Analyze Diet

Topic:Body Mass

Body mass in horses refers to the total weight of an individual horse, which is an important parameter in equine health and management. It influences various aspects of a horse's physiology, including metabolism, locomotion, and overall health status. Accurate assessment of body mass is essential for determining appropriate feeding regimens, medication dosages, and for evaluating growth and development in young horses. Body mass can be measured directly using scales or estimated using body condition scoring systems and weight tapes. This page compiles peer-reviewed research studies and scholarly articles that explore the methods for assessing body mass, its impact on equine health and performance, and its role in the management of different horse breeds and disciplines.
Effect of vitamin D and sunlight on growth and bone development of young ponies.
Journal of animal science    April 1, 1979   Volume 48, Issue 4 882-886 doi: 10.2527/jas1979.484882x
El Shorafa WM, Feaster JP, Ott EA, Asquith RL.No abstract available
Radiographic evidence of impaired pulmonary function in laterally recumbent anaesthetised horses.
Equine veterinary journal    January 1, 1979   Volume 11, Issue 1 24-32 doi: 10.1111/j.2042-3306.1979.tb01290.x
McDonell WN, Hall LW, Jeffcott LB.Studies in conscious and anaesthetised ponies demonstrated that starvation, anaesthesia and changes in body position influence the radiographic appearance of the lungs in the lateral and dorsoventral views. Radiographic appearances could not be closely correlated with blood gas values, but they suggested that the volume of the lowermost lung of the laterally recumbent animal is greatly reduced.
Body composition of the horse.
Equine veterinary journal    January 1, 1979   Volume 11, Issue 1 39-47 doi: 10.1111/j.2042-3306.1979.tb01295.x
Webb AI, Weaver BM.Seventeen horses were dissected and their organs and tissues weighed. The results of these dissections are presented together with comparisons of the data with that already available in the literature. Predictive equations for organs and tissue weights are also given which were derived by comparison of linear and allometric regression models using 4 different body weight indices.
The mean fibre area of the semitendinosus, diaphragm and pectoralis transversus muscles in differing types of horse and dog.
Journal of anatomy    October 1, 1978   Volume 127, Issue Pt 2 403-414 
Gunn HM.The mean fibre areas of samples from m. semitendinosus, m. diaphragma and m. pectoralis transversus of thoroughbred horses and greyhounds have been compared with those in similar samples from other members of their species. Athletes (greyhounds and thoroughbreds) have larger fibres in the semitendinosus and diaphragm than their fellows. However, the mean area of pectoralis transversus is similar in the two types of animal within each species. During growth the mean fibre areas increase to a greater extent in athletes than in non-athletes. Detraining adult greyhounds for a period of one year di...
Studies on the livestock of southern Darfur, Sudan VI. Notes on equines.
Tropical animal health and production    August 1, 1978   Volume 10, Issue 3 183-189 doi: 10.1007/BF02235338
Wilson RT.Equines have been largely ignored in modern scientific literature on domestic animals, probably because they are not providers of meat and milk. Their contribution to the economy in the Sudan, however, is considerable and they are the principal means of transport both as baggage and as riding animals. They also play an important role in the supply of fuel and the distribution of domestic water in the larger villages and towns. Information on population structure is provided and descriptions, with particular reference to withers height and weight, are given of two types of donkey and of the hor...
Energy under-nutrition in the weanling filly foal. II. Effects on body conformation and epiphyseal plate closure in the fore-limb.
The British veterinary journal    July 1, 1978   Volume 134, Issue 4 321-332 
Ellis RN, Lawrence TL.No abstract available
Methods for measuring physical condition and energy expenditure in horses.
Journal of animal science    June 1, 1978   Volume 46, Issue 6 1666-1672 doi: 10.2527/jas1978.4661666x
Burke DJ, Albert WW.No abstract available
The measurement of extracellular fluid volume (radiosulphate space) in horses.
The British veterinary journal    May 1, 1978   Volume 134, Issue 3 283-285 doi: 10.1016/s0007-1935(17)33496-6
Thornton JR.No abstract available
Plasma volume and extracellular fluid volume in horses at rest and following exercise.
American journal of veterinary research    May 1, 1978   Volume 39, Issue 5 871-874 
Kohn CW, Muir WW, Sams R.Plasma volume and extracellular fluid volume were determined in horses at rest and immediately after a standardized exercise test. Exercising during training demonstrated no detectable effect on plasma or extracellular fluid volume determinations when compared with resting values. An explanation of this finding and an argument for the proper analysis of plasma and extravascular fluid volumes are presented.
Effect of protein level on growth in young ponies.
Journal of animal science    April 1, 1978   Volume 46, Issue 4 983-991 doi: 10.2527/jas1978.464983x
Yoakam SC, Kirkham WW, Beeson WM.No abstract available
Calcium metabolism, body composition, and sweat losses of exercised horses.
American journal of veterinary research    February 1, 1978   Volume 39, Issue 2 245-248 
Schryver HF, Hintz HF, Lowe JE.The effect of exercise on the pathways of metabolism of 40Ca and 47Ca was studied in 4 yearling Standardbred horses in 4 consecutive treatment periods: (1) no exercise, (2) trotting 16 km/day, (3) trotting 10 km/day, and (4) no exercise. Metabolic balance studies and studies of 47Ca kinetics were conducted during the final week of each month-long treatment period. The urinary excretion of 40Ca and 47Ca decreased 50% to 75% during the exercise periods. Retention of 47Ca increased during the exercise periods, but the retention of dietary Ca (40Ca) did not change. The efficiency of Ca absorption ...
