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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.
Oxidant injury and nitric oxide: a role in exercise-induced pulmonary haemorrhage?
Veterinary journal (London, England : 1997)    March 1, 1997   Volume 153, Issue 2 119-121 doi: 10.1016/s1090-0233(97)80032-9
Derksen FJ.No abstract available
Body weight, fluid, electrolyte, and hormonal changes in horses competing in 50- and 100-mile endurance rides.
American journal of veterinary research    March 1, 1997   Volume 58, Issue 3 303-309 
Schott HC, McGlade KS, Molander HA, Leroux AJ, Hines MT.To investigate effects of prolonged exercise on fluid and electrolyte losses in horses competing in 50- and 100-mile endurance competitions, with emphasis on recovery. Methods: Changes in body weight (BW); PCV; serum osmolality; plasma total protein, lactate, aldosterone, and serum electrolyte concentrations; and exchangeable cation content were measured in 12 and 7 horses before and after and before, during, and after successful completion of 50- and 100-mile endurance rides, respectively. Methods: BW was measured by use of a portable load bar scale, and blood samples were collected during th...
Effect of bilateral tenectomy of the tensor veli palatini muscle on soft palate function in horses.
American journal of veterinary research    March 1, 1997   Volume 58, Issue 3 317-321 
Holcombe SJ, Derksen FJ, Stick JA, Robinson NE.To determine the effect of bilateral tenectomy of the tensor veli palatini muscle on soft palate and nasopharyngeal function in exercising horses. Methods: 5 Standardbreds. Methods: Treadmill videoendoscopy was performed on 5 Standardbreds exercising at 50, 75, and 100% of the speed that produced maximum heart rate; tracheal and pharyngeal pressures were measured before and after surgery. Tenectomy of the tensor veli palatini muscle was performed bilaterally on each horse while under general anesthesia, using a transoral approach. Results: Peak inspiratory tracheal pressures were significantly...
Oxidant injury, nitric oxide and pulmonary vascular function: implications for the exercising horse.
Veterinary journal (London, England : 1997)    March 1, 1997   Volume 153, Issue 2 125-148 doi: 10.1016/s1090-0233(97)80034-2
Mills PC, Higgins AJ.The athletic ability of the horse is facilitated by vital physiological adaptations to high-intensity exercise, including a thin (but strong) pulmonary blood-gas barrier, a large pulmonary functional reserve capacity and a consequent maximum oxygen uptake (VO2max) far higher than in other species. A high pulmonary artery pressure also serves to enhance pulmonary function, although stress failure of lung capillaries at high pulmonary transmural pressures, and the contribution of other factors which act in the exercising horse to increase pulmonary vascular tone, may lead to pathological or path...
Effects of racing and gender on viscoelastic properties of horse blood.
Respiration physiology    February 1, 1997   Volume 107, Issue 2 165-172 doi: 10.1016/s0034-5687(96)02518-2
Wood SC, Fedde MR.Splenic contraction in racing horses increases the hematocrit (hct), thereby increasing blood viscosity. We tested as to whether racing also affects the elastic properties of blood. Mares and geldings were studied for thus purpose. After racing, there was: (i) an increased erythrocyte count independent of gender and race distance (0.32 to 1.7 km): (ii) an increased mean erythrocyte volume in both sexes; (iii) an increased heterogeneity of RBC size in both sexes; (iv) an increased plasma fibrinogen concentration and erythrocyte sedimentation rate in both sexes; and (v) an increased elastic yiel...
A comparison of the lipolytic and anticoagulative properties of heparin and pentosan polysulphate in the thoroughbred horse.
Acta physiologica Scandinavica    February 1, 1997   Volume 159, Issue 2 179-185 doi: 10.1046/j.1365-201X.1997.504239000.x
Orme CE, Harris RC.The aim of the study was to develop a model for the pre-exercise elevation of plasma free fatty acids in the horse, with a view to its future use in investigations of fat metabolism during exercise. A comparison of the lipase releasing and anticoagulative effects of heparin and a related substance pentosan polysulphate was investigated. Furthermore, the ability of heparin and pentosan polysulphate to affect an increase in plasma free fatty acid concentration, when co-administered with-a triglyceride emulsion, was quantified. Doses of 0.39 and 1.3 mg kg-1 body wt of heparin and pentosan polysul...
Use of dew-point hygrometry, direct sweat collection, and measurement of body water losses to determine sweating rates in exercising horses.
