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Topic:Diagnosis

Diagnosis in horses involves the systematic identification of diseases and conditions affecting equine health. This process relies on a combination of clinical evaluations, laboratory tests, imaging techniques, and other diagnostic tools to assess the health status of horses. Veterinarians utilize these methods to identify symptoms, determine the underlying causes of health issues, and formulate appropriate treatment plans. Diagnostic procedures in equine medicine can include blood tests, ultrasound, radiography, endoscopy, and more specialized tests such as genetic screening or advanced imaging modalities like MRI and CT scans. This page aggregates peer-reviewed research studies and scholarly articles that explore various diagnostic techniques, their applications, and advancements in the field of equine veterinary medicine.
Phenothiazine and Horses: Its Role in The Control of Parasites of Horses.
Canadian journal of comparative medicine and veterinary science    February 1, 1942   Volume 6, Issue 2 50-54 
Swales WE.No abstract available
Symposia on Equine Encephalomyelitis and Mosquito Control.
Science (New York, N.Y.)    December 5, 1941   Volume 94, Issue 2449 534-535 doi: 10.1126/science.94.2449.534-a
No abstract available
Studies in Equine Encephalomyelitis: Susceptibility of Some Mammals and Birds.
Canadian journal of comparative medicine and veterinary science    November 1, 1941   Volume 5, Issue 11 314-319 
Mitchell CA, Walker RV.No abstract available
Testing Saliva and Urine Samples: For the Detection of Drugs Used to Stimulate Race Horses.
Canadian journal of comparative medicine and veterinary science    September 1, 1941   Volume 5, Issue 9 243-246 
Williams GA, Stone EC.No abstract available
Equine Encephalomyelitis.
British medical journal    August 2, 1941   Volume 2, Issue 4204 163-164 
No abstract available
Equine Encephalitis in the San Joaquin Valley.
California and western medicine    May 1, 1941   Volume 54, Issue 5 264-267 
van Wagenen RJ.No abstract available
Equine Encephalomyelitis: A Clinical Study of A Small Outbreak.
California and western medicine    August 1, 1940   Volume 53, Issue 2 82-84 
Cope JH, Maytum H.No abstract available
Studies in Equine Encephalomyelitis.
Canadian journal of comparative medicine (Gardenvale, Quebec)    November 1, 1939   Volume 3, Issue 11 308-309 
Mitchell CA, Walker RV, McKercher DG.No abstract available
The Causative Agent of Infectious Equine Encephalomyelitis in Venezuela.
Science (New York, N.Y.)    July 7, 1939   Volume 90, Issue 2323 20-21 doi: 10.1126/science.90.2323.20
Kubes V, Ríos FA.No abstract available
Equine Encephalomyelitis.
Canadian journal of comparative medicine (Gardenvale, Quebec)    May 1, 1939   Volume 3, Issue 5 131-133 
Gwatkin R.No abstract available
Poisoning of Horses by a Local Application.
Canadian journal of comparative medicine (Gardenvale, Quebec)    April 1, 1939   Volume 3, Issue 4 113-114 
Maclean CC.No abstract available
Equine Encephalomyelitis in Venezuela: Advance Data Concerning the Causative Agent.
Canadian journal of comparative medicine (Gardenvale, Quebec)    February 1, 1939   Volume 3, Issue 2 43-44 
Kubes V, Rios FA.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
Intraperitoneal and Intracerebral Routes in Serum Protection Tests with the Virus of Equine Encephalomyelitis: I. A Comparison of the Two Routes in Protection Tests.
The Journal of experimental medicine    July 31, 1938   Volume 68, Issue 2 173-189 doi: 10.1084/jem.68.2.173
Olitsky PK, Harford CG.Young (12 to 15 day old) mice are approximately as susceptible to the virus of equine encephalomyelitis, Eastern or Western strain, when it is given intraperitoneally as are adult mice when the virus is injected intracerebrally. With this susceptibility by the intraperitoneal route as a basis, the injection of immune serum-virus mixtures intraperitoneally was found to result in protection in dilutions which give rise to infection after intracerebral inoculation. The difference of protective power by the two indicated routes was shown not to depend on the amount of inoculum nor on the age of th...
A Report of Two Outbreaks of Equine Encephalomyelitis in Saskatchewan.
Canadian journal of comparative medicine (Gardenvale, Quebec)    February 1, 1938   Volume 2, Issue 2 39-46 
Fulton JS.No abstract available
The Blood Sedimentation Test in the Diagnosis of Equine Infectious Anaemia.
Canadian journal of comparative medicine (Gardenvale, Quebec)    January 1, 1938   Volume 2, Issue 1 3-12 
Panisset M.No abstract available
A Six-Chromosome Ascaris in Chinese Horses.
