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Topic:Encephalitis

Encephalitis in horses refers to inflammation of the brain, which can be caused by various infectious agents, including viruses, bacteria, and parasites. This condition affects the central nervous system and can lead to neurological symptoms such as ataxia, seizures, and changes in behavior. Common viral causes of equine encephalitis include Eastern Equine Encephalitis (EEE), Western Equine Encephalitis (WEE), and West Nile Virus (WNV). Diagnosis often involves clinical evaluation, serological testing, and sometimes cerebrospinal fluid analysis. This page compiles peer-reviewed research studies and scholarly articles that explore the etiology, pathogenesis, clinical presentation, and management of encephalitis in horses.
Venezuelan equine encephalitis.
Veterinary heritage : bulletin of the American Veterinary History Society    March 1, 1989   Volume 12, Issue 1 4-9 
Murnane TG.No abstract available
Identification of Highlands J virus from a Florida horse.
The American journal of tropical medicine and hygiene    December 1, 1988   Volume 39, Issue 6 603-606 doi: 10.4269/ajtmh.1988.39.603
Karabatsos N, Lewis AL, Calisher CH, Hunt AR, Roehrig JT.A virus, strain 64A-1519, isolated from the brain of a horse dying of encephalitis in Florida in 1964, was identified as western equine encephalomyelitis (WEE) virus. Recently, we used polyclonal and monoclonal immune reagents to identify this isolate by comparing it to 2 strains of WEE virus and to Highlands J (HJ) virus in hemagglutination-inhibition, immunofluorescent antibody, and plaque-reduction neutralization tests. These tests demonstrate that strain 64A-1519 is a strain of HJ virus distinct from WEE virus.
Cerebrospinal fluid changes in two horses with central nervous system nematodiasis (Micronema deletrix).
Journal of veterinary internal medicine    October 1, 1988   Volume 2, Issue 4 201-205 doi: 10.1111/j.1939-1676.1988.tb00317.x
Darien BJ, Belknap J, Nietfeld J.Two horses with cerebrospinal nematodiasis (Micronema deletrix) had signs similar to those of other neurologic diseases resulting from parasitic (fly larvae, protozoa, or other helminths) migration through the central nervous system (CNS). In one horse (horse 1), a 13-year-old Paso Fino stallion, the cerebrospinal fluid (CSF) was slightly xanthochromic (1+), with a pleocytosis (25 nucleated cells/microliter) and a normal protein level (69 mg/dl). A CSF differential cell count showed 15% neutrophils, 56% lymphocytes, 22% macrophages, 5% eosinophils, and 2% basophils. In the other horse (horse 2...
Encephalitis associated with Borrelia burgdorferi infection in a horse.
Journal of the American Veterinary Medical Association    December 1, 1987   Volume 191, Issue 11 1457-1458 
Burgess EC, Mattison M.Infection with Borrelia burgdorferi was associated with encephalitis in a horse. The horse lived in an area of Wisconsin endemic for B burgdorferi infection. Borrelia burgdorferi was isolated from the brain, but rabies virus was not detected in the brain. Serum obtained from the horse had a B burgdorferi antibody titer of 1:2,048, but was negative for antibodies to eastern and western encephalomyelitis.
Arbovirus isolations from mosquitoes collected during and after the 1982-1983 epizootic of western equine encephalitis in Argentina.
The American journal of tropical medicine and hygiene    January 1, 1987   Volume 36, Issue 1 107-113 doi: 10.4269/ajtmh.1987.36.107
Mitchell CJ, Monath TP, Sabattini MS, Daffner JF, Cropp CB, Calisher CH, Darsie RF, Jakob WL.Mosquitoes were collected in Santa Fe and Rio Negro provinces, Argentina, in 1982-1983 during a western equine encephalitis (WEE) epizootic. Totals of 153,084 mosquitoes from Santa Fe Province and 484 from Rio Negro Province were tested for virus in 2,351 pools. Seventeen virus strains were isolated, all from Santa Fe collections, as follows: 4 WEE, 6 Venezuelan equine encephalitis, 1 St. Louis encephalitis, 2 Antequera, 1 Maguari, 1 Melao, 1 new vesiculovirus (Calchaqui), and 1 Gamboa. The WEE virus isolates were from Aedes albifasciatus, Anopheles albitarsis, Mansonia species, and Psorophora...
