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Topic:Walking

Walking in horses refers to the natural, four-beat gait characterized by a steady, even rhythm where each hoof hits the ground independently. This gait is fundamental for horses, providing a stable and energy-efficient means of locomotion. Walking is not only essential for the horse's daily activities but also plays a significant role in training, rehabilitation, and overall health maintenance. The mechanics of walking can be influenced by factors such as conformation, fitness, and health status. This page includes a collection of peer-reviewed research studies and scholarly articles that explore the biomechanics, physiological effects, and implications of walking in equine health and performance.
The effect of plain, eggbar and 6 degrees-wedge shoes on the distribution of pressure under the hoof of horses at the walk.
New Zealand veterinary journal    May 31, 2007   Volume 55, Issue 3 120-124 doi: 10.1080/00480169.2007.36753
Rogers CW, Back W.To quantify the effect of plain, wedged and eggbar shoes on the distribution of pressure under the hoof of horses at the walk, at selected areas of interest (AOI), to find scientific evidence for the perceived efficacy of these shoes in the treatment of palmar heel pain. Methods: Six clinically sound adult Warmblood mares weighing 551 (SD 25) kg were shod (forelegs) with either plain, eggbar or 6 degrees-wedge shoes using a latin-square experimental design. All horses were shod by the same farrier, and each balanced and aligned for its individual conformation. Data were collected on three walk...
Gait pattern of the ataxic horse compared to sedated and nonsedated horses.
Equine veterinary journal. Supplement    April 4, 2007   Issue 36 423-426 doi: 10.1111/j.2042-3306.2006.tb05580.x
Strobach A, Kotschwar A, Mayhew IG, Peham C, Licka T.Equine ataxia is routinely evaluated subjectively by clinicians; however, objective measurements of the movement and coordination of ataxic horses have not been reported. Objective: To document the movement pattern of ataxic horses and compare the results to the movement of neurologically sound horses with, and without, sedation. Methods: Seventeen ataxic horses were evaluated walking and trotting on a treadmill using a 3D high speed video system. From the horizontal movement of hoof markers the autocorrelation function (ACF) of the left forelimb and the cross correlation function (CCF) betwee...
3D kinematics of the interphalangeal joints in the forelimb of walking and trotting horses.
Veterinary and comparative orthopaedics and traumatology : V.C.O.T    March 17, 2007   Volume 20, Issue 1 1-7 
Clayton HM, Sha DH, Stick JA, Robinson P.The objective was to measure 3D rotations of the distal (DIP) and proximal (PIP) interphalangeal joints at walk and trot. 3D trajectories of markers fixed to the proximal phalanx, middle phalanx and the hoof wall of the right forelimb of four sound horses were recorded at 120 Hz. Joint kinematics were calculated in terms of anatomically-based joint coordinate systems between the bone segments. Ranges of motion were similar at walk and trot. Values for the DIP joint were: flexion/extension: 46 +/- 3 degrees at walk, 47 +/- 4 degrees at trot; internal/external rotation: 5 +/- 1 degrees at walk, ...
Evaluation of three-dimensional kinematics of the distal portion of the forelimb in horses walking in a straight line.
American journal of veterinary research    April 14, 2004   Volume 65, Issue 4 447-455 doi: 10.2460/ajvr.2004.65.447
Chateau H, Degueurce C, Denoix JM.To develop a method that allows quantification of the 3 anatomic rotations in the digital joints of moving horses and measure these rotations when horses are walking in a straight line on a hard track. Methods: 4 healthy French Trotter horses. Methods: Triads of ultrasonic kinematic markers were surgically linked to the 4 distal segments of the digits of the left forelimb of each horse. Three-dimensional (3-D) coordinates of these markers were recorded in horses walking in a straight line. The three angles of rotation of each digital joint were calculated by use of a joint coordinate system as...
Effect of walking velocity on forelimb kinematics and kinetics.
Equine veterinary journal. Supplement    October 31, 2002   Issue 34 325-329 doi: 10.1111/j.2042-3306.2002.tb05441.x
Khumsap S, Clayton HM, Lanovaz JL, Bouchey M.A database of biomechanical variables obtained from normal horses walking at a range of velocities is needed for comparison with the variables obtained from lame horses in which velocity cannot be predetermined. The objective was to investigate velocity-dependent changes in selected kinematic variables, ground reaction forces (GRF) and net joint energies in the forelimb and to develop statistical equations to calculate expected values of these variables for horses walking at different velocities. Five sound horses walked at a range of velocities (0.82 to 1.91 m/s) over a force plate. Kinematic...