Science (New York, N.Y.)    July 30, 1937   Volume 86, Issue 2222 101-102 doi: 10.1126/science.86.2222.101-a
Li JC.No abstract available
A Pasteurella-Like Microorganism in the Brains of Horses Suffering from So-Called Cornstalk Disease.
Science (New York, N.Y.)    February 8, 1935   Volume 81, Issue 2093 153-154 doi: 10.1126/science.81.2093.153
Graham R.No abstract available
Histological Changes in the Central Nervous System Following Equine Encephalomyelitis.
The American journal of pathology    May 1, 1934   Volume 10, Issue 3 361-374.3 doi: 10.1097/00005053-193501000-00028
Larsell O, Haring CM, Meyer KF.No abstract available
The Histology of Equine Encephalomyelitis.
The Journal of experimental medicine    April 30, 1934   Volume 59, Issue 5 529-542 doi: 10.1084/jem.59.5.529
Hurst EW.The virus of equine encephalomyelitis (eastern strain) evokes in the horse, calf, sheep and dog an unusually intense encephalomyelitis characterized by acute primary degeneration of nerve cells, the appearance in neurons of the brain stem and elsewhere of nuclear inclusions resembling those in Borna disease and poliomyelitis, polymorphonuclear infiltration in the nervous tissues with early microglial proliferation, and perivascular cuffing with mononuclears and polymorphonuclears in varying proportions. The grey matter is affected more than the white. Lesions may be less marked in the striatum...
Relationship of the Viruses of Vesicular Stomatitis and of Equine Encephalomyelitis.
Science (New York, N.Y.)    September 8, 1933   Volume 78, Issue 2019 216-217 doi: 10.1126/science.78.2019.216
Syverton JT, Cox HR, Olitsky PK.No abstract available
Respiratory Infection in Equine Encephalomyelitis.
Science (New York, N.Y.)    July 14, 1933   Volume 78, Issue 2011 41-42 doi: 10.1126/science.78.2011.41
Vawter LR, Records E.No abstract available
The Particle Size of the Virus of Equine Encephalomyelitis.
Science (New York, N.Y.)    March 17, 1933   Volume 77, Issue 1994 288-289 doi: 10.1126/science.77.1994.288
Krueger AP, Howitt B, Zeilor V.No abstract available
THE MELANOMATA OF GREY AND WHITE HORSES.
Canadian Medical Association journal    November 1, 1931   Volume 25, Issue 5 519-530 
Hadwen S.No abstract available
The Transmission of Periodic Ophthalmia of Horses by Means of a Filterable Agent.
The Journal of experimental medicine    September 30, 1930   Volume 52, Issue 4 637-648 doi: 10.1084/jem.52.4.637
Woods AC, Chesney AM.A filterable agent has been obtained from the humors and tissues of the eyes of horses suffering from active periodic ophthalmia. The intra-vitreous injection of this filtrate produced in normal horses the same clinical and pathological picture observed in the natural disease. This filtrate injected into rabbits produced a different clinical picture, but the essential pathological lesions closely resembled those found in horses. After passage of the filterable agent through six generations of rabbits, it again produced the clinical and pathological picture of the natural disease when injected ...
THE PRODUCTION AND TITRATION OF POTENT HORSE ANTIPNEUMOTOXIN.
The Journal of experimental medicine    June 30, 1929   Volume 50, Issue 1 103-107 doi: 10.1084/jem.50.1.103
Parker JT, McCoy MV.1. The serum of horses immunized with increasing doses of certain anaerobically produced autolysates of pneumococci contain potent neutralizing antibodies for the pneumotoxin. 2. The method for the in vitro titration of these horse antipneumotoxic serums is given.
The Relationship of the Flavobacterium Ophthalmiae to Periodic Ophthalmia in Horses.
Transactions of the American Ophthalmological Society    January 1, 1929   Volume 27 131-148 
Woods AC, Burky EL.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 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 ...
A Study of Pneumococci Isolated from Horses Undergoing Pneumococcus Immunization.
The Journal of experimental medicine    April 30, 1927   Volume 45, Issue 5 787-797 doi: 10.1084/jem.45.5.787
Wadsworth AB, Sickles GM.IT HAS BEEN SHOWN THAT THE PNEUMOCOCCUS MULTIPLYING IN THE TISSUES OF THE IMMUNIZED ANIMAL (HORSE) BECOMES ATTENUATED: loses, in varying degrees, its virulence, capacity of capsule formation, susceptibility to phagocytosis, and type specificity. The antigenic activity as an immunizing agent and the production of "soluble specific substance" are also altered. In some instances, the typical pneumococcus characteristics may be quickly restored by one or two passages through a susceptible animal (mouse). In others, virulence is not recovered and the organism remains atypical. Whether these changes...