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Topic:Disease Outbreaks

Disease outbreaks in horses refer to the occurrence and spread of infectious diseases within equine populations. These outbreaks can be caused by various pathogens, including bacteria, viruses, and parasites, and can lead to significant health issues in affected horses. Common diseases that may result in outbreaks include equine influenza, equine herpesvirus, strangles, and equine infectious anemia. The transmission of these diseases can occur through direct contact, environmental exposure, or vectors such as insects. Disease outbreaks can have substantial impacts on horse health, welfare, and the equine industry as a whole. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, transmission dynamics, and management strategies associated with disease outbreaks in equine populations.
Investigation of a second focus of equine morbillivirus infection in coastal Queensland.
Australian veterinary journal    September 1, 1996   Volume 74, Issue 3 243-244 doi: 10.1111/j.1751-0813.1996.tb15413.x
Rogers RJ, Douglas IC, Baldock FC, Glanville RJ, Seppanen KT, Gleeson LJ, Selleck PN, Dunn KJ.No abstract available
The evolving story of the equine morbillivirus.
Australian veterinary journal    September 1, 1996   Volume 74, Issue 3 214 doi: 10.1111/j.1751-0813.1996.tb15406.x
Murray PK.No abstract available
Re-emergence of epidemic Venezuelan equine encephalomyelitis in South America. VEE Study Group.
Lancet (London, England)    August 17, 1996   Volume 348, Issue 9025 436-440 doi: 10.1016/s0140-6736(96)02275-1
Weaver SC, Salas R, Rico-Hesse R, Ludwig GV, Oberste MS, Boshell J, Tesh RB.Venezuelan equine encephalomyelitis (VEE) virus has caused periodic epidemics among human beings and equines in Latin America from the 1920s to the early 1970s. The first major outbreak since 1973 occurred in Venezuela and Colombia during 1995, and involved an estimated 75,000 to 100,000 people. We report an epidemiological and virological investigation of this epidemic. Methods: Virus isolates were made in cell culture from human serum, human throat swabs, and brain tissue from aborted and stillborn human fetuses, as well as from horse brain tissue and pooled mosquito collections. Human sera ...
Workshop summary: equine parasitology.
Veterinary parasitology    August 1, 1996   Volume 64, Issue 1-2 163-166 doi: 10.1016/0304-4017(96)00985-5
Klei TR.No abstract available
Salmonellosis in horses.
Journal of the American Veterinary Medical Association    August 1, 1996   Volume 209, Issue 3 558-560 
Murray MJ.No abstract available
Control of an outbreak of salmonellosis caused by drug-resistant Salmonella anatum in horses at a veterinary hospital and measures to prevent future infections.
Journal of the American Veterinary Medical Association    August 1, 1996   Volume 209, Issue 3 629-631 
Hartmann FA, Callan RJ, McGuirk SM, West SE.Salmonella anatum was isolated from horses treated at a private veterinary clinic or at a university veterinary medical teaching hospital. All isolates were resistant to most commonly used antibiotics. Because of the severity of disease resulting from outbreaks of infections with drug-resistant strains of S anatum, an epidemiologic investigation was conducted. Enteric bacteria, including S anatum, that were resistant to most antibiotics were isolated from the private veterinary clinic environment. Salmonella anatum was not isolated from the university teaching hospital environment. To prevent ...
Evidence for a single pedigree source of the hyperkalemic periodic paralysis susceptibility gene in quarter horses.
Animal genetics    August 1, 1996   Volume 27, Issue 4 279-281 doi: 10.1111/j.1365-2052.1996.tb00490.x
Bowling AT, Byrns G, Spier S.The pedigree origin of a base pair substitution in the horse muscle sodium channel gene that confers susceptibility to the muscle disease hyperkalemic periodic paralysis (HYPP) was investigated with a set of 978 Quarter Horses. The horses were chosen at random, based on a collection of blood samples taken between 1989 and 1991 to meet parentage testing requirements, primarily but not exclusively from breeding stallions. The frequency of Quarter Horses positive for the base pair substitution, all heterozygotes, was 4.4%, which corresponds to an allelic frequency of 0.02. All horses positive for...
