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Topic:Athletic Horses

The topic of athletic horses encompasses the study and analysis of horses that are trained and conditioned for performance in various disciplines such as racing, show jumping, dressage, and eventing. These horses are subject to specialized training regimens and nutritional plans to optimize their physical capabilities and performance outcomes. Research in this area often focuses on aspects such as biomechanics, cardiovascular fitness, muscle physiology, and injury prevention. This topic includes a collection of peer-reviewed research studies and scholarly articles that explore the physiological adaptations, training methodologies, and health management practices associated with maintaining and enhancing the performance of athletic horses.
[The components of the phenotypic dispersion of the basic typological traits and of work capacity in horses of the Ukrainian saddle breed].
TSitologiia i genetika    January 8, 1999   Volume 32, Issue 3 93-96 
Kotsiubenko AA.The indexes of standardized deviations by the measured characters (probits) are expedient to be used for distribution of horses according to classes M-, M0 and M+, under these conditions one can select individuals M0 for to rise their capacity for work and expressivity of the type of breed.
Effects of exercise and EDTA administration on blood ionized calcium and parathyroid hormone in horses.
American journal of veterinary research    December 19, 1998   Volume 59, Issue 12 1605-1607 
Aguilera-Tejero E, Garfia B, Estepa JC, López I, Mayer-Valor R, Rodríguez M.To determine effects of exercise on blood ionized calcium (Ca2+) and plasma parathyroid hormone (PTH) concentrations in horses and to compare the effects of exercise-induced and EDTA-induced hypocalcemia on PTH secretion. Methods: 17 horses entered in a show jumping competition and 5 horses given EDTA. Methods: Blood Ca2+ and plasma PTH concentrations were measured before and after exercise in the 17 horses entered in the jumping competition. In the other 5 horses, concentrations were measured during infusion of EDTA IV. Results: Exercise resulted in a significant decrease in blood Ca2+ concen...
Angular kinematic patterns of limbs in elite and riding horses at trot.
Equine veterinary journal    December 9, 1998   Volume 30, Issue 6 528-533 doi: 10.1111/j.2042-3306.1998.tb04529.x
Morales JL, Manchado M, Vivo J, Galisteo AM, Agüera E, Miró F.Normal speed videography was used to determine the angular parameters of 28 Spanish Thoroughbreds at trot. Horses were divided into 3 groups: Group UT, comprising 9 animals (provided by the VII National Stud, Cordoba, Spain) which had undergone no specific training programme and which were hand led at the trot; Group T, formed by 19 horses considered to be highly bred and trained, and which were also hand led; and Group RT, comprising the same horses as the latter group but this time trotted by a rider. Each animal was filmed 6 times from the right-hand side, using a Hi8 (25 Hz) video camera. ...
Flat, hurdle and steeple racing: risk factors for musculoskeletal injury.
Equine veterinary journal    December 9, 1998   Volume 30, Issue 6 498-503 doi: 10.1111/j.2042-3306.1998.tb04525.x
Bailey CJ, Reid SW, Hodgson DR, Bourke JM, Rose RJ.A retrospective case-control study was conducted to identify and quantify risk factors for serious musculoskeletal injury sustained at 4 Australian metropolitan racetracks. During the period of study (August 1988-July 1995) there were 196 cases from flat racing, 52 cases from hurdle racing and 53 cases from steeplechases. The incidences of fatal musculoskeletal injuries per start for flat, hurdle and steeple races were 0.06, 0.63 and 1.43% respectively. Logistic regression identified harder track surfaces, horses being older than age 3 years, one racecourse (Flemington) and jumping races as si...
Results of bone scintigraphy in horses used for show jumping, hunting, or eventing: 141 cases (1988-1994).
Journal of the American Veterinary Medical Association    November 26, 1998   Volume 213, Issue 10 1460-1467 
Ehrlich PJ, Seeherman HJ, O'Callaghan MW, Dohoo IR, Brimacombe M.To determine anatomic patterns and clinical importance of increased radiopharmaceutical uptake in bones of horses used for show jumping, hunting, and eventing. Methods: Retrospective study. Methods: 141 horses evaluated because of lameness. Methods: Medical records were reviewed, and information on results of physical examination, radiography, and scintigraphy were obtained. Scintigrams were evaluated to identify areas of increased radio-pharmaceutical uptake. Results: 834 areas of increased radiopharmaceutical uptake were identified. Scintigraphy of the vertebral column was performed in 78 ho...
