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Topic:Musculoskeletal System

The musculoskeletal system in horses encompasses the bones, muscles, tendons, ligaments, and joints that facilitate movement and provide structural support. This system is essential for locomotion, athletic performance, and overall health in equine species. The equine skeleton consists of approximately 205 bones, which are connected by joints and supported by a network of muscles and connective tissues. Tendons connect muscles to bones, while ligaments link bones to other bones, contributing to joint stability. The musculoskeletal system is subject to various conditions, including injuries, degenerative diseases, and developmental disorders, which can impact a horse's mobility and performance. This page compiles peer-reviewed research studies and scholarly articles that explore the anatomy, physiology, pathology, and treatment of musculoskeletal conditions in horses.
Bipartite distal phalanx and navicular bone in an Andalusian stallion. Benninger MI, Deiss E, Ueltschi G.We describe the clinical findings and radiographic abnormalities of a horse with a bipartite distal phalanx and a bipartite navicular bone of the right forelimb. Associated findings including suspected keratoma and degenerative joint disease of the distal interphalangeal joint are described and possible etiologies are discussed.
Wounds of the distal limb complicated by involvement of deep structures.
The Veterinary clinics of North America. Equine practice    February 5, 2005   Volume 21, Issue 1 145-viii doi: 10.1016/j.cveq.2004.11.008
Jann H, Pasquini C.The authors describe the clinically relevant structures of the distal limb and the current diagnostic and treatment modalities. Specific problems include tendon laceration, septic tenosynovitis, and sep-tic arthritis of the distal joints. A detailed description of tendon repair, tendon sheath lavage, and postoperative convalescent methodology is provided. This article makes available to the reader information necessary to appropriately diagnose and treat wounds of the distal equine limb involving deep structures. Information on the overall prognosis is also provided.
Ex vivo investigation of the use of hydrothermal energy to induce chondrocyte necrosis in articular cartilage of the metacarpophalangeal and metatarsophalangeal joints of horses.
American journal of veterinary research    February 5, 2005   Volume 66, Issue 1 36-42 doi: 10.2460/ajvr.2005.66.36
Jenner F, Edwards RB, Voss JR, Southwood L, Markel MD, Richardson DW.To evaluate the use of hydrothermal ablation of articular cartilage for arthrodesis in horses through investigation of the effects of joint lavage with physiologic saline (0.9% NaCI) solution (80 degrees C) for various treatment times on chondrocyte viability in the articular cartilage of the metacarpophalangeal and metatarsophalangeal joints of cadaveric horse limbs. Sample Population-7 pairs of metacarpophalangeal and 8 pairs of metatarsophalangeal joints from 8 Thoroughbreds. Methods: The horses were euthanatized for reasons unrelated to musculoskeletal disease. On a random basis, 1 joint o...
Possible familial basis to equine polysaccharide storage myopathy.
The Veterinary record    February 4, 2005   Volume 156, Issue 3 95-96 
McDiarmid A.No abstract available
Osteonal effects on elastic modulus and fatigue life in equine bone.
Journal of biomechanics    January 26, 2005   Volume 39, Issue 2 217-225 doi: 10.1016/j.jbiomech.2004.12.002
Gibson VA, Stover SM, Gibeling JC, Hazelwood SJ, Martin RB.We hypothesized that recently formed, incompletely mineralized, and thus, relatively deformable osteons in the equine third metacarpus enhance in vitro load-controlled fatigue life in two ways. Macroscopically, there is a compliance effect, because reduced tissue elastic modulus diminishes the stress required to reach a given strain. Microscopically, there is a cement line effect, in which new osteons and their cement lines more effectively serve as barriers to crack propagation. We studied 18 4 x 10 x 100 mm beams from the medial, lateral, and dorsal cortices of metacarpal bones from 6 thorou...
Gene therapy: future therapies in osteoarthritis.
The Veterinary clinics of North America. Equine practice    January 22, 2005   Volume 17, Issue 2 233-vi doi: 10.1016/s0749-0739(17)30059-7
Frisbie DD, McIlwraith CW.The field of equine veterinary practice is in an ever-evolving state, requiring current technologies to be constantly evaluated for new applications. The specific use of gene therapy in the horse is a novel application. The authors want to help familiarize the equine practitioner with the concept of gene therapy, and introduce its use and potential future benefits for the equine industry in the treatment of osteoarthritis.
