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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.
[A multicenter study of a new Helicobacter pylori selective medium. Columbia horse blood agar HP].
Kansenshogaku zasshi. The Journal of the Japanese Association for Infectious Diseases    June 21, 2002   Volume 76, Issue 5 341-346 doi: 10.11150/kansenshogakuzasshi1970.76.341
Hasegawa M, Amano A, Muraoka H, Kobayashi I, Kimoto M, Kato M, Fujioka T, Nasu M.We conducted a study for the growth of and selectivity for the desired microorganisms using a newly developed selective culture medium for Helicobacter pylori, Columbia horse blood agar HP (CHBHP), at three different Japanese clinical laboratories, Hokkaido, Kanto and Kyusyu. When standard strains and clinical isolates of H. pylori were examined, the recovery of the organism on the CHBHP media was comparable to that of conventional selective and nonselective media. However, colonies were obviously larger on the CHBHP media. These media yielded the highest H. pylori positive rate for clinical s...
Isolation of Salem virus, a novel equine paramyxovirus, and assessment of its etiologic role in a disease outbreak.
Veterinary microbiology    June 8, 2002   Volume 87, Issue 3 205-212 doi: 10.1016/s0378-1135(02)00067-6
Glaser AL, Renshaw RW, Trock SC, Brady RC, Dubovi EJ.Salem virus (SalV) is a recently identified equine virus belonging to the family Paramyxoviridae. The only known isolate was obtained from a horse that was involved in a disease outbreak of undetermined nature and the circumstances of its isolation suggested an etiologic role. However, the experimental infection of a colostrum-deprived foal failed to reproduce the disease; only mild neutropenia and temperature elevation were recorded. An additional attempt to establish an etiological relationship with the disease was made by conducting a retrospective evaluation of the serological profiles of ...
Characterization of Aqx and its operon: the hemolytic RTX determinant of Actinobacillus equuli.
Veterinary microbiology    May 30, 2002   Volume 87, Issue 2 159-174 doi: 10.1016/s0378-1135(02)00048-2
Berthoud H, Frey J, Kuhnert P.Actinobacillus equuli, a member of the family Pasteurellaceae is the etiologic agent of a frequently lethal septicemia in neonatal foals as well as other more chronic diseases like arthritis, pleuritis, pneumonia or peritonitis. It may also be isolated from the oral cavity of healthy horses. Hemolytic isolates of A. equuli are known but so far no virulence determinants have been described for this bacterial species. By screening hemolytic A. equuli strains with specific gene probes, a hemolysin, designated Aqx (A. equuli RTX (repeats in the structural toxin)) was identified. This hemolysin was...
Transient immune suppression of inapparent carriers infected with a principal neutralizing domain-deficient equine infectious anaemia virus induces neutralizing antibodies and lowers steady-state virus replication.
The Journal of general virology    May 25, 2002   Volume 83, Issue Pt 6 1353-1359 doi: 10.1099/0022-1317-83-6-1353
Craigo JK, Leroux C, Howe L, Steckbeck JD, Cook SJ, Issel CJ, Montelaro RC.The genetic variation of equine infectious anaemia virus (EIAV) clearly affects the antigenic properties of the viral envelope; however, effects on immunogenicity remain undefined, although widely assumed. Here, the immunogenicity is reported of a novel, neutralization-resistant, pony-isolate envelope EIAV(PV564DeltaPND) that contains a 14-residue deletion in the designated principal neutralizing domain (PND) of the gp90 protein. Two ponies inoculated with a chimeric virus, EIAV(DeltaPND), containing the EIAV(PV564DeltaPND) envelope in a reference provirus strain, remained asymptomatic through...
Transmission patterns of African horse sickness and equine encephalosis viruses in South African donkeys.
Epidemiology and infection    May 11, 2002   Volume 128, Issue 2 265-275 doi: 10.1017/s0950268801006471
Lord CC, Venter GJ, Mellor PS, Paweska JT, Woolhouse ME.African horse sickness (AHS) and equine encephalosis (EE) viruses are endemic to southern Africa. AHS virus causes severe epidemics when introduced to naive equine populations, resulting in severe restrictions on the movement of equines between AHS-positive and negative countries. Recent zoning of South Africa has created an AHS-free zone to facilitate equine movement, but the transmission dynamics of these viruses are not fully understood. Here, we present further analyses of serosurveys of donkeys in South Africa conducted in 1983-5 and in 1993-5. Age-prevalence data are used to derive estim...
Recent developments in the epidemiology of virus diseases.
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    March 26, 2002   Volume 49, Issue 1 3-6 doi: 10.1046/j.1439-0450.2002.00530.x
Kaaden OR, Eichhorn W, Essbauer S.There is continual variation in viral epidemics regarding clinical symptoms, duration and disappearance, and the emergence of new diseases. This can be observed in both human and animal diseases. This evolution of virus diseases is mainly related to three factors: aetiological agent, host and environment. As far as genetic alterations of the virus are concerned, two major mechanisms are involved: mutations such as recombination and reassortment; and selection for resistance or susceptibility. This review focuses on the epidemiology of newly emerged virus diseases in man and animals, such as ac...
