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Topic:Exercise Physiology

Exercise physiology in horses involves the study of the physiological responses and adaptations of horses to physical activity. This field examines how exercise impacts various systems in the equine body, including the cardiovascular, respiratory, muscular, and metabolic systems. Researchers focus on understanding how these systems interact during different types and intensities of exercise, and how they contribute to performance and recovery. Key areas of interest include the assessment of aerobic and anaerobic capacity, muscle fiber composition, energy metabolism, and thermoregulation. This page compiles peer-reviewed research studies and scholarly articles that explore the mechanisms of exercise physiology in horses, with an emphasis on performance optimization, training regimens, and the prevention of exercise-related disorders.
Some metabolic effects of maximal exercise in the horse and adaptations with training.
Equine veterinary journal    July 1, 1977   Volume 9, Issue 3 134-140 doi: 10.1111/j.2042-3306.1977.tb04005.x
Snow DH, Mackenzie G.The effects of intermittent maximal exercise (galloping) before and after a 10 week training programme were studied in 6 horses. Determinations were carried out on venous blood for packed cell volume, total plasma protein, glucose, glycerol, free fatty acids, lactate, 11-hydroxycorticosteroids, blood gases and pH. There were marked changes associated with galloping and some of these could be modified with training. The major findings included (i) an elevated blood glucose, (ii) a large increase in glycerol, which was greatest at 30 min post-exercise and was higher following training, (iii) sma...
The effect of training and detraining on muscle composition in the horse.
The Journal of physiology    July 1, 1977   Volume 269, Issue 1 33-51 doi: 10.1113/jphysiol.1977.sp011891
Guy PS, Snow DH.1. Percutaneous needle biopsies were obtained from six limb muscles in six horses before and during a training programme of 10 or 15 weeks designed to involve both aerobic and anaerobic work. In a subsequent detraining period, biopsies were also taken after 5 and 10 weeks. 2. Samples were analysed biochemically for enzyme activity of lactic dehydrogenase (LDH), creatine phosphokinase (CPK), aldolase (ALD), citrate synthase (CS), aspartate aminotransferase (AST), and alanine aminotransferase (ALT) and for glycogen content. Fibre typing was carried out histochemically before and 10 weeks after c...
Training and exercise change respiratory properties of blood in race horses.
Respiration physiology    May 1, 1977   Volume 29, Issue 3 315-325 doi: 10.1016/0034-5687(77)90006-8
Lykkeboe G, Schugaard H, Johansen K.Effects of training and exercise on blood respiratory properties were investigated in standard-bred race horses. Training caused an increase in the circulating O2 capacity at rest from 18.4 to 21.0 vol%, and in the O2 capacity during exercise from 24.9 to 30.3 vol%. An increase in the in vitro oxygen affinity [P50(PH 7.4, 37.9 degrees C)] of about 2 mm Hg correlated with a decrease in the red cell concentration of 2,3-diphosphoglycerate (DPG) from 6.35 mM-1-1(E), erythrocytes. Trained horses also showed an acute lowering of the red cell DPG concentration after maximal exercise. The physiologic...
Biochemical and physiological effects of catecholamine administration in the horse.
Research in veterinary science    May 1, 1977   Volume 22, Issue 3 357-360 
Anderson MG, Aitken MM.Adrenaline was given intramuscularly to resting horses. It increased heart rate, sweating, blood levels of lactic dehydrogenase, aldolase, creatine kinase, glucose, lactate, free fatty acids and glycerol. Responses to isoprenaline, to noradenaline and to adrenaline after pretreatment with propranolol indicated that beta receptors were involved in stimulation of tachycardia, sweating, lipolysis and muscle glycogenolysis, and alpha receptors in stimulation of liver glycogenolysis and leakage of intracellular enzymes. The time course and relative magnitude of the effects on different enzymes was ...
The effect of training and detraining on lactate dehydrogenase isoenzymes in the horse.
Biochemical and biophysical research communications    April 25, 1977   Volume 75, Issue 4 863-869 doi: 10.1016/0006-291x(77)91462-0
Guy PS, Snow DH.No abstract available
Exercise studies in horses: 1. A simple telemetry system for recording excercise ECGs in horses.