Autologous osteochondral grafting (mosaic arthroplasty) for treatment of subchondral cystic lesions in the equine stifle and fetlock joints.
Veterinary surgery : VS    January 22, 2005   Volume 33, Issue 6 588-596 doi: 10.1111/j.1532-950X.2004.04096.x
Bodo G, Hangody L, Modis L, Hurtig M.To describe treatment of equine subchondral bone cysts (SBCs) by reconstruction of the articular surface with osteochondral grafts. Methods: Case series of horses with SBCs unresponsive to conservative therapy. Methods: Eleven horses (1-12 years). Methods: SBCs were identified in 4 locations: medial femoral condyle (5 horses), lateral femoral condyle (1), distal epiphysis of the metacarpus (4), or metatarsus (1). Osteochondral autograft transplantation (mosaic arthroplasty) was performed, taking grafts from the abaxial border of the medial femoral trochlea of the unaffected limb. Graft implant...
In vitro assessment of movements of the sacroiliac joint in the horse.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 694-698 doi: 10.2746/0425164044848064
Degueurce C, Chateau H, Denoix JM.Sacroiliac joint (SIJ) disease is associated with poor hindlimb action, lameness and poor performance in horses. However, little is known about the biomechanics of this low-motion joint. Objective: To determine in vitro the capacities of movement of the SIJ in the sagittal plane, and to test the effect of a sacrosciatic and sacrotuberal desmotomy on its stabilisation. Methods: Six anatomical specimens underwent cycles of flexion-extension of the lumbosacral joint (LSJ) before and after desmotomy. Kinematic triads were linked rigidly to the sacrum, spinous process of vertebra L5 and iliac wing....
Determination of the stiffness of the equine spine.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 699-702 doi: 10.2746/0425164044848055
Schlacher C, Peham C, Licka T, Schobesberger H.Mechanical properties of the equine back are the bases for realistic modelling of the back, which is recognised as an important step towards improved understanding of the pathogenesis of equine back conditions. Objective: The stiffness of the equine back depends on the direction of the applied force and on the position of the spine. Methods: Fourteen dissected spines were tested in a tensile testing machine. In 3 different positions, simulating dorsoventral, laterolateral and dorsoventral-30 degree rotated movement, force was applied on the dorsal spinous process of T12 to reach an excursion o...
Verification of skin-based markers for 3-dimensional kinematic analysis of the equine tarsal joint.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 655-658 doi: 10.2746/0425164044847984
Khumsap S, Lanovaz JL, Clayton HM.Kinematic studies are usually based on tracking markers attached to the skin. However, complex joints, such as the tarsal joint, function in 3-dimensions (3D), and have therefore necessitated application of the invasive bone pin technique, limiting kinematic studies to the research laboratory. This study investigates the feasibility of using skin-based markers for 3D analysis of tarsal joint motion. Objective: Three-dimensional motions of the tarsal joint can be measured with an acceptable degree of accuracy using skin markers. Methods: Retroreflective markers were attached over the tibial and...
Influence of individual competition level on back kinematics of horses jumping a vertical fence.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 748-753 doi: 10.2746/0425164044848082
Cassiat G, Pourcelot P, Tavernier L, Geiger D, Denoix JM, Degueurce D.The costs and investments required for the purchase and training of showjumpers justify the need to find selection means for jumping horses. Use of objective kinematic criteria correlated to jumping ability could be helpful for this assessment. Objective: To compare back kinematics between 2 groups of horses of different competition levels (Group 1, competing at high level; Group 2 competing at low level) while free jumping over a 1 m vertical fence. Methods: Three-dimensional recordings were performed using 2 panning cameras. Kinematic parameters of the withers and tuber sacrale (vertical dis...
Influence of support boots on fetlock joint angle of the forelimb of the horse at walk and trot.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 769-771 doi: 10.2746/0425164044848208
Kicker CJ, Peham C, Girtler D, Licka T.Support boots are thought to reduce tension on the superficial digital flexor tendon (SDTF) of the horse and are frequently recommended for horses convalescing after tendonitis, but evidence of their effectiveness is conflicting. Objective: To document the effects of 4 different types of support boots on fetlock joint angle in comparison to the unprotected fetlock. Methods: In 26 horses, the kinematics of the forelimb fetlock joint angle was measured at walk and trot on a treadmill when wearing 3 different types of support boots and 1 protective boot, as well as without boots. As outcome param...
