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Topic:Weight Bearing

Weight bearing in horses refers to the distribution and support of body weight across the limbs and hooves. This physiological process is critical for maintaining balance, movement, and overall musculoskeletal health in equines. Horses rely on an intricate system of bones, joints, tendons, and ligaments to manage and distribute weight effectively during various activities such as standing, walking, trotting, and galloping. Proper weight bearing is essential to prevent injuries and ensure optimal performance. Abnormalities in weight distribution can lead to conditions such as laminitis, arthritis, and other orthopedic issues. This page compiles peer-reviewed research studies and scholarly articles that explore the biomechanics, clinical assessments, and implications of weight bearing in equine health and performance.
Non-invasive electroarthrography measures cartilage in live horses and correlates to direct measurements of cartilage streaming potentials in weight bearing regions of equine metacarpophalangeal joints.
Osteoarthritis and cartilage    April 26, 2024   Volume 32, Issue 10 1235-1244 doi: 10.1016/j.joca.2024.04.007
Changoor A, Garon M, Quenneville E, Savard P, Buschmann MD, Hurtig MB.To perform non-invasive Electroarthrography (EAG) on live horses and establish relationships between EAG and direct measurements of cartilage streaming potentials in weight bearing areas of the equine metacarpophalangeal joint. Methods: EAG was performed bilaterally on the metacarpophalangeal joints of live horses (n = 3). Separate experiments used metacarpophalangeal joint explants (n = 11) to measure EAG obtained during simulated loading followed by direct measurements of cartilage streaming potentials on joint surfaces using the Arthro-BST probe. Joints were assigned to relatively norma...
Lumbar vertebral bone density is decreased in horses with pituitary pars intermedia dysfunction.
Equine veterinary journal    December 27, 2023   Volume 56, Issue 2 368-376 doi: 10.1111/evj.14039
Colbath AC, Fortin JS, Burglass CM, Panek C, Vergara-Hernandez FB, Johnson TN, Robison CA, Logan AA, Nelson NA, Nielsen BD, Schott HC.Pathological fractures have been reported in equids with pituitary pars intermedia dysfunction (PPID) but their prevalence and pathogenesis is unknown. Objective: To compare: (1) bone mineral density (BMD) in weight bearing and nonweight bearing bones in PPID+ equids and aged and young PPID- controls; and (2) biomechanical properties of the fourth lumbar vertebral body in PPID+ equids and aged PPID- equids. Methods: Case-control study: five PPID+ equids and six aged and four young PPID- control horses. Methods: PPID status was based on clinical signs and necropsy examination of the pituitary g...
Low field magnetic resonance imaging of the equine distal interphalangeal joint: Comparison between weight-bearing and non-weight-bearing conditions.
PloS one    January 28, 2019   Volume 14, Issue 1 e0211101 doi: 10.1371/journal.pone.0211101
Evrard L, Audigié F, Bertoni L, Jacquet S, Denoix JM, Busoni V.This descriptive study aimed to compare the magnetic resonance appearance of the distal interphalangeal joint articular cartilage between standing weight-bearing and non-weight-bearing conditions. Ten forefeet of live horses were scanned in a standing low-field magnetic resonance system (0.27 T). After euthanasia for reasons unrelated to the study, the non-weight-bearing isolated feet were scanned in a vertical positioning reproducing limb orientation in live horses. The same acquisition settings as during the weight-bearing examination were used. Thickness and cross-sectional area of the dist...
Doppler sonographic measurements of arterial blood flow and their repeatability in the equine foot during weight bearing and non-weight bearing.
Research in veterinary science    October 26, 2001   Volume 70, Issue 3 199-203 doi: 10.1053/rvsc.2001.0461
Hoffmann KL, Wood AK, Griffiths KA, Evans DL, Gill RW, Kirby AC.In six normal adult horses, pulsed-wave Doppler sonographic inspections were made of the left and right lateral palmar proper digital artery (LPPDA) of each thoracic limb. Using a two-period, crossover design with repeated measures, each LPPDA was inspected on four occasions throughout the day over a 7 hour period and, on each occasion, with the limb weight bearing and non-weight bearing. In comparison with the observations made during weight bearing, there were significant increases (P<0.001) in blood-flow velocities when the limb was non-weight bearing. There was no relationship between b...
Effect of different full-limb casts on in vitro bone strain in the distal portion of the equine forelimb.
American journal of veterinary research    March 11, 1998   Volume 59, Issue 2 197-200 
Hopper SA, Schneider RK, Ratzlaff MH, White KK, Johnson CH.To determine the ability of a full-limb transfixation pin cast to protect the distal portion of the equine forelimb from weight-bearing forces by measuring bone strain in vitro on cadaver limbs loaded in a mechanical testing machine. Methods: 6 forelimbs from 6 horses. Methods: Each limb was instrumented with 3 unidirectional metal foil electrical resistant strain gauges. Gauges were placed on the dorsal aspect of the distal portion of the radius and the mid-dorsal portion of the cortex of the third metacarpal bone and the first phalanx. Each limb was tested 3 times, once supported with a tran...
Ultrasonographic observations of the flexor tendons and ligaments of the metacarpal region of horses.
American journal of veterinary research    April 1, 1993   Volume 54, Issue 4 502-506 
Nicoll RG, Wood AK, Martin IC.Observations were made in dorsal and sagittal planes of the ultrasonographic mean gray scale of the flexor tendons and ligaments of the metacarpal regions of 5 Thoroughbred geldings, during weight bearing and nonweight bearing. In images made when the horses were nonweight bearing, the mean gray scale of the superficial and deep digital flexor tendons and accessory ligament was significantly reduced, but that of the interosseous medius muscle (suspensory ligament) was not. When relaxed, collagen fiber bundles in the tendons and ligaments acted as diffuse, rather than specular, reflectors of ul...
Suspensory apparatus prosthesis in the horse. Part 2: In vivo evaluation in a suspensory apparatus disruption model.
Veterinary surgery : VS    March 1, 1992   Volume 21, Issue 2 126-132 doi: 10.1111/j.1532-950x.1992.tb00030.x
Major MD, Grant BD, White KK, Ratzlaff MH, Gallina AM, Donati RM.The suspensory apparatus of one forelimb was surgically disrupted in six adult horses by transecting the distal sesamoidean ligaments. A double-braided prosthetic ligament made of aramid yarn was installed to support the flexor surface of the metacarpophalangeal joint. The prosthesis was routed through tunnels in the third metacarpal bone and proximal phalanx, and secured to bone with screws. Evaluation by radiography, synovial fluid analysis, cinematography, and dynamography was performed before surgery and at weeks 16 and 30. Supracondylar cortical lysis and periosteal proliferation were obs...
A technique for assessing hoof function in the horse.
Equine veterinary journal    January 1, 1989   Volume 21, Issue 1 17-22 doi: 10.1111/j.2042-3306.1989.tb02083.x
Colles CM.This paper describes the application of foil strain gauges to the hoof wall, and the use of measuring equipment to monitor weightbearing and changes in hoof shape in shod and unshod horses. It concludes that the systems can detect hoof movement and that results are reproducible. It is also concluded that the use of a conventional nailed on iron shoe restricts flexion and spreading of the hoof wall at the ground surface, but has little effect on the degree of expansion of the heels of the foot.