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Topic:Aerobic Capacity

Aerobic capacity in horses refers to the ability of a horse to utilize oxygen efficiently during sustained physical activity. It is a measure of the horse's cardiovascular and respiratory systems' effectiveness in supporting prolonged exercise. This physiological trait is influenced by factors such as genetics, training, and overall health. Aerobic capacity is typically assessed through parameters like VO2 max, which quantifies the maximum rate of oxygen consumption. Understanding aerobic capacity is important for evaluating performance potential and designing training programs. This page compiles peer-reviewed research studies and scholarly articles that explore the determinants, measurement, and implications of aerobic capacity in equine athletes.
Cardiovascular adaptations to exercise and training.
The Veterinary clinics of North America. Equine practice    December 1, 1985   Volume 1, Issue 3 513-531 doi: 10.1016/s0749-0739(17)30748-4
Evans DL.The cardiovascular system provides the link between pulmonary ventilation and oxygen usage at the cellular level. During exercise, efficient delivery of oxygen to working skeletal and cardiac muscles is vital for maintenance of ATP production by aerobic mechanisms. The equine cardiovascular response to increased demand for oxygen delivery during exercise contributes largely to the over 35-fold increases in oxygen uptake that occur during submaximal exercise. Cardiac output during exercise increases greatly owing to the relatively high heart rates that are achieved during exercise. Heart rate i...
Cardiovascular response to exercise and training in the horse.
The Veterinary clinics of North America. Equine practice    August 1, 1985   Volume 1, Issue 2 383-417 doi: 10.1016/s0749-0739(17)30762-9
Physick-Sheard PW.The quality of the overall response to exercise in the horse is very similar to that seen in man and laboratory animals; differences are mainly quantitative and persist when relative body weight is taken into account. The apparently greater flow capacity of the equine muscle bed during maximal whole-body exercise implicates the extent of central circulatory adaptations as the limiting factor in performance but implies a role for increase in arteriolar capacitance/muscle capillarity as an appropriate response to intense endurance training. The blood oxygen-carrying capacity of the horse is ofte...
Enzyme histochemical features of equine gluteus muscle fibers.
American journal of veterinary research    August 1, 1985   Volume 46, Issue 8 1755-1761 
van den Hoven R, Meijer AE, Wensing T, Breukink HJ.Gluteal muscle specimens were taken from 4 horses. From 1 of the 4 gluteal muscles, serial sections were prepared. Individual muscle fibers were identified and studied, using photomicrographs of sections stained by different enzyme histochemical methods. In specimens in which cytoplasmic soluble enzymes were studied, use was made of the semi-permeable membrane technique to hamper enzyme diffusion into reaction fluids. Enzymes involved in glycogenolysis, glycolysis, the tricarboxylic acid cycle, synthesis of reduced nicotinamide adenine dinucleotide phosphate, the pentose phosphate cycle, the a...
Temporal pattern of pulmonary gas exchange during exercise in ponies.
Journal of applied physiology: respiratory, environmental and exercise physiology    September 1, 1984   Volume 57, Issue 3 760-767 doi: 10.1152/jappl.1984.57.3.760
Forster HV, Pan LG, Bisgard GE, Dorsey SM, Britton MS.We characterized the temporal patterns of pulmonary O2 consumption (VO2) and CO2 excretion (VCO2) in exercising ponies. We also assessed the cardiac, ventilatory, and hematologic contributions to the VO2-VCO2 changes during exercise. At five moderate treadmill work loads in normal ponies, VO2 and VCO2 generally increased progressively throughout the 1st min reaching, respectively, approximately 95 and 80% of steady state by 45-60 s. Between 1 and 1.5 min, Vo2 and Vco2 were either stable or they decreased 300-500 ml, but then each increased slightly, reaching steady-state levels between 3 and 5...
[Parameters for the evaluation of endurance capacity in horses].
