Analyze Diet

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.
Penicillin dosage and blood levels for horses.
Journal of the American Veterinary Medical Association    April 1, 1946   Volume 108 209-214 
DOLL ER, DIMOCK WW.No abstract available
The adrenals of the horse.
The British veterinary journal    February 1, 1946   Volume 102 27-36 doi: 10.1016/s0372-5545(17)31702-9
SPEED JG, MORRIS PG.No abstract available
An observation of the red cell content of the blood of the thoroughbred horse.
Science (New York, N.Y.)    January 18, 1946   Volume 103, Issue 2664 73 
MacLEOD J, PONDER E.No abstract available
A further sulphuric acid ester from the urine of pregnant mares.
The Biochemical journal    January 1, 1946   Volume 40, Issue 5-6 lv 
KLYNE W.No abstract available
Further studies on the metabolism of nicotinic acid and related compounds in the horse.
Archives of biochemistry    January 1, 1946   Volume 9 99-104 
HUFF JW, PEARSON PB, PERLZWEIG WA.No abstract available
The recognition of material present in horse muscle affecting the formation of alpha-toxin by a strain of Clostridium welchii.
The Biochemical journal    January 1, 1946   Volume 40, Issue 3 400-406 doi: 10.1042/bj0400400
Rogers HJ, Knight BC.No abstract available
The lymphatic circulation of the hind limbs of the horse.
The Cornell veterinarian    January 1, 1946   Volume 36 51-66 
ROSSOFF I.No abstract available
[Influence of bloodletting on the decrease in tan immunity in horses].
Bulletin de l'Academie de medecine    January 1, 1946   Volume 130, Issue 34-35 583 
LEMETAYER E, NICOL L.No abstract available
Physical, chemical and immunological properties of phosphorylated crystalline horse serum albumin.
Journal of the American Chemical Society    January 1, 1946   Volume 68 18-25 doi: 10.1021/ja01205a007
MAYER M, HEIDELBERGER M.No abstract available
[Static and mechanical in the appreciation of the horse].
Schweizer Archiv fur Tierheilkunde    December 1, 1945   Volume 87 527-546 
CARNAT G.No abstract available
Gonadotropic activity of equine gonadotropin in combination with zinc.
The American journal of physiology    November 1, 1945   Volume 145 28-31 doi: 10.1152/ajplegacy.1945.145.1.28
LEATHEM JH.No abstract available
Horse brain thromboplastin; effect of various factors on activity of horse brain extracts. KAZAL LA, HIGASHI A, ARNOW LE.No abstract available
[Bilateral equine varus foot bot].
Archivos. Sociedad de Cirujanos de Hospital, Santiago de Chile    September 1, 1945   Volume 15 701-703 
GARAVAGNO TC.No abstract available
The isolation of estrone sulfate from the urine of stallions.
Revue canadienne de biologie    January 1, 1945   Volume 4, Issue 4 535-537 
JENSEN H, LARIVIERE M, ELIE JJ.No abstract available
An equine hermaphrodite.
The Cornell veterinarian    January 1, 1945   Volume 35 373-375 
BRITTON JW.No abstract available
The isolation of a new sulphuric acid ester from the urine of pregnant mares.
The Biochemical journal    January 1, 1945   Volume 39, Issue 5 xlv 
KLYNE W, MARRIAN GF.No abstract available
Study of horse fatigue on change of step length.
Biulleten' eksperimental'noi biologii i meditsiny    January 1, 1945   Volume 20, Issue 10 62-64 
SCHERBAKOV NM.No abstract available
Anesthesia in horses and swine. DANKS AG.No abstract available
Oesophageal Conditions in Horses.
Canadian journal of comparative medicine (Gardenvale, Quebec)    January 1, 1939   Volume 3, Issue 1 26-28 
Hafele JA.No abstract available
EFFECT OF FORMALIN ON THE VIRUS OF VESICULAR STOMATITIS OF HORSES.
The Journal of experimental medicine    May 31, 1928   Volume 47, Issue 6 835-841 doi: 10.1084/jem.47.6.835
Olitsky PK, Long PH.The virus of vesicular stomatitis is not readily killed by formalin. This chemical is one of a group which coagulates the proteins of the medium in which the virus is usually contained. It has already been found(7) that other reagents of the protein-coagulating group are not actively virucidal) and the effect of formalin in this instance is therefore characteristic of the group. The so called formalinized vaccines which give rise to immunity can be shown to have done so because of the presence of living virus. A single injection of such so called "vaccine," or of other material containing livi...
The Electrophoresis of the Blood Platelets of the Horse with Reference to Their Origin and to Thrombus Formation.
The Journal of experimental medicine    April 30, 1928   Volume 47, Issue 5 677-683 doi: 10.1084/jem.47.5.677
Abramson HA.1. The cataphoretic velocity of blood platelets (horse) in plasma has been found to be between 40 and 51 micro per sec. per volt per cm. The mean velocity obtained from five horses is . 45 micro per sec. per volt per cm. 2. The cataphoretic velocity of polymorphonuclear leucocytes in similar specimens is practically identical with that of the platelets. This is noteworthy because of the fact that lymphocytes and red cells have different speeds. 3. With spontaneous agglutination of platelets, white cells and red cells, there is no change in the cataphoretic velocity incidental to aggregation. 4...
The Precipitin Reaction of Antipneumococcus Sera: II. The Ratio of Precipitin to Protective Antibody.
