Analyze Diet

Topic:Speed

Speed in horses is a multifaceted topic that encompasses the physiological, biomechanical, and genetic factors influencing equine locomotion. It involves the study of muscle composition, cardiovascular efficiency, and respiratory function, which collectively contribute to a horse's ability to achieve high speeds. Research in this area often focuses on the genetic predispositions that affect speed, including specific gene variants associated with muscle fiber type distribution. Additionally, the biomechanics of equine gait, such as stride length and frequency, are analyzed to understand their impact on speed. This page compiles peer-reviewed research studies and scholarly articles that explore the determinants of speed in horses, examining the interplay between genetics, physiology, and biomechanics.
Comparison of the workload of Dutch warmblood horses ridden normally and on a treadmill.
The Veterinary record    August 5, 1995   Volume 137, Issue 6 136-139 doi: 10.1136/vr.137.6.136
Sloet van Oldruitenborgh-Oosterbaan MM, Barneveld A.Six Dutch warmblood horses, ridden by an experienced rider, cantered 3320 m at a speed adapted to the individual horse's anaerobic threshold, under four different conditions: 1, on a firm shell track with the speed varying from 6.5 to 9.4 m/s; 2, on a horizontal treadmill at the same speeds and for the same duration as in test 1; 3, on a horizontal treadmill for the same duration as in tests 1 and 2, but at a 10 per cent higher speed; and 4, on a treadmill at the same speed and for the same duration as in test 1, but at an inclination of 1 to 2 per cent adjusted individually to obtain heart ra...
Speed, stride frequency and energy cost per stride: how do they change with body size and gait?
The Journal of experimental biology    September 1, 1988   Volume 138 301-318 doi: 10.1242/jeb.138.1.301
Heglund NC, Taylor CR.In this study we investigate how speed and stride frequency change with body size. We use this information to define 'equivalent speeds' for animals of different size and to explore the factors underlying the six-fold difference in mass-specific energy cost of locomotion between mouse- and horse-sized animals at these speeds. Speeds and stride frequencies within a trot and a gallop were measured on a treadmill in 16 species of wild and domestic quadrupeds, ranging in body size from 30 g mice to 200 kg horses. We found that the minimum, preferred and maximum sustained speeds within a trot and a...
Why aren’t horses faster?
Nature    April 21, 1988   Volume 332, Issue 6166 678 doi: 10.1038/332678a0
Hill WG.No abstract available
Maximal anaerobic (lactic) capacity and power of the horse.
Equine veterinary journal    March 1, 1985   Volume 17, Issue 2 130-132 doi: 10.1111/j.2042-3306.1985.tb02066.x
Saibene F, Cortili G, Gavazzi P, Sala A, Faina M, Sardella F.Blood lactate concentrations were determined in 16 horses (three Thoroughbreds, seven Standardbreds and six polo ponies) before and 5 mins after they galloped over distances of 200, 300 and 400 m at maximal speed. The highest net lactate concentration (delta Lamax) of 14 to 15 mmol/litre was attained by the polo ponies and the highest speed by the Thoroughbreds. The maximal rate of lactate production (delta Låmax) was about 35 mmol/litre X min for the polo ponies and 20 to 25 mmol/litre X min for the Standardbreds and the Thoroughbreds. Values for delta Lamax and delta Låmax were similar to ...
Energetics and mechanics of terrestrial locomotion. II. Kinetic energy changes of the limbs and body as a function of speed and body size in birds and mammals.
The Journal of experimental biology    April 1, 1982   Volume 97 23-40 doi: 10.1242/jeb.97.1.23
Fedak MA, Heglund NC, Taylor CR.This is the second paper in a series examining the link between energetics and mechanics of terrestrial locomotion. In this paper, the changes in the kinetic energy of the limbs and body relative to the centre of mass of an animal (EKE, tot) are measured as functions of speed and body size. High-speed films (light or X-ray) of four species of quadrupeds and four species of bipeds running on a treadmill were analysed to determine EKE, tot. A mass-specific power term, EKE, tot/Mb was calculated by adding all of the increments in EKE during an integral number of strides and dividing by the time i...
Haematological changes associated with endurance exercise.
The Veterinary record    February 20, 1982   Volume 110, Issue 8 175-177 doi: 10.1136/vr.110.8.175
Rose RJ.Blood counts and noradrenaline estimations were performed in 14 horses competing in a 160 km endurance ride. Samples were collected before the ride, immediately after the ride. 30 minutes after the ride and the day after the ride. For statistical analysis, a group of seven horses that completed the ride at a mean speed of 234 m/minute (fast group) was compared with seven horses that completed the ride at a mean speed of 144 m/minute (slow group). Immediately after the ride the fast group of horses had higher packed cell volume, haemoglobin, neutrophils and lower lymphocyte counts than the slow...
[The proportion of aerobic and anaerobic metabolism in horses during graduated physical loading].
Veterinarni medicina    November 1, 1979   Volume 24, Issue 11 665-671 
Kovár J.Changes in the concentration of lactate in the blood are described as a response to gradated physical strain, consisting of 1140 m of walk, 2 x 1000 m of trot, and 3 x x 5000 m of gallop in seven horses in thirteen experiments. The dependence of lactate concentration on speed in different track sections was examined and the aerobic and anaerobic stages of metabolism were clearly differentiated. It appears realistic on the basis of the onset and course of anaerobic metabolism to work out tests for evaluating the physical capacities and training abilities of horses.
Record of Fastest Time Made by Horses.
The Journal of comparative medicine and veterinary archives    December 1, 1893   Volume 14, Issue 6 441-442 
No abstract available