Identification of Aedes campestris from New Mexico: with notes on the isolation of western equine encephalitis and other arboviruses.
Journal of the American Mosquito Control Association    December 1, 1986   Volume 2, Issue 4 529-534 
Clark GG, Crabbs CL, Bailey CL, Calisher CH, Craig GB.An arbovirus survey was conducted during August 1985 at White Sands Missile Range in southcentral New Mexico following a suspected arboviral disease epizootic among feral horses. A total of 20,566 mosquitoes (18,505 females and 2,061 males) and 8,900 biting gnats were collected and assayed for virus. Female mosquitoes were principally Aedes campestris (54.8%), Aedes dorsalis (30.4%) and Culex tarsalis (13.2%). Arboviruses were not isolated from biting gnats, but mosquitoes yielded a total of 37 viral isolates, including western equine encephalitis (WEE) (18), California serogroup (15), Cache V...
Mortality of captive whooping cranes caused by eastern equine encephalitis virus.
Journal of the American Veterinary Medical Association    November 1, 1986   Volume 189, Issue 9 1006-1010 
Dein FJ, Carpenter JW, Clark GG, Montali RJ, Crabbs CL, Tsai TF, Docherty DE.Of 39 captive whooping cranes (Grus americana), 7 died during a 7-week period (Sept 17 through Nov 4, 1984) at the Patuxent Wildlife Research Center, Laurel, Md. Before their deaths, 4 cranes did not develop clinical signs, whereas the other 3 cranes were lethargic and ataxic, with high aspartate transaminase, gamma-glutamyl transferase, and lactic acid dehydrogenase activities, and high uric acid concentrations. Necropsies indicated that the birds had ascites, intestinal mucosal discoloration, fat depletion, hepatomegaly, splenomegaly, and visceral gout. Microscopically, extensive necrosis an...
Equine protozoal myeloencephalitis in a pony.
Journal of the American Veterinary Medical Association    June 1, 1986   Volume 188, Issue 11 1311-1312 
Dubey JP, Miller S.A 10-year-old pony died 5 days after the onset of a nervous disorder. Necropsy revealed a yellowish area of discoloration (1.5 by 1 cm) in the medulla oblongata. Microscopically, necrosis and nonsuppurative myeloencephalitis were found in the medulla oblongata. Immature and mature meronts (25 by 10 microns) were seen in neural tissue and in capillaries of the brain stem. Organisms were similar structurally to those seen in equine protozoal myeloencephalitis of horses.
Cerebral cryptococcosis in a horse.
Veterinary pathology    March 1, 1986   Volume 23, Issue 2 207-209 doi: 10.1177/030098588602300218
Cho DY, Pace LW, Beadle RE.No abstract available
Isolation of eastern equine encephalitis virus from Aedes sollicitans during an epizootic in southern New Jersey.
Journal of the American Mosquito Control Association    March 1, 1986   Volume 2, Issue 1 68-72 
Crans WJ, McNelly J, Schulze TL, Main A.Eastern equine encephalitis virus (EEE) was isolated from the salt marsh mosquito, Aedes sollicitans, collected from coastal areas of New Jersey on 3 occasions during the late summer and fall of 1982. The isolations were made at a time when local Culiseta melanura were either undergoing a population increase or exhibiting high levels of EEE virus. Although no human cases were reported during the epizootic period, the data lend support to the hypothesis that Ae. sollicitans is capable of functioning as an epidemic vector in the coastal areas of New Jersey where human cases of EEE have been most...
Investigations of the vertebrate hosts of eastern equine encephalitis during an epizootic in Michigan, 1980.