Equine veterinary journal    April 1, 1977   Volume 9, Issue 2 72-74 doi: 10.1111/j.2042-3306.1977.tb03984.x
Hill G, Atkins R, Littlejohn A, Kruger JM, Bowles F.A robust low cost portable radiotelemetry system is described for the horse and its method of operation and advantages briefly discussed. The equipment consisted of 2 electrodes forming a bipolar lead, a transmitter, a receiver and a writing device. The sitting, application and immobilising of the electrodes was a most important factor in obtaining good quality recordings. ECGs were recorded at all paces and also while jumping and the results proved satisfactory.
Digestible energy requirements of working and non-working ponies.
Journal of animal science    April 1, 1977   Volume 44, Issue 4 585-589 doi: 10.2527/jas1977.444585x
Barth KM, Williams JW, Brown DG.No abstract available
Exercise studies in horses: 2. The cardiac response to exercise in normal horses and in horses with chronic obstructive pulmonary disease.
Equine veterinary journal    April 1, 1977   Volume 9, Issue 2 75-83 doi: 10.1111/j.2042-3306.1977.tb03986.x
Littlejohn A, Kruger JM, Bowles F.The relationship of velocity (v) to heart rate (HR)and of kinetic energy (KE) to heart rate, were investigated in 6 normal horses and in 6 horses with chronic obstructive pulmonary, disease (COPD). Radiotelemetry was used to determine the heart rate while subjects were ridden on a 400m track. Velocity was measured by stop-watch between 2 markers 50 m apart at the end of the track. Kinetic energy was calculated from the formula KE =1/2 Mv2, where M = mass of horse, rider, saddle and bridle (KG) and V = velocity (metres per second). In all subjects, the relationship of velocity to heart rate was...
Competitive trail and endurance riding in the UK.
The Veterinary record    March 5, 1977   Volume 100, Issue 10 192-194 doi: 10.1136/vr.100.10.192
Hall-Patch PK, Orton RG, Sampson JH.A description is given of trail and endurance riding in the UK as controlled by the Endurance Horse and Pony Society. Veterinary involvement and responsibility are described and measures for their satisfactory execution discussed. Opportunities and need for research into the problems arising are mentioned.
[Effect of training on exertion-dependent blood parameters in trotters].
Berliner und Munchener tierarztliche Wochenschrift    March 1, 1977   Volume 90, Issue 5 89-92 
Krzywanek VH, Wittke G, Schulze A.No abstract available
Respiratory rates and endurance rides.
The Veterinary record    February 5, 1977   Volume 100, Issue 6 121 doi: 10.1136/vr.100.6.121-a
Orton RG.No abstract available
Cardiovascular effects of exercise and training in horses.
Advances in veterinary science and comparative medicine    January 1, 1977   Volume 21 173-205 
von Engelhardt W.No abstract available
Chronic bronchitis and alveolar emphysema in the horse.
The Veterinary record    December 4, 1976   Volume 99, Issue 23 448-451 doi: 10.1136/vr.99.23.448
Cook WR.Broken wind is a syndrome characterised by chronic bronchitis and alveolar emphysema. Clinical signs include nasal catarrh, persistent coughing, dyspnoea and poor exercise tolerance. In racehorses, lung haemorrhages may result in epistaxis. Broken wind is a disease of domestication ascribed to pollution of the stable air with fungal spores from hay and straw. Treatment and prevention are based on the provision of fresh air and, if housing is unavoidable, the adoption of a permanent regime of dust-free stable management. If an early diagnosis is made and appropriate treatment instituted, the pr...
Effects of training on resting and postexercise ECG in standardbred horses, using a standardized exercise test.
American journal of veterinary research    December 1, 1976   Volume 37, Issue 12 1485-1488 
Skarda RT, Muir WW, Milne DW, Gabel AA.Five healthy, mature, previously trained Standardbred horses were given no exercise (left in a stall) for 4 months, then jogged (slow exercise) for 3 weeks, and placed in a 6-week training period. Cardiac variables were measured at the beginning of training and after 14, 20, 35, and 42 days of training before and at 10, 15, 20, 25, and 30 minutes after a 1.8-km (in 3:12 +/- 2 seconds) standard, submaximal exercise test on a deep 0.53-km track. There was no significant change during the 6-week conditioning period in the following variables at rest or at any of the times observed during recovery...
