Analyze Diet

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.
Does haemorheology explain the paradox of hypoxemia during exercise in elite athletes or thoroughbred horses?
Clinical hemorheology and microcirculation    June 26, 2002   Volume 26, Issue 3 175-181 
Caillaud C, Connes P, Bouix D, Mercier J.Exercise-induced arterial hypoxemia (EIAH), i.e., a significant drop of O2 arterial partial pressure during sea level exercise, has been shown in both aerobically trained athletes and athletic animal species. The mechanisms potentially involved include ventilation/perfusion inequality and/or pulmonary diffusing capacity limitation. In thoroughbred horses, EIAH is going with pulmonary haemorrhage (EIPH). Stress failure of pulmonary capillaries leading to diffusion limitation has been proposed. Indeed, during intense exercise, the increased cardiac output and blood viscosity combine to rise capi...
Effects of aqua-treadmill exercise on selected blood parameters and on heart-rate variability of horses.
Journal of veterinary medicine. A, Physiology, pathology, clinical medicine    May 22, 2002   Volume 49, Issue 3 137-143 doi: 10.1046/j.1439-0442.2002.00420.x
Voss B, Mohr E, Krzywanek H.The objectives of the present study were to investigate the effects of Aquatraining of horses (aqua-treadmill exercise; treadmill manufactured by Equitech - L.u.S. Equipment, Warendorf, Germany) on selected blood parameters [lactic acid concentration (mmol/l), haemoglobin content (g/l)] and on heart-rate variability (HRV) [heart rate (beats per min; b.p.m.), standard deviation of all NN-intervals (SDNN; ms), normalized power of the low and high frequency band (LFnorm, Hfnorm; au), % recurrence, % determinism and ratio(corr)]. Seven horses performed six exercise tests with different work loads ...
Mechanistic basis for the gas exchange threshold in Thoroughbred horses.
Journal of applied physiology (Bethesda, Md. : 1985)    March 16, 2002   Volume 92, Issue 4 1499-1505 doi: 10.1152/japplphysiol.00909.2001
McDonough P, Kindig CA, Erickson HH, Poole DC.The exercising Thoroughbred horse (TB) is capable of exceptional cardiopulmonary performance. However, because the ventilatory equivalent for O2 (VE/VO2) does not increase above the gas exchange threshold (Tge), hypercapnia and hypoxemia accompany intense exercise in the TB compared with humans, in whom VE/VO2 increases during supra-Tge work, which both removes the CO2 produced by the HCO buffering of lactic acid and prevents arterial partial pressure of CO2 (PaCO2) from rising. We used breath-by-breath techniques to analyze the relationship between CO2 output (VCO2) and VO2 [V-slope lactate t...
High intensity exercise conditioning increases accumulated oxygen deficit of horses.
Equine veterinary journal    January 31, 2002   Volume 34, Issue 1 9-16 doi: 10.2746/042516402776181150
Hinchcliff KW, Lauderdale MA, Dutson J, Geor RJ, Lacombe VA, Taylor LE.High intensity exercise is associated with production of energy by both aerobic and anaerobic metabolism. Conditioning by repeated exercise increases the maximal rate of aerobic metabolism, aerobic capacity, of horses, but whether the maximal amount of energy provided by anaerobic metabolism, anaerobic capacity, can be increased by conditioning of horses is unknown. We, therefore, examined the effects of 10 weeks of regular (4-5 days/week) high intensity (92+/-3 % VO2max) exercise on accumulated oxygen deficit of 8 Standardbred horses that had been confined to box stalls for 12 weeks. Exercise...
High fat intake lowers hepatic fatty acid synthesis and raises fatty acid oxidation in aerobic muscle in Shetland ponies.
