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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.
Genetic stability of equine arteritis virus during horizontal and vertical transmission in an outbreak of equine viral arteritis.
The Journal of general virology    August 31, 1999   Volume 80 ( Pt 8) 1949-1958 doi: 10.1099/0022-1317-80-8-1949
Balasuriya UBR, Hedges JF, Nadler SA, McCollum WH, Timoney PJ, MacLachlan NJ.An imported carrier stallion (A) from Europe was implicated in causing an extensive outbreak of equine viral arteritis (EVA) on a Warmblood breeding farm in Pennsylvania, USA. Strains of equine arteritis virus (EAV) present in the semen of two carrier stallions (A and G) on the farm were compared to those in tissues of foals born during the outbreak, as well as viruses present in the semen of two other stallions that became persistently infected carriers of EAV following infection during the outbreak. The 2822 bp segment encompassing ORFs 2-7 (nt 9807-12628; which encode the G(S), GP3, GP4, G(...
Genetic evidence for the origins of Venezuelan equine encephalitis virus subtype IAB outbreaks.
The American journal of tropical medicine and hygiene    August 31, 1999   Volume 60, Issue 3 441-448 doi: 10.4269/ajtmh.1999.60.441
Weaver SC, Pfeffer M, Marriott K, Kang W, Kinney RM.Epizootics of Venezuelan equine encephalitis (VEE) involving subtype IAB viruses occurred sporadically in South, Central and North America from 1938 to 1973. Incompletely inactivated vaccines have long been suspected as a source of the later epizootics. We tested this hypothesis by sequencing the PE2 glycoprotein precursor (1,677 nucleotides) or 26S/nonstructural protein 4 (nsP4) genome regions (4,490 nucleotides) for isolates representing most major outbreaks. Two distinct IAB genotypes were identified: 1) 1940s Peruvian strains and 2) 1938-1973 isolates from South, Central, and North America...
Evidence of rickettsial spotted fever and ehrlichial infections in a subtropical territory of Jujuy, Argentina.
The American journal of tropical medicine and hygiene    August 27, 1999   Volume 61, Issue 2 350-354 doi: 10.4269/ajtmh.1999.61.350
Ripoll CM, Remondegui CE, Ordonez G, Arazamendi R, Fusaro H, Hyman MJ, Paddock CD, Zaki SR, Olson JG, Santos-Buch CA.Between November 1993 and March 1994, a cluster 6 pediatric patients with acute febrile illnesses associated with rashes was identified in Jujuy Province, Argentina. Immunohistochemical staining of tissues confirmed spotted fever group rickettsial infection in a patient with fatal disease, and testing of serum of a patient convalescing from the illness by using an indirect immunofluorescence assay (IFA) demonstrated antibodies reactive with spotted fever group rickettsiae. A serosurvey was conducted among 16 households in proximity to the index case. Of 105 healthy subjects evaluated by IFA, 1...
Efficacy of a commercial vaccine for preventing disease caused by influenza virus infection in horses.
Journal of the American Veterinary Medical Association    July 9, 1999   Volume 215, Issue 1 61-66 
Morley PS, Townsend HG, Bogdan JR, Haines DM.To evaluate efficacy of a commercial vaccine for prevention of infectious upper respiratory tract disease (IURD) caused by equine influenza virus. Methods: Double-masked, randomized, controlled field trial. Methods: 462 horses stabled at a Thoroughbred racetrack. Methods: Vaccine or saline solution placebo was administered 4 times in the population at 6-week intervals. The vaccine contained 3 strains of inactivated influenza virus, and inactivated equine herpesvirus type 4. Horses received 1 or 2 doses of vaccine or placebo prior to onset of a natural influenza epidemic, and were examined 5 d/...
Outbreak of African horse sickness in the Cape Province of South Africa.
The Veterinary record    June 8, 1999   Volume 144, Issue 17 483 
Bell RA.No abstract available
Geographic distribution of Venezuelan equine encephalitis virus subtype IE genotypes in Central America and Mexico.