Tierarztliche Praxis    January 1, 1984   Volume 12, Issue 4 499-504 
Straub R, Isler R, Gysin J.The incremental three work loads test as a basis test, and the one work load test, in which one measures the heart rate and the serum lactic acid concentration, lead to the performance index values V4 and V150. These values are of great practical importance in judging the performance capacity, the ability to be trained, the trainings effectivity, and determining the optimal work load for interval training.
Training and growth induced changes in the middle gluteal muscle of young Standardbred trotters.
Equine veterinary journal    April 1, 1983   Volume 15, Issue 2 134-140 doi: 10.1111/j.2042-3306.1983.tb01736.x
Henckel P.The middle gluteal muscle of five, two-year-old untrained trotters was investigated by repeated needle biopsy sampling over a training period of six months. A second group of five, three-year-old untrained horses was included to examine the effect of growth. After the training period increases were found in the relative distribution of slow twitch (ST) fibres from 18 per cent to 25 per cent and fast twitch (FTa) fibres from 36 per cent to 45 per cent, and a decrease in FTb fibres from 46 per cent to 30 per cent. A proportionally equal reduction (approximately 18 per cent) in the cross sectiona...
An energetic basis of equine performance.
Equine veterinary journal    April 1, 1983   Volume 15, Issue 2 123-133 doi: 10.1111/j.2042-3306.1983.tb01734.x
McMiken DF.Although different physiological and behavioural attributes are needed for various types of equine competition, successful racing depends primarily on the animal's metabolic ability to convert chemical energy to mechanical energy--the function of muscle. Components of these energetic processes include the rate, efficiency and interaction of aerobic and anaerobic metabolism in muscle and the supply and utilisation of fuel. In anaerobic work like racing, fatigue processes may be largely regarded as a function of an intramuscular fuel (phosphogen) depletion, despite the fact that substrates are s...
Cardiovascular effects of submaximal aerobic training on a treadmill in Standardbred horses, using a standardized exercise test.
American journal of veterinary research    April 1, 1983   Volume 44, Issue 4 544-553 
Bayly WM, Gabel AA, Barr SA.Seven healthy, unexercised, previously trained, adult Standardbred horses were allotted to 2 groups and trained 78 days on a treadmill set at a 7 degree 30' angle. The groups were trained on different schedules, and the effects of training on heart rate, cardiac output, stroke volume, arteriovenous oxygen difference, systemic blood pressure, and venous lactic acid were determined. Measurements were made at rest, during exercise on the treadmill at rates of 55 m/min, 75 m/min, 100 m/min, and 154 m/min, and at 5 minutes after exercise (standardized exercise test). Heart rate and cardiac output d...
A study of physical demands in riding.
European journal of applied physiology and occupational physiology    January 1, 1983   Volume 50, Issue 3 373-382 doi: 10.1007/BF00423243
Westerling D.Thirteen experienced riders and three elite riders underwent bicycle ergometer tests at submaximal and maximal workloads. Oxygen uptake, pulmonary ventilation and heart rate were also studied during riding at a walk, a trot and a canter. The mean maximal oxygen uptake of the experienced riders in the ergometer test (2.71 . min-1) was superior to the average maximal oxygen uptake of other groups of the same age and sex. The average oxygen uptake of the experienced riders in trot sitting was 1.701 . min-1, trot rising 1.681 . min-1 and in canter 1.801 . min-1. The experienced riders used at leas...
The effect of exercise on blood parameters in standardbred and Finnish-bred horses.
Acta veterinaria Scandinavica    January 1, 1983   Volume 24, Issue 2 170-184 doi: 10.1186/BF03546745
Pösö AR, Soveri T, Oksanen HE.Serum enzyme activities, albumin, protein, urea, cholesterol, triglyceride, free fatty acid, glucose and lactate concentrations as well as hematocrit values were measured in standardbred and Finnish-bred horses at rest and after (i) a short controlled exercise and (ii) a trotting competition. There were no breed differences in the enzyme activities at rest and the 2 breeds responded in the same manner to the exercise. Only after the race proper significant increases in the enzyme activities were found. The activities rose more in the standardbred horses than in the Finnish-bred horses. Urea an...