The British journal of nutrition    July 4, 2001   Volume 86, Issue 1 31-36 doi: 10.1079/bjn2001364
Geelen SN, Blázquez C, Geelen MJ, Sloet van Oldruitenborgh-Oosterbaan MM, Beynen AC.The metabolic effects of feeding soyabean oil instead of an isoenergetic amount of maize starch plus glucose were studied in ponies. Twelve adult Shetland ponies were given a control diet (15 g fat/kg DM) or a high-fat diet (118 g fat/kg DM) according to a parallel design. The diets were fed for 45 d. Plasma triacylglycerol (TAG) concentrations decreased by 55 % following fat supplementation. Fat feeding also reduced glycogen concentrations significantly by up to 65 % in masseter, gluteus and semitendinosus muscles (P < 0.05 and P < 0.01 and P < 0.01 respectively). The high-fat diet significan...
[Supplemental fat in the diet of horses…is it advantageous?].
Tijdschrift voor diergeneeskunde    June 1, 2001   Volume 126, Issue 9 310-315 
Geelen SN, Sloet van Oldruitenborgh-Oosterbaan MM, Beynen AC.Feeding fat-supplemented diets to horses has drawn considerable interest. One of the advantages of such diets is that the energy density is increased, so that less feed is needed to meet energy requirements. In addition, adding fat to the diet enhances the contribution of fat oxidation to energy production, thus sparing muscle glycogen. The 'spared' glycogen is available for energy metabolism when the acutely exercising horse reaches a point of oxygen deficit and must rely on anaerobic metabolism. This appears to be beneficial for both aerobic and anaerobic performance. Fats are readily digest...
Physical, hematological, and exercise response of collegiate female equestrian athletes.
The Journal of sports medicine and physical fitness    October 18, 2000   Volume 40, Issue 2 131-138 
Meyers MC, Sterling JC.Physiological testing is extensively used to assess current physical status, target strength/deficiencies, and determine predisposition to injury in athletes. No studies exist regarding these issues on equestrian athletes. The purpose of this study was to quantify the physical, hematological, and exercise response of female equestrian athletes in order to provided greater insight into the health fitness of this unique competitor, and to compare results to other better studied sport athletes. Methods: Following written informed consent, physiological assessments were performed on 24 collegiate ...
Energy expenditure of horse riding.
European journal of applied physiology    September 14, 2000   Volume 82, Issue 5-6 499-503 doi: 10.1007/s004210000207
Devienne MF, Guezennec CY.Oxygen consumption (VO2), ventilation (VE) and heart rate (HR) were studied in five recreational riders with a portable oxygen analyser (K2 Cosmed, Rome) telemetric system, during two different experimental riding sessions. The first one was a dressage session in which the rider successively rode four different horses at a walk, trot and canter. The second one was a jumping training session. Each rider rode two horses, one known and one unknown. The physiological parameters were measured during warm up at a canter in suspension and when jumping an isolated obstacle at a trot and canter. This s...
Effects of training on maximum oxygen consumption of ponies.
American journal of veterinary research    August 22, 2000   Volume 61, Issue 8 986-991 doi: 10.2460/ajvr.2000.61.986
Katz LM, Bayly WM, Roeder MJ, Kingston JK, Hines MT.To establish maximum oxygen consumption VO2max) in ponies of different body weights, characterize the effects of training of short duration on VO2max, and compare these effects to those of similarly trained Thoroughbreds. Methods: 5 small ponies, 4 mid-sized ponies, and 6 Thoroughbreds. Methods: All horses were trained for 4 weeks. Horses were trained every other day for 10 minutes on a 10% incline at a combination of speeds equated with 40, 60, 80, and 100% of VO2max. At the beginning and end of the training program, each horse performed a standard incremental exercise test in which VO2max wa...
Survival of Clostridium difficile and its toxins in equine feces: implications for diagnostic test selection and interpretation. Weese JS, Staempfli HR, Prescott JF.Although Clostridium difficile is recognized as a cause of enterocolitis in horses and humans, there has been little work published regarding the lability of C. difficile and its toxins in feces. A significant decrease in recovery of C. difficile from inoculated equine fecal samples occurred during storage. Recovery after storage in air at 4 degrees C decreased from 76% (37/49) after 24 hours to 67% (33/49) at 48 hours and 29% (14/ 49) after 72 hours. In contrast to aerobic storage, 25 of 26 samples stored anaerobically at 4 degrees C yielded growth of C. difficile for 30 days, whereas the org...