The influence of speed and height at the withers on the kinematics of sound horses at the hand-led trot.
Veterinary research communications    November 12, 1998   Volume 22, Issue 6 415-423 doi: 10.1023/a:1006105614177
Galisteo AM, Cano MR, Morales JL, Vivo J, Miró F.The influence of speed and height at the withers on some biokinematic stride parameters (linear, temporal and angular) was measured in 15 Spanish Thoroughbreds (Andalusian Purebred) trotted hand-led along a track; analysis was made of the correlation between speed and height at the withers and of some biokinematic parameters of equine locomotion. Both height at the withers and speed were positively and significantly correlated to the linear parameters examined. Temporal parameters did not reveal a significant correlation with the height at the withers. The correlations with the angular paramet...
Speed dependency of motion pattern consistency.
Journal of biomechanics    November 5, 1998   Volume 31, Issue 9 769-772 doi: 10.1016/s0021-9290(98)00040-2
Peham C, Licka T, Mayr A, Scheidl M, Girtler D.Treadmills are widely used in equine motion analysis. For the evaluation of the trot of a horse, a trotting speed with low variation between motion cycles is necessary to make the measurements reproducible. The aim of this study is to show how an individual 'optimum' trotting speed for lameness quantification can be determined. In this study, the stability of a horse's gait pattern was evaluated by calculating the standard deviation (S.D.) of motion-cycle speed (MCS). In trot, eighteen horses were analysed at several speeds. The measurements were taken with the ExpertVision System (Motion Anal...
Physical exercise, oxidative stress and muscle damage in racehorses.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology    October 27, 1998   Volume 119, Issue 4 833-836 doi: 10.1016/s0305-0491(98)10001-9
Chiaradia E, Avellini L, Rueca F, Spaterna A, Porciello F, Antonioni MT, Gaiti A.Since it has been suggested that lipid peroxidation following free radical overproduction may be one of the causes of physical exercise-induced myopathies and hemolysis in horses, we looked for the possible relationships between these phenomena and muscle fiber damage. We use a homogeneous group of Maremmana stallions which, after a 3-month training period, underwent a series of physical exercises of increasing intensity. We determined the contents of malondialdehyde (MDA), one of the main lipid peroxidation end-products, and glutathione the substrate of one of the most important free radical ...
Muscle-tendon stresses and elastic energy storage during locomotion in the horse.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology    October 27, 1998   Volume 120, Issue 1 73-87 doi: 10.1016/s0305-0491(98)00024-8
Biewener AA.The stresses acting in muscle-tendon units and ligaments of the forelimb and hindlimb of horses were determined over a range of speed and gait based on recordings of ground reaction forces and limb kinematics. Maximum stresses of 40-50 MPa were calculated to act in several of the principal forelimb (superficial digital flexor (SDF), deep digital flexor (DDF), ulnaris lateralis (UL) and flexor carpi ulnaris/radialis (FCU/R)) and hindlimb tendons (plantaris, DDF) at the fastest galloping speeds recorded (up to 7.4 m s-1). Smaller stresses were found for the gastrocnemius (GAST) tendon (30 MPa) a...
Is it poor or loss of performance?: the science of explanation.
Equine veterinary journal    October 3, 1998   Volume 30, Issue 5 364-365 doi: 10.1111/j.2042-3306.1998.tb04502.x
Pilsworth R, Rossdale PD, Wood JL.No abstract available
[Traumatology and sports injuries in equestrian acrobatics in the adolescent].