Equine exercise physiology.
Equine veterinary journal    January 1, 1982   Volume 14, Issue 1 2-4 doi: 10.1111/j.2042-3306.1982.tb02322.x
No abstract available
Cardiorespiratory and metabolic responses to treadmill exercise in the horse.
Journal of applied physiology: respiratory, environmental and exercise physiology    April 1, 1981   Volume 50, Issue 4 864-868 doi: 10.1152/jappl.1981.50.4.864
Thomas DP, Fregin GF.The purpose of this study was to measure cardiovascular, respiratory, and metabolic responses to graded treadmill exercise in the horse. A five-stage treadmill test up to 90% of predicted maximal heart rate was administered to five sedentary horses. The highest measured level of exercise produced a sixfold increase in cardiac output and a 41% elevation of stroke volume over standing values. Left ventricular, arterial, and right atrial pressures as well as the maximal time derivative of left ventricular pressure were all elevated during exercise. Under the same two conditions hematocrit (Hct) i...
Long distance exercise in the horse: Golden Horseshoe Ride 1978.
The Veterinary record    May 3, 1980   Volume 106, Issue 18-20 405-407 doi: 10.1136/vr.106.18-20.405
Lucke JN, Hall GM.As part of a study of the metabolic effects of long distance riding the results of biochemical analyses of blood samples taken from horses before, immediately after and one hour after an 80 km ride are reported. The results show that the horses were moderately dehydrated, they were working aerobically using fats as metabolic substrates and blood glucose was reduced. There was no evidence of post exercise ketosis and circulating alanine levels fell. Metabolic hormone levels are reported and are related to the availability of substrates for gluconeogenesis. There was evidence of reduced kidney a...
Cardiorespiratory adjustments to tethered-swimming in the horse.
Pflugers Archiv : European journal of physiology    May 1, 1980   Volume 385, Issue 1 65-70 doi: 10.1007/BF00583916
Thomas DP, Fregin GF, Gerber NH, Ailes NB.The cardiorespiratory and metabolic responses to various levels of tethered-swimming were evaluated in 5 sedentary horses. Cardiac output (Q) and heart rate (HR) correlated highly (r = 0.89 and 0.94 respectively) with work effort (WE) expressed as kg pulled . kg body wt-1 . 10-2. While swimming, stroke volume (SV) was reduced at the lowest workloads, but increased with increasing WE so that at the highest workloads it had returned to the on-land standing SV. Pressures in the pulmonic as well as on both sides of the systemic circulation were considerably elevated by this form of exercise, altho...
Cerebrospinal fluid acid-base balance during muscular exercise.
Journal of applied physiology: respiratory, environmental and exercise physiology    July 1, 1978   Volume 45, Issue 1 94-101 doi: 10.1152/jappl.1978.45.1.94
Bisgard GE, Forster HV, Byrnes B, Stanek K, Klein J, Manohar M.Ventilation, metabolism, arterial blood gases, and blood and cerebrospinal fluid (CSF) acid-base status were measured in exercise studies on seven ponies during mild, moderate, and near-maximal treadmill exercise. CSF and arterial blood were sampled via indwelling catheters. Generally measurements were made during the 3rd, 6th, and 9th minute of steady-state exercise, with CSF sampled only during the 9th minute. Alveolar ventilation (VA) and metabolic rate (VO2) increased proportionately during exercise below the anaerobic threshold, but above this threshold, VA increased at a faster rate than...
Studies of whole body oxygenation in conscious and anaesthetised horses.
Archives internationales de pharmacodynamie et de therapie    August 1, 1974   Volume 210, Issue 2 333-346 
Hillidge CJ, Lees P.No abstract available
Factors influencing deceleration of heart and respiratory rates after exercise in the horse.
Equine veterinary journal    January 1, 1973   Volume 5, Issue 1 8-14 doi: 10.1111/j.2042-3306.1973.tb03186.x
Aitken MM, Sanford J, Mackenzie G.No abstract available
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