Effects of warm-up intensity on kinetics of oxygen consumption and carbon dioxide production during high-intensity exercise in horses.
American journal of veterinary research    June 13, 2000   Volume 61, Issue 6 638-645 doi: 10.2460/ajvr.2000.61.638
Geor RJ, McCutcheon LJ, Hinchcliff KW.To compare effects of low and high intensity warm-up exercise on oxygen consumption (VO2) and carbon dioxide production (VCO2) in horses. Methods: 6 moderately conditioned adult Standard-breds. Methods: Horses ran for 2 minutes at 115% of maximum oxygen consumption (VO2max), 5 minutes after each of the following periods: no warm-up (NoWU); 10 minutes at 50% of VO2max (LoWU); or 7 minutes at 50% VO2max followed by 45-second intervals at 80, 90, and 100% VO2max (HiWU). Oxygen consumption and VCO2 were measured during exercise, and kinetics of VO2 and VCO2 were calculated. Accumulated O2 deficit ...
Muscular and metabolic responses to moderate-intensity short-term training.
Equine veterinary journal. Supplement    February 5, 2000   Issue 30 311-317 doi: 10.1111/j.2042-3306.1999.tb05240.x
Geor RJ, McCutcheon LJ, Shen H.The objectives of this study were to determine the effects of 10 consecutive days of moderate-intensity training on 1) the muscular metabolic response to exercise at 100% of the pre-training maximum rate of oxygen consumption (VO2max); and 2) mitochondrial enzyme markers (citrate synthase, CS; succinate dehydrogenase, SDH; 3-hydroxy-acyl-CoA dehydrogenase, HAD) of oxidative capacity in middle gluteal muscle. Six mature, unfit Thoroughbred horses completed both incremental (for determination of VO2max) and high-intensity exercise protocols before (HI1) and after (HI2) training. Training consist...
Relationship between VO2max, heart score and echocardiographic measurements obtained at rest and immediately following maximal exercise in thoroughbred horses.
Equine veterinary journal. Supplement    February 5, 2000   Issue 30 190-194 doi: 10.1111/j.2042-3306.1999.tb05216.x
Sampson SN, Tucker RL, Bayly WM.We evaluated the relationships of heart score (HS) and echocardiographic measures to maximal oxygen consumption (VO2max), maximal cardiac output (Qmax), and maximal stroke volume (SVmax). Six fit, mature Thoroughbred horses weighing (mean +/- s.e.) 487 +/- 11 kg were run 4 times on an inclined (10%) treadmill. Each run consisted of a 3 min warm-up at 4 m/s followed by completion of an incremental exercise test in which each horse ran until VO2max was reached. Arterial and mixed venous blood was collected to determine arteriovenous oxygen content difference C(a-v)O2[ in the last 15 s of exercis...
Equine plasma beta-endorphin concentrations are affected by exercise intensity and time of day.
Equine veterinary journal. Supplement    February 5, 2000   Issue 30 567-569 doi: 10.1111/j.2042-3306.1999.tb05285.x
Mehl ML, Sarkar DK, Schott HC, Brown JA, Sampson SN, Bayly WM.Eight mature mares were exercised for 20 min at 60% VO2max and to fatigue at 95% VO2max. Plasma beta-endorphin (EN) concentrations were determined before exercise, after a 10 min warm-up, and at the end of each exercise test. Mean +/- s.e. beta-endorphin concentrations were significantly (P < 0.05) higher following work at 95% VO2max when compared to that at 60% VO2max (420.0 +/- 102.7 vs. 269.9 +/- 30.69 pg/ml). Pre-exercise samples were collected between 1000 and 1500 h. In order to evaluate whether any cyclic changes in EN secretion effects may have influenced results, a subsequent study...
