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Topic:Virology

Virology in horses encompasses the study of viruses that affect equine species, including their biology, transmission, and impact on horse health. This field investigates viral pathogens that can lead to a range of diseases, from respiratory infections to neurological disorders. Common viruses affecting horses include equine influenza virus, equine herpesvirus, and West Nile virus. Understanding these viruses involves examining their genetic makeup, modes of transmission, and interactions with the equine immune system. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, and control measures of viral infections in horses.
EQUINE encephalomyelitis.
Research program. United States. Army. Medical Department    January 1, 1948   Volume 90 166 
No abstract available
Studies on the complement-fixation reaction in virus systems; equine encephalomyelitis virus antigens and antisera.
The Cornell veterinarian    October 1, 1947   Volume 37, Issue 4 341-348 
RICE CE.No abstract available
[Blood, urine and cerebrospinal fluid in a form of encephalo-myelitis of equines].
Bulletin de l'Academie veterinaire de France    April 1, 1947   Volume 20, Issue 4 182-186 
ROSSI P.No abstract available
An outbreak of equine virus abortion in California.
Journal of the American Veterinary Medical Association    December 1, 1946   Volume 109, Issue 837 468 
TRAUM J, MADERIOUS WE.This research article documents an equine virus abortion outbreak at a California Thoroughbred stud. The researchers investigated the cause of the disease, confirming it to be the equine virus abortion […]
The pathology of equine virus abortion.
Journal of the American Veterinary Medical Association    August 1, 1946   Volume 109 101-111 
WESTERFIELD C, DIMOCK WW.No abstract available
Corneal reaction to viruses of equine encephalomyelitis after intra-ocular injection. EVANS CA, BOLIN VS.No abstract available
Results of inoculating Okinawan horses with the virus of Japanese B encephalitis. THOMAS L, PECK JL.No abstract available
Adsorptive function of the reticulo-endothelial system in virus infections (infectious encephalomyelitis and infectious anemia in horses).
Biulleten' eksperimental'noi biologii i meditsiny    January 1, 1945   Volume 20, Issue 9 12-15 
GINDIN AP.No abstract available
Experiments on the Transmission of an Icterogenic Agent in Yellow Fever Vaccine to Horses and Swine.
Journal of bacteriology    July 1, 1944   Volume 48, Issue 1 45-69 doi: 10.1128/jb.48.1.45-69.1944
Carle BN, Dewhirst WH, Braun W, Eaton MD.No abstract available
The Course of Experimental Infection of the Chick Embryo with the Virus of Equine Encephalomyelitis.
The Journal of experimental medicine    April 1, 1943   Volume 77, Issue 4 337-344 doi: 10.1084/jem.77.4.337
Bang FB.The titration curve for the virus of Eastern equine encephalomyelitis inoculated into the 10 day old chick embryo shows that the maximum increase in virus content continues until shortly before the generalized destruction of the embryo is apparent. This is followed by a stationary phase. Histological studies of infected embryos fail to demonstrate selective tissue destruction, and titrations show the virus to be distributed throughout the egg, although concentrated in the embryo. The chorioallantoic membrane gradually becomes increasingly resistant with age to both the Eastern and Western viru...
Cross-immunity Studies: Between Venezuelan Equine Encephalomyelitis Virus and Eastern, Western, and Argentine Virus.
Canadian journal of comparative medicine and veterinary science    December 1, 1942   Volume 6, Issue 12 357-359 
Kubes V, Diamante A.No abstract available
Equine Encephalomyelitis.
British medical journal    August 2, 1941   Volume 2, Issue 4204 163-164 
No abstract available
Equine Encephalomyelitis Virus.
Canadian journal of comparative medicine and veterinary science    March 1, 1940   Volume 4, Issue 3 78-82 
Gwatkin R, Moore T.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
Studies on Eastern Equine Encephalomyelitis: III. Intraocular Infection with Fixed Virus in the Guinea Pig.
The Journal of experimental medicine    April 30, 1939   Volume 69, Issue 5 691-704 doi: 10.1084/jem.69.5.691
King LS.The behavior of a fixed strain of Eastern equine encephalomyelitis virus was studied in guinea pigs after intraocular inoculation. Such inoculation concerns the central and not the peripheral nervous system. The susceptibility to intraocular injection lies midway between the highly virulent intracerebral and the quite avirulent peripheral routes. The virus must act for 10 to 13 hours in order to induce a fatal infection. Removal of the inoculated eyeball before this interval almost always prevents fatality although it may allow immunity to develop. The virus, at suitable intervals after inject...
