shoes, and the shortest with wooden clog shoes. Forelimb GRFs were recorded as six non-lame, light-breed horses walked across a force platform (four trials/side) while unshod or with egg-bar, heart-bar, open-heel, or wooden clog shoes. Outcomes included vertical, braking, and propulsive peak forces (PF, PF, PF) and impulses (IMP, IMP, IMP), percent stance time to each PF, braking to vertical PF ratio (PF/PF), walking speed (m s), total stance time (ST) and percent of stance in braking and propulsion. The magnitude and direction of the resultant vectors were quantified at 5% stance increments. Kinetic measures were compared among shoeing conditions with a mixed effects model (-value < 0.05). A random forest classifier algorithm was used to predict shoeing condition from kinetic outcome measures. All results are reported as mean ± SEM. Trial speed, 1.51 ± 0.02 m s, was not different among shoeing conditions. The PF was lower with wooden clog (6.13 ± 0.1 N kg) egg-bar (6.35 ± 0.1 N kg) shoes or unshod (6.32 ± 0.1 N kg); the PF was higher with wooden clog (0.81 ± 0.03 N kg) open-heel (0.71 ± 0.03 N kg) or egg-bar (0.75 ± 0.03 N kg) shoes or unshod (0.74 ± 0.03 N kg), and lower with open-heel compared to heart-bar shoes (0.77 ± 0.03 N kg). Both IMP and IMP were higher with open-heel shoes (-0.19 ± 0.008 N s kg, 3.28 ± 0.09 N s kg) unshod (-0.17 ± 0.008 N s kg, 3.16 ± 0.09 N s kg), and IMP was higher with wooden clog shoes (3.26 ± 0.09 N s kg) unshod. With wooden clog shoes, PF/PF (0.12 ± 0.004) was higher than unshod (0.11 ± 0.004). Percent time to peak PF, PF, and PF, and percent braking time were highest and percent propulsion time lowest with wooden clog shoes. The magnitude of the vector with the wooden clog shoe was the highest among shoeing conditions during the first stance half, lowest during the second stance half, highest during late propulsion, and had the most gradual braking to propulsion transition. Vectors were angled cranially with wooden clog shoes slightly longer than the others. Wooden clog shoes was the only shoeing condition accurately predicted from kinetic measures. Distinct, predictable changes in gait kinetics with wooden clog shoes may reduce stresses on hoof structures. Study results enhance knowledge about shoe effects on equine gait kinetics and cutting-edge measures to quantify them.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11871903 | PMC |
http://dx.doi.org/10.7717/peerj.18940 | DOI Listing |
PeerJ
March 2025
Department of Veterinary Clinical Sciences, School of Veterinary Medicine, Louisiana State University and Agricultural and Mechanical College, Baton Rouge, LA, United States of America.
The shift in vertical forces on the equine hoof surface by heart-bar, egg-bar, and wooden clog shoes can significantly impact gait kinetics. Hypotheses tested in this study were that vertical, braking, and propulsion peak force (PF) and impulse (IMP) are different while shod with heart-bar, egg-bar, open-heel, and wooden clog shoes, or while unshod, and the resultant ground reaction force vector ( ) has the longest duration of cranial angulation with open-heel shoes followed by unshod, then egg-bar and heart-bar shoes, and the shortest with wooden clog shoes. Forelimb GRFs were recorded as six non-lame, light-breed horses walked across a force platform (four trials/side) while unshod or with egg-bar, heart-bar, open-heel, or wooden clog shoes.
View Article and Find Full Text PDFInt J Paleopathol
December 2017
Leiden University, Faculty of Archaeology, The Netherlands. Electronic address:
Osteochondritis Dissecans (OD) is a pathological condition of the subchondral bone and surrounding cartilage of synovial joints, associated with strenuous activity and/or trauma. Reports of OD in archaeological skeletal remains are few and the majority demonstrate low OD prevalence (<1%). A predominantly 19th century skeletal sample from Middenbeemster, the Netherlands, was assessed for OD.
View Article and Find Full Text PDFVet Clin North Am Equine Pract
April 2010
1509 North Kickapoo, Shawnee, OK 74804, USA.
This article describes the use of the wooden shoe in the treatment of chronic laminitis. The shoe, designed to provide a solid base and full roller motion, offers mechanical advantages and enables reduction and redistribution of forces within the hoof capsule.
View Article and Find Full Text PDFLepr Rev
March 1990
Foundation for Research in Community Health, Bombay, India.
The anaesthetic foot in leprosy poses the most major problem in the rehabilitation of its patients. Various attempts have been made to produce protective footwear such as the microcellular rubber-car-tyre sandals. Unfortunately these attempts have had little success on a large scale because of the inability to produce them in large numbers and the stigma attached to such unusual footwear.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!