Exercise that induces substantial muscle glycogen depletion impairs subsequent anaerobic capacity.
Equine veterinary journal. Supplement    February 5, 2000   Issue 30 293-297 doi: 10.1111/j.2042-3306.1999.tb05237.x
Lacombe V, Hinchcliff KW, Geor RJ, Lauderdale MA.The purpose of this study was to develop a model of muscle glycogen depletion and to study the effect of this model on aerobic and anaerobic capacity of horses. The maximal rate of oxygen consumption (VO2max), maximal accumulated oxygen deficit (MAOD), muscle glycogen concentration and blood lactate concentration of 6 fit Standardbred horses were measured on 3 occasions 7 days apart (Trials 1, 2 and 3). Between Trials 2 and 3, strenuous exercise intended to deplete muscle glycogen was performed by exercising horses on the treadmill on 3 consecutive days. Strenuous exercise resulted in reductio...
Effects of prior exercise on muscle metabolism during sprint exercise in horses.
Journal of applied physiology (Bethesda, Md. : 1985)    November 24, 1999   Volume 87, Issue 5 1914-1922 doi: 10.1152/jappl.1999.87.5.1914
McCutcheon LJ, Geor RJ, Hinchcliff KW.The effect of warm-up exercise on energy metabolism and muscle glycogenolysis during sprint exercise (Spr) was examined in six fit Standardbred horses exercised at 115% of maximal O(2) consumption (VO(2 max)) until fatigued, 5 min after each of three protocols: 1) no warm-up (NWU); 2) 10 min at 50% of VO(2 max) [low-intensity warm-up (LWU)]; and 3) 7 min at 50% VO(2 max) followed by 45-s intervals at 80, 90, and 100% VO(2 max) [high-intensity warm-up (HWU)]. Warm-up increased (P < 0.0001) muscle temperature (T(m)) at the onset of Spr in LWU (38.3 +/- 0.2 degrees C) and HWU (40.0 +/- 0. 3 de...
Presumed clostridial and aerobic bacterial infections of the cornea in two horses.
Journal of the American Veterinary Medical Association    May 26, 1999   Volume 214, Issue 10 1519-1496 
Rebhun WC, Cho JO, Gaarder JE, Peek SF, Patten VH.Microscopic examination of Gram-stained tissue specimens collected from severe corneal ulcers in 2 horses revealed large gram-positive rods suggestive of Clostridium spp. Clostridium perfringens was isolated from specimens collected from horse 1; anaerobic organisms were not detected in specimens from horse 2. Aerobic bacterial culture revealed Aeromonas hydrophila and Enterobacter cloacae in specimens collected from horses 1 and 2, respectively. An insect exoskeleton was presumed to be the underlying cause of ulceration in horse 1. Cause of ulceration in horse 2 was not determined. Antibiotic...
Field exercise testing for assessing fitness in French standardbred trotters.
Veterinary journal (London, England : 1997)    April 16, 1999   Volume 157, Issue 2 112-122 doi: 10.1053/tvjl.1998.0302
Couroucé A.This review considers standardized exercise testing which is, routinely used for French Trotters in the field. Track testing provides a more limited range of measurements than treadmill testing, but has the advantage of being performed in the horse's natural environment. Various measurements such as heart rate during exercise and blood lactate concentration after exercise may be measured on the track and lead to the calculation of physiological variables such as V200 (velocity corresponding to a 200 bpm heart rate) and V4 (velocity corresponding to a 4 mmol/L blood lactate concentration). V4 i...
V(O2) recovery kinetics in the horse following moderate, heavy, and severe exercise.
