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Topic:Ligaments

Ligaments in horses are fibrous connective tissues that connect bones to other bones, providing stability and support to the skeletal structure. These structures are integral to maintaining joint function and facilitating movement. In equine anatomy, ligaments are involved in various functions, including supporting the limbs and allowing for efficient locomotion. Common ligaments in horses include the suspensory ligament, which plays a significant role in supporting the fetlock joint, and the nuchal ligament, which supports the head and neck. This page compiles peer-reviewed research studies and scholarly articles that explore the anatomy, function, injury mechanisms, and rehabilitation of ligaments in horses.
Tendon injuries and their treatment in the horse.
The Veterinary record    July 21, 1979   Volume 105, Issue 3 54-57 doi: 10.1136/vr.105.3.54
McCullagh KG, Goodship AE, Silver IA.No abstract available
The use of ionising radiation for the treatment of injuries to flexor tendons and supporting ligaments in horses.
Equine veterinary journal    April 1, 1979   Volume 11, Issue 2 106-109 doi: 10.1111/j.2042-3306.1979.tb01318.x
Franks PW.A technique was developed using radioactive isotopes as a source of radiation for the treatment of injuries to the superficial and deep flexor tendons and the associated ligaments in the horse. The treatment area was sub-divided so that different dosages could be applied over the limb as necessary. A plaster of Paris impression was taken of the whole area to be treated. In the isotope laboratory a plaster negative was made and loaded with the dose of radioactive isotope. The loaded cast was then strapped to the horse's limb for the calculated time, usually about three days. A total of 42 horse...
Tendon and ligament from the horse: an ultrastructural study of collagen fibrils and elastic fibres as a function of age.
Proceedings of the Royal Society of London. Series B, Biological sciences    December 18, 1978   Volume 203, Issue 1152 293-303 doi: 10.1098/rspb.1978.0106
Parry DA, Craig AS, Barnes GR.A study has been made of the ultrastructural organization of the collagen fibrils and elastic fibres in tendons and ligaments from horses of ages ranging from 2 months premature to 19 years. Diameter distributions of the collagen fibrils in the common digital extensor tendon, the superficial flexor tendon and the suspensory ligament are unimodal in the foetal tissue and at birth, and at these stages of development the three collagenous tissues are virtually indistinguishable. However, at maturity, the ligament and flexor tendon have bimodal distributions similar to that found for rat-tail tend...
A study of the normal range of strain, strain rate, and stiffness of tendon.
Journal of biomedical materials research    November 1, 1978   Volume 12, Issue 6 877-894 doi: 10.1002/jbm.820120610
Herrick WC, Kingsbury HB, Lou DY.This paper describes the result of an investigation of strains and strain rates which normally occur in the tendons of the equine foreleg and presents stress-strain curves and moduli for the tendons at these rates. It has previously been demonstrated that resistance to flexion of the joints of the distal part of the equine foreleg is provided by a passive system of tendons and ligaments. It is therefore possible, using a large displacement, high-rate testing machine, to duplicate in the laboratory the strain rates and forces which are normally produced in the tendons of the foreleg of the runn...
A laboratory system for production of flexion rates and forces in the forelimb of the horse.
American journal of veterinary research    March 1, 1978   Volume 39, Issue 3 365-369 
Kingsbury HB, Quddus MA, Rooney JR, Geary JE.The distal portion of the forelimb of the horse is provided with a stay apparatus composed of tendons, ligaments, and fascia. This stay apparatus provides the major resistance to joint flexion during the support phase of the stride. The laboratory test system described was shown to be able to reproduce in vitro limb motions and hoof forces measured with a running horse. These results indicated the stay apparatus operates in a largely passive mode, active muscle contraction apparently serving to provide rigidity only early in the support phase of the stride. The testing system described was des...