Force plate studies of equine biomechanics.
American journal of veterinary research    November 1, 1976   Volume 37, Issue 11 1251-1255 
Pratt GW, O'Connor JT.The force plate can measure a wide range of effects in the horse. The same instrument can record forces from more than a ton in the galloping animal to 25 g associated with the action of the heart. In all probability, the force plate will develop into a valuable clinical instrument.
Percutaneous needle muscle biopsy in the horse.
Equine veterinary journal    October 1, 1976   Volume 8, Issue 4 150-155 doi: 10.1111/j.2042-3306.1976.tb03327.x
Snow DH, Guy PS.The use of the technique of percutaneous needle biopsy in obtaining skeletal muscle samples in the horse is described. The biochemical, ultrastructural and histochemical investigations that can be carried out on this biopsy specimen are outlined. Analyses performed on the specimen may be used to obtain information on racing potential and state of fitness. These studies on normal horses will provide information for future investigations into the structural and biochemical alterations in muscle disorders in the equine.
[Single-lead bipolar electrocardiography in the diagnosis of heart diseases].
Veterinarni medicina    October 1, 1976   Volume 21, Issue 10 633-640 
Hanák J, Chvátal O, Janda J.Sixty seven thoroughbred race horse of various age categories were examined electrocardiographically by bipolar leak-apex of the heart -- withers; length of training corresponded to the age categories. Basic time and voltage criteria of EKG were statistically evaluated according to electrocardiographic curves: TF = 35.1 = %/- 6.82 pulses per min., time P = 0.16 +/- 0.03 sec., PQ = 0.03 +/- 0.04 sec., QRS = 0.12 +/- +/- 0.01 sec., TQc = 0.50 sec., R = 2.83 +/- 0.63 mV, Q = 0.38 +/- 0.31 mV. Repolarization phase of the chamber complex, mainly the T wave, is the most variable component of the who...
[Sport for therapy and rehabilitation–especially riding therapy].
Zeitschrift fur Orthopadie und ihre Grenzgebiete    August 1, 1976   Volume 114, Issue 4 690-691 
Hengst C.No abstract available
Effects of training on biochemical values in standardbred horses.
American journal of veterinary research    March 1, 1976   Volume 37, Issue 3 285-290 
Milne DW, Skarda RT, Gabel AA, Smith LG, Ault K.Effects of training at a regular, fixed, standard exercise load on venous lactic acid, mixed venous and arterial blood gases and pH, and serum muscle enzymes were determined on previously unconditioned, healthy, adult, Standardbred horses. Arterial and mixed venous blood gases, pH, and serum muscle enzymes did not change in a consistent manner during training. Venous lactic acid concentrations did increase significantly with training and may be of value for the biochemical evaluation of fitness in horses.
Acid-base values of standardbred horses recovering from strenuous exercise.
American journal of veterinary research    March 1, 1976   Volume 37, Issue 3 291-294 
Krzywanek H, Milne DW, Gabel AA, Smith LG.Blood gases, lactic acid concentrations, and pH were measured in arterial and mixed venous blood in moderately conditioned Standardbred horses after a standardized exercise load of 1.6 km in 2 minutes, 40 seconds. Samples were obtained at rest, immediately after exercise, and at 3, 6, 15, 30, and 60 minutes after exercise. Arterial oxygen tension and mixed venous oxygen tension increased after exercise, reaching peak values at 6 minutes. Arterial oxygen tension returned to the resting (preexercise) value by 15 minutes, and mixed venous oxygen tension by 30 minutes. Arterial carbon dioxide tens...
Cardiac monitoring during exercise tests in the horse. 3. Changes in the electrocardiogram during and after exercise.
Australian veterinary journal    January 1, 1976   Volume 52, Issue 1 6-10 doi: 10.1111/j.1751-0813.1976.tb05360.x
Steel JD, Hall MC, Stewart GA.Changes that occur in the equine ECG during and after exercise have been described and compared with resting ECG's obtained from the same horses. When the speed of work equals or is greater than "three-quarter pace" (i.e. "even time" or 200 metres in 15 seconds) the high heart rates developed cause the loss of ECG waveforms that are readily discernible at rest. Although differences in the waveforms between horses with normal and abnormal resting ECG's have been observed, the more definitive useful information is the fact that abnormal horses showed significantly higher heart rates than normal ...