Sportverletzung Sportschaden : Organ der Gesellschaft fur Orthopadisch-Traumatologische Sportmedizin    September 17, 1998   Volume 12, Issue 2 66-70 doi: 10.1055/s-2007-993340
Horstmann T, Heitkamp HC, Mayer F, Hermann M, Küsswetter HW, Dickhuth H.The objective of this study was to compile knowledge of athletic injuries and complaint patterns related specifically to equestrian acrobatics (e.a.). A 20-page standardized questionnaire was sent to 114 e.a. participants. The mean age of the participants in e.a. groups was 15 +/- 3 years, that of independent participants 21 +/- 3 years. A total of 489 injuries was reported, mainly to muscles and tendons (35%), skin (33%) and joints and ligaments (25%). Bone injuries (6%) and head injuries (2%) were infrequent. Analysis of the localization showed that the head-face-neck region was involved in ...
A model equation for the prediction of mechanical internal work of terrestrial locomotion.
Journal of biomechanics    September 4, 1998   Volume 31, Issue 5 463-468 doi: 10.1016/s0021-9290(98)00038-4
Minetti AE.By refining a previously published model, a simple equation for the estimation of the mechanical internal work during locomotion is presented. The only input variables are the progression speed, the stride frequency and the duty factor, i.e. the fraction of the stride duration at which a foot is in contact with the ground. The inclusion of this last variable, easily measurable, allows to obtain a single equation for both walking and running. The model predictions have been compared with the mechanical internal work experimentally obtained on humans in several conditions: speeds (range 0.8-3.3 ...
Selected blood parameters during recovery from strenuous running exertion in trotters.
Zentralblatt fur Veterinarmedizin. Reihe A    August 28, 1998   Volume 45, Issue 5 279-286 doi: 10.1111/j.1439-0442.1998.tb00828.x
Pinkowski W, Mohr E, Krzywanek H.During training, in 10 trotters, blood samples from the vena jugularis were taken before and after a heat with 80% of maximum capability as well as in the recovery period. Lactic acid concentration and pH-value, haematocrit and haemoglobin content, as well as protein concentration and osmolality were measured. With the exception of protein concentration, the time course of the values during the recovery could be described by simple mathematical models (biexponential or exponential equations). Only in the case of blood lactate concentration, the basal value was not yet achieved 120 min after th...
Pegasus joins the jet age.
Australian veterinary journal    August 13, 1998   Volume 76, Issue 7 476-477 doi: 10.1111/j.1751-0813.1998.tb10186.x
Ellis PM.No abstract available
Acclimation and acclimatisation of the equine athlete.
International journal of sports medicine    August 7, 1998   Volume 19 Suppl 2 S164-S166 doi: 10.1055/s-2007-971987
Marlin DJ.A number of studies have clearly shown that the ability of both man and horses to perform a standardised exercise test in hot humid conditions is reduced compared to that in hot dry or cool conditions (see reviews by Maughan and Lindinger, 1995; Lindinger and Marlin, 1995). In man it is clear that a period of acclimation or acclimatisation is beneficial. A search of the literature prior to 1995 indicates no published information relating to the acclimation or acclimatisation of the horse to hot or hot humid environmental conditions. Concerns for the appropriate preparation for and welfare of h...
Rehydration following exercise: effects of administration of water versus an isotonic oral rehydration solution (ORS).
Veterinary journal (London, England : 1997)    August 6, 1998   Volume 156, Issue 1 41-49 doi: 10.1016/s1090-0233(98)80060-9
Marlin DJ, Scott CM, Mills PC, Louwes H, Vaarten J.The effects of administering (1) 6L isotonic oral rehydration solution (ORS), similar in composition to plasma (except for an elevated potassium concentration) and with an osmotic skeleton and (2) 6L water (no osmotic skeleton), were evaluated in five thoroughbred horses following exercise-induced dehydration. The horses were exercised on a treadmill for 10 min at walk (1.7 m.s-1; approximately 15% VO2max), 40 min at trot (3.7 m.s-1; approximately 25% VO2max) and 10 min at walk (1.7 m.s-1; approximately 15% VO2max). Exercise was undertaken on a 3 degrees incline at 30 degrees C/80% RH. Solutio...
Welfare of the competition horse.
The Veterinary record    June 24, 1998   Volume 142, Issue 20 527-529 
No abstract available
High thigh muscle strength but not bone mass in young horseback-riding females.
