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Topic:Infectious Disease

Infectious diseases in horses encompass a range of illnesses caused by bacteria, viruses, fungi, or parasites. These diseases can affect various systems within the equine body, leading to symptoms that range from mild discomfort to severe systemic illness. Common infectious diseases in horses include equine influenza, strangles, equine herpesvirus, and West Nile virus. These diseases can be transmitted through direct contact with infected animals, contaminated surfaces, or vectors such as insects. Understanding the mechanisms of transmission, pathogenesis, and immune response is essential for effective prevention and control. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, diagnosis, treatment, and management of infectious diseases in horses.
Equine nasal phyco- mycosis.
Veterinary medicine, small animal clinician : VM, SAC    February 1, 1977   Volume 72, Issue 2 251-253 
Hanselka DV.No abstract available
Tyzzer’s disease in the foal: case reports and review.
The Canadian veterinary journal = La revue veterinaire canadienne    February 1, 1977   Volume 18, Issue 2 41-43 
Thomson GW, Wilson RW, Hall EA, Physick-Sheard P.No abstract available
Association of Australian arboviruses with nervous disease in horses.
Australian veterinary journal    February 1, 1977   Volume 53, Issue 2 61-66 doi: 10.1111/j.1751-0813.1977.tb14886.x
Gard GP, Marshall ID, Walker KH, Acland HM, Saren WG.An outbreak of Murray Valley encephalitis (MVE) occurred in New South Wales during the first five months of 1974. Specimens from 52 horses with nervous disease collected January to May 1974 were examined histopathological or virologically. Although MVE virus was not isolated, 13 horses had serological evidence of recent infection with MVE virus. Another 4 horses had evidence of recent infection with Ross River virus. Two animals had histological evidence of viral infection of the central nervous system. Attempts to experimentally infect 2 horses with a low dose of MVE virus were not successful...
[Late sequelae of tick-borne encephalomeningitis and equine encephalomyelitis].
Polski tygodnik lekarski (Warsaw, Poland : 1960)    January 31, 1977   Volume 32, Issue 5 189-192 
Migdalska-Kassurowa B.No abstract available
Abortion in a mare due to coccidioidomycosis.
Journal of the American Veterinary Medical Association    January 15, 1977   Volume 170, Issue 2 178-180 
Langham RF, Beneke ES, Whitenack DL.No abstract available
Portal vein anomaly and hepatic encephalopathy in a horse.
Journal of the American Veterinary Medical Association    January 15, 1977   Volume 170, Issue 2 164-166 
Beech J, Dubielzig R, Bester R.Periodic episodes of diffuse central nervous system disease occurred in a yearling Thoroughbred gelding that had a history of frequent respiratory tract disease and stunted growth. Hepatic encephalopathy was diagnosed on the basis of history, clinical signs, prolonged bromsulphalein clearance, and increased blood ammonia content. Because of the poor prognosis and recurrent clinical signs the horse was euthanatized. Necropsy revealed an arteriovenous anomaly and thrombosis of the portal vein. Histologically, there was diffuse primary astrocytosis of the brain.
Purification and characterization of equine herpesvirus-induced DNA.
Virology    January 1, 1977   Volume 76, Issue 1 395-408 doi: 10.1016/0042-6822(77)90311-7
Allen GP, O'Callaghan DJ, Randall CC.Infection of cells with equine herpesvirus type 1 (EHV-1) or type 3 (EHV-3) resulted in the induction of a DNA polymerase activity distinguishable from host cell DNA polymerases by its high salt requirement for maximal activity. By column chromatography on DEAE-cellulose, DNA-cellulose, phosphocellulose, and hydroxyapatite, the EHV-1-induced polymerase was purified 500-fold with 1–2% recovery of total activity from the nuclei of infected hamster livers. The final enzyme preparation was homogeneous as judged by electrophoresis in sodium dodecyl sulfate-polyacrylamide gels. Calculations based ...
Ecology of Western equine encephalomyelitis in the eastern United States.
Advances in virus research    January 1, 1977   Volume 21 37-83 doi: 10.1016/s0065-3527(08)60761-7
Hayes CG, Wallis RC.Western equine encephalomyelitis (WEE) has been recognized as a serious public health problem in western North America for more than 30 years. WEE appears to exist endemically in numerous foci in that region, with a low incidence rate among humans. Severe outbreaks, however, have occurred periodically. For example, during 1941 a severe epidemic involving more than 3000 cases in humans occurred in North Dakota, Minnesota, and in the adjacent areas of Canada. The case fatality rate ranged from 8% to 15%. Epizootics among horses are more common. More than 600 cases of WEE were diagnosed among hor...
Equine infectious anemia (EIA)–1977 status report for the United states. Knowles RC.No abstract available
[Etiology of leptospirosis in animals].