Journal of applied physiology (Bethesda, Md. : 1985)    April 8, 1999   Volume 86, Issue 4 1170-1177 doi: 10.1152/jappl.1999.86.4.1170
Langsetmo I, Poole DC.At the onset of exercise, horses exhibit O2 uptake (VO2) kinetics that are qualitatively similar to those of humans. In humans, there is a marked dissymmetry between on- and off-kinetics for VO2. This investigation sought to formally characterize the off-transient (recovery) VO2 kinetics in the horse within the moderate (M), heavy (H), and severe (S) exercise domains. Six horses were run on a high-speed treadmill at M, H, and S exercise intensities (i.e., that speed which yielded approximately 50, 85, 100% peak VO2, respectively, on the maximal incremental test). The time courses for the recov...
Optimization of the mammalian respiratory system: symmorphosis versus single species adaptation.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology    October 27, 1998   Volume 120, Issue 1 125-138 doi: 10.1016/s0305-0491(98)00027-3
Jones JH.Taylor and Weibel's principle of symmorphosis hypothesized optimal design of the mammalian respiratory system, with no excess structure relative to its maximal O2 flux, VO2max. Although they found symmorphosis not to be a general principle of design, it might apply to a highly adapted aerobic athlete, e.g. the Thoroughbred racehorse. Using a mathematical model based on empirical data of the equine O2 transport system at normoxic VO2max, the fraction of the total limitation to O2 flux contributed by each of the respiratory transport steps is calculated as either the fractional change (F) in VO2...
Skeletal muscle adaptations to prolonged training, overtraining and detraining in horses.
Pflugers Archiv : European journal of physiology    June 30, 1998   Volume 436, Issue 3 391-397 doi: 10.1007/s004240050648
Tyler CM, Golland LC, Evans DL, Hodgson DR, Rose RJ.Thirteen standard-bred horses were trained intensively for 34 weeks and detrained for 6 weeks to study skeletal muscle adaptations to prolonged training, overtraining and detraining. Training included endurance (phase 1, 7 weeks), high-intensity (phase 2, 9 weeks) and overload training (OLT) (phase 3, 18 weeks). During phase 3, horses were divided into two groups, OLT and control (C), with OLT horses performing greater intensities and durations of exercise than C horses. Overtraining was evident in OLT horses after week 31 and was defined as a significant reduction in treadmill run time in res...
Force, speed, and oxygen consumption in thoroughbred and draft horses.
Journal of applied physiology (Bethesda, Md. : 1985)    June 11, 1998   Volume 84, Issue 6 2052-2059 doi: 10.1152/jappl.1998.84.6.2052
Potard US, Leith DE, Fedde MR.Thoroughbred (TB) and draft horses (DH) have long been selected for tasks of very different intensities and force-speed relationships. To study their adaptations, we measured O2 consumption and related variables in three TB and four DH during progressive exercise tests on a level treadmill. The horses exerted a draft force of 0, 5, 10, 15, or 20% of their body weight at speeds that increased by 2 m/s every 3 min until they could not maintain that speed. We found that TB could exert the same draft forces as DH and, at each force, TB achieved about twice the speed, twice the external power, and ...
Blood viscosity and its role in the haemodynamic responses to intense exertion.
Equine veterinary journal    February 12, 1998   Volume 30, Issue 1 3 doi: 10.1111/j.2042-3306.1998.tb04079.x
McKeever KH.No abstract available
Chronic recombinant equine somatotropin (eST) administration does not affect aerobic capacity or exercise performance in geriatric mares.
Veterinary journal (London, England : 1997)    February 10, 1998   Volume 155, Issue 1 19-25 doi: 10.1016/s1090-0233(98)80029-4
McKeever KH, Malinowski K, Christensen RA, Hafs HD.The purpose of this experiment was to test the hypothesis that chronic (89 days) administration of recombinant equine somatotropin (eST) would increase aerobic capacity and improve exercise performance in old mares. Fifteen, healthy, unfit, aged (20-26 year old) mares were randomly assigned to a treatment (eST, 12.5 mg day-1 in 3 ml glycine/manitol buffer, s.c., n = 7) or control (vehicle, 3 ml day-1, s.c., n = 8) group. Aerobic capacity and exercise performance were measured using a standardized exercise test (SET) performed on a high speed treadmill. Tests were conducted before (-21 days), d...