The Journal of experimental medicine    January 1, 1928   Volume 47, Issue 1 79-89 doi: 10.1084/jem.47.1.79
Friedlander M, Sobotka H, Banzhaf EJ.The precipitin indices for a number of monovalent and polyvalent antipneumococcus sera were determined under known conditions, and found to vary as did the number of protective units. The ratio precipitin index/protective units in monovalent sera was found to lie between 2.8 and 4.8 for Type I and to be about ten times greater for Type III. Lower values were found in polyvalent horses and when mixing heterologous monovalent sera with each other. The influence of the duration of treatment upon the quotient was studied. Several refined and concentrated preparations showed a relative increase in ...
The Occurrence of Degraded Pneumococci in Vivo.
The Journal of experimental medicine    April 30, 1927   Volume 45, Issue 5 807-814 doi: 10.1084/jem.45.5.807
Reimann HA.It is conceivable that a change from the virulent, non-phagocytable S form of Pneumococcus to the avirulent phagocytable R form may take place in pneumococcus disease, but the experiments here reported do not settle the question whether or not this is an important factor in determining the outcome in natural infection. It has been shown experimentally that the degradation from the S form to the R form actually does take place in cultures of Pneumococcus growing in agar subcutaneously embedded in guinea pigs, in agar enclosed in vials subcutaneously embedded in rabbits, and spontaneously in the...
A Specific Flocculation Reaction Occurring Between Alcoholic Extracts of Pneumococci and Antipneumococcus Serum.
The Journal of experimental medicine    January 31, 1927   Volume 45, Issue 2 227-241 doi: 10.1084/jem.45.2.227
Jungeblut CW.1. A flocculation reaction has been described which occurs between alcoholic extracts of pneumococci and antipneumococcus serum. 2. The reaction appears to be species-specific. It is not strictly type-specific, as slight or moderate cross-reactions occurred between Type I serums and Type II and Type III extracts. 3. The flocculating power of the serum from five horses undergoing immunization with pneumococcus, Type I, did not develop to any extent before the end of the 4th or 5th month. 4. In the case of two of these horses in which it was possible to carry out parallel tests on a larger numbe...
The Blood of Equines.
The Biochemical journal    January 1, 1922   Volume 16, Issue 6 770-779 doi: 10.1042/bj0160770
Neser CP.No abstract available
The Quantitative Changes in the Proteins in the Blood Plasma of Horses in the Course of Immunization.
The Journal of experimental medicine    May 1, 1910   Volume 12, Issue 3 411-434 doi: 10.1084/jem.12.3.411
Gibson RB, Banzhaf EJ.Gravimetric determinations were recorded for the total and several individual proteins (in the sodium oxalate plasma) fractioned with ammonium sulphate and sodium chloride. At precipitation, the plasma salt mixture had been diluted to a final volume of ten times the amount of plasma employed. Coagulations were on aliquot portions of filtrates, and the individual protein constituents (except serumalbumin) were calculated by difference. The eleven horses had been subjected to simultaneous immunization against diphtheria and tetanus toxins, each horse being subsequently continued on the toxin to ...
Comparative Statistics of Antitoxin Horses: A Study of the Records of One Hundred Horses Immunized to Diphtheria Toxin, with Composite of Curves.
The Journal of experimental medicine    April 25, 1905   Volume 7, Issue 2 176-182 doi: 10.1084/jem.7.2.176
Hubbert WR.1. Better results in the production of diphtheria antitoxin can be obtained with greater experience in the selection of the most suitable type of horses to be used. Young animals are usually to be preferred. Over one-half of all such horses can be made to yield 300-unit serum, while a third will yield (5)oo-unit serum. 2. High-test horses require a shorter time to immunize and will yield a potent serum for a longer period than will low-test horses. 3. The period of usefulness of an antitoxin horse is short, and on an average endures only a few months. 4. A horse having attained a maximal antit...
Serum-Globulin and Diphtheric Antitoxin: A Comparative Study of the Amount of Globulin in Normal and Antitoxic Sera, and the Relation of the Globulins to the Antitoxic Bodies.
The Journal of experimental medicine    October 1, 1900   Volume 5, Issue 1 47-66 doi: 10.1084/jem.5.1.47
Hiss PH, Atkinson JP.THE RESULTS OF THE FOREGOING EXPERIMENTS MAY BE BRIEFLY SUMMARIZED AS FOLLOWS: The amount of antitoxic substance obtained by precipitation with magnesium sulphate from the blood-serum of the horse corresponds, as nearly as can be determined by the use of test guinea-pigs, in full to the protective power of the serum from which it is obtained, i. e. the precipitate from 1 cc. of serum will protect against the same amount of toxin as 1 cc. of the serum itself. Equal amounts of the precipitates by magnesium sulphate from immunized and non-immunized horses act differently toward toxin; i. e. the p...
The Fractional Precipitation of the Globulin and Albumin of Normal Horse’s Serum and Diphtheria Antitoxic Serum, and the Antitoxic Strength of the Precipitates.
The Journal of experimental medicine    October 1, 1900   Volume 5, Issue 1 67-76 doi: 10.1084/jem.5.1.67
Atkinson JP.1. The globulins of both normal and diphtheria antitoxic serum exhibit chemically toward reagents the same reactions, being precipitated by magnesium sulphate and split up into fractions in precisely the same way. 2. All of the diphtheric antitoxic power of both normal and immunized serum is always carried by the globulin and its fractional precipitates. 3. During the fractional precipitation of the serum globulin of horses immunized from diphtheria toxin and horses not immunized from diphtheria toxin, some of the globulin is lost, likewise at the same time some of the antitoxic power of the g...
Callosities on Horses’ Legs.
Science (New York, N.Y.)    August 3, 1900   Volume 12, Issue 292 194 doi: 10.1126/science.12.292.194
McGee WJ.No abstract available