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Topic:Epidemiology

Epidemiology in horses involves the study of the distribution and determinants of health-related states and events in equine populations. It encompasses the investigation of patterns, causes, and effects of diseases and health conditions within horse populations. This field of study aims to identify risk factors for disease and targets for preventive healthcare. Key components of equine epidemiology include disease surveillance, outbreak investigation, and the study of disease dynamics within herds or regions. Research in this area often focuses on infectious diseases, zoonotic diseases, and the impact of environmental factors on equine health. This page compiles peer-reviewed research studies and scholarly articles that explore various aspects of epidemiology in horses, including disease prevalence, transmission pathways, and strategies for disease prevention and control.
The pathogenesis and control of strongyle infection in the horse.
Journal of the South African Veterinary Association    March 1, 1975   Volume 46, Issue 1 81-85 
Duncan JL, Dargie JD.The migratory route of infective Strongylus vulgaris larvae was determined: penetration of small and large intestine into the lumina of submucosal arteries, migration up the arterial tree, reaching the cranial mesenteric site by three weeks, where the larvae develop to the mature 4th stage. After 3-4 months they exsheath and the young adults migrate down the arteries towards the intestines, to the limit of arterial narrowing, from where they rupture from nodules into the lumen of the intestine. The prepatent period is about 6 months. The clinical syndrome was similar to, but less severe than t...
Isolation and characterization of an adenovirus and isolation of its adenovirus-associated virus in cell culture from foals with respiratory tract disease.
American journal of veterinary research    March 1, 1975   Volume 36, Issue 3 247-250 
Dutta SK.An adenovirus was isolated from a foal with respiratory tract disease. The virus produced cytopathic effects (CPE) in equine embryo kidney (EEK) cell culture, contained deoxyribonucleic acid (DNA), was resistant to chloroform and pH 3, and was moderately resistant to heat. The virus caused hemagglutination of human (type O) erythrocytes. Viral density was 1.34 g/cm,3 and diameter was 75 nm. An adenovirus-associated virus (AAV) isolated from the infected cell culture was 22 nm in diameter. These viruses are classified as equine adenovirus and equine AAV.
Comparative analyses of members of the Venezuelan equine encephalomyelitis virus complex.
American journal of epidemiology    March 1, 1975   Volume 101, Issue 3 245-252 doi: 10.1093/oxfordjournals.aje.a112092
Pedersen CE, Eddy GA.Polyacrylamide gel electrophoretic examination of viruses selected from the Venezuelan equine encephalomyelitis (VEE) complex revealed distinct strain to strain differences in profiles of the two virion envelope proteins. The core protein was identical in all viruses tested. We detected five electrophoretic patterns into which the virus strains could be classified and these were designated alpha (alpha), beta (beta), gamma (gamma), delta (delta), and episolon (episolon). Isolates representing variant E of subtype I exhibited a profile characterized by only one apparent envelope band. The epizo...
Occurrence of nervous-tissue tumors in cattle, horses, cats and dogs.
International journal of cancer    January 15, 1975   Volume 15, Issue 1 39-47 doi: 10.1002/ijc.2910150106
Hayes HM, Priester WA, Pendergrass TW.From 11 North American veterinary university hospitals and clinics, 248 animals were a confirmed diagnosis of nervous-tissue tumor were identified; 7 tumors were found in cattle, 28 in horses, 14 in cats, 199 in dogs, and none in other species. Tumors were divided for analysis into three categories-glial, meningeal, and peripheral nerve. In cattle and horses, all tumors involved peripheral nerves, the risk of which, in horses, reached a plateau at 4-6 years of age and remained constant thereafter. In cats, the tumors were equally distributed among the three tumor categories whereas, in dogs, t...
Hypercalcemia and calcinosis in Florida horses: implication of the shrub, Cestrum diurnum, as the causative agent.