Evaluation of inferior check ligament desmotomy for treatment of acquired flexor tendon contracture in the horse.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 293-298 
McIlwraith CW, Fessler JF.The usefulness of inferior check ligament desmotomy as a treatment for acquired tendon contracture in horses was evaluated in 13 cases of deep digital flexor (DDF) contracture and in 3 cases of combined superficial digital flexor (SDF) and DDF contracture. In 8 of 9 cases of DDF contracture in which the dorsal surface of the hoof had not passed beyond being vertical to the ground, the surgical procedure was successful in returning the limb to a normal position and function. Compared with DDF tenotomy, inferior check ligament desmotomy was a superior treatment technique because of decreased pos...
Correction of contracted tendon in a filly foal by desmotomy of the inferior check ligament.
Veterinary medicine, small animal clinician : VM, SAC    August 1, 1977   Volume 72, Issue 8 1349-1353 
Lose MP, Hopkins EJ.No abstract available
Scanning electron microscopy of equine synovial membrane.
American journal of veterinary research    May 1, 1977   Volume 38, Issue 5 681-684 
Shively JA, Van Sickle DC.The scanning electron microscopy of synovial membrane from the radiocarpal and intercarpal joints near the lateral and medial borders of the tendon of the extensor carpi radialis muscle was studied in 5 ponies. Three different morphologic types of synovial membrane were observed. Type 1 synovial membrane was folded and had a surface mat of fibers separated by 1- to 5-micron-diameter holes. The 2nd and 3rd types of synovial membrane were both villous. The surface of type 2 synovial membrane was fibrillar but the surface of type 3 synovial membrane was cellular. The type of synovial membrane pre...
Bilateral luxation of the coffin joints in a horse, as a sequel to palmar neurectomy.
The Veterinary record    March 5, 1977   Volume 100, Issue 10 198-199 doi: 10.1136/vr.100.10.198
Rose RJ.Complications from neurectomy have been well known for many years. A 16-year-old mare suffered bilateral luxation of the coffin joints following palmar neurectomy and was destroyed. Autopsy showed complete rupture of the deep flexor tendons, and the supporting ligaments of the coffin joints. Arthritis of the coffin joints, with erosion of articular cartilage was evident.
Observations on small metacarpal and metatarsal fractures with or without associated suspensory desmitis in Standardbred horses.
The Canadian veterinary journal = La revue veterinaire canadienne    February 1, 1977   Volume 18, Issue 2 29-32 
Jones RD, Fessler JF.ALTHOUGH METACARPAL TI-IV and metatarsal II-IV (MC II-IV, MT II-IV) fractures are frequent in horses and surgical intervention routine, a review of the current literature revealed little information about this subject. The authors have found only two complete accounts of this problem (1, 6). The incidence of suspensory desmitis has been previously reported (3), but we find no previous correla-tion of MC II-IV, MT II-IV fractures with suspensory, desmitis. On these bases, a re-trospective study was conducted. At Purdue University from 1967 through 1974, 50 Standardbred horses underwent sur-gery...
Innervation of the equine hip and stifle joint capsules.
Journal of the American Veterinary Medical Association    September 15, 1976   Volume 169, Issue 6 614-619 
Rankin JS, Diesem CD.The hindlimbs of 3 ponies and 3 horses were dissected. The hip joint capsule was found to receive articular nerve fibers from the femoral, obturator, cranial gluteal, and sciatic nerves. The nerve fibers were distributed to the fibrous joint capsule and associated capsular ligaments. The stifle joint capsule was found to receive articular branches from the femoral, saphenous, obturator, common peroneal, and tibial nerves. The fibers terminated in the joint capsule, fat pad, patellar and collateral ligaments, and the internally situated meniscal and cruciate ligaments.
Angiography of equine metacarpus and phalanges: alterations with medial palmar artery and medial palmar digital artery ligation.
American journal of veterinary research    August 1, 1976   Volume 37, Issue 8 869-873 
Scott EA, Thrall DE, Sandler GA.Vascular supply of the equine forelimb was partially disrupted by ligation of the medial palmar and medial palmar digital arteries. Vascular architecture was evaluated before and after ligation by angiography. It was apparent from the present study that existing collaterals or newly formed collaterals, or both, were sufficient to maintain limb viability.