Effects of 6 degree elevation of the heels on 3D kinematics of the distal portion of the forelimb in the walking horse.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 649-654 doi: 10.2746/0425164044848217
Chateau H, Degueurce C, Denoix JM.Understanding of the biomechanical effects of heel elevation remains incomplete because in vivo studies performed with skin markers do not measure the actual movements of the 3 digital joints. Objective: To quantify the effects of 6 degree heel wedge on the 3-dimensional movements of the 4 distal segments of the forelimb in the walking horse. Methods: Four healthy horses were used. Kinematics of the distal segments was measured invasively with a system based on ultrasonic triangulation. Three-dimensional rotations of the digital joints were calculated by use of a 'joint coordinate system' (JCS...
Ground reaction forces and limb function in tölting Icelandic horses.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 743-747 doi: 10.2746/0425164044848190
Biknevicius AR, Mullineaux DR, Clayton HM.Gaited horses employ 4-beat stepping (singlefoot) gaits that extend into speeds typical of trots. Ground reaction force (GRF) patterns of these specialised gaits have not been reported; therefore, appraisal of these gaits using nongaited horse kinetics may lead to clinical misjudgements. Objective: GRFs of tölting Icelandic horses will be comparable in profile and magnitude with those of trotting horses. Methods: Forelimb and hindlimb GRFs were obtained for 10 Icelandic horses ridden at a tölt. These data were evaluated across 3 speed ranges: <2, 2.5-5 and >5 m/sec. Results: Virtually all ve...
The role of electromyography in clinical diagnosis of neuromuscular locomotor problems in the horse.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 718-722 doi: 10.2746/0425164044848019
Wijnberg ID, Back W, de Jong M, Zuidhof MC, van den Belt AJ, van der Kolk JH.Systematically performed EMG needle examination of muscles provides essential information about the functional aspects of the motor unit. However, clinical studies in which information is given on the diagnostic and discriminative values of electromyography (EMG) in the horse are scarce. Objective: To determine to what extent inclusion of EMG analysis in clinical examination contributes to determination of type and localisation of abnormality. Methods: EMG analysis, complete clinical examination and diagnosis of 108 horses (mean +/- s.d. age 75 +/- 3.8 years; bodyweight 548 +/- 86 kg; height 1...
Surface strains around the midshaft of the third metacarpal bone during turning.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 689-692 doi: 10.2746/0425164044848109
Davies HM, Merritt JS.Bone strains quantify skeletal effects of specific exercise and hence assist in designing training programmes to avoid bone injury. Objective: To test whether compressive strains increase on the lateral surface of the inside third metacarpal bone (McIII) and the medial surface of the outside McIII in a turn. Methods: Rosette strain gauges on dorsal, medial and lateral surfaces of the midshaft of the left McIII in 2 Thoroughbred geldings were recorded simultaneously during turning at the walk on a bitumen surface. Results: Medial surface: Compression peaks were larger in the outside limb. Tensi...
Development of a 3D model of the equine distal forelimb and of a GRF shoe for noninvasive determination of in vivo tendon and ligament loads and strains.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 677-682 doi: 10.2746/0425164044848172
Rollot Y, Lecuyer E, Chateau H, Crevier-Denoix N.As critical locomotion events (e.g. high-speed and impacts during racing, jump landing) may contribute to tendinopathies, in vivo recording of gaits kinematic and dynamic parameters is essential for 3D reconstruction and analysis. Objective: To propose a 3D model of the forelimb and a ground reaction force recording shoe (GRF-S) for noninvasively quantifying tendon and ligament loads and strains. Methods: Bony segments trajectories of forelimbs placed under a power press were recorded using triads of ultrasonic kinematic markers linked to the bones. Compression cycles (from 500-6000 N) were ap...
Three-dimensional analysis of patterns of skin displacement over the equine radius.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 665-670 doi: 10.2746/0425164044848118
Sha DH, Mullineaux DR, Clayton HM.Surface markers are usually used to track bone movement. However, skin movement related to the bone has a large effect on the analysis of skeletal kinematics. A 2-dimensional (2D) skin displacement correction model has been successfully developed, but no 3D skin displacement model exists. Objective: To develop a 3-dimensional (3D) skin displacement model for the equine radial segment during trot. Methods: The 3D trajectories of 6 skin-based markers and a bone-fixed triad were captured at trot in 4 horses. Skin displacements in the bone-based coordinate system were calculated using a singular-v...