American journal of veterinary research    February 1, 1997   Volume 58, Issue 2 175-181 
Kingston JK, Geor RJ, McCutcheon LJ.To compare dew-point hygrometry, direct sweat collection, and measurement of body water loss as methods for determination of sweating rate (SR) in exercising horses. Methods: 6 exercise-trained Thoroughbreds. Methods: SR was measured in 6 horses exercising at 40% of the speed that elicited maximum oxygen consumption for 45 km, with a 15-minute rest at the end of each 15-km phase. Each horse completed 2 exercise trials. Dew-point hygrometry, as a method of local SR determination, was validated in vitro by measurement of rate of evaporative water loss. During exercise, local SR was determined ev...
Skeletal muscle characteristics and metabolic response to exercise in young standardbreds.
American journal of veterinary research    February 1, 1997   Volume 58, Issue 2 167-170 
Ronéus N, Essén-Gustavsson B.To determine whether performance capacity in a group of young trained Standardbreds is related to skeletal muscle characteristics and metabolic response to exercise. Methods: 13 clinically normal 2-year-old Standardbreds. Methods: Venous blood and middle gluteal muscle biopsy samples were obtained from each horse within 1 to 2 minutes after trotting at high speed for 1,600 m. Results: There was a positive correlation between plasma lactate and muscle glucose-6-phosphate (G-6-P) concentrations and trotting speed. There was a negative correlation between muscle adenosine triphosphate concentrati...
Effect of allopurinol on the formation of reactive oxygen species during intense exercise in the horse.
Research in veterinary science    January 1, 1997   Volume 62, Issue 1 11-16 doi: 10.1016/s0034-5288(97)90172-7
Mills PC, Smith NC, Harris RC, Harris P.Allopurinol was administered to six horses in a cross-over study to determine the relative contribution of xanthine oxidase (XO) activity to the formation of reactive oxygen species (ROS) in the horse during intense exercise. Exercise increased the mean (SEM) plasma lipid hydroperioxide concentration to a maximum of 492.7 (33.4) microM within one minute of exercise completion and maximum levels of both oxidised glutathione (GSSG) in haemolysates of red blood cells and the glutathione redox ratio (GRR) occurred 20 minutes after exercise (87.2 [12.2] microM and 8.9 [0.9] per cent, respectively)....
Heart rate variability during exercise in the horse.
Biomedical sciences instrumentation    January 1, 1997   Volume 34 246-251 
Thayer JF, Hahn AW, Pearson MA, Sollers JJ, Johnson PJ, Loch WE.High heart rate variability (HRV) has been associated with more efficient autonomic control, allowing more responsivity and sensitivity to changing environmental demands. Previous results from spectral analysis of interbeat intervals of equine heart rate (HR) indicated increased HRV, reflecting more effective vagal control of the heart. This study focuses on characterizing equine HR and HRV during increasing then decreasing physical demand. A non-invasive ambulatory monitoring system continuously records HR and HRV as horses exercise on a high speed equine treadmill at increasing then decreasi...
Cardiorespiratory responses to exercise in horses with different grades of idiopathic laryngeal hemiplegia.
Equine veterinary journal    January 1, 1997   Volume 29, Issue 1 6-10 doi: 10.1111/j.2042-3306.1997.tb01629.x
Christley RM, Hodgson DR, Evans DL, Rose RJ.The relationship between different grades of laryngeal function, as assessed by endoscopy at rest, and the measurements of indices of gas exchange and exercise capacity was assessed during a standardised treadmill exercise test in 149 horses. Horses with abnormalities other than idiopathic laryngeal hemiplegia (ILH) were excluded from the study and laryngeal function was graded according to an established system. There were no significant differences in age, weight, maximum oxygen uptake, maximum carbon dioxide production, maximum respiratory exchange ratio, maximum oxygen pulse and run time b...
[Adaptation to hypoxia as a factor enhancing work capacity].
Vestnik Rossiiskoi akademii meditsinskikh nauk    January 1, 1997   Issue 5 46-50 
Kozlov SA.The results of applying N. N. Sirotinin's concept of the use of hypoxic adaptation to enhance working capacity are given. There is evidence for the efficiency of adaptation of trotters to two hypoxias: to hypoxic hypoxia (in the midmountains) and to exercise hypoxia (during interval training under the conditions of Moscow) for increasing their performance. These studies demonstrated that in the midmountains, the trotters had more infrequent respiration, increased respiratory and minute respiratory volumes which were more obvious by the end of a monthly mountain stay. The monthly training of tr...