Growth rate in thoroughbred yearlings and two year olds.
Equine veterinary journal    July 1, 1976   Volume 8, Issue 3 133-134 doi: 10.1111/j.2042-3306.1976.tb03321.x
Green DA.One hundred and four animals aged 13-18 months were measured at monthly or two monthly intervals, as were comparable numbers of animals 19-36 months old. Height, girth and circumference of the cannon bone below the knee were recorded, measurements for colts and fillies are shown separately. The average height at 18 months was 148 cm (15.01/2 h.h.) and at 36 months 156 cm (15.31/2 h.h.).
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...
Scaling stride frequency and gait to animal size: mice to horses.
Science (New York, N.Y.)    December 20, 1974   Volume 186, Issue 4169 1112-1113 doi: 10.1126/science.186.4169.1112
Heglund NC, Taylor CR, McMahon TA.The stride frequency at which animals of different size change from one gait to another (walk, trot, gallop) changes in a regular manner with body mass. The speed at the transition from trot to gallop can be used as an equivalent speed for comparing animals of different size. This transition point occurs at lower speeds and higher stride frequencies in smaller animals. Plotting stride frequency at the trot-gallop transition point as a function of body mass in logarithmic coordinates yields a straight line.
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
Mineral composition of the whole body, liver and bone of young horses.
The Journal of nutrition    January 1, 1974   Volume 104, Issue 1 126-132 doi: 10.1093/jn/104.1.126
Schryver HF, Hintz HF, Lowe JE, Hintz RL, Harper RB, Reid JT.No abstract available
Blood volumes and total body water in the domestic pony.
Journal of applied physiology    March 1, 1973   Volume 34, Issue 3 341-343 doi: 10.1152/jappl.1973.34.3.341
Deavers S, Rosborough JP, Garner HE, Huggins RA, Amend JF.No abstract available
[Effect of ionized air on the body of horses].
Veterinariia    December 1, 1972   Volume 12 24-25 
Khrenov NM, Kretinin VK, Vorob'eva ZhN, Kalinichenko LM, Golovko PD.No abstract available
Blood constituent changes in fasted ponies.
American journal of veterinary research    October 1, 1972   Volume 33, Issue 10 1941-1946 
Baetz AL, Pearson JE.No abstract available
[Fatty acid composition of depot fat in various body regions of the horse].
Zeitschrift fur Tierphysiologie, Tierernahrung und Futtermittelkunde    July 1, 1972   Volume 29, Issue 6 285-289 
Lingk W.No abstract available
Effect of protein levels on the growth of weanling and yearling ponies.
Journal of animal science    April 1, 1972   Volume 34, Issue 4 578-581 doi: 10.2527/jas1972.344578x
Jordan RM, Myers V.No abstract available
Energy requirements of light horses for various activities.
Journal of animal science    January 1, 1971   Volume 32, Issue 1 100-102 doi: 10.2527/jas1971.321100x
Hintz HF, Roberts SJ, Sabin SW, Schryver HF.No abstract available
[The relation between placental villous surface and neonatal weight in various mammals].
Zeitschrift fur Anatomie und Entwicklungsgeschichte    January 1, 1970   Volume 131, Issue 1 31-38 
Baur R.No abstract available
Weight of horses: improved estimates based on girth and length.
The Canadian veterinary journal = La revue veterinaire canadienne    December 1, 1969   Volume 10, Issue 12 314-316 
Milner J, Hewitt D.No abstract available
A study of growth rate in thoroughbred foals.
The British veterinary journal    October 1, 1969   Volume 125, Issue 10 539-546 doi: 10.1016/s0007-1935(17)48714-8
Green DA.No abstract available
The nucleic acid content of skeletal muscle and liver in mammals of different body size.
Comparative biochemistry and physiology    February 1, 1969   Volume 28, Issue 2 897-905 doi: 10.1016/0010-406x(69)92123-9
Munro HN, Gray JA.No abstract available
Ventricular volumes and body weight in mammals.
The American journal of physiology    September 1, 1968   Volume 215, Issue 3 704-715 doi: 10.1152/ajplegacy.1968.215.3.704
Holt JP, Rhode EA, Kines H.No abstract available
[Body temperatures of horses before, during and after a military test].
Deutsche tierarztliche Wochenschrift    October 15, 1967   Volume 74, Issue 20 515-519 
Hörnicke H, von Engelhardt W, Ehrlein HJ.No abstract available
A thesis concerning the processes of secretion and discharge of sweat.
Environmental research    June 1, 1967   Volume 1, Issue 1 28-45 doi: 10.1016/0013-9351(67)90004-7
Bligh J.No abstract available
Activity of carbonic anhydrase in mammalian blood in relation to body size.
Comparative biochemistry and physiology    May 1, 1967   Volume 21, Issue 2 357-360 doi: 10.1016/0010-406x(67)90797-9
Magid E.No abstract available