The Cornell veterinarian    January 11, 1975   Volume 65, Issue 1 26-56 
Krook L, Wasserman RH, Shively JN, Tashjian AH, Brokken TD, Morton JF.A chronic debilitating disease is described in Florida horses. There is progress weight loss and lameness of increasing severity. Plasma calcium is elevated to moderate or severe degree. Anatomical changes include dystrophic calcinosis of elastic tissues, viz. major arteries, tendons and ligaments. A generalized osteopetrosis is present and may be related to hypoparathyroidsim and hypercalcitoninism. The presence of Cestrum diurnum (day-blooming jessamine, day cestrum, wild jasmin) in areas accessible to affected animals, the observation that leaves of the plant were stripped in these areas, a...
Equine infectious respiratory disease.
The Veterinary record    January 11, 1975   Volume 96, Issue 2 30-34 doi: 10.1136/vr.96.2.30
Powell DG.During the past 20 years the equine population of Great Britain and Ireland has increased with the result that the practising veterinary surgeon is more frequently called upon to advise on equine problems. A significant portion of this advice is concerned with the examination of horses showing signs of this advice is concerned with the examination of horses showing signs of respiratory disease. Numerous pathogens, which include viruses, bacteria, parasites and moulds invade the respiratory tract causing similar signs of illness. It is therefore difficult to provide an aetiological diagnosis ba...
[Equine infectious anemia in Bulgaria].
Veterinarno-meditsinski nauki    January 1, 1975   Volume 12, Issue 3 129-130 
Dimitrov N, Mitev G, Entchev St.No abstract available
Survey findings of equine infectious anemia positive horses in New York State. Nusbaum SR.No abstract available
A microprecipitation test for rapid detection and identification of Venezuelan, eastern and western equine encephalomyelitis viruses.
The American journal of tropical medicine and hygiene    January 1, 1975   Volume 24, Issue 1 127-130 doi: 10.4269/ajtmh.1975.24.127
Levitt NH, Miller HV, Pedersen CE, Eddy GA.The development of a new diagnostic procedure for the identification of Venezvelan, eastern and western equine encephalomyelitis (VEE, EEE, WEE) viruses is described. The procedure utilizes virus precipitation with reference fluorescein-conjugated gamma globulin, followed by cellulose acetate electrophoresis. Clinical specimens containing varying concentrations of virus yielded, in primary duck embryo cell culture, sufficient virus for detection within 22 to 44 hours. Identification of VEE, EEE and WEE virus in specimens was accomplished by microprecipitation within this time. In contrast to c...
[Contribution to the antigenic study of influenza viruses in animals. I.–Neuraminidase of the equine influenza viruses (author’s transl)].
Annales de recherches veterinaires. Annals of veterinary research    January 1, 1975   Volume 6, Issue 4 397-410 
Fontaine M, Aymard-Henry M.From the Revised Nomenclature of WHO, the fowl influenza virus A/Duck/Ukraine/63 (Hav7 Neq2) has the same neuraminidase as the equine virus A/equi 2/Miami/63 (Heq2 Neq2); the A/Chicken Germany "N"/49 virus has the same neuraminidase as the equine virus A/equi 1/Prague/56. A comparative study of the antigenic specificities confirms that the Neq2 neuraminidases are closely connected, whatever their animal origin, and that the fowl strain Hav7 Neq2 can be used for the titration of anti Neq2 antibodies in the serums of animals immunized with the equine virus Heq2 Neq2. The Neqi neuraminidases of v...
Viral respiratory infections of horses: pathogenesis.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 77-78 
McChesney AE.No abstract available
[Serological diagnosis of nuttalliosis in horses].
Veterinariia    January 1, 1975   Issue 1 56-58 
Stepanova NI, Petrovskii VV.No abstract available
[New immunization schedule against equine influenza]. Bürki F, Sibalin M, Jaksch W.No abstract available
Equine laminitis and associated hypertension: a review.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 56-57 
Garner HE, Coffman JR, Hahn AW, Ackerman N, Johnson JH.No abstract available
[Presence and longevity of hydatid cysts of Echinococcus granulosus in imported horses in Sweden (author’s transl)].
Nordisk veterinaermedicin    January 1, 1975   Volume 27, Issue 1 49-55 
Ronéus O.No abstract available
Viral respiratory infections of horses: host resistance and immunity.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 78-80 
Coggins L.No abstract available
Adenoviral infection in foals.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 83-85 
McChesney AE, England JJ.No abstract available
Epidemic Venezuelan equine encephalitis in North America: a summary of virus-vector-host relationships.