Effect of walking velocity on hindlimb kinetics during stance in normal horses.
Equine veterinary journal. Supplement    November 28, 2001   Issue 33 21-26 doi: 10.1111/j.2042-3306.2001.tb05352.x
Khumsap S, Clayton HM, Lanovaz JL.The objectives of this study were to measure the effect of walking velocity on net joint moments and joint powers in the hindlimb during stance and to use the data to predict these variables at different walking velocities. Videographic and force data were collected synchronously from 5 sound horses walking over a force plate at a range of velocities. Force and kinematic data from 56 trials were combined using an inverse dynamic solution to determine net joint moments and joint powers. Analysis by simple regression and correlation (P or = 0.30, r > 0.50) showed that, in early stance, there...
Methodology and validity of assessing kinematics of the thoracolumbar vertebral column in horses on the basis of skin-fixated markers.
American journal of veterinary research    March 30, 2001   Volume 62, Issue 3 301-306 doi: 10.2460/ajvr.2001.62.301
Farber M, Schamhardt H, van Weeren R, Barneveld A.To determine the validity of using skin-fixated markers to assess kinematics of the thoracolumbar vertebral column in horses. Methods: 5 Dutch Warmblood horses without abnormalities of the vertebral column. Methods: Kinematics of T6, T10, T13, T17, L1, L3, L5, S3, and both tuber coxae were determined by use of bone-fixated and skin-fixated markers. Three-dimensional coordinate data were collected while horses were walking and trotting on a treadmill. Angular motion patterns were calculated and compared on the basis of 2-dimensional analysis of data from skin-fixated markers and 3-dimensional a...
The forelimb in walking horses: 1. Kinematics and ground reaction forces.
Equine veterinary journal    August 22, 2000   Volume 32, Issue 4 287-294 doi: 10.2746/042516400777032237
Hodson E, Clayton HM, Lanovaz JL.Video (60 Hz) and force (2000 Hz) data were collected from 5 sound horses during walking. Forelimb data were analysed for 8 strides (4 left, 4 right) per horse to determine sagittal plane kinematics and ground reaction forces (GRFs). The results suggested that brachial rotation was responsible for protraction and retraction of the limb as a whole, while rotations of the scapula and antebrachium elevated the distal limb during breakover and early swing then lowered it in preparation for ground contact. The coffin joint was flexed maximally at the time of peak longitudinal braking force, which o...
EMG activity of the muscles of the neck and forelimbs during different forms of locomotion.
Equine veterinary journal. Supplement    February 5, 2000   Issue 30 231-234 doi: 10.1111/j.2042-3306.1999.tb05224.x
Tokuriki M, Ohtsuki R, Kai M, Hiraga A, Oki H, Miyahara Y, Aoki O.We recorded the electromyographic (EMG) activity of 7 skeletal muscles in the forequarters and 1 in the hindquarters of 6 Thoroughbred horses during overground walking, swimming in a circular pool, and walking and trotting in a water treadmill. Bipolar fine wire electrodes were inserted into the muscles and the EMG signals were recorded using a telemetric system. The splenius exhibited tonic EMG activity during swimming. The brachiocephalicus showed its highest intensity during swimming followed by the walk and trot in the water treadmill and then walking overground. The triceps brachii caput ...
Effect of longeing and glucosamine supplementation on serum markers of bone and joint metabolism in yearling quarter horses.
Canadian journal of veterinary research = Revue canadienne de recherche veterinaire    October 26, 1999   Volume 63, Issue 4 288-291 
Fenton JI, Orth MW, Chlebek-Brown KA, Nielsen BD, Corn CD, Waite KS, Caron JP.The effect of longeing and glucosamine supplementation on known biological markers of joint disease was studied in yearling quarter horses. Twenty-one yearling quarter horses were randomly assigned to one of 4 treatments: 1) longeing (longeing 20 min daily) supplement control (LN); 2) longeing/glucosamine (LG); 3) walking (mechanical walker for 120 min daily (WN)); and 4) walking/glucosamine (WG). Oral glucosamine was administered at 5.5 g b.i.d. weeks 1-4, 3.5 g b.i.d. during weeks 5-6, and 2.0 g b.i.d. during weeks 7-8. Serum was obtained weekly for 8 wk and analyzed for keratan sulfate and ...
Effect of an equine-movement therapy program on gait, energy expenditure, and motor function in children with spastic cerebral palsy: a pilot study.