The American journal of tropical medicine and hygiene    November 1, 1985   Volume 34, Issue 6 1190-1202 doi: 10.4269/ajtmh.1985.34.1190
McLean RG, Frier G, Parham GL, Francy DB, Monath TP, Campos EG, Therrien A, Kerschner J, Calisher CH.A study was undertaken to investigate an increase in reported cases of clinical encephalitis due to eastern equine encephalitis (EEE) virus in horses and to determine the natural vertebrate hosts of that virus. Horses, birds, and small mammals were sampled at sites in a contiguous area in St. Joseph and Kalamazoo counties, Michigan, from 25 August to 5 September 1980. Serum samples from four horses acutely ill with encephalitis and 16 of 39 pasture mates of ill horses had neutralizing (N) antibody against EEE virus (46.5%); no viruses were isolated from these 43 sera. None of 24 draft horses f...
Powassan viral encephalitis: a review and experimental studies in the horse and rabbit.
Veterinary pathology    September 1, 1985   Volume 22, Issue 5 500-507 doi: 10.1177/030098588502200510
Little PB, Thorsen J, Moore W, Weninger N.Powassan virus strain M794, a member of the Flavivirus genus known to infect man and animals in Canada, was inoculated intracerebrally into rabbits and horses. No clinical signs were observed in rabbits, but widespread encephalitis resulted, characterized by lymphoid perivascular cuffing, lymphocytic meningitis, and lymphocytic choroiditis. In horses, eight days after inoculation, prominent neurological signs occurred and lesions were those of non-suppurative encephalomyelitis, neuronal necrosis, and focal parenchymal necrosis. The virus could not be reisolated from the rabbit or horse brains....
Arbovirus investigations in Argentina, 1977-1980. I. Historical aspects and description of study sites.
The American journal of tropical medicine and hygiene    September 1, 1985   Volume 34, Issue 5 937-944 
Sabattini MS, Monath TP, Mitchell CJ, Daffner JF, Bowen GS, Pauli R, Contigiani MS.This is the introductory paper to a series on the ecology of arboviruses in Argentina. Epizootics of equine encephalitis have occurred since at least 1908, principally in the Pampa and Espinal biogeographic zones, with significant economic losses; human cases of encephalitis have been rare or absent. Both western equine and eastern equine encephalitis viruses have been isolated from horses during these epizootics, but the mosquitoes responsible for transmission have not been identified. A number of isolations of Venezuelan equine encephalitis (VEE) virus were reported between 1936 and 1958 in ...
Properties of monoclonal antibodies against glycoproteins of western equine encephalitis virus.
Journal of virology    September 1, 1985   Volume 55, Issue 3 840-842 doi: 10.1128/JVI.55.3.840-842.1985
Yamamoto K, Hashimoto K, Chiba J, Simizu B.To analyze the biological activities of the alphavirus glycoproteins, eight different monoclonal antibodies against the two glycoproteins of western equine encephalitis virus were isolated. Five of the eight monoclonal antibodies were shown to be specific for E1 and three for E2 protein by an enzyme-linked immunosorbent assay and by radioimmunoprecipitation. Three of the five anti-E1 and all of the anti-E2 monoclonal antibodies inhibited hemagglutination by purified virions. One anti-E1 and two anti-E2 monoclonal antibodies possessed high virus-neutralizing activity.
California serogroup virus infection in a horse with encephalitis.
Journal of the American Veterinary Medical Association    February 15, 1985   Volume 186, Issue 4 389 
Lynch JA, Binnington BD, Artsob H.A 4-fold or greater seroconversion to the snowshoe hare serotype of the California serogroup of viruses in a horse with acute encephalitis was demonstrated by hemagglutination-inhibition, complement-fixation, and neutralization tests. The horse had a mild fever, was ataxic, had a head tilt, and was observed to circle. Chloramphenicol, dexamethasone, and B complex vitamins were administered and the horse recovered. The snowshoe hare virus is a recognized human pathogen, but it has not been associated with disease in horses. It is unknown whether horses play a role as amplification hosts for the...
Identification of blood meals from engorged dipterans collected in the Dominican Republic during an eastern equine encephalitis outbreak.
Journal of medical entomology    November 30, 1983   Volume 20, Issue 6 686-687 doi: 10.1093/jmedent/20.6.686
Mitchell CJ, Taylor SA, Christensen HA.No abstract available
[Complement-fixing antibodies against Venezuelan equine encephalitis virus in the populations of Corrientes and Chaco, Argentina].