Veterinariia    January 1, 1977   Issue 1 61-66 
Matveeva AA, Sakharova PU, Shabran EK, Dragomir AV, Nekipelova GA.No abstract available
[International standardization of the interpretation of the gel immunodiffusion reaction for the diagnosis of equine infectious anemia].
Journal of biological standardization    January 1, 1977   Volume 5, Issue 4 297-306 doi: 10.1016/s0092-1157(77)80015-2
Toma B.No abstract available
[Treatment effectiveness in horses with trichophytosis].
Veterinariia    January 1, 1977   Issue 2 49-50 
Petrovich SV.No abstract available
[Diagnosis of animal trypanosomiasis].
Revue d'elevage et de medecine veterinaire des pays tropicaux    January 1, 1977   Volume 30, Issue 1 1-10 
Toure SM.No abstract available
Biological functions of the complement system.
Monographs in allergy    January 1, 1977   Volume 12 90-100 
Rother K.No abstract available
In vitro cytotoxicity of serum and peripheral blood leukocytes for equine herpesvirus type 1-infected target cells.
American journal of veterinary research    January 1, 1977   Volume 38, Issue 1 117-121 
Wilks CR.The immune response in horses following experimental infection with equine herpesvirus type 1 (EHV-1) was assessed by measuring cytotoxicity for EHV-1-infected target cells. A technique was developed, using [125I]5-iodo-2'-deoxyuridine ([125I]IUDR)-labeled equine fetal kidney cells infected with EHV-1 as the target cells. It was shown that peripheral blood leukocytes from a recovered horse were capable of lysing target cells, as measured by the loss of radio-active label. Following the experimental infection of specific-pathogen-free ponies with EHV-1, cytotoxicity was obtained with fresh auto...
EIA research.
Modern veterinary practice    January 1, 1977   Volume 58, Issue 1 58-64 
No abstract available
Challenge of equines with San Miguel sea lion viruses. Wilder FW, Dardiri AH, Yedloutschnig RJ, Ugstad PO.No abstract available
Secular trends of annual morbidities of animal infectious diseases.
National Institute of Animal Health quarterly    January 1, 1977   Volume 17, Issue 4 179-183 
Takizawa T, Ito T.Supposing two mathematical models, additive and multiplicative, the authors estimated the secular trends of annual morbidities (1949 approximately 1975) of twelve infectious diseases of domestic animals. For each diseases ten different trend curves were fitted. It was found that five regression equations, namely, those for bovine trichomoniasis, bovine tuberculosis, equine infectious anemia, pullorum disease in chickens, and foulbrood, gave the coefficient of determination of 97.9, 92.7, 91.0, 93.5, and 85.2%, respectively. Four of them were multiplicative, and the remaining one for equine inf...
Electron microscopic studies on equine infectious anemia virus (EIAV). Brief report.
Archives of virology    January 1, 1977   Volume 55, Issue 4 335-340 doi: 10.1007/BF01315055
Weiland F, Matheka HD, Coggins L, Hatner D.Morphological studies of EIAV reveal knobs on the surface of the particles, conically and tubularly shaped cores, budding particles with dense crescents directly underlying the plasma membrane, and distinct intracytoplasmic structures in infected cells.
Epidemiological features of the mycotoxicoses.
Annales de la nutrition et de l'alimentation    January 1, 1977   Volume 31, Issue 4-6 957-975 
Akkmeteli MA.Although mycotoxicoses attract more and more attention, the epidemiology of these diseases is still not adequately studied. The author devotes his study to certain diseases. In addition to the diseases whose mycotoxic nature is in no doubt, he conditionally includes certain diseases whose mycotoxic causation needs further proof. The author has assigned stachybotryotoxicosis and alimentary toxic aleukia or fusariotoxicosis to the first category and endemic nephropathy and primary liver-cell carcinoma to the second. His intention in adopting this approach is to establish the common features and ...
[Outbreak of equine influenza by a new strain of Myxovirus type 2. II. Epizootiology].
Archives de l'Institut Pasteur d'Algerie. Institut Pasteur d'Algerie    January 1, 1977   Volume 52 111-118 
Benmansour A, Benelmouffok A, Bouguermouh A.During an epizootic of equine acute respiratory disease in Algeria, a strain of equine influenza virus was isolated. Sera examination by hemagglutinin inhibition test and complement fixation test confirmed the etiology of the disease. The first and second outbreak of the disease remained localised. The third outbreak spread within few months to all parts of the country. Horses vaccinated with a commercial equine influenza vaccine remained healthy.
Lyophilized combination pools of enterovirus equine antisera: preparation and test procedures for the identification of field strains of 19 group A coxsackievirus serotypes.