Analysis of spatial and temporal clustering of horses with Salmonella krefeld in an intensive care unit of a veterinary hospital.
Journal of the American Veterinary Medical Association    August 1, 1996   Volume 209, Issue 3 626-628 
Paré J, Carpenter TE, Thurmond MC.To determine whether clustering existed in the spatial or temporal distribution of horses that shed Salmonella krefeld in their feces during hospitalization. Methods: Retrospective analysis of medical records. Methods: 219 horses housed in the intensive care unit of a veterinary medical teaching hospital from October 1991 through May 1992. Methods: Bacteriologic culturing of fecal samples was used to identify horses shedding S krefeld. For affected horses, the scan statistic was used to analyze temporal clustering, and Knox's method was used to analyze temporal-spatial clustering. Results: 20 ...
Zoonoses control. Equine morbillivirus in Queensland.
Releve epidemiologique hebdomadaire    July 5, 1996   Volume 71, Issue 27 208-210 
No abstract available
[Development of resistance to antiparasitic agents in parasites pathogenic to animals].
DTW. Deutsche tierarztliche Wochenschrift    July 1, 1996   Volume 103, Issue 7 260-263 
Daugschies A.Drug resistance of parasites is a worldwide problem of increasing importance in animal production. Considerable information is available on the development of resistance in chicken coccidia and in strongyles of horses, sheep, goats and pigs. A review is given of the development, incidence, and management of drug resistance with emphasis on the situation in Germany.
Leptospiral abortion in horses following a flooding incident.
Equine veterinary journal    July 1, 1996   Volume 28, Issue 4 327-330 doi: 10.1111/j.2042-3306.1996.tb03097.x
Kinde H, Hietala SK, Bolin CA, Dowe JT.No abstract available
Ultrastructure of equine morbillivirus.
Virus research    July 1, 1996   Volume 43, Issue 1 1-15 doi: 10.1016/0168-1702(96)01307-x
Hyatt AD, Selleck PW.The ultrastructure of the equine morbillivirus (EMV) which was implicated in the death of one human and fourteen horses in Queensland, Australia during September 1994 and a 36 year old man from Queensland in October 1995 is described. The ultrastructure of the virus and the intracellular virus-specific structures are characteristic for the family Paramyxoviridae. Cytoplasmic nucleocapsids were observed within the infected cells monolayers, endothelial cells (lung) of infected horses and the neurons within the brain of the 36 year old Queensland man. Aggregates of smaller nucleocapsid-like stru...
Evaluation of outbreaks of disease attributable to eastern equine encephalitis virus in horses.
Journal of the American Veterinary Medical Association    June 15, 1996   Volume 208, Issue 12 1988-1997 
Ross WA, Kaneene JB.To evaluate outbreaks of disease attributable to eastern equine encephalitis virus (EEEV) in horses in Michigan, and the associated environmental patterns and weather conditions, so that factors could be identified that may have predisposed horses in specific areas of the state to infections with EEEV. Methods: Epidemiologic retrospective records analysis. Methods: Data on EEEV vectors, wild-bird reservoir hosts, and incidental hosts, including horses and human beings, obtained from census reports and medical records compiled between 1942 and 1991. Methods: Patterns detected during outbreaks o...
Equine influenza.
Comparative immunology, microbiology and infectious diseases    June 1, 1996   Volume 19, Issue 3 205-211 doi: 10.1016/0147-9571(96)00006-9
Timoney PJ.A highly contagious virus infection of horses, influenza is the single most important equine respiratory disease in many countries. Two subtypes of equine influenza virus have been identified, A/equine-1 and A/equine-2, neither of which immunologically cross-reacts. In the case of A/equine-2 virus, two lineages exist, American and European, which appear to have evolved independently of one another. The acute febrile respiratory disease characteristic of influenza is frequently complicated by secondary bacterial infection, especially in unvaccinated horses. Primarily a respiratory-borne infecti...
Chylothorax due to primary thoracic haemangiosarcoma in a horse.
Equine veterinary journal    May 1, 1996   Volume 28, Issue 3 241-244 doi: 10.1111/j.2042-3306.1996.tb03780.x
Brink P, Wilkins LP, Spano JS.No abstract available
Control of Babesia equi parasitemia.