Relationships between fore- and hindlimb ground reaction force and hoof deceleration patterns in trotting horses.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 737-742 doi: 10.2746/0425164044848136
Gustås P, Johnston C, Roepstorff L, Drevemo S, Lanshammar H.The transmission of shockwaves following hoof impact is proposed to be one major source of stress to the limb. In the forelimb, there are indications that the period of horizontal deceleration of the hoof is related to the attenuation of shockwaves. In the hindlimb, information about the hoof deceleration has been lacking. Objective: To compare hoof deceleration patterns between the fore- and hindlimbs. Methods: Seven Standardbreds were trotted by hand over a force plate covered with sand, with triaxial accelerometers mounted on the fore and hind hooves. Variables representative of deceleratio...
Three-dimensional carpal kinematics of trotting horses.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 671-676 doi: 10.2746/0425164044848037
Clayton HM, Sha D, Stick JA, Mullineaux DR.Descriptions of 3D kinematics assist in understanding joint function and dysfunction, and are an essential step toward 3D inverse dynamic analysis. Objective: To measure 3D carpal joint motion during trotting. Methods: Three-dimensional trajectories of bone-fixed markers on the radius and third metacarpus of the right forelimb of 3 healthy horses were recorded at 120 Hz using a 6-camera analysis system. Joint kinematics were calculated in terms of helical angles between the 2 segments using a spatial attitude method. Results: All horses showed carpal extension and internal rotation of the meta...
Influence of the load of a rider or of a region with increased stiffness on the equine back: a modelling study.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 703-705 doi: 10.2746/0425164044848091
Peham C, Schobesberger H.Knowledge of load effects is crucial for the understanding of the aetiology and pathogenesis of equine back problems. Objective: To investigate different load scenarios of the equine back, such as being ridden or increased muscle tone, using biomechanical simulations. Methods: Kinetic and kinematic data of 15 sound horses and the electromyelograph of their long back muscles were recorded. A biomechanical simulation model was used for simulations under different biomechanical scenarios (ridden/unridden, localised increased stiffness) using ADAMS. Results: The vertical forces acting through a ri...
Kinematic evaluation of the back in the sport horse with back pain.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 707-711 doi: 10.2746/0425164044848226
Wennerstrand J, Johnston C, Roethlisberger-Holm K, Erichsen C, Eksell P, Drevemo S.Earlier studies have developed a clinical tool to evaluate objectively the function of the equine back. The ability to differentiate horses with back pain from asymptomatic, fully functioning horses using kinematic measures from this tool has not been evaluated. Objective: To compare the kinematics of the back at walk and trot in riding horses with back dysfunction to the same parameters in asymptomatic sport horses. Methods: The kinematics of the back in 12 horses with impaired performance and back pain were studied at walk and trot on a treadmill. Data were captured for 10 sees at 240 Hz. Ra...
The influence of head and neck position on kinematics of the back in riding horses at the walk and trot.
Equine veterinary journal    January 18, 2005   Volume 37, Issue 1 7-11 doi: 10.2746/0425164054406928
Rhodin M, Johnston C, Holm KR, Wennerstrand J, Drevemo S.A common opinion among riders and in the literature is that the positioning of the head and neck influences the back of the horse, but this has not yet been measured objectively. Objective: To evaluate the effect of head and neck position on the kinematics of the back in riding horses. Methods: Eight Warmblood riding horses in regular work were studied on a treadmill at walk and trot with the head and neck in 3 different predetermined positions achieved by side reins attached to the bit and to an anticast roller. The 3-dimensional movement of the thoracolumbar spine was measured from the posit...
Three-dimensional kinematics of the equine distal forelimb: effects of a sharp turn at the walk.
Equine veterinary journal    January 18, 2005   Volume 37, Issue 1 12-18 doi: 10.2746/0425164054406946
Chateau H, Degueurce C, Denoix JM.Sharp turns are suspected to increase expression of several distal forelimb lamenesses even at the walk but the biomechanical consequences of such a movement remain unknown. Objective: To quantify the effects of a sharp turn at the walk on the 3-dimensional movements of the distal segments of the forelimb. Methods: Kinematics of the distal segments were measured in 4 healthy horses invasively with an ultrasonic system. Three-dimensional rotations of the digital joints were calculated by use of a joint coordinate system. Data obtained for a turn at the walk were compared to those obtained in a ...