Energy sources and requirements of the exercising horse.
Annual review of nutrition    January 1, 1997   Volume 17 185-210 doi: 10.1146/annurev.nutr.17.1.185
Harris P.This review outlines the energy sources available to the horse, from its diet and from its body stores, at rest and while exercising. It looks at the current ways of describing the energy potential of diets fed to horses and discusses the relative advantages and disadvantages of the digestible energy and net energy systems. The more empirical net energy system for calculating the energy available for maintenance and work is compared with a more physiological partitioning system. Finally, the energy requirements for maintenance and exercise are discussed, together with how they may be practical...
Plasma von Willebrand factor in thoroughbreds in response to high-intensity treadmill exercise.
American journal of veterinary research    January 1, 1997   Volume 58, Issue 1 71-76 
Smith JM, Meyers KM, Barbee DD, Schott H, Bayly WM.To determine whether plasma von Willebrand factor (vWf) concentration changes in horses during and after treadmill exercise. Methods: 5 mature, fit Thoroughbreds. Methods: A blood sampling catheter was placed in the right jugular vein. A warm-up period was followed by a 3-minute rest period. Horses were galloped at racing pace until fatigued (about 2 minutes). Blood samples were collected prior to warm-up, during the postwarm-up rest period, 1 minute into the run, at cessation of the run, and 5 to 120 minutes after cessation of the run. vWf activity was measured by ELISA and corrected for plas...
Testing methods for exercise intolerance in horses.
The Veterinary clinics of North America. Equine practice    December 1, 1996   Volume 12, Issue 3 421-433 doi: 10.1016/s0749-0739(17)30265-1
Parente EJ.The many testing methods available and the increasing sophistication of diagnostic equipment have enhanced greatly our capabilities to diagnose causes of exercise intolerance in the equine athlete during the last several years. High-speed treadmill examination has become the focus of this form of evaluation. Not all clinicians perform or have access to high-speed treadmill examinations. Testing methods that require the use of the high-speed treadmill, as well as methods that do not, are discussed.
Myoglobin content and oxygen diffusion: model analysis of horse and steer muscle.
The American journal of physiology    December 1, 1996   Volume 271, Issue 6 Pt 1 C2027-C2036 doi: 10.1152/ajpcell.1996.271.6.C2027
Conley KE, Jones C.We test the hypothesis that myoglobin is important for O2 supply near the oxidative capacity of muscle. This hypothesis is evaluated with a simple model that incorporates the properties of heart and skeletal muscle tissue taken from steers and horses exercising at their maximum O2 consumption rate. These tissue samples allowed us to set the bounds on oxidative demand and O2 flux from red blood cells to the core of the muscle fiber, to estimate the blood and tissue capacities for O2 diffusion, and to define the capillary blood PO2 driving this O2 flux. A model combining blood convection with ti...
Upper respiratory causes of exercise intolerance.
The Veterinary clinics of North America. Equine practice    December 1, 1996   Volume 12, Issue 3 435-455 doi: 10.1016/s0749-0739(17)30266-3
Beard W.The respiratory system is a frequent cause of exercise intolerance in performance horses. Labored breathing, fatigue during performance, and prolonged recovery after exercise are common complaints. Inadequate fitness level and diseases of the cardiovascular system are differential diagnoses that share these complaints and should be ruled out. Generation of increased airway noise is a clinical sign that implicates the upper respiratory system. A careful history from the owner and endoscopy of the upper airway are the most useful diagnostic tools. Endoscopy during exercise on a treadmill is indi...
Cardio-respiratory and plasma lactate responses to exercise with low draught resistances in standardbred trotters.
Zentralblatt fur Veterinarmedizin. Reihe A    December 1, 1996   Volume 43, Issue 10 635-641 doi: 10.1111/j.1439-0442.1996.tb00497.x
Gottlieb-Vedi M, Essén-Gustavsson B, Lindholm A.Five Standardbred trotters performed treadmill exercise with incrementally increasing trotting velocities for 2 min intervals in three different tests until fatigue. Each test was performed with draught loads of either 10, 20 or 30 kilopond (kp). Each trotting interval was followed by 2 min periods at a walk without draught load. Recordings were made of heart rate (HR), respiratory rate (RR), plasma lactate (PLA) and stride frequency (SF) at the end of each trotting interval. The HR increased to average values of 191 +/- 10,203 +/- 10 and 214 +/- 7 bpm and PLA increased to 3.8 +/- 0.7, 7.3 +/-...