Parasitology today (Personal ed.)    May 1, 1996   Volume 12, Issue 5 195-198 doi: 10.1016/0169-4758(96)10007-7
Knowles DP.Infection of horses with the hemoprotozoan Babesia equi has been reported in southern Florida, US Virgin Islands, part of Asia, Russia, India, the Middle East, Europe, Africa, Australia, South America, Central America, Mexico, Philippine Islands and some Caribbean islands. The restrictions placed on the international movement of infected horses has refocused attention on potential methods to control or eliminate infection. Don Knowles here discusses the primary chemotherapeutic compounds that have been used; the current knowledge concerning immune responses that potentially contribute to contr...
Evidence for multiple foci of eastern equine encephalitis virus (Togaviridae:Alphavirus) in central New York State.
Journal of medical entomology    May 1, 1996   Volume 33, Issue 3 421-432 doi: 10.1093/jmedent/33.3.421
Howard JJ, Grayson MA, White DJ, Oliver J.A regional surveillance system for eastern equine encephalitis (EEE) virus was established in central New York in 1984 after the 2nd human EEE fatality occurred in 1983. Extensive mosquito surveillance activities were coordinated with the rapid laboratory processing of mosquito specimens for EEE virus. Active surveillance for EEE infections in humans and equines also was initiated. Results of long-term surveillance detected the presence of multiple Culiseta breeding swamps. A 6-yr interepizootic period (1984-1989) was followed by 2 yr of equine EEE. In 1990, there were 7 equine cases and a rec...
Evaluation of vaccination of horses as a strategy to control equine monocytic ehrlichiosis.
Journal of the American Veterinary Medical Association    April 15, 1996   Volume 208, Issue 8 1290-1294 
Atwill ER, Mohammed HO.To determine whether preferentially vaccinated horses were at risk for exposure to Ehrlichia risticii, whether horses with equine monocytic ehrlichiosis (EME) were likely to have been nonvaccinated, and whether clinical severity and financial costs associated with care and treatment of EME were less for vaccinated horses with EME than for nonvaccinated horses with EME. Methods: Cross-sectional and case-control studies. Methods: Information on usage of E risticii bacterins to control EME was collected for 2,587 horses located on 511 farms throughout New York. Each horse was tested for serum ant...
Antigenic and genetic evolution of equine H3N8 influenza A viruses.
The Journal of general virology    April 1, 1996   Volume 77 ( Pt 4) 661-671 doi: 10.1099/0022-1317-77-4-661
Daly JM, Lai AC, Binns MM, Chambers TM, Barrandeguy M, Mumford JA.Evolution of equine influenza a H3N8 viruses was examined by antigenic and genetic analysis of a collection isolates from around the world. It was noted that antigenic and genetic variants of equine H3N8 viruses cocirculate, and in particular that variants currently circulating in Europe and the USA are distinguishable from one another both in terms of antigenic reactivity and genetic structure of the HA1 portion of the haemagglutinin (HA) molecule. Whilst the divergent evolution of American and European isolates may be due to geographical isolation of the two gene pools, some mixing is believ...
Equine babesiosis (piroplasmosis): a problem in the international movement of horses.
The British veterinary journal    March 1, 1996   Volume 152, Issue 2 123-126 doi: 10.1016/s0007-1935(96)80066-2
Knowles D.No abstract available
Serological evidence for the presence of A/equine-1 influenza virus in unvaccinated horses in Croatia.
The Veterinary record    January 20, 1996   Volume 138, Issue 3 68 doi: 10.1136/vr.138.3.68
Madić J, Martinović S, Naglić T, Hajsig D, Cvetnić S.No abstract available
Equine intestinal clostridiosis in a group of polo ponies in Dubai, U.A.E.
Berliner und Munchener tierarztliche Wochenschrift    January 1, 1996   Volume 109, Issue 1 10-13 
Wernery U, Nothelfer HB, Böhnel H, Collins WR.An acute outbreak of a C. perfringens Type C enterotoxemia in a polo club killed 8 polo ponies in less than 24 hours. Hay with a massive fungal contamination (Aspergillus and Fusarium sp.) is suspected to have triggered the enterotoxemia. Our cases show numerous similarities with the previously reported cases of EIC. However, acute toxic tubulonephrosis in the necropsied horses and longstanding elevation of AST and gamma GT-levels in survivors is unique in our cases.
