Analyze Diet

Topic:Temperature

Temperature regulation in horses involves physiological processes that maintain the animal's core body temperature within a narrow, optimal range despite external environmental changes. Horses, being homeothermic animals, rely on mechanisms such as sweating, respiration, and blood flow adjustments to dissipate excess heat or conserve warmth. These thermoregulatory processes are influenced by factors such as exercise, humidity, and ambient temperature. Variations in temperature can affect a horse's performance, health, and overall well-being. This page aggregates peer-reviewed research studies and scholarly articles that explore the mechanisms, effects, and implications of temperature regulation in equine physiology.
The purification of cholinesterase from horse serum.
The Biochemical journal    December 1, 1974   Volume 143, Issue 3 733-744 doi: 10.1042/bj1430733
Main AR, Soucie WG, Buxton IL, Arinc E.A relatively simple method is described by which cholinesterase was purified about 19000-fold starting from horse serum. Typically 20 litres of serum were processed to yield 15-18mg of electrophoretically pure cholinesterase in the form of an active salt-free dry powder. The method included two stages: fractionation with (NH(4))(2)SO(4) and ion-exchange chromatography. The (NH(4))(2)SO(4) stage included, in principle, the acid (pH3) step of the Strelitz (1944) procedure. The step took advantage of the stabilizing effect that 33%-satd. (NH(4))(2)SO(4) has on cholinesterase activity at pH3 and i...
Clinical thermography.
CRC critical reviews in bioengineering    February 1, 1974   Volume 2, Issue 1 39-94 
Wallace JD, Cade CM.No abstract available
Sleep and wakefulness in the housed pony under different dietary conditions.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1974   Volume 38, Issue 1 65-71 
Dallaire A, Rucklebusch Y.For several weeks, three ponies kept in an environment with controlled light and temperature, were studied for behaviour (time spent in recumbency and time required to consume hay or oats) and for electrical activity of the brain (cortical and sub-cortical) during the night phase of the circadian rhythm. Recumbency was adopted by all the ponies for six or seven periods during the night. With a regimen of hay ad libitum, about four hours were cumulated in sternal recumbency and only one hour in complete lateral recumbency. Various degree of sleep, as identified by cortical and hippocampal elect...
Persistent temperature and anemia: a diagnostic perspective.
Modern veterinary practice    August 1, 1973   Volume 54, Issue 8 64-66 
Finocchio EJ, Coffman JR.No abstract available
Respiration in exercised horses wearing cold weather masks.
Equine veterinary journal    July 1, 1973   Volume 5, Issue 3 131-134 doi: 10.1111/j.2042-3306.1973.tb03211.x
Dziuk HE, Usenik EA, Myers VS.No abstract available
Some local effects of 60 cobalt gamma radiation on the equine carpus. 1. Effects on dermal blood flow and cutaneous temperature.
Australian veterinary journal    March 1, 1973   Volume 49, Issue 3 130-134 doi: 10.1111/j.1751-0813.1973.tb06759.x
Dixon RT, Gillette EL, Carlson WD.No abstract available
[Low temperature thresholds of reproduction of group A arboviruses in tissue culture].
Voprosy virusologii    May 1, 1972   Volume 17, Issue 3 283-287 
L'vov DK, Cheban DS, TsilinskiÄ­ IaIa.No abstract available
Stability of live attenuated Venezuelan equine encephalitis vaccine.
Applied microbiology    March 1, 1972   Volume 23, Issue 3 654-655 doi: 10.1128/am.23.3.654-655.1972
McManus AT, Robinson DM.Reconstituted Venezulean equine encephalitis vaccine was found to retain significant titers of plaque-forming virus after storage at 4 or 22 C for 24 hr.
The evolution of thermoregulatory sweating in man and animals.
International journal of biometeorology    December 1, 1971   Volume 15, Issue 2 263-267 doi: 10.1007/BF01803909
Robertshaw D.No abstract available
Heat-labile factor necessary for hemagglutination-inhibition testing of horse sera.
Applied microbiology    May 1, 1971   Volume 21, Issue 5 860-861 doi: 10.1128/am.21.5.860-861.1971
DeMeio JL, DeSanctis AN.Normal and immune sera were obtained from horses immunized with either aqueous, alum, or adjuvant bivalent vaccines containing Milford equine 2 virus. Upon heating at 56 C for 30 min, a factor, required for hemagglutination-inhibition but not complement fixation or neutralization testing, was destroyed. This factor which is present in normal sera does not appear to be complement.
Thermal stability of horse liver alcohol dehydrogenase and its complexes.
Archives of biochemistry and biophysics    April 1, 1971   Volume 143, Issue 2 354-358 doi: 10.1016/0003-9861(71)90221-9
Theorell H, Tatemoto K.No abstract available
[Temperature increase in the hoof during the “hot fitting of horseshoes”].
Wiener tierarztliche Monatsschrift    January 1, 1971   Volume 58, Issue 4 155-157 
Smith M.No abstract available
Observations on dosage of drugs for anesthesia of domestic animals in temperature and tropical climate.