Revista latinoamericana de microbiologia    July 1, 1983   Volume 25, Issue 3 167-171 
Bargardi S, Mussart de Corpo NB, Bettinotti CM.No abstract available
Marker characteristics of Venezuelan encephalitis virus strains isolated before and after epidemics and equine epizootics in Middle America.
American journal of epidemiology    February 1, 1983   Volume 117, Issue 2 201-212 doi: 10.1093/oxfordjournals.aje.a113531
Wiebe ME, Scherer WF, Peick WJ.Ninety-four strains of Venezuelan encephalitis (VE) virus isolated from sentinel hamsters exposed in the Middle American countries of Mexico, Guatemala, Belize, and Honduras were examined for the presence of virions with marker characteristics of strains that cause large epidemics and equine epizootics. Thirty-four strains came from before and 60 strains came from after the Middle American epidemics and equine epizootics of 1966 and 1969-1972. Twenty-three virion clones that resembled epizootic strains by hydroxylapatite chromatography and Vero monkey kidney cell plaque size determinations wer...
Prevalence and distribution of antibodies to Getah and Japanese encephalitis viruses in horses raised in Hokkaido.
Nihon juigaku zasshi. The Japanese journal of veterinary science    December 1, 1982   Volume 44, Issue 6 967-970 doi: 10.1292/jvms1939.44.967
Matsumura T, Goto H, Shimizu K, Sugiura T, Ando Y, Kumanomido T, Hirasawa K, Akiyama Y.No abstract available
Variation in arbovirus infection rates in species of birds sampled in a serological survey during an encephalitis epidemic in the Murray Valley of South-eastern Australia, February 1974.
The Australian journal of experimental biology and medical science    October 1, 1982   Volume 60 (Pt 5) 471-478 doi: 10.1038/icb.1982.52
Marshall ID, Brown BK, Keith K, Gard GP, Thibos E.There was extensive and exuberant breeding of waterbirds before and during an epidemic of arboviral encephalitis in the Murray Valley of south eastern Australia in 1974. As estimated by haemagglutination inhibition tests on 432 bird sera collected between 4th and 13th February, 1974, infection with Murray Valley encephalitis virus, Kunjin virus and possibly other flaviviruses was concentrated in species of the Order Ciconiiformes (55% positive) and Pelecaniformes (41%), compared with only 5% in Anseriformes. Although Sindbis virus infections were also highest in these 2 Orders (56% and 46%, re...
A comparison of the 26 S mRNAs and structural proteins of an equine virulent venezuelan encephalitis virus and its vaccine derivative.
Virology    September 1, 1982   Volume 121, Issue 2 251-261 doi: 10.1016/0042-6822(82)90165-9
Mecham JO, Trent DW.No abstract available
Teratological effects of western equine encephalitis virus on the fetal nervous system of Macaca mulatta.
Teratology    February 1, 1982   Volume 25, Issue 1 71-79 doi: 10.1002/tera.1420250110
London WT, Levitt NH, Altshuler G, Curfman BL, Kent SG, Palmer AE, Sever JL, Houff SA.Fetal rhesus monkeys were inoculated intracerebrally with an attenuated strain of western equine encephalitis virus. All animals developed microcephaly. Twelve of sixteen monkeys developed ex vacuo hydrocephalus. All virus inoculated fetuses developed WEE virus antibody. Virus could not be recovered at the time of delivery. Monkeys with the highest WEE antibody titers showed the greatest degree of hydrocephalus.
[Tick-borne encephalitis in the horse].
Schweizer Archiv fur Tierheilkunde    May 1, 1981   Volume 123, Issue 5 227-233 
Waldvogel A, Matile H, Wegmann C, Wyler R, Kunz C.No abstract available
Meningoencephalitis in naturally occurring Trypanosoma evansi infection (surra) of horses.
Veterinary pathology    January 1, 1981   Volume 18, Issue 1 120-122 doi: 10.1177/030098588101800114
Seiler RJ, Omar S, Jackson AR.No abstract available
Melioidosis with acute meningoencephalomyelitis in a horse.
