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Topic:Physiology

The physiology of horses encompasses the study of the biological functions and processes that occur within the equine body. This includes the examination of various systems such as the cardiovascular, respiratory, musculoskeletal, digestive, and nervous systems. Understanding equine physiology is essential for comprehending how horses adapt to different environmental conditions, perform physical activities, and respond to health challenges. Research in this field often focuses on the mechanisms of energy metabolism, thermoregulation, and muscle function during exercise, as well as the physiological responses to stress and disease. This page compiles peer-reviewed research studies and scholarly articles that explore the diverse aspects of equine physiology, providing insights into the biological processes that support the health and performance of horses.
Renal electron spin resonance spectra in several species of mammals.
Archives internationales de physiologie et de biochimie    October 1, 1971   Volume 79, Issue 4 801-803 
Maréchal R, Barac G.No abstract available
[Multi-layered squamous epithelium of the foregut in the pig, horse and domestic ruminants].
Schweizer Archiv fur Tierheilkunde    October 1, 1971   Volume 113, Issue 10 561-576 
Wille KH, Schummer A, Schnorr B.No abstract available
Relative dye-binding capacity of albumin from several species with HABA, bromocresol green and Spectru AB-2.
Analytical biochemistry    October 1, 1971   Volume 43, Issue 2 575-581 doi: 10.1016/0003-2697(71)90289-2
Pemberton JR, DeJong J.No abstract available
The complete enzymic hydrolysis of horse muscle acyl phosphatase.
Life sciences. Pt. 2: Biochemistry, general and molecular biology    September 8, 1971   Volume 10, Issue 17 983-988 doi: 10.1016/0024-3205(71)90101-9
Ramponi G, Cappugi G, Treves C, Nassi P.No abstract available
Preliminary investigation of the actions of Immobilon in the horse.
The Veterinary record    September 4, 1971   Volume 89, Issue 10 280-281 doi: 10.1136/vr.89.10.280-a
Hillidge CJ, Lees P.No abstract available
Studies on the IgA system of the horse.
Immunology    September 1, 1971   Volume 21, Issue 3 443-454 
Vaerman JP, Querinjean P, Heremans JF.Equine serum and secretions were found to contain a protein which cross-reacted with an antiserum against human IgA, but not with antisera against any other human immunoglobulin. The physicochemical properties of equine IgA resembled those of human IgA. IgA was found to be the immunoglobulin having the highest secretion serum concentration ratio in equine lacteal and salivary secretions, and to be the protein produced by the majority of immunoglobulin-containing cells in the of the equine intestine.
[Serum gonadotropins (pregnant mare serum gonadotropins) in crossbreed offspring of small brood mares–biological and immunological qualities].
Veterinarni medicina    September 1, 1971   Volume 16, Issue 9 563-570 
Arendarcik J, Halagan J.No abstract available
Ammonia in the large intestine of herbivores.
The British journal of nutrition    September 1, 1971   Volume 26, Issue 2 135-145 doi: 10.1079/bjn19710020
Hecker JF.No abstract available
[Combined inhibition of horse serum cholinesterase by diphenylphosphinic and diphenylthiophosphinic esters].
Doklady Akademii nauk SSSR    September 1, 1971   Volume 200, Issue 1 103-106 
Brestkin AP, Brik IL, Volkova RI, Godovikov NN, Gurdaliev KhKh.No abstract available
Phosphorus metabolism in ponies fed varying levels of phosphorus.
The Journal of nutrition    September 1, 1971   Volume 101, Issue 9 1257-1263 doi: 10.1093/jn/101.9.1257
Schryver HF, Hintz HF, Craig PH.No abstract available
Effects of Bay VA 1470 on respiratory parameters in ponies.
Veterinary medicine, small animal clinician : VM, SAC    September 1, 1971   Volume 66, Issue 9 921 
Garner HE, Amend JF, Rosborough JP.No abstract available
Comparison of serum and plasma thyroxine determinations in horses.
Journal of the American Veterinary Medical Association    August 15, 1971   Volume 159, Issue 4 449-450 
Hightower D, Miller L, Kyzar JR.No abstract available
[Characterization of horse spleen apoferritin by electrofocuing column fractionation].
Igaku to seibutsugaku. Medicine and biology    August 8, 1971   Volume 83, Issue 2 57-60 
Nitsu Y, Ishitani K, Urushizaki K.No abstract available
1,2-Dihydroxy-1-phenylpropane: a metabolite of ephedrine in ponies.
Archives internationales de pharmacodynamie et de therapie    August 1, 1971   Volume 192, Issue 2 291-301 
Nicholson JD.No abstract available
Species difference in plasma insulin responses to intravenous xylitol in man and several mammals.
Endocrinologia japonica    August 1, 1971   Volume 18, Issue 4 309-320 doi: 10.1507/endocrj1954.18.309
Kuzuya T, Kanazawa Y, Hayashi M, Kikuchi M, Ide T.No abstract available
[Efficiency of human and horse erythrocytes in the antistreptolysin reaction].