Exercise intolerance in endurance horses.
The Veterinary clinics of North America. Equine practice    December 1, 1996   Volume 12, Issue 3 565-580 doi: 10.1016/s0749-0739(17)30273-0
Flaminio MJ, Gaughan EM, Gillespie JR.Endurance competition requires synchronism and development of metabolic and musculoskeletal systems. An understanding of the existence of performance-limiting factors may permit the detection of exercise intolerance that could lead to performance failure, fatigue, and exhaustion. New concepts for assessment of fitness have increased the understanding of individual capacities and deficiencies and the interaction of the different systems involved in exercise.
Cardiovascular causes of exercise intolerance.
The Veterinary clinics of North America. Equine practice    December 1, 1996   Volume 12, Issue 3 473-494 doi: 10.1016/s0749-0739(17)30268-7
Mitten LA.Exercise intolerance, due to cardiovascular disease in horses, may be caused by cardiac arrhythmias, valvular regurgitation, congenital abnormalities, myocardial dysfunction, pericardial disease, and vascular thrombosis. The most common cardiovascular cause of exercise intolerance in horses is atrial fibrillation. Cardiovascular abnormalities such as cardiac arrhythmias or murmurs, however, are common in athletic horses and are not always associated with exercise intolerance. Use of an electrocardiography (during rest and exercise) and echocardiography may be necessary to better determine the ...
Muscular causes of exercise intolerance in horses.
The Veterinary clinics of North America. Equine practice    December 1, 1996   Volume 12, Issue 3 495-515 doi: 10.1016/s0749-0739(17)30269-9
Valberg SJ.The muscular system of the horse is remarkable in its athletic scope and capacity to adapt to the demands placed on it. Muscular fatigue often causes exercise intolerance in horses as a primary muscular dysfunction or secondary to abnormalities in other integrated systems such as the cardiovascular, respiratory, or skeletal system. This article reviews basic muscular physiology leading to a discussion of the physiologic causes of muscular fatigue. In addition, a review of pathologic muscle disorders such as muscle strains and exertional myopathies that lead to poor performance is provided.
Reduction of serum hepatic transaminases and CPK in sport horses with poor performance treated with a standardized Schizandra chinensis fruit extract.
Phytomedicine : international journal of phytotherapy and phytopharmacology    November 1, 1996   Volume 3, Issue 3 237-240 doi: 10.1016/S0944-7113(96)80059-6
Hancke J, Burgos R, Cáceres D, Brunetti F, Durigon A, Wikman G.Sport horses with long lasting high levels of gamma Glutamiltransferase (gGT) and Glutamic Oxalacetic Transaminase (GOT) and Creatinine Phosphokinase (CPK) and poor performance were administered during 14 days 3 g of Caval D'Or®, a standardized dried extract of Schizandra chinensis (fructus) orally. At day "0" the horses were divided into two groups: group 1 received a placebo and group 2 received Caval D'Or®. The results showed that Caval D'Or® is able to reduce significantly the levels of gGT and GOT in the serum at day 7 and 14 after administration. The CPK levels were also reduced by da...
Changes in maximum oxygen uptake during prolonged training, overtraining, and detraining in horses.
Journal of applied physiology (Bethesda, Md. : 1985)    November 1, 1996   Volume 81, Issue 5 2244-2249 doi: 10.1152/jappl.1996.81.5.2244
Tyler CM, Golland LC, Evans DL, Hodgson DR, Rose RJ.Thirteen standardbred horses were trained as follows: phase 1 (endurance training, 7 wk), phase 2 (high-intensity training, 9 wk), phase 3 (overload training, 18 wk), and phase 4 (detraining, 12 wk). In phase 3, the horses were divided into two groups: overload training (OLT) and control (C). The OLT group exercised at greater intensities, frequencies, and durations than group C. Overtraining occurred after 31 wk of training and was defined as a significant decrease in treadmill run time in response to a standardized exercise test. In the OLT group, there was a significant decrease in body wei...
The effect of exercise on diaphragmatic activation in horses.