Calcified tissue international    June 20, 1998   Volume 62, Issue 6 497-501 doi: 10.1007/s002239900468
Alfredson H, Hedberg G, Bergström E, Nordström P, Lorentzon R.To evaluate whether the type of weight-bearing loading subjected to the skeleton during horseback-riding was associated with differences in bone mass and muscle strength of the thigh, we investigated bone mass and isokinetic muscle strength in 20 female horse riders (age 17.9 +/- 0.6 years) who were riding 7.0 +/- 3.4 hours/week, and 20 nonactive females (age 17.8 +/- 1.1 years). The groups were matched according to age, weight, and height. Areal bone mineral density was measured in total body, head, lumbar spine, right femoral neck, Ward's triangle, and trochanter, the whole dominant and nond...
Electromyographic activity of the long digital extensor muscle in the exercising Thoroughbred horse.
Equine veterinary journal    June 11, 1998   Volume 30, Issue 3 251-255 doi: 10.1111/j.2042-3306.1998.tb04496.x
Cheung TK, Warren LK, Lawrence LM, Thompson KN.Surface electrodes were used to record electromyographic (EMG) activity of the long digital extensor muscle on the right hindlimb of 8 Thoroughbred horses for 8 s at the walk and 8 s at the trot before (unfatigued) and after (fatigued) an exercise test. The exercise test was performed on a motorised treadmill set on a 10% grade. Each test started at a speed of 6 m/s which was increased by 1 m/s each minute until the horse fatigued as indicated by its inability to keep pace with the treadmill with minimal encouragement. Observations were made on the horses prior to conditioning (untrained state...
Use of the flexion test in horses.
The Veterinary record    May 7, 1998   Volume 142, Issue 11 288 
Bowles AH.No abstract available
Evaluation of platelet activation and platelet-neutrophil aggregates in Thoroughbreds undergoing near-maximal treadmill exercise.
American journal of veterinary research    May 1, 1998   Volume 59, Issue 4 393-396 
Weiss DJ, Evanson OA, Fagliari JJ, Valberg S.To determine whether platelets become activated and form platelet-neutrophil aggregates during near-maximal treadmill exercise in horses. Methods: 4 Thoroughbreds. Methods: Horses were subjected to 4 standardized exercise tests on a treadmill, and blood samples were collected before exercise, at treadmill speed of 12 m/s, and 5 minutes after exercise. Flow cytometric techniques were used to identify activated platelets, and flow cytometric and microscopic techniques were used to identify platelet-neutrophil aggregates. Results: Platelet-neutrophil aggregates increased from 2.8 +/- 0.4% at rest...
Catecholamine and cortisol responses of horses to incremental exertion.
Veterinary research communications    May 1, 1998   Volume 22, Issue 2 107-118 doi: 10.1023/a:1006027429526
Jimenez M, Hinchcliff KW, Farris JW.The responses of the plasma concentrations of catecholamines and cortisol in horses to varied relative intensities of exertion were examined. The plasma concentrations of cortisol, epinephrine and norepinephrine increased significantly (p < 0.05) with exertion. The plasma cortisol concentrations at relative work intensities of 48.3% +/- 1.4%, 82.3% +/- 2.0% and 99.6% +/- 0.4% of VO2max were 114%, 124%, and 126%, respectively, of those at rest, whereas the plasma epinephrine concentrations were 239%, 772% and 3483%, and the norepinephrine concentrations were 138%, 255%, and 1121% of the valu...
Effect of bilateral blockade of the pharyngeal branch of the vagus nerve on soft palate function in horses.
American journal of veterinary research    May 1, 1998   Volume 59, Issue 4 504-508 
Holcombe SJ, Derksen FJ, Stick JA, Robinson NE.To determine the effect of bilateral blockade of the pharyngeal branch of the vagus nerve on soft palate function in horses. Methods: 5 Standardbreds. Methods: Peak tracheal inspiratory and expiratory pressures and airflow were measured while horses exercised at the speeds corresponding to 75 and 100% of the speed that resulted in maximal heart rate, with and without pharyngeal branch of the vagus nerve blockade. Respiratory frequency-to-stride frequency coupling ratio was measured by correlating foot fall measurements with respiratory frequency. The pharyngeal branch of the vagus nerve was bl...