Protective Vaccination of Horses with Modified Equine Encephalomyelitis Virus.
Science (New York, N.Y.)    June 7, 1935   Volume 81, Issue 2110 572 doi: 10.1126/science.81.2110.572
Traub E, Broeck CT.No abstract available
COMPARATIVE STUDIES ON THE VIRUSES OF VESICULAR STOMATITIS AND EQUINE ENCEPHALOMYELITIS (1).
The Journal of experimental medicine    January 31, 1934   Volume 59, Issue 2 159-171 doi: 10.1084/jem.59.2.159
Olitsky PK, Cox HR, Syverton JT.We have studied certain properties, additional to those previously described (3), of the virus of vesicular stomatitis of horses, and of the characteristic biological reactions of the virus of equine encephalomyelitis. It has been found that the virus of stomatitis, ordinarily dermotropic, can acquire neurotropism and the neurotropic encephalomyelitis virus can, in turn, be rendered dermotropic in its action. The neurotropism in both instances is associated with definite, although not pronounced, viscerotropism. Both viruses can bring about a similar infection in the white mouse, rat, guinea p...
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
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
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...
Analogies between Influenza of Horses and Influenza of Man.
Proceedings of the Royal Society of Medicine    January 1, 1924   Volume 17, Issue Sect Epidemiol State Med 47-58 
Williams AJ.No abstract available
Equine Herpesvirus-1 Myeloencephalopathy.
   March 17, 2026  
Although equine herpesvirus myeloencephalopathy (EHM) is a relatively uncommon manifestation of equine herpesvirus-1 (EHV-1) infection, it can cause devastating losses during outbreaks. Antemortem diagnosis of EHM relies mainly on the molecular detection of EHV-1 in nasal secretions and blood. Management of horses affected by EHM is aimed at supportive nursing and nutritional care, at reducing central nervous system inflammation and preventing thromboembolic sequelae. Horses exhibiting sudden and severe neurologic signs consistent with a diagnosis of EHM pose a definite risk to the surrounding...
Rabies.
   March 17, 2026  
Equine rabies is a sporadic but highly fatal zoonotic disease. The disease persists in wildlife populations throughout the United States, Canada, Mexico, and other parts of the world. It remains a threat to all domestic species, including the horse. This article reports recent advances in the molecular virology of the rabies virus and its pathogenesis, and it also reviews the history, clinical signs, diagnostic tests, vaccination protocols, and postexposure management recommendations for the equine species.
[Development of PCR methods for detection of EAV infection].
   March 17, 2026  
The goal of this work was the development of suitable (real-time) RT-PCR techniques for fast and sensitive diagnosis of EAV and for molecular-epidemiological characterisation of viral strains, as an alternative to virus isolation. To this purpose two conventional RT-PCR methods and one real-time RT-PCR were adapted to detect the broadest possible spectrum of viral strains. Several dilutions with Bucyrus strain showed a 100-fold higher sensitivity of real-time RT-PCR and heminested RT-PCR compared to simple RT-PCR. Making use of 11 cell culture supernatants of different EAV isolates and 7 semen...
Integrated analysis of human-animal-vector surveillance: West Nile virus infections in Austria, 2015-2016.
   March 17, 2026  
The results of integrated human and veterinary surveillance for West Nile virus (WNV) infections in Austria during the transmission seasons 2015 and 2016 are shown. Altogether WNV nucleic acid was detected in 21 humans, horses, wild birds and mosquito pools. In detail: in four human clinical cases [two cases of West Nile fever (WNF) and two cases of West Nile neuroinvasive disease (WNND)]; eight blood donors [among 145,541 tested donations], of which three remained asymptomatic and five subsequently developed mild WNF; two horses with WNND, of which one recovered and one had to be euthanized; ...
Equine arteritis virus.
   March 17, 2026  
Equine arteritis virus (EAV) is the causative agent of equine viral arteritis (EVA), a respiratory and reproductive disease of equids. There has been significant recent progress in understanding the molecular biology of EAV and the pathogenesis of its infection in horses. In particular, the use of contemporary genomic techniques, along with the development and reverse genetic manipulation of infectious cDNA clones of several strains of EAV, has generated significant novel information regarding the basic molecular biology of the virus. Therefore, the objective of this review is to summarize cur...
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