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Topic:Metacarpophalangeal Joint

The metacarpophalangeal joint, commonly referred to as the fetlock joint, is a critical anatomical structure in horses, located between the metacarpal bone and the proximal phalanx. It plays a significant role in the locomotion and weight-bearing functions of the forelimbs. This synovial joint is composed of several components, including articular cartilage, joint capsule, ligaments, and synovial fluid, all contributing to its function and stability. The joint undergoes substantial stress during movement, making it susceptible to various disorders, such as osteoarthritis, synovitis, and ligament injuries. This page aggregates peer-reviewed research studies and scholarly articles that explore the anatomy, biomechanics, pathology, and treatment options related to the metacarpophalangeal joint in horses.
Periosteal transection of the proximal phalanx in foals with angular limb deformities of the metacarpo/metatarsophalangeal area.
Journal of the American Veterinary Medical Association    September 1, 1985   Volume 187, Issue 5 496-499 
Auer JA.Bilateral angular limb deformities of the metacarpo/metatarsophalangeal regions in 2 foals are discussed. Periosteal transection was used to correct the deformity in both foals. In one foal, only the right forelimb was treated because the deformity in the left forelimb did not appear to warrant surgery. Subsequently, an angular limb deformity, which could have been prevented, developed in the left forelimb. A third foal developed a deformity in the proximal phalanx after periosteal transection of the distal third metatarsal bone.
Complications during treatment of traumatic disruption of the suspensory apparatus in Thoroughbred horses.
Journal of the American Veterinary Medical Association    March 15, 1984   Volume 184, Issue 6 706-715 
Bowman KF, Leitch M, Nunamaker DM, Fackelman GE, Tate LP, Park MI, Boles CL, Raker CW.A total of 19 Thoroughbred horses were treated for traumatic disruption of the suspensory apparatus, using either external support of the injured limb, removal of fractured proximal sesamoid bone fragments, metacarpophalangeal arthrodesis, compression screw fixation of the fractured proximal sesamoid bones, application of a cast-brace attached to a transfixation pin inserted through the third metacarpal bone, or combinations thereof. Major complications during the treatment of traumatic disruption of the suspensory apparatus were infection (9 of 19 horses, 47%), large cast sores (10 of 14 trea...
Bone stress in the horse forelimb during locomotion at different gaits: a comparison of two experimental methods.
Journal of biomechanics    January 1, 1983   Volume 16, Issue 8 565-576 doi: 10.1016/0021-9290(83)90107-0
Biewener AA, Thomason J, Goodship A, Lanyon LE.Longitudinal stresses acting in the cranial and caudal cortices of the radius and the dorsal and palmar cortices of the metacarpus in the horse were determined using two independent methods simultaneously. One approach involved the use of rosette strain gauges to record in vivo bone strain; the other involved filming the position of the horse's forelimb as it passed over a force plate. Agreement between the two analyses was better for the radius than for the metacarpus. Both methods showed the radius to be loaded primarily in sagittal bending, acting to place the caudal cortex in compression a...
The effect of joint position on juxta-articular bone marrow pressure. Relation to intra-articular pressure and joint effusion–an experimental study on horses.
Acta orthopaedica Scandinavica    December 1, 1980   Volume 51, Issue 6 893-897 doi: 10.3109/17453678008990890
Arnoldi CC, Reimann I, Mortensen S, Christensen SB, Kristoffersen J, Sønnichsen HV, Smith M.Six metacarpo-phalangeal joints of adult horses were studied. Pressure measurements were made in the joint and the metacarpal bone with simultaneous measurement of the systemic arterial blood pressure. Investigations performed to study the effect of joint position on juxta-articular bone marrow pressure showed that an increase in joint flexion was always followed by a rise in intraosseous pressure with a significant increase at flexion above 60 degrees. Increase in intra-articular pressure which was achieved by injection of saline was always followed by a slower rise in intraosseous pressure. ...
Clinical approach to determine the contribution of the palmar and palmar metacarpal nerves to the innervation of the equine fetlock joint.
American journal of veterinary research    June 1, 1980   Volume 41, Issue 6 940-943 
Gray BW, Engel HN, Rumph PF, LaFaver J, Brown BG, McKibbin JS.To determine the sensory nerve supply of the metacarpophalangeal joint, lameness was induced in eight horses by injecting the joint with a glycerin suspension of glass micropheres. When the medial and lateral palmar nerves were anesthetized in 4 horses, there was noticeable improvement in the gait, but each horse remained lame. When the medial and lateral palmar metacarpal nerves were also anesthetized, 3 of the 4 horses became sound. To confirm the results of local anesthesia, neurectomies were performed on a second group of four horses. The lameness was alleviated only upon resection of both...
Disease of the metacarpophalangeal joint and metacarpus.
The Veterinary clinics of North America. Large animal practice    May 1, 1980   Volume 2, Issue 1 33-59 doi: 10.1016/s0196-9846(17)30174-x
Haynes PF.No abstract available
Electrogoniometric analysis of equine metacarpophalangeal joint lameness.
American journal of veterinary research    April 1, 1977   Volume 38, Issue 4 431-435 
Adrian M, Grant B, Ratzlaff M, Ray J, Boulton C.Electrogoniometry was used qualitively and quantitatively to assess the movements of the normal and pathologic metacarpophalangeal joints of selected horses. A total of 4 Thoroughbreds, 1 normal and 3 with clinical and radiographic changes in the metacarpophalangeal joints of 1 limb, were evaluated at the walk and trot. Goniograms of the affected joints were compared with those of the normal horse and the normal contralateral metacarpophangeal joint. Qualitative asymmetry was recognized on the goniograms, and the ranges of motion were quantified and related to the clinical and radiologic obser...
Villonodular synovitis of the equine metacarpophalangeal joint.
Journal of the American Veterinary Medical Association    June 1, 1976   Volume 168, Issue 11 1043-1046 
Nickels FA, Grant BD, Lincoln SD.Villonodular synovitis was diagnosed as the cause of lameness in 14 horses. The diagnosis was based on the history, clinical signs, and arthrographic findings. Treatment consisted of surgical excision and radiation therapy. The response to treatment was favorable in 13 horses.
Chip fractures of the first phalanx in the metatarso-phalangeal joint of the horse.
Acta radiologica. Supplementum    January 1, 1972   Volume 319 73-77 
Birkeland R.No abstract available
Chip fractures of the first phalanx in the metacarpophalangeal (fetlock)joint.
Journal of the American Veterinary Medical Association    February 15, 1966   Volume 148, Issue 4 360-363 
Adams OR.No abstract available
[The nerve endings in the posterior metacarpo-phalangeal ligament (superior sesamoidean ligament of suspensory ligament of the fetlock joint) of equines and bovines].
Archives d'anatomie, d'histologie et d'embryologie normales et experimentales    January 1, 1965   Volume 48, Issue 5 349-370 
Karamanlidis AN.No abstract available
Detection of experimental cartilage damage with acoustic emissions technique: An in vitro equine study.
   September 2, 2026  
In horses, osteoarthritis (OA) mostly affects metacarpophalangeal and metatarsophalangeal (fetlock) joints. The current modalities used for diagnosis of equine limb disorders lack ability to detect early OA. Here, we propose a new alternative approach to assess experimental cartilage damage in fetlock joint using Acoustic Emissions (AE). Objective: To evaluate the potential of AE technique in diagnosing OA and see how AE signals changes with increasing severity of OA. Methods: An in vitro experimental study. Methods: A total of 16 distal limbs (8 forelimbs and 8 hindlimbs) from six Finn horses...
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