Passive and active mechanical properties of the superficial and deep digital flexor muscles in the forelimbs of anesthetized Thoroughbred horses.
Journal of biomechanics    January 18, 2005   Volume 38, Issue 3 579-586 doi: 10.1016/j.jbiomech.2004.03.030
Swanstrom MD, Zarucco L, Stover SM, Hubbard M, Hawkins DA, Driessen B, Steffey EP.The superficial (SDF) and deep digital flexor (DDF) muscles are critical for equine forelimb locomotion. Knowledge of their mechanical properties will enhance our understanding of limb biomechanics. Muscle contractile properties derived from architectural-based algorithms may overestimate real forces and underestimate shortening capacity because of simplistic assumptions regarding muscle architecture. Therefore, passive and active (=total - passive) force-length properties of the SDF and DDF muscles were measured directly in vivo. Muscles from the right forelimbs of four Thoroughbred horses we...
Sarcoplasmic masses in equine skeletal muscle.
Neuromuscular disorders : NMD    January 11, 2005   Volume 15, Issue 2 147-153 doi: 10.1016/j.nmd.2004.10.014
Aleman M, Lecouteur RA, Nieto JE, Williams DC, Stanke NJ, Shelton GD.Sarcoplasmic masses in humans have been associated with various myopathies, although the significance remains elusive. Similar structures have also been observed in equine muscle. The aim of this study was to determine the frequency of such structures in normal and abnormal equine muscle, and to characterize these structures using histological, histochemical, immunohistochemical, ultrastructural, and morphometric analyses. The histological and histochemical appearance was similar to that of human sarcoplasmic masses with a central or subsarcolemmal distribution. Of interest was a predilection ...
Contribution of the forelimbs and hindlimbs of the horse to mechanical energy changes in jumping.
The Journal of experimental biology    January 7, 2005   Volume 208, Issue Pt 2 249-260 doi: 10.1242/jeb.01373
Bobbert MF, Santamaría S.The purpose of the present study was to gain more insight into the contribution of the forelimbs and hindlimbs of the horse to energy changes during the push-off for a jump. For this purpose, we collected kinematic data at 240 Hz from 23 5-year-old Warmbloods (average mass: 595 kg) performing free jumps over a 1.15 m high fence. From these data, we calculated the changes in mechanical energy and the changes in limb length and joint angles. The force carried by the forelimbs and the amount of energy stored was estimated from the distance between elbow and hoof, assuming that this part of the le...
Back problems and lameness in horses.
The Veterinary record    December 30, 2004   Volume 155, Issue 23 751-752 
Verheyen K, Wood J.No abstract available
The role of the extrinsic thoracic limb muscles in equine locomotion.
Journal of anatomy    December 22, 2004   Volume 205, Issue 6 479-490 doi: 10.1111/j.0021-8782.2004.00353.x
Payne RC, Veenman P, Wilson AM.Muscles have two major roles in locomotion: to generate force and to absorb/generate power (do work). Economical force generation is achieved by short-fibred pennate muscle while the maximum power output of a muscle is architecture independent. In this study we tested the hypothesis that there is an anatomical and structural separation between the force-generating anti-gravity muscles and the propulsive (limb/trunk moving) muscles of the equine forelimb. Muscle mass and fascicle length measurements were made on the thoracic limb extrinsic muscles of six fresh horse cadavers. Physiological cros...
Articular calcified cartilage canals in the third metacarpal bone of 2-year-old thoroughbred racehorses.
Journal of anatomy    December 22, 2004   Volume 205, Issue 6 491-500 doi: 10.1111/j.0021-8782.2004.00354.x
Boyde A, Firth EC.We describe morphological aspects of the articular calcified cartilage mineralizing front 'tidemark' in the distal joint surface of the third metacarpal bone from 14 horses. Compositional backscattered electron scanning electron microscopy and confocal scanning light microscopy were conducted on polymethylmethacrylate (PMMA)-embedded medio-lateral slices. After maceration, scanning electron microscopy (SEM) was used to study the calcified cartilage surface in the 'wedges' intervening between the slices. An anatomically reproducible clustering of canals in the calcified cartilage was found at o...
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