Exercise capacity in young and old mares.
American journal of veterinary research    December 24, 1997   Volume 58, Issue 12 1468-1472 
McKeever KH, Malinowski K.To test the hypothesis that, compared with unfit young horses, unfit older horses have lower aerobic capacity and reduction in other indices of exercise capacity. Methods: 6 young (mean +/- SEM, 5.3 +/- 0.8 years and 445 +/- 13 kg) and 6 aged (22.0 +/- 0.4 years and 473 +/- 18 kg) healthy Standardbred and Thoroughbred mares. Methods: The mares, accustomed to running on a treadmill, were tested by use of an incremental exercise test. None of the mares had received exercise training for at least 4 months prior to the study. During testing, mares ran up a fixed 6% grade, starting at a speed of 4 ...
VO2 kinetics in the horse during moderate and heavy exercise.
Journal of applied physiology (Bethesda, Md. : 1985)    October 24, 1997   Volume 83, Issue 4 1235-1241 doi: 10.1152/jappl.1997.83.4.1235
Langsetmo I, Weigle GE, Fedde MR, Erickson HH, Barstow TJ, Poole DC.The horse is a superb athlete, achieving a maximal O2 uptake (approximately 160 ml . min-1 . kg-1) approaching twice that of the fittest humans. Although equine O2 uptake (VO2) kinetics are reportedly fast, they have not been precisely characterized, nor has their exercise intensity dependence been elucidated. To address these issues, adult male horses underwent incremental treadmill testing to determine their lactate threshold (Tlac) and peak VO2 (VO2 peak), and kinetic features of their VO2 response to "square-wave" work forcings were resolved using exercise transitions from 3 m/s to a below...
Metabolic adaptation to fat-supplemented diet by the thoroughbred horse.
The British journal of nutrition    October 23, 1997   Volume 78, Issue 3 443-458 doi: 10.1079/bjn19970162
Orme CE, Harris RC, Marlin DJ, Hurley J.Following 10 weeks of fat supplementation a group of aerobically trained thoroughbred horses exhibited a significant decrease in postprandial plasma triacylglycerol concentration. This decrease was associated with a mean 50% increase in plasma total lipase activity following pentosan polysulfate administration and an increase in postprandial plasma cholesterol concentration. A significant increase in the activity of muscle citrate synthase (EC 4.1.3.7), expressed as a ratio to the total fractional area occupied by type I and type IIa muscle fibres, was also observed. No significant change in t...
Cardiovascular responses to heat and exercise in the horse.
Annals of the New York Academy of Sciences    March 15, 1997   Volume 813 600-603 doi: 10.1111/j.1749-6632.1997.tb51751.x
McConaghy FF, Hales JR, Hodgson DR.Heat-induced increases in skin blood flow (BF) are well known to be reduced if exercise is superimposed.' However, whether exercise-induced increases in muscle BF are compromised by superimposed heat stress remains a controversial issuc. The horse has now been studied because of its human-like thermoregulatory mechanisms and good exercise capacity.
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...
Expression of Vitreoscilla hemoglobin is superior to horse heart myoglobin or yeast flavohemoglobin expression for enhancing Escherichia coli growth in a microaerobic bioreactor.
Biotechnology progress    November 1, 1996   Volume 12, Issue 6 751-757 doi: 10.1021/bp960071v
Kallio PT, Tsai PS, Bailey JE.Expression of a gene encoding hemoglobin (VHb) from the aerobic bacterium Vitreoscilla sp. in several organisms, including Escherichia coli, has been shown to improve microaerobic cell growth and enhance oxygen-dependent product formation. The suitability of VHb to enhance microaerobic metabolism has been suggested to depend on its unusual oxygen binding characteristics. To examine whether hemoproteins of other origins can also elicit the positive effects VHb exerts in microaerobic E. coli cells, we subcloned the genes encoding Vitreoscilla VHb, horse heart myoglobin (HMb), and yeast flavohemo...