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Topic:Kinesiology

Kinesiology in horses involves the study of movement and mechanics in equine bodies, focusing on how muscles, bones, tendons, and ligaments work together during various activities. This field examines the biomechanics of equine locomotion, analyzing gait patterns and the efficiency of movement. Researchers in equine kinesiology investigate factors influencing performance, injury prevention, and rehabilitation strategies. The study of kinesiology in horses contributes to understanding how physical forces affect equine anatomy and physiology. This page compiles peer-reviewed research studies and scholarly articles that explore the principles, applications, and implications of kinesiology in equine health and performance.
Physiotherapy applied to the horse: a review.
Equine veterinary journal    November 28, 2006   Volume 38, Issue 6 574-580 doi: 10.2746/042516406x153247
Buchner HH, Schildboeck U.No abstract available
Coordination dynamics of the horse-rider system.
Journal of motor behavior    November 11, 2005   Volume 37, Issue 6 418-424 doi: 10.3200/JMBR.37.6.418-424
Lagarde J, Kelso JA, Peham C, Licka T.The authors studied the interaction between rider and horse by measuring their ensemble motions in a trot sequence, comparing 1 expert and 1 novice rider. Whereas the novice's movements displayed transient departures from phase synchrony, the expert's motions were continuously phase-matched with those of the horse. The tight ensemble synchrony between the expert and the horse was accompanied by an increase in the temporal regularity of the oscillations of the trunk of the horse. Observed differences between expert and novice riders indicated that phase synchronization is by no means perfect bu...
Equine ergonomics: a new era?
Equine veterinary journal    January 18, 2005   Volume 37, Issue 1 4-6 doi: 10.2746/0425164054406793
van Weeren PR.No abstract available
[Horseback riding therapy in development of motor skills in infantile cerebral palsy].
Voprosy kurortologii, fizioterapii, i lechebnoi fizicheskoi kultury    February 21, 2003   Issue 6 45-47 
Ionatamishvili NI, Tsverava DM, Loria MSh, Avaliani LA, Chkhikvishvili TsSh.No abstract available
Biomechanics: A catapult action for rapid limb protraction.
Nature    January 4, 2003   Volume 421, Issue 6918 35-36 doi: 10.1038/421035a
Wilson AM, Watson JC, Lichtwark GA.No abstract available
The advance of clinical biomechanics.
Equine veterinary journal    September 18, 2001   Volume 33, Issue 5 430-432 doi: 10.2746/042516401776254754
Buchner HH.No abstract available
An objective method for evaluating the flexibility of the back of standing horses.
Equine veterinary journal    October 3, 1998   Volume 30, Issue 5 412-415 doi: 10.1111/j.2042-3306.1998.tb04511.x
Licka T, Peham C.The spinal movements in maximum arching, dipping and left and right lateral flexion were measured in 10 horses without signs of back pain. A system for motion analysis (Expert Vision System) was used to identify the position of the markers placed on the head, the spinous processes of T5, T10, T16, L3, and on 2 of the sacral spines. By definition, the maximum of the spinal movement was set when the T16 marker reached its maximum deviation from the start position. The difference between start position and maximum position was presented as per cent of the horse's height at the withers. At T16 the...
Strains fall mainly on the transverse plane.
The Canadian veterinary journal = La revue veterinaire canadienne    July 1, 1997   Volume 38, Issue 7 448 
Farrow CS.No abstract available
Recommended terminology for researchers in locomotion and biomechanics of quadrupedal animals.
Acta anatomica    January 1, 1993   Volume 146, Issue 2-3 130-136 doi: 10.1159/000147434
Leach D.This paper summarizes recommendations for terminology to be used in the description of quadrupedal locomotion and selected aspects of biomechanics. Directional terms and planes of the body (anatomical position, spatial reference systems), joint angulation, conformation, general locomotion terminology, phases of the stride and limb cycle (e.g. step, cadence) and terminology for the description of jumping are described.
Common horse sense.
Scientific American    October 1, 1991   Volume 265, Issue 4 12 
Heinrich B.This research article corrects a common misconception about the energy metabolism in horses during short sprinting and long-distance running events, emphasizing that short sprints are primarily powered by anaerobic activity, […]
Centre of gravity and the analysis of lame gaits.
Equine veterinary journal    January 1, 1986   Volume 18, Issue 1 2-3 doi: 10.1111/j.2042-3306.1986.tb03522.x
Leach D.No abstract available
Symposium on exercise physiology.
The Veterinary clinics of North America. Equine practice    December 1, 1985   Volume 1, Issue 3 437-617 
No abstract available
Joint measurement scheme.
The Veterinary record    February 11, 1984   Volume 114, Issue 6 150 doi: 10.1136/vr.114.6.150-b
Hull PN.No abstract available
Biokinetical analysis of the movements of the pelvic limb of the horse and the role of the muscles in the walk and the trot.
Anatomy and embryology    February 20, 1978   Volume 152, Issue 3 261-272 doi: 10.1007/BF00350524
Wentink GH.The movements of the right hind limb of horses with normal locomotion were studied using cinephotography and electromyography. A model of the cycle of a stride in the walk and the trot was constructed and the kinetic parameters of the segments of the limb were calculated. A good correlation was obtained between the kinetics and the periods of the cycle of a stride during which individual muscles display activity. The results of this study demonstrate that: at placing and lifting, i.e., when a change occurs in the direction of the movement of the limb; b) At the walk, the greatest forces operan...
[Scientific fundamentals of hippo- and riding therapy – a compilation of study results (author’s transl)].
Die Rehabilitation    February 1, 1978   Volume 17, Issue 1 15-19 
Rieger C.The article surveys some of the scientific fundamentals of hippo- and riding therapy, and its methods using the characteristic horseback three dimensional rhythmic movement impulses for its therapeutic values, particularly in cerebral palsy. The influence of riding on posture and balance reactions, position of the pelvic, postures of head and trunk as well as rotatory movements was demonstrated in film studies using the cerebral palsied with different syndromes as an example. Electromyographic examinations of antagonistic muscle groups, kinesiologic analyses with the help of a video-recorder, ...
[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...
[Motion analysis in trotting horses using ungulography].
Zentralblatt fur Veterinarmedizin. Reihe A    April 1, 1973   Volume 20, Issue 3 209-221 
Bayer A.No abstract available
Physiotherapy in veterinary medicine.
Physiotherapy    February 1, 1970   Volume 56, Issue 2 53-55 
Lawson DD.No abstract available
Action of certain joints in the legs of the horse recorded electrogoniometrically.
American journal of veterinary research    January 1, 1966   Volume 27, Issue 116 85-89 
Taylor BM, Tipton CM, Adrian M, Karpovich PV.No abstract available