Australian veterinary journal    January 1, 1981   Volume 57, Issue 1 36-38 doi: 10.1111/j.1751-0813.1981.tb07082.x
Ladds PW, Thomas AD, Pott B.A case of acute meningoencephalomyelitis caused by infection with Pseudomonas pseudomallei is described. Clinically there was inability to stand, opisthotonus, facial paralysis and nystagmus, rapidly progressing to violent struggling. Gross examination revealed malacia and haemorrhage in the medulla oblongata and adjacent spinal cord. Microscopically there were disseminated focal neutrophilic accumulations in affected areas, perivascular cuffing with mononuclear cells and lymphocytes and marked oedema. Intracellular bacteria were identified in sections stained by the Giemsa method.
A note on the incidence of equine encephalitis in Nandyal, Andhra Pradesh.
The Indian veterinary journal    December 1, 1979   Volume 56, Issue 12 993-994 
Subramanyam B, Parihar NS.No abstract available
Equine leucoencephalomalacia (ELEM): a study of Fusarium moniliforme as an etiologic agent.
Veterinary and human toxicology    October 1, 1979   Volume 21, Issue 5 348-351 
Haliburton JC, Vesonder RF, Lock TF, Buck WB.Signs and lesions characteristic of equine leucoencephalomalacia were produced in one of two donkeys given corn cultured with Fusarium moniliforme Sheldon. Gross and histopathologic lesions of the cerebrum included an extensive necrotic cavitation within one cerebral hemisphere, disruption and rarefication of the subcortical white matter, prominent perivascular hemorrhage, and some mononuclear cell perivascular cuffing. Another donkey and three rabbits fed the cultured corn did not develop characteristic signs or lesions of the toxicosis. Chick bioassay studies indicated that the cultured corn...
Effects of influenza, mumps, and western equine encephalitis viruses on fetal rhesus monkeys (Macaca mulatta).
Teratology    August 1, 1979   Volume 20, Issue 1 53-64 doi: 10.1002/tera.1420200109
Moreland AF, Gaskin JM, Schimpff RD, Woodard JC, Olson GA.Pregnant Rhesus monkeys were infected via instillation of influenza, mumps and western equine encephalomyelitis viruses respectively into the amniotic sacs at approximately 90 days gestation to determine if fetal infections would occur. Virus was recovered from fetal tissues after seven days in 100% of the exposed animals. Thus, the viruses are capable of causing fetal infection. Rhesus monkey fetuses were inoculated with influenza, mumps and WEE viruses by the direct intracerebral route at approximately 90 days gestation to determine possible teratogenicity of the viruses. influenza virus cau...
Arthropod-borne encephalitides in the Americas.
Bulletin of the World Health Organization    January 1, 1979   Volume 57, Issue 4 513-533 
Monath TP.The arthropod-borne encephalitides are an important cause of equine and human morbidity in the Americas. Between 1975 and 1978, 6970 human cases of arboviral encephalitis were reported in the United States of America; however, this represents only a fraction of the true incidence. St Louis encephalitis (4824 cases), California encephalitis (1035 cases), and western equine encephalitis (WEE, 947 cases) accounted for 98.5% of all reported infections. Approximately 1000-4000 cases of equine encephalitis occur annually in the United States, the majority due to WEE. In tropical America, important o...
California encephalitis virus activity in mosquitoes and horses in southern Ontario, 1975.
Canadian journal of microbiology    December 1, 1978   Volume 24, Issue 12 1544-1547 doi: 10.1139/m78-246
Artsob H, Wright R, Shipp L, Spence L, Th'ng C.A study was undertaken in 1975 to determine California encephalitis virus activity in southern Ontario. Three thousand and sixty-one mosquitoes, primarily Aedes species, were divided into 104 pools and inoculated into suckling mice. Isolates of snowshoe hare virus were obtained from one pool each of Aedes fitchii and A. triseriatus mosquitoes collected in the Guelph area. Serological testing of horse sera revealed extensive virus activity in southern Ontario and indicated that horses may serve as excellent monitors for California encephalitis virus.