International journal of biometeorology    December 1, 1969   Volume 13, Issue 3 257-264 doi: 10.1007/BF01553033
Krahenmann JA.No abstract available
A comparative study of the temporal patterns of cutaneous water vapour loss from some domesticated mammals with epitrichial sweat glands.
Comparative biochemistry and physiology    October 15, 1969   Volume 31, Issue 2 347-363 doi: 10.1016/0010-406x(69)91659-4
Allen TE, Bligh J.1. The temporal patterns of cutaneous water vapour loss from the skin of the sheep, goat, ox, horse, donkey and llama during exposure to 40°C Ta and during i.v. injections and infusions of adrenaline are examined. 2. It is concluded that there are marked species variations in the extent to which the discharge of sweat is affected by periodic contractions of the myoepithelium, or by simple displacement of fluid from the filled lumen as more fluid is secreted into it.
Rate of O2 dissociation from O2Hb and relative combination rate of CO and O2 in mammals at 37 degrees C.
Respiration physiology    June 1, 1969   Volume 7, Issue 1 30-42 doi: 10.1016/0034-5687(69)90067-x
Holland RA.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
Physiological mechanisms that underlie sweating in the horse.
The British veterinary journal    March 1, 1966   Volume 122, Issue 3 117-123 
Evans CL.No abstract available
Influences of time and temperature on the thoroughbred blood specimen.
Journal of the American Veterinary Medical Association    February 15, 1966   Volume 148, Issue 4 391-394 
Ebelhare JS, Saurino VR, Teigland MB.No abstract available
Cell and Solution Velocity Constants for the Reaction CO + Hb –> COHb at Different Temperatures in Mammals with Different Red Cell Sizes.
The Journal of general physiology    November 1, 1965   Volume 49, Issue 2 199-220 doi: 10.1085/jgp.49.2.199
Holland RA.Using a double beam stopped-flow apparatus, measurements were made of the velocity constant of the reaction CO + Hb --> COHb in solution and in the red cells of human beings, rabbits, horses, and goats. The solution constant (l') at 37 degrees C for human beings was 362 mM(-1) sec.(-1); in other species l' was somewhat lower. Two rabbits, despite having apparently identical hemoglobins had significantly different values for l'. The energy of activation (E) of l' was between 8 and 11 kcal/mole in all cases. The cell reaction constant (l'(c)) at 37 degrees was between 61 and 73 mM(-1) sec.(-1...
The effect of time and temperature on the gonadotrophic potency of pregnant mare serum.
American journal of veterinary research    July 1, 1960   Volume 21 585-590 
SANTAMARINA E, JOVEN LL.No abstract available
On the responsiveness of the sweat glands in the horse.
The Journal of investigative dermatology    December 1, 1959   Volume 33 441-443 doi: 10.1038/jid.1959.167
AOKI T, KIMURA S, WADA M.No abstract available
The relation between sweating and the innervation of sweat glands in the horse.
The Journal of physiology    November 28, 1956   Volume 134, Issue 2 421-426 doi: 10.1113/jphysiol.1956.sp005654
BELL FR, EVANS CL.No abstract available
The relation between sweating and the catechol content of the blood in the horse.
The Journal of physiology    June 28, 1956   Volume 132, Issue 3 542-552 doi: 10.1113/jphysiol.1956.sp005547
EVANS CL, SMITH DF, WEIL-MALHERBE H.No abstract available
Sweating responses in the horse.
Proceedings of the Royal Society of London. Series B, Biological sciences    March 27, 1956   Volume 144, Issue 918 61-83 doi: 10.1098/rspb.1956.0018
EVANS CL, SMITH DF.No abstract available
[Biology of virus of infectious equine abortion; thermal reactions of guinea pigs].
Medycyna doswiadczalna i mikrobiologia    January 1, 1952   Volume 4, Issue 3 379-382 
WOYCIECHOWSKA S, BRILL J.No abstract available
[Various factors influencing the normal body temperature of the horse].
Schweizer Archiv fur Tierheilkunde    January 1, 1951   Volume 93, Issue 1 22-45 
NUSSBAUMER J.No abstract available
Alopecia of the cheek in horses in hot weather.
The Journal of the Royal Army Veterinary Corps    August 1, 1947   Volume 18, Issue 4 126 
CHLADEK V.No abstract available
Antiproteins in Horse Sera: III. Antibodies to Rabbit Serum Albumin and Their Reaction with Antigen.
The Journal of experimental medicine    July 31, 1947   Volume 86, Issue 2 83-94 doi: 10.1084/jem.86.2.83
Treffers HP, Heidelberger M, Freund J.1. Two horses were injected subcutaneously with alum-precipitated rabbit serum albumin. 2. The resulting antibody resembled diphtheria antitoxin and anti-egg albumin in the horse in giving a sharp zone of flocculation with antigen, in being water-soluble, in reactivity toward an anti-antibody rabbit serum, and in its electrophoretic properties. 3. The effect of continued immunization, and of variation in volume and temperature on the reactivity of the antibody are discussed. 4. Intravenous injection of the same antigen into horses did not give rise to detectable amounts of antibody of the same...
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