Treatment of exercise-induced dehydration.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 159-173 doi: 10.1016/s0749-0739(17)30218-3
Sosa León LA.One of the most common consequences of prolonged exercise is fluid and electrolyte depletion. Fluid and electrolyte losses during exercise may limit the horse's performance and, in extreme cases, jeopardize its health. To avoid or treat the deleterious effects of dehydration, fluid and electrolyte supplementation is essential. This article provides recommendations for fluid and electrolyte supplementation for horses involved in endurance-related events.
Treatments affecting fluid and electrolyte status during exercise.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 175-204 doi: 10.1016/s0749-0739(17)30219-5
Schott HC, Hinchcliff KW.A number of feeding and management practices, dietary electrolyte supplements, and medications may affect fluid and electrolyte status in resting and exercising horses. The contents of the gastrointestinal tract of the equine athlete, unlike its human counterpart, are responsible for more than 10% of body weight. Although ingesta traditionally has been considered dead weight for the sprinting horse, it is a valuable reservoir of fluid and electrolytes that may be used during endurance exercise. Numerous strategies for hyperhydration of the equine athlete and for replacement of fluid and electr...
Sweating. Fluid and ion losses and replacement.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 75-95 doi: 10.1016/s0749-0739(17)30213-4
McCutcheon LJ, Geor RJ.In the horse, sweat is produced by apocrine glands which are present over most haired and nonhaired skin. Although sweat secretion is initiated under a number of circumstances, the central drive for sweating in response to a thermal stimulus is the primary mechanism for its production. Sweating is an essential and primary mechanism for heat dissipation during exercise or exposure to hot ambient conditions. The rate of sweat production will reflect the interaction of numerous factors, including exercise intensity, ambient conditions, state of hydration, and the training or heat acclimation stat...
Fluid and electrolyte balance in endurance horses.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 147-158 doi: 10.1016/s0749-0739(17)30217-1
Flaminio MJ, Rush BR.In horses, fluid losses of 10L to 15L per hour can occur during endurance exercise under hot environmental conditions. The horse's sweat is hypertonic with respect to plasma, and large amounts of sodium, chloride and potassium are lost during prolonged exercise. Horses that reach exhaustive syndrome often show pronounced increases in plasma protein concentration. This could be an indication of failure of the compensatory fluid shift from the intracellular compartment caused by severe dehydration. Thorough physical examination by the ride veterinarian allows early recognition of dehydration and...
Thermoregulatory adaptations associated with training and heat acclimation.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 97-120 doi: 10.1016/s0749-0739(17)30214-6
Geor RJ, McCutcheon LJ.The large metabolic heat load generated as a consequence of muscular work requires activation of thermoregulatory mechanisms in order to prevent an excessive and potentially dangerous rise in body temperature during exercise. Although the horse has highly efficient heat dissipatory mechanisms, there are a number of circumstances in which the thermoregulatory system may be overwhelmed, resulting in the development of critical hyperthermia. The risk for development of life-threatening hyperthermia is greatest when (1) the horse is inadequately conditioned for the required level of physical perfo...
Fluid, electrolyte, and acid-base responses to exercise in racehorses.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 121-136 doi: 10.1016/s0749-0739(17)30215-8
Hyyppä S, Pösö AR.During both high-intensity and short-distance exercise, the high rate of expended energy is met by anaerobic oxidation of glucose to lactic acid; this is the main cause of metabolic acidosis observed during racing. In addition, plasma volume decreases because water moves from the vasculature to the intracellular and interstitial spaces at the onset of intense exercise. These fluid shifts, together with active ion-exchange between blood and tissue, cause marked changes in electrolyte concentrations. This article reviews the mechanisms of acid-base disturbances, fluid shifts, and electrolyte cha...
Effect of exercise on acid-base status of horses.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 61-73 doi: 10.1016/s0749-0739(17)30212-2
Kingston JK, Bayly WM.Exercise in horses is associated with a wide variety of physiological changes in fluid, electrolyte and acid base balance. The integration of physiologic and physiochemical mechanisms acts to minimize alterations in pH and enhance removal of carbon dioxide produced by exercising muscles. This article provides a description of the changes that take place during exercise and how these changes affect acid-base balance in the horse.
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