The American journal of tropical medicine and hygiene    May 29, 1999   Volume 60, Issue 4 630-634 doi: 10.4269/ajtmh.1999.60.630
Oberste MS, Schmura SM, Weaver SC, Smith JF.Phylogenetic analysis of 20 strains of Venezuelan equine encephalitis (VEE) virus subtype IE isolated from 1961 to 1996 in Mexico and throughout Central America showed that VEE virus subtype IE was monophyletic with respect to other VEE virus subtypes. Nonetheless, there were at least three distinct geographically separated VEE virus IE genotypes: northwestern Panama, Pacific coast (Mexico/Guatemala), and Gulf/Caribbean coast (Mexico/Belize). Strains from the Caribbean coast of Guatemala, Honduras, and Nicaragua may cluster with the Gulf/Caribbean genotype, but additional isolates from the reg...
Equine abortions in eastern Ontario due to leptospirosis.
The Canadian veterinary journal = La revue veterinaire canadienne    May 26, 1999   Volume 40, Issue 5 350-351 
Shapiro JL, Prescott JF, Henry G.No abstract available
Detection of a common genotype among strains of Taylorella equigenitalis isolated from thoroughbred horses in Japan between 1994 and 1996.
Journal of basic microbiology    May 21, 1999   Volume 39, Issue 2 127-130 doi: 10.1002/(sici)1521-4028(199905)39:23.0.co;2-q
Matsuda M, Miyazawa T, Anzai T.We examined whether or not the genotype J could be detected among 21 new strains of T. equigenitalis isolated between 1994 and 1996 in Japan since our previous report (MIYAZAWA et al. 1995). The respective pulsed-field gel electrophoretic profiles of the 21 Japanese strains, as well as those of an old EQ59 used as a reference strain after separate digestion with the two restriction enzymes, ApaI and NotI, were essentially identical but differed from those of T. equigenitalis NCTC11184T and KENTUCKY 188, respectively. Hence, the 21 strains and EQ59 appeared to have a common genotype J. Conseque...
Prediction of long-term outcome following grass sickness (equine dysautonomia).
The Veterinary record    May 18, 1999   Volume 144, Issue 14 386-387 doi: 10.1136/vr.144.14.386
Doxey DL, Milne EM, Gwilliam R, Sandland J.No abstract available
Mortality supposedly due to intoxication by pyrrolizidine alkaloids from Heliotropium indicum in a horse population in Costa Rica: a case report.
The veterinary quarterly    May 13, 1999   Volume 21, Issue 2 59-62 doi: 10.1080/01652176.1999.9694993
van Weeren PR, Morales JA, Rodríguez LL, Cedeño H, Villalobos J, Poveda LJ.This article describes a case of massive mortality among horses which was probably due to intoxication by pyrrolizidine alkaloids from Heliotropium indicum. Over 4 years more than 75% of a population of about 110 horses on a farm in Costa Rica died after showing nervous neurological symptoms. Two clinical manifestations were encountered, an acute and a chronic one, both with a fatal outcome. Pathological findings in 2 horses coincided with those reported in the literature for intoxication by pyrrolizidine alkaloids and were not specific for VEE. However Venezuelan equine encephalitis (VEE) was...
The seroprevalence of equine trypanosomosis in the pantanal.
Memorias do Instituto Oswaldo Cruz    May 4, 1999   Volume 94, Issue 2 199-202 doi: 10.1590/s0074-02761999000200014
Dávila AM, Souza SS, Campos C, Silva RA.Since little information is available on the epizootiological status of Trypanosoma evansi in South America and particularly Brazil, we evaluated equine serum samples collected in 1993, 1994, 1995 and 1997 for the presence of antibodies against this trypanosome species. Our study shows corroborative evidence about the correlation among high T. evansi seroprevalence and the rainy season in the Pantanal, Brazil. The higher seroprevalence was 79.2% in horses from a ranch located in the Nhecolândia sub-region in 1994 and the lower 5.8% in animals from the same ranch in 1997. No seroprevalence was...