American journal of epidemiology    January 1, 1975   Volume 101, Issue 1 1-13 doi: 10.1093/oxfordjournals.aje.a112066
Sudia WD, Newhouse VF.No abstract available
Investigations on the presence of antibodies to several alphaviruses in humans and domestic animals of a region with elevated epidemiological potential.
Virologie    January 1, 1975   Volume 26, Issue 2 99-102 
Drăgănescu N, Iftimovici R, Girjabu E, Iacobescu V, Buşila A, Cvaşniuc D, Tudor G, Mănăstireanu M, Lăpuşneanu .The paper reports on serological results obtained by HAI tests against several alphaviruses - eastern equine encephalitis (EEE), western equine encephalitis (WEE), Chikungunya, Midlebourg, Semliki Forest, Sindbis, and Ilheus viruses - carried out in humans and some domestic animals in a region with an intensive circulation of migratory birds. It was possible to detect in human antibodies to EEE, WEE, and Sindbis viruses, but in very low proportions (1.8%, 0.4%, and 0.6%, respectively). Serological results obtained in animals were practically negative: antibodies to EEE virus were found only in...
Viral respiratory infections of horses: some specific viruses affecting the horse.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 80-83 
Coggins L, Kemen MJ.No abstract available
Epidemiology of equine streptococci.
Research in veterinary science    January 1, 1975   Volume 18, Issue 1 113-114 
Woolcock JB.Equine tonsillar tissue and the draining regional lymph nodes, as well as deep nasal swabs were examined bacteriologically. Group C streptococci, predominantly Streptococcus zooepidemicus, were shown to be present in all tissues. The most frequent site for isolation was the tonsil. Streptococcus equi was not located in any of the tissues sampled.
Equine infectious anaemia in Czechoslovakia.
Veterinarno-meditsinski nauki    January 1, 1975   Volume 12, Issue 3 133 
Celer Vl, Zakopal J.No abstract available
[Adaptation of the complement fixation microtechnic to the diagnosis of equine plague].
Revue d'elevage et de medecine veterinaire des pays tropicaux    January 1, 1975   Volume 28, Issue 4 451-457 
Bernard G.No abstract available
Equine infectious anemia.
Advances in veterinary science and comparative medicine    January 1, 1975   Volume 19 195-222 
Ishii S, Ishitani R.No abstract available
[Epidemiological situation of infectious anemia in Italy].
Veterinarno-meditsinski nauki    January 1, 1975   Volume 12, Issue 3 128 
Codazza D.No abstract available
[Results of using agar precipitation for studying equine infectious anemia].
Veterinarno-meditsinski nauki    January 1, 1975   Volume 12, Issue 3 126-127 
Toma B.No abstract available
Epizootiological situation of equine infectious anaemia in Greece.
Veterinarno-meditsinski nauki    January 1, 1975   Volume 12, Issue 3 134 
Papadopoulos O.No abstract available
Urination by racehorses as related to environmental factors.
The Canadian veterinary journal = La revue veterinaire canadienne    January 1, 1975   Volume 16, Issue 1 16-17 
Hutson LR.No abstract available
The growth of African horse-sickness virus in embryonated hen eggs and the transmission of virus by Culicoides variipennis Coquillett (Diptera, Ceratopogonidae).
Archives of virology    January 1, 1975   Volume 47, Issue 4 343-349 doi: 10.1007/BF01347975
Boorman J, Mellor PS, Penn M, Jennings M.Seven-day-old embryonated hen eggs were infected with African Horse Sickness virus by the yolk sac and intravenous routes. Virus reached a high titre in the blood of infected embryos. Culicoides variipennis midges which took a blood meal from infected eggs became infected with virus, and after 7 days at 26 degrees - 27 degrees C transmitted African Horse Sickness virus to uninfected eggs. C. variipennis may therefore be considered a biological vector of African Horse Sickness virus in the laboratory.
[Epidemiological situation of infectious anemia in Yugoslavia].
Veterinarno-meditsinski nauki    January 1, 1975   Volume 12, Issue 3 131-132 
Petrović D, Zupancić Z, Jukić B.No abstract available