Intervirology    January 1, 1977   Volume 8, Issue 3 172-181 doi: 10.1159/000148892
Melnick JL, Schmidt NJ, Hampil B, Ho HH.This paper describes the preparation of seven combination pools of equine antisera, designated J though P, for identification of 19 coxsackievirus A immunotypes. Each pool is composed of 4 to 6 antisera; the serotypes included are A1-6, 8, 10-15, and 17-22. These pools, unlike the previously prepared A-H enterovirus pools, were lyophilized from volumes of 0.5 ml dispensed into 5-ml vials, and when rehydrated with 5 ml of diluent provide 50-antibody-unit material ready for use in identification tests without further dilution. Procedures for using the antiserum pools are given, and guidance is p...
Strain differences in Echinococcus granulosus, with special reference to the status of equine hydatidosis in the United Kingdom.
Transactions of the Royal Society of Tropical Medicine and Hygiene    January 1, 1977   Volume 71, Issue 2 93-100 doi: 10.1016/0035-9203(77)90069-4
Smyth JD.The genetics of speciation in the genus Echinococcus are briefly discussed. As the organism is a hermaphrodite and multiplies asexually in the larval stage, the genetic mechanism for the ready production of new strains is inherent in the life-cycle. Some biological, biochemical and nutritional differences between the horse and sheep strains are examined. The sheep strain may be grown to sexual maturity, in vitro, in a diphasic system; the horse strain fails to grow in such a system. Differences have also been demonstrated between the soluble proteins of the two strains. The sheep strain is inf...
Serological relationships between rotaviruses from different species as studied by complement fixation and neutralization.
Archives of virology    January 1, 1977   Volume 53, Issue 4 287-294 doi: 10.1007/BF01315627
Thouless ME, Bryden AS, Flewett TH, Woode GN, Bridger JC, Snodgrass DR, Herring JA.Human, piglet, mouse, foal, lamb, calf and rabbit rotaviruses all infected, but could not readily be subcultured in LLC MK2 cells. Cells infected with mouse and calf rotaviruses reacted by indirect immunofluorescence (FA) with convalescent serum from children, piglets, mice, foals, lambs, calves or rabbits, taken after rotavirus infection. Human, calf, piglet, mouse and foal rotaviruses reacted with human, calf, mouse, foal and lamb convalescent serum by complement fixation (CF). It was not possible to distinguish between different rotaviruses by CF or FA. Neutralization tests, however, detect...
Klebsiella aerogenes in mares.
The Veterinary record    December 11, 1976   Volume 99, Issue 24 489 doi: 10.1136/vr.99.24.489
Ricketts SW.No abstract available
Animal disease agents transmitted by horse flies and deer flies (Diptera: Tabanidae).
Journal of medical entomology    December 8, 1976   Volume 13, Issue 3 225-275 doi: 10.1093/jmedent/13.3.225
Krinsky WL.No abstract available
[Isolation of viruses from abortive cases in mares].
Medycyna weterynaryjna    December 1, 1976   Volume 32, Issue 12 727-730 
Buczek J, Majer-Dziedzic B, Wrzolek G, Zólkowska G.No abstract available
Experimental intraspinal trypanosoma equiperdum infection in a horse.
The Onderstepoort journal of veterinary research    December 1, 1976   Volume 43, Issue 4 201-202 
Barrowman PR.To establish the ability of Trypanosoma equiperdum to cross the blood-brain-barrier in the horse, a susceptible stallion was infected via the cerebrospinal fluid of the subarachnoid space by lumbosacral puncture. Cerebrospinal fluid with low detectable levels of trypanosomes removed from a dourine-infected mare by lumbosacral puncture was used for infecting the animal. The parasite was detected in blood smears of the recipient 13 days after infection and the subsequent parasitaemia and clinical course of the disease followed that of naturally infected horses.
The role of wild animals in the spread of exotic diseases in Australia.
Australian veterinary journal    December 1, 1976   Volume 52, Issue 12 547-554 doi: 10.1111/j.1751-0813.1976.tb05417.x
Murray MD, Snowdon WA.The distributions of the following feral animals are given -- cattle, buffalo, pig, goat, deer, camel, horse, donkey, fox, dog and cat -- and the native dingo. The possible role these and the native rodents, marsupials and monotremes would play should an exotic disease of livestock enter Australia is discussed. It is considered that feral animals would be important in creating foci from which the disease would spread.
[Influenza vaccination: which vaccine (author’s transl)].
Tijdschrift voor diergeneeskunde    December 1, 1976   Volume 101, Issue 23 1321-1322 
Verberne LR, Mirck MH.A comparative study of the literature of the past ten years showed that vaccination of horses and ponies against influenza is best done using adjuvant-containing vaccines. Comparable results may probably be obtained by twice inoculating an aquenous vaccine. There are no drawbacks to the use of aluminium-hydroxide as an adjuvant when mineral oil is used as an adjuvant, the first and second vaccinations do not present any problems.