Developmental medicine and child neurology    January 9, 1999   Volume 40, Issue 11 754-762 doi: 10.1111/j.1469-8749.1998.tb12344.x
McGibbon NH, Andrade CK, Widener G, Cintas HL.The purpose of this study was to evaluate the effects of an 8-week program of hippotherapy on energy expenditure during walking; on the gait dimensions of stride length, velocity, and cadence; and on performance on the Gross Motor Function Measure (GMFM) in five children with spastic cerebral palsy (CP). A repeated-measures within-subjects design was used consisting of two baseline measurements taken 8 weeks apart, followed by an 8-week intervention period, then a posttest. After hippotherapy, all five children showed a significant decrease (X2(r)=7.6, P<0.05) in energy expenditure during walk...
Joint moments and power in equine gait: a preliminary study.
Equine veterinary journal. Supplement    May 1, 1997   Issue 23 33-36 doi: 10.1111/j.2042-3306.1997.tb05049.x
Colborne GR, Lanovaz JL, Sprigings EJ, Schamhardt HC, Clayton HM.A method is described for the estimation of joint moments of force and power in the equine forelimb using S-VHS video and force platform data. Video and force data were collected for 5 walking trials in a sound Dutch Warmblood horse. The sagittal plane positional and angular data were combined with the vertical and cranio-caudal ground reaction forces to calculate net joint moments of force in the sagittal plane across the carpal, fetlock and coffin joints during the stance phase of the forelimb. The mechanical power was calculated as the product of the netjoint moment and the joint's angular ...
Head and trunk movement adaptations in horses with experimentally induced fore- or hindlimb lameness.
Equine veterinary journal    January 1, 1996   Volume 28, Issue 1 71-76 doi: 10.1111/j.2042-3306.1996.tb01592.x
Buchner HH, Savelberg HH, Schamhardt HC, Barneveld A.The kinematic patterns of head and trunk were studied in horses during induced supporting limb lameness to understand the mechanisms horses use to compensate for lameness and to evaluate different symmetry indices for their significance as lameness indicators. Using the locomotion analysis system CODA-3 the kinematics of 11 clinically nonlame Dutch Warmblood horses were recorded while walking (1.6 m/s) and trotting (3.5 m/s) on a treadmill. A transient lameness model, evoking pressure induced pain on the hoof sole, was used to induce 3 degrees of fore- and hindlimb lameness. Peak vertical disp...
Quantification of skin displacement in the proximal parts of the limbs of the walking horse.
Equine veterinary journal. Supplement    June 1, 1990   Issue 9 110-118 doi: 10.1111/j.2042-3306.1990.tb04746.x
van Weeren PR, van den Bogert AJ, Barneveld A.Displacement of skin over the underlying skeletal structures in the proximal parts of the limbs was investigated in four walking Dutch Warmblood horses. Movement of the skin was visualised with self adhesive spot labels whereas that of the skeletal parts was visualised indirectly by means of a plastic strip connected to a transcutaneous Steinmann pin, driven into the bone of interest. Consistent results for all four horses were found. Individual and mean total displacements ranged from 1 to 4 cm (distal scapula) to 13 to 17 cm (caudal part of the greater trochanter of the femur). Displacements...
Measurements of bone strain in foals with altered foot balance.
American journal of veterinary research    February 1, 1988   Volume 49, Issue 2 261-265 
Firth EC, Schamhardt HC, Hartman W.Two to 7 days after birth, 9 foals were anesthetized, and strain gauges were applied to lateral and medial aspects of the third metacarpal bone of the left forelimb. In 5 of these foals, strain gauges also were applied to the radius of the left forelimb. Four to 6 days later, foals were walked (5 sets of 10 to 20 strides), and compressive and tensile strains in the bone beneath strain gauges were recorded on paper and diskette. After recording base-line data, a wedge was fitted to the hoof of the limb with the strain gauges, in such a way that the lateral bearing surface was raised, and strain...
The ground reaction force pattern from the hindlimb of the horse simulated by a spring model.
Acta anatomica    January 1, 1987   Volume 129, Issue 1 31-33 doi: 10.1159/000146374
van Gurp M, Schamhardt HC, Crowe A.A model consisting of a spring loaded by a time-dependent mass is presented simulating the vertical and longitudinal horizontal ground reaction force patterns obtained from the hindlimb of a walking horse.
Bone strain in the equine tibia: inertia as a cause of the presupport peak.
American journal of veterinary research    May 1, 1984   Volume 45, Issue 5 885-887 
Schamhardt HC, Hartman W, Lammertink JL, Badoux DM.Strain tracings obtained from the tibial cortex of walking ponies reveal peaks in the principal tension and compression strains occurring immediately before and after the support phase. Evidence is presented that the presupport peak is caused by inertial forces.