Respiration physiology    October 1, 1996   Volume 106, Issue 1 35-46 doi: 10.1016/0034-5687(96)00058-8
Ainsworth DM, Eicker SW, Nalevanko ME, Ducharme NG, Hackett RP, Snedden K.Horses chronically-instrumented with costal diaphragmatic electromyographic electrodes were studied during exercise while unencumbered by a breathing mask. Exercise-associated changes in esophageal (Pes), gastric (Pga) and transdiaphragmatic (Pdi) pressures were measured and related to diaphragmatic electromyographic activity (CS EMG) and to left forelimb impact. In all breaths examined, CS EMG always coincided with decrements in Pes. For all exercise trials, linear increases in CS EMG, Pga and Pdi and linear decreases in Pes, as a function of exercise intensity, always occurred. During all ga...
Mechanism of exercise-induced augmentation of lymphokine activated killer (LAK) cell activity in the horse.
Veterinary immunology and immunopathology    October 1, 1996   Volume 53, Issue 3-4 221-233 doi: 10.1016/S0165-2427(96)05610-3
Horohov DW, Keadle TL, Pourciau SS, Littlefield-Chabaud MA, Kamerling SG, Keowen ML, French DD, Melrose PA.Intense exercise affects various parameters of the immune system. The overall effect of exercise on immune function is dependent upon the physical condition of the subject, the intensity and duration of the exercise period, and the immune parameter assessed. Unconditioned horses subjected to a single bout of intensive exercise exhibit multiple alterations in immune function, including an augmentation of lymphokine activated killer (LAK) cell function. This increase in LAK cell activity is not due to an increase in circulating LAK precursors. While peripheral blood mononuclear cells from exerci...
Muscle biopsy as a tool for assessing muscular adaptation to training in horses.
American journal of veterinary research    October 1, 1996   Volume 57, Issue 10 1412-1416 
Rivero JL.To describe an applied method for quantitative estimation of training condition in horses. Methods: 17 sedentary adult (5 to 14 years old) stallions of several breeds endurance trained for 3 months. Methods: Muscle biopsy specimens from 2 depths (20 and 60 mm) of the gluteus medius muscle were obtained before and after training and were analyzed for fiber type distribution, mean cross-sectional area, relative fiber area, and mean number of capillaries in contact with each fiber type relative to their mean area. Fiber types were designated as types 1, 2A, and 2B (high, low, and moderate myosin ...
Furosemide reduces accumulated oxygen deficit in horses during brief intense exertion.
Journal of applied physiology (Bethesda, Md. : 1985)    October 1, 1996   Volume 81, Issue 4 1550-1554 doi: 10.1152/jappl.1996.81.4.1550
Hinchcliff KW, McKeever KH, Muir WW, Sams RA.We theorized that furosemide-induced weight reduction would reduce the contribution of anaerobic metabolism to energy expenditure of horses during intense exertion. The effects of furosemide on accumulated O2 deficit and plasma lactate concentration of horses during high-intensity exercise were examined in a three-way balance randomized crossover study. Nine horses completed each of three trials: 1) a control (C) trial, 2) a furosemide-unloaded (FU) trial in which the horse received furosemide 4 h before running, and 3) a furosemide weight-loaded (FL) trial during which the horse received furo...
Nitric oxide and exercise in the horse.
The Journal of physiology    September 15, 1996   Volume 495 ( Pt 3), Issue Pt 3 863-874 doi: 10.1113/jphysiol.1996.sp021638
Mills PC, Marlin DJ, Demoncheaux E, Scott C, Casas I, Smith NC, Higenbottam T.1. The effects of exercise on the production rate of nitric oxide (NO) in exhaled air (VNO) and the effects of inhaled NO (80 p.p.m.) on cardiovascular and respiratory parameters were investigated in five Throughbred horses. 2. The concentration of NO ([NO]) in exhaled air collected from within the nasal opening was lower when collected at a high flow rate of 80 l min-1 than at a low flow rate of 20 l min-1: when trotting at 3.7 m s-1 the values were 0.78 +/- 0.15 and 1.23 +/- 9.14 p.p.b., respectively, and when cantering at 9 m s-1 the values were 1.69 +/- 0.31 and 2.25 +/- 0.32 p.p.b., respe...
Pulmonary blood flow distribution in exercising and in resting horses.
Journal of applied physiology (Bethesda, Md. : 1985)    September 1, 1996   Volume 81, Issue 3 1049-1050 doi: 10.1152/jappl.1996.81.3.1049
Hughes JM.No abstract available
Blood lactate: does Accusport equal accuracy?
Equine veterinary journal    September 1, 1996   Volume 28, Issue 5 337-338 doi: 10.1111/j.2042-3306.1996.tb03100.x
Hodgson DR.No abstract available
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