Fumonsin B1, B2, and B3 content of commercial unprocessed maize imported into South Africa from Argentina and the USA during 1992.
Food additives and contaminants    April 21, 1999   Volume 15, Issue 6 676-680 doi: 10.1080/02652039809374697
Stockenström S, Sydenham EW, Shephard GS.The widespread occurrence of F. moniliforme and the toxic effects of its secondary metabolites, the fumonisins B1(FB1), B2(FB2) and B3(FB3), make it imperative that fumonisin contamination of maize, a major constituent of animal feed as well as the staple diet of many populations, be closely monitored to reduce the risk of fumonisin exposure. Equine leukoencephalomalacia and porcine pulmonary oedema have been associated with the intake of feed heavily contaminated with fumonisins. In addition, high levels of fumonisins in the maize-based staple diets of certain populations have been linked to ...
Molecular epidemiological studies of veterinary arboviral encephalitides.
Veterinary journal (London, England : 1997)    April 16, 1999   Volume 157, Issue 2 123-138 doi: 10.1053/tvjl.1998.0289
Weaver SC, Powers AM, Brault AC, Barrett AD.Recent studies using molecular genetic approaches have made important contributions to our understanding of the epidemiology of veterinary arboviral encephalitides. Viruses utilizing avian enzootic hosts, such as Western equine encephalitis virus (WEEV) and North American Eastern equine encephalitis virus (EEEV), evolve as relatively few, highly conserved genotypes that extend over wide geographic regions; viruses utilizing mammalian hosts with more limited dispersal evolve within multiple genotypes, each geographically restricted. Similar findings have been reported for Australian alphaviruse...
Genetic and phenotypic changes accompanying the emergence of epizootic subtype IC Venezuelan equine encephalitis viruses from an enzootic subtype ID progenitor.
Journal of virology    April 10, 1999   Volume 73, Issue 5 4266-4271 doi: 10.1128/JVI.73.5.4266-4271.1999
Wang E, Barrera R, Boshell J, Ferro C, Freier JE, Navarro JC, Salas R, Vasquez C, Weaver SC.Recent studies have indicated that epizootic Venezuelan equine encephalitis (VEE) viruses can evolve from enzootic, subtype ID strains that circulate continuously in lowland tropical forests (A. M. Powers, M. S. Oberste, A. C. Brault, R. Rico-Hesse, S. M. Schmura, J. F. Smith, W. Kang, W. P. Sweeney, and S. C. Weaver, J. Virol. 71:6697-6705, 1997). To identify mutations associated with the phenotypic changes leading to epizootics, we sequenced the entire genomes of two subtype IC epizootic VEE virus strains isolated during a 1992-1993 Venezuelan outbreak and four sympatric, subtype ID enzootic...
The circumstances surrounding the outbreak and spread of equine influenza in South Africa.
Revue scientifique et technique (International Office of Epizootics)    April 6, 1999   Volume 18, Issue 1 179-185 doi: 10.20506/rst.18.1.1155
Guthrie AJ, Stevens KB, Bosman PP.Equine-2 influenza A virus (H3N8) infection first occurred among naïve horses in South Africa in December 1986. The virus was introduced following the importation of six horses from the United States of America. While the release of in-contact horses from quarantine three days after the arrival of these six horses played a role in the rapid spread of the disease in South Africa, other outbreaks of disease were associated with viral introduction by personnel or contaminated instruments. The control measures and implications of the introduction of equine influenza to South Africa are also discu...
Evaluation of temporal and spatial clustering of horses with Corynebacterium pseudotuberculosis infection.
American journal of veterinary research    April 3, 1999   Volume 60, Issue 3 284-291 
Doherr MG, Carpenter TE, Wilson WD, Gardner IA.To determine whether horses with Corynebacterium pseudotuberculosis infections that were examined at a veterinary medical teaching hospital between July 1, 1992, and June 30, 1994 had patterns of temporal or spatial clustering. Methods: 134 case and 800 control horses randomly selected from all non-case horses admitted during the study period. Methods: Admission date and geographic location were determined. Scan, Cuzick & Edwards', and Knox tests were applied to determine whether case horses had patterns of temporal or spatial clustering. Results: For all windows > or = 3 days (134 case...