Zeitschrift fur Immunitatsforschung, experimentelle und klinische Immunologie    August 1, 1971   Volume 142, Issue 2 136-140 
Otto R.No abstract available
Normal blood and milk lead values in horses.
The Canadian veterinary journal = La revue veterinaire canadienne    August 1, 1971   Volume 12, Issue 8 165-167 
Willoughby RA, Brown G.No abstract available
[Prevention of metabolic disorders in animals used by society].
Veterinariia    August 1, 1971   Volume 9 80-82 
Kondrakhin IP.No abstract available
Steroid content of the equine ovary during the reproductive cycle.
The Journal of endocrinology    August 1, 1971   Volume 50, Issue 4 589-597 doi: 10.1677/joe.0.0500589
Younglai EV.Follicular fluid from individual follicles was collected from nine mares in oestrus and the concentration of the following steroids determined by gas—liquid chromatography: progesterone, 17α-hydroxyprogesterone, androstenedione, 19-norandrostenedione, epitestosterone, oestrone and oestradiol. The most vascular follicles, which were probably those destined to ovulate, tended to have the highest steroid concentrations. In these vascular follicles oestradiol was the main steroid found with an average concentration of 151 μg/100 ml. In two out of three samples of follicular fluid taken from...
Catecholamine secretion by the adrenal medulla of the foetal and new-born foal.
The Journal of physiology    August 1, 1971   Volume 216, Issue 3 659-682 doi: 10.1113/jphysiol.1971.sp009546
Comline RS, Silver M.1. The content and output of adrenaline and noradrenaline from the equine adrenal medulla has been investigated under different conditions in foetuses, foals and adult mares.2. In the foetus only small amounts of both amines were secreted in response to stimulation of the peripheral ends of the splanchnic nerves to the gland; during anoxia the adrenal discharge was far greater and was independent of any nervous mechanism.3. Whereas in the ruminant a direct adrenal response to low P(O2) is confined to the noradrenaline cells during foetal life only, the adrenal medulla of the foetal foal secret...
The binding of carbon dioxide by horse haemoglobin.
The Biochemical journal    August 1, 1971   Volume 124, Issue 1 31-45 doi: 10.1042/bj1240031
Kilmartin JV, Rossi-Bernardi L.1. Three modified horse haemoglobins have been prepared: (i) alpha(c) (2)beta(c) (2), in which both the alpha-amino groups of the alpha- and beta-chains have reacted with cyanate, (ii) alpha(c) (2)beta(2), in which the alpha-amino groups of the alpha-chains have reacted with cyanate, and (iii) alpha(2)beta(c) (2), in which the two alpha-amino groups of the beta-chain have reacted with cyanate. 2. The values of n (the Hill constant) for alpha(c) (2)beta(c) (2), alpha(2)beta(c) (2) and alpha(c) (2)beta(2) were (respectively) 2.5, 2.0 and 2.6, indicating the presence of co-operative interactions ...
Evidence for selective differences between cells with an active horse X chromosome and cells with an active donkey X chromosome in the female mule.
Nature    July 30, 1971   Volume 232, Issue 5309 349-350 doi: 10.1038/232349a0
Hook EB, Brustman LD.No abstract available
Non-random X chromosome expression in female mules and hinnies.
Nature    July 30, 1971   Volume 232, Issue 5309 312-315 doi: 10.1038/232312a0
Hamerton JL, Richardson BJ, Gee PA, Allen WR, Short RV.No abstract available
Haptoglobins in the horse.
The Veterinary record    July 24, 1971   Volume 89, Issue 4 106-109 doi: 10.1136/vr.89.4.106
Allen B, Archer RK.No abstract available
The subunit structure of horse spleen apoferritin. I. The molecular weight of the subunit.
The Journal of biological chemistry    July 10, 1971   Volume 246, Issue 13 4198-4205 
Bryce CF, Crichton RR.No abstract available
Disturbances of cardiopulmonary function in anaesthetised horses.
Equine veterinary journal    July 1, 1971   Volume 3, Issue 3 95-98 doi: 10.1111/j.2042-3306.1971.tb04447.x
Hall LW.No abstract available
Effect of age on erythrogram values of thoroughbred horses from 1 to 12 months of age.
Zentralblatt fur Veterinarmedizin. Reihe A    July 1, 1971   Volume 18, Issue 5 395-400 doi: 10.1111/j.1439-0442.1971.tb00592.x
Medeiros LO, Martins LF, Ferri S, Barcelos SR.No abstract available
Erythrocyte sedimentation rate studies in sheep, dog, and horse.
The Cornell veterinarian    July 1, 1971   Volume 61, Issue 3 386-399 
Osbaldiston GW.No abstract available
A dynamometer for controlled exercise of Shetland ponies.
American journal of veterinary research    July 1, 1971   Volume 32, Issue 7 1091-1095 
Morgan AH, Brown DG, Thomas TH.No abstract available
Calcium and phosphorus inter-relationships in horse nutrition.
Equine veterinary journal    July 1, 1971   Volume 3, Issue 3 102-109 doi: 10.1111/j.2042-3306.1971.tb04449.x
Schryver HF, Hintz HF, Lowe JE.No abstract available