Percutaneous tendon splitting–method and results.
Equine veterinary journal    July 1, 1976   Volume 8, Issue 3 101-103 doi: 10.1111/j.2042-3306.1976.tb03307.x
Knudsen O.The paper briefly describes the percutaneous tendon splitting operation as performed in general practice and evaluates its effectiveness on the basis of races run during a 2 year follow-up period. The results are compared with similar figures for normal Standardbred trotters. A higher percentage of horses subjected to splitting of the suspensory ligament failed to remain sound long enough to run more than 10 races during the follow-up period. The percentage of horses returning to racing whose superficial flexor was operated upon was somewhat lower than the control group.
[Mechanics of the knee joint, part II, the final rotation (author’s transl)].
Zeitschrift fur Orthopadie und ihre Grenzgebiete    June 1, 1975   Volume 113, Issue 3 388-400 
Menschik A.Mobility of the knee of the horse. The modification of medial and lateral femoral condyles by additional movement of the cruciate ligaments shown on the animal joint. Final rotation in the human knee-joint shapes the femoral condyles by additional movement of the cruciate ligaments. The roll-slide movement and final rotation lead to curving of the medial condyle of the femur in the transverse plane. The transition from the roll-slide into a tilting movement in the final phase of ultimate rotation reduces the power of the posterior ligamentous system of the knee-joint when there is a force tend...
Constriction of the palmar (volar) or plantar annular ligament of the fetlock in the horse.
Veterinary medicine, small animal clinician : VM, SAC    March 1, 1974   Volume 69, Issue 3 327-329 
Adams OR.No abstract available
In vivo tendon tension and bone strain measurement and correlation.
Journal of biomechanics    January 1, 1974   Volume 7, Issue 1 35-42 doi: 10.1016/0021-9290(74)90068-2
Barnes GR, Pinder DN.No abstract available
The nature of tendon damage and its repair.
Equine veterinary journal    October 1, 1973   Volume 5, Issue 4 141-149 doi: 10.1111/j.2042-3306.1973.tb03214.x
Fackelman GE.No abstract available
Functional anatomy of the equine suspensory ligament.
Modern veterinary practice    June 1, 1973   Volume 54, Issue 6 43-45 
Rooney JR.No abstract available
Equine tendon stress injuries.
Equine veterinary journal    April 1, 1973   Volume 5, Issue 2 58-64 doi: 10.1111/j.2042-3306.1973.tb03195.x
Webbon PM.No abstract available
The involution of the muscle tissue of the proximal sesamoidean ligament of horse.
Lo sperimentale    January 1, 1968   Volume 118, Issue 1 57-69 
Callegari E.No abstract available
Strain of the superior check ligament of the horse.
Journal of the American Veterinary Medical Association    February 15, 1966   Volume 148, Issue 4 364-366 
Lingard DR.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
Surgical Treatment of Tendon Injuries in the Horse.
Journal of the American Veterinary Medical Association    September 1, 1964   Volume 145 447-451 
ASHEIM A.No abstract available
Symposium on osteoarthritis and tenosynovitis in horses. Ligament and tendon injuries.
Journal of the American Veterinary Medical Association    November 15, 1962   Volume 141 1258 
REED WO.No abstract available
Characterization of the reaction between orcein and the elastic fibers of the ligamentum nuchae of the horse.
The Anatomical record    June 1, 1952   Volume 113, Issue 2 197-213 doi: 10.1002/ar.1091130206
DEMPSEY EW, VIAL JD, LUCAS RV, LANSING AI.No abstract available
[Tearing of the intercolicum ligament and hernia ligamentosa in horses].
Deutsche tierarztliche Wochenschrift    March 1, 1947   Volume 54, Issue 9-10 71-73 
STREICH W.No abstract available
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