Control of equine viral arteritis.
The Veterinary record    March 31, 1999   Volume 144, Issue 7 186 
Parker J.No abstract available
Genetic diversity of equine arteritis virus.
The Journal of general virology    March 26, 1999   Volume 80 ( Pt 3) 691-699 doi: 10.1099/0022-1317-80-3-691
Stadejek T, Bj Rklund H, Bascu Ana CR, Ciabatti IM, Scicluna MT, Amaddeo D, McCollum WH, Autorino GL, Timoney PJ, Paton DJ, Klingeborn B, Bel K S.Equine arteritis viruses (EAV) from Europe and America were compared by phylogenetic analysis of 43 isolates obtained over four decades. An additional 22 virus sequences were retrieved from GenBank. Fragments of the glycoprotein G(L) and the replicase genes were amplified by RT-PCR, prior to sequencing and construction of phylogenetic trees. The trees revealed many distinctive lineages, consistent with prolonged diversification within geographically separated host populations. Two large groups and five subgroups were distinguished. Group I consisted mainly of viruses from North America, whilst...
Transmissibility from horses to humans of a novel paramyxovirus, equine morbillivirus (EMV).
The Journal of infection    March 25, 1999   Volume 38, Issue 1 22-23 doi: 10.1016/s0163-4453(99)90023-3
McCormack JG, Allworth AM, Selvey LA, Selleck PW.Determination of potential infectivity of a new paramyxovirus equine morbillivirus (EMV) from horses to humans and humans to humans as a result of two outbreaks in Queensland which involved 23 horses and three humans. Methods: Seroepidemiological testing using neutralizing and immunofluorescing antibodies on people with variable levels of exposure to infected horses and humans. Results: All serological testing on a total of 298 individual contacts was negative. Conclusions: While the three human cases of EMV were probably infected as a result of very close contact with horses, these data sugge...
Horse sickness and ENSO in South Africa.
Nature    March 2, 1999   Volume 397, Issue 6720 574 doi: 10.1038/17512
Baylis M, Mellor PS, Meiswinkel R.No abstract available
The equine influenza surveillance program.
Advances in veterinary medicine    January 16, 1999   Volume 41 379-387 doi: 10.1016/s0065-3519(99)80028-7
Mumford JA.No abstract available
Diagnosis and prevention of equine infectious diseases: present status, potential, and challenges for the future.
Advances in veterinary medicine    January 16, 1999   Volume 41 359-377 doi: 10.1016/s0065-3519(99)80027-5
Desmettre P.The frequent transfers of horses, whether on a permanent or temporary basis, make strict control of infectious diseases essential. Such control needs a reliable and rapid means to accurately diagnose the relevant diseases. Indirect diagnosis based on antibody detection remains certainly the best method to secure the epidemiologic surveillance of the diseases at regional, national, or even world level, while direct diagnosis is the only way to diagnose a new outbreak. New diagnostic methods resulting from advances in biochemistry, molecular biology, and immunology are now available. As far as a...
The Dorothy Russell Havemeyer Foundation Third International Workshop on Equine Perinatology: comparative aspects. Proceedings.
Equine veterinary journal    December 9, 1998   Volume 30, Issue 6 455-466 doi: 10.1111/j.2042-3306.1998.tb04520.x
No abstract available
[Meconium obstipation in the foal].
Tijdschrift voor diergeneeskunde    December 4, 1998   Volume 123, Issue 22 671-672 
Boerma S.No abstract available
Epidemiology of equine herpesvirus abortion: searching for clues to the future.
Australian veterinary journal    November 27, 1998   Volume 76, Issue 10 675-676 doi: 10.1111/j.1751-0813.1998.tb12280.x
Gilkerson JR, Love DN, Whalley JM.No abstract available
Transient alteration in intestinal permeability to technetium Tc99m diethylenetriaminopentaacetate during the prodromal stages of alimentary laminitis in ponies.