Drug use and misuse: frontiers between biological science, bureaucracy and clinical pragmatism.
Equine veterinary journal    January 1, 1996   Volume 28, Issue 1 7-8 doi: 10.1111/j.2042-3306.1996.tb01581.x
Rossdale PD.No abstract available
Transmission patterns of St. Louis encephalitis and eastern equine encephalitis viruses in Florida: 1978-1993.
Journal of medical entomology    January 1, 1996   Volume 33, Issue 1 132-139 doi: 10.1093/jmedent/33.1.132
Day JF, Stark LM.Sentinel chickens were maintained at field sites in 40 Florida counties for varying periods between 1978 and 1993. For each county, the total number of St. Louis encephalitis virus (SLE) or eastern equine encephalitis (EEE) virus seroconversions were divided by the number of chickens exposed to calculate a mean annual seroconversion rate. These rates were used to evaluate the annual and geographical distributions of these viruses within Florida. For SLE, the rates in counties that reported human SLE cases during a widespread epidemic in 1990 were compared with adjusted mean annual seroconversi...
Phylogenetic analysis of open reading frame 5 of field isolates of equine arteritis virus and identification of conserved and nonconserved regions in the GL envelope glycoprotein.
Virology    December 20, 1995   Volume 214, Issue 2 690-697 doi: 10.1006/viro.1995.0087
Balasuriya UB, Timoney PJ, McCollum WH, MacLachlan NJ.The variation and phylogenetic relationship of open reading frame 5 (ORF5) of 3 different laboratory strains of the original prototype Bucyrus strain of equine arteritis virus (EAV), the modified live virus vaccine (ARVAC, Fort Dodge Laboratories), and 18 field isolates of EAV from North America and Europe were determined by comparison of their gene sequences. The viruses differed from the published sequence by between 3 (99.6% homology) and 94 (87.8%) nucleotides and by between 3 (98.8%) and 24 (90.6%) amino acids. The field isolates differed from each other by between 2 (99.7%) and 110 (85.7...
Outbreak of Severe Respiratory Disease in Humans and Horses Due to a Previously Unrecognized Paramyxovirus.
Journal of travel medicine    December 1, 1995   Volume 2, Issue 4 275 doi: 10.1111/j.1708-8305.1995.tb00679.x
Selvey L, Sheridan J.No abstract available
Clinical epidemiology: application to laboratory data.
The Veterinary clinics of North America. Equine practice    December 1, 1995   Volume 11, Issue 3 515-524 doi: 10.1016/s0749-0739(17)30313-9
Traub-Dargatz JL, Dargatz DA.No abstract available
Association of leptospiral seroreactivity and breed with uveitis and blindness in horses: 372 cases (1986-1993).
Journal of the American Veterinary Medical Association    November 15, 1995   Volume 207, Issue 10 1327-1331 
Dwyer AE, Crockett RS, Kalsow CM.Recurrent uveitis, a leading cause of blindness in horses, often develops as a sequela to systemic leptospirosis. Over a 7-year period, 63 of 112 (56%) horses with uveitis were seropositive for Leptospira interrogans serovar pomona, but only 23 of 260 (9%) horses without uveitis were seropositive. Odds-ratio analysis revealed that seropositive horses were 13.2 times more likely to have uveitis than were seronegative horses. Of the 63 seropositive horses with uveitis, 59% developed blindness, compared with only 24% in the 49 seronegative horses with uveitis that lost vision in 1 or both eyes du...
Equine influenza in vaccinated horses.
The Veterinary record    November 4, 1995   Volume 137, Issue 19 495-496 doi: 10.1136/vr.137.19.495
Newton JR, Mumford JA.No abstract available
Genetics and disease in the horse.
Equine veterinary journal    November 1, 1995   Volume 27, Issue 6 400-401 doi: 10.1111/j.2042-3306.1995.tb04416.x
Gerber V, Bailey E.No abstract available
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