[Activator of potassium permeability and peroxidase inhibitor in the serum of horses subjected to physical stress].
Nauchnye doklady vysshei shkoly. Biologicheskie nauki    January 1, 1976   Issue 11 28-30 
Alekseev MIu, Fedotcheva NI, Mironova GD, Kondrashova MN.No abstract available
Cardiac monitoring during exercise tests in the horse. 2. Heart rate responses to exercise.
Australian veterinary journal    January 1, 1976   Volume 52, Issue 1 1-5 doi: 10.1111/j.1751-0813.1976.tb05358.x
Hall MC, Steel JD, Stewart GA.Data on resting heart rates, pre-exercise heart rates, the anticipatory rises before exercise, the influence of speed of work and recovery heart rates have been presented. Some observations on differences in the heart rate response on slow and fast working days are also recorded. In conformity with other workers, a linear relationship between heart rate and working speed within the range of 400-800 metre/min was observed. When the speed of work was between 400-800 metre/min, horses with resting ECG's classed as abnormal had significantly higher heart rates than those regarded as normal. It was...
Circulatory effects of splenectomy in the horse. IV. Effect on blood flow and blood lactate at rest and during exercise.
Zentralblatt fur Veterinarmedizin. Reihe A    December 1, 1975   Volume 22, Issue 10 801-807 
Persson SG, Bergsten G.No abstract available
Cardiac monitoring during exercise tests in the horse. 1. Magnetic tape recording in preference to radio-telemetry.
Australian veterinary journal    December 1, 1975   Volume 51, Issue 12 547-553 doi: 10.1111/j.1751-0813.1975.tb09377.x
Hall MC, Fenelon AR, McDonald RD, Steel JD.Different techniques for monitoring cardiac responses to exercise in the horse have been described and evaluated. For experimental work of this type in a normal training and racing environment, the electrode system described when used with a portable magnetic tape recording system provided the best means of obtaining useful and reproducible data.
Electrocardiographic anomalies in the racehorse.
New Zealand veterinary journal    November 1, 1975   Volume 23, Issue 11 262-269 doi: 10.1080/00480169.1975.34256
Irvine CH.No abstract available
Adaptations of skeletal muscle that favour athletic ability.
New Zealand veterinary journal    November 1, 1975   Volume 23, Issue 11 249-254 doi: 10.1080/00480169.1975.34253
Gunn HM.No abstract available
Using body size to understand the structural design of animals: quadrupedal locomotion.
Journal of applied physiology    October 1, 1975   Volume 39, Issue 4 619-627 doi: 10.1152/jappl.1975.39.4.619
McMahon TA.Many parameters of gait and performance, including stride frequency, stride length, maximum speed, and rate of O2 uptake are experimentally found to be power-law functions of body weight in running quadrupeds. All of these parameters are reasonably easy to measure except maximum speed, where the question arises whether one means top sprinting speed or top speed for sustained running. Moreover, differences in training and motivation make comparisons of top speed difficult. The problem is circumvented by comparing animals running at the transition between trotting and galloping, a physiologicall...
[Ultrastructural and enzyme studies on trained and untrained horse muscles].
Schweizer Archiv fur Tierheilkunde    August 1, 1975   Volume 117, Issue 8 453-457 
Straub R, Howald H, Gerber H, Diehl M, Pauli B.No abstract available
The influence of exercise on serum enzyme levels in the horse.
Equine veterinary journal    July 1, 1975   Volume 7, Issue 3 160-165 doi: 10.1111/j.2042-3306.1975.tb03258.x
Anderson MG.A group of clinically normal horses was subjected to controlled strenuous exercise. Elevated serum concentrations of lactic dehydrogenase, aldolase and creatine kinase were observed after exercise but no significant change in serum glutamic-oxalacetic transaminase was noted. These changes were reduced by repeated exposure to exercise suggesting that measurement of serum enzyme elevations, particularly creatine kinase, might be a useful index of fitness in the horse. Administration of prednisolone prior to exercise also reduced these changes. Since the serum enzyme concentrations had returned t...