American journal of veterinary research    November 26, 1998   Volume 59, Issue 11 1431-1434 
Weiss DJ, Evanson OA, MacLeay J, Brown DR.To determine whether mucosal permeability is altered during the prodromal stages of alimentary laminitis. Methods: 15 healthy adult ponies. Methods: intestinal permeability was evaluated for control ponies (n = 5) and for ponies 4 to 12 (n = 5) and 20 to 28 (n = 5) hours after administration of carbohydrate overload. Mucosal permeability was determined by measuring the percentage of orally administered technetium Tc99m diethylenetriaminopentaacetate (99mTc-DTPA) excreted in urine during an 8-hour period, then measuring blood radioactivity at hourly intervals. Plasma endotoxin-like activity was...
Diagnosis and sero-epizootiology of equine herpesvirus type 1 and type 4 infections in Japan using a type-specific ELISA.
The Journal of veterinary medical science    November 20, 1998   Volume 60, Issue 10 1133-1137 doi: 10.1292/jvms.60.1133
Yasunaga S, Maeda K, Matsumura T, Kai K, Iwata H, Inoue T.Recently, a type-specific ELISA using equine herpesvirus type 1 (EHV-1) and type 4 (EHV-4) glycoprotein Gs (gGs) was developed by Crabb and Studdert [1993]. To investigate the dissemination of EHV-1 and -4 among horses in Japan, we applied their ELISA as suitable for discriminating between EHV-1 and -4 infections serologically. Type-specificity of the ELISA was confirmed by using paired sera of infected horses with either EHV-1 or -4. Application of the ELISA to sera collected before and after the winter season of 1995-1996 from 80 racehorses revealed that 30 horses showed significant antibody...
Public veterinary medicine: public health. Serologic evaluation of vesicular stomatitis virus exposure in horses and cattle in 1996.
Journal of the American Veterinary Medical Association    November 12, 1998   Volume 213, Issue 9 1265-1269 
Mumford EL, McCluskey BJ, Traub-Dargatz JL, Schmitt BJ, Salman MD.To determine potential risk factors for vesicular stomatitis (VS) in Colorado livestock in 1995 and evaluate VS virus (VSV) exposure of Colorado livestock in 1996. Methods: Retrospective case-control study of VS risk factors and seroprevalence evaluation. Methods: Premises included 52 that had VS-positive animals and 33 that did not have VS-positive animals during the 1995 epidemic, and 8 in the vicinity of premises that had VS-positive animals during the 1995 epidemic. Methods: Layout and management data for premises were collected during site visits in 1996. Signalment and management data we...
The 1996 outbreak of African horse sickness in South Africa–the entomological perspective.
Archives of virology. Supplementum    October 24, 1998   Volume 14 69-83 doi: 10.1007/978-3-7091-6823-3_8
Meiswinkel R.During the 1996 summer season (January-April) in South Africa an estimated 500 horses died of African horse sickness (AHS); 80% of deaths were due to AHS virus serotypes 2 and 4. Nearly all cases occurred in the northern, north-eastern and central parts of South Africa. This study reports the first attempt to verify the involvement of the biting midge Culicoides imicola in a field outbreak of AHS in southern Africa. In light-trap collections made at 47 sites over 12 weeks, C. imicola comprised 94.2% of 4.78 million Culicoides. Culicoides imicola was the most prevalent of 34 species captured an...
Epidemiology of African horse sickness and the role of the zebra in South Africa.
Archives of virology. Supplementum    October 24, 1998   Volume 14 13-19 doi: 10.1007/978-3-7091-6823-3_2
Barnard BJ.Zebra are the only equine species native to South Africa. These animals roamed over much of the country in the 17th century when horses and donkeys were first imported. The first cases of African horse sickness (AHS) then occurred in the horses of hunters who entered zebra territory. AHS continued to occur on a country-wide basis until the beginning of the 20th century, though the number of outbreaks decreased as the populations of zebra collapsed through overhunting. For most of the 20th century almost all free-living zebra have been confined to the north-eastern parts of South Africa which a...
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