Equine herpesvirus type 1 (EHV-1) myeloencephalopathy: a case report.
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    March 26, 2002   Volume 49, Issue 1 37-41 doi: 10.1046/j.1439-0450.2002.00537.x
Stierstorfer B, Eichhorn W, Schmahl W, Brandmüller C, Kaaden OR, Neubauer A.An outbreak of neurological disease occurred in a well-managed riding school. Ataxia and paresis were observed in several horses, five of which became recumbent and were euthanized. Post-mortem analysis revealed scattered haemorrhages along the spinal cord, that were reflected by multiple haemorrhagic foci on formalin-fixed sections, with the thoracic and lumbar segments being the most affected. Pathohistologically, perivascular mononuclear cuffing and axonal swelling, especially in the white matter, were evident. Parallel to the course of disease, alterations in myelin sheets and activation o...
Ectoparasites: recent advances in control.
Trends in parasitology    February 8, 2002   Volume 18, Issue 2 55-56 doi: 10.1016/s1471-4922(01)02201-2
Coop RL, Taylor MA, Jacobs DE, Jackson F.No abstract available
Epidemiology for the equine practitioner.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 419-432 doi: 10.1016/s0749-0739(17)30042-1
Smith RD.In this article, I have discussed the principles and methods of outbreak investigation, reinforcing important concepts with examples from the veterinary literature. The approach presented is applicable to outbreaks caused by any agent whether it is infectious versus noninfectious or contagious versus noncontagious. The solutions vary. The experience of others presented with similar situations may be especially helpful. Because of their nature, outbreaks are difficult to prepare for. When faced with a potential outbreak, the best strategy is to approach it scientifically, systematically, and wi...
Adverse drug reactions and interactions in the horse.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 445-vi doi: 10.1016/s0749-0739(17)30044-5
Brumbaugh GW.Drugs undergo extensive evaluation before they are marketed. The occurrence of adverse reactions, however, may be so rare that thousands of patients must receive the drug before reliable data are available. It is necessary that veterinarians be informed about the drugs they use, be able to recognize drug-associated complications, know how to evaluate the patient for evidence of drug-associated toxicity, report adverse effects of drugs to the respective manufacturers, and be prepared to provide medical support and antidotal treatment (if it exists) for a patient if toxicosis occurs.
Efficacy of a cold-adapted, intranasal, equine influenza vaccine: challenge trials.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 637-643 doi: 10.2746/042516401776249354
Townsend HG, Penner SJ, Watts TC, Cook A, Bogdan J, Haines DM, Griffin S, Chambers T, Holland RE, Whitaker-Dowling P, Youngner JS, Sebring RW.A randomised, controlled, double-blind, influenza virus, aerosol challenge of horses was undertaken to determine the efficacy of a cold-adapted, temperature sensitive, modified-live virus, intranasal, equine influenza vaccine. Ninety 11-month-old influenza-naïve foals were assigned randomly to 3 groups (20 vaccinates and 10 controls per group) and challenged 5 weeks, 6 and 12 months after a single vaccination. Challenges were performed on Day 0 in a plastic-lined chamber. Between Days 1 and 10, animals were examined daily for evidence of clinical signs of influenza. Nasal swabs for virus isol...
Infant mortality, flies and horses in later-nineteenth-century towns: a case study of Preston.
Continuity and change    January 1, 2002   Volume 17, Issue 1 97-132 doi: 10.1017/s0268416002004083
Morgan N.No abstract available
Nematodes and liver fluke in New Zealand.
New Zealand veterinary journal    January 1, 2002   Volume 50, Issue sup3 41-47 doi: 10.1080/00480169.2002.36265
Charleston W, McKenna P.Abstract A general review of the epidemiology, significance and control of nematode parasitism of sheep, goats, cattle and deer in New Zealand, the emergence of anthelmintic resistance and its effects, and the search for parasite control strategies that reduce reliance on anthelmintic use, is provided. The research that has formed the basis for present levels of understanding of this complex and important topic is summarised and sources of further information are indicated. Aspects of nematode infections of horses, pigs, dogs and cats, and the history of the liver fluke, Fasciola hepatica, in ...
Grass sickness–the same old suspects but still no convictions!
Equine veterinary journal    November 27, 2001   Volume 33, Issue 6 540-542 doi: 10.2746/042516401776563454
Collier DS, Collier SO, Rossdale PD.No abstract available
Identification of equine herpesvirus 3 (equine coital exanthema virus), equine gammaherpesviruses 2 and 5, equine adenoviruses 1 and 2, equine arteritis virus and equine rhinitis A virus by polymerase chain reaction.
Australian veterinary journal    November 20, 2001   Volume 79, Issue 10 695-702 doi: 10.1111/j.1751-0813.2001.tb10674.x
Dynon K, Varrasso A, Ficorilli N, Holloway S, Reubel G, Li F, Hartley C, Studdert M, Drummer H.To develop rapid (< 8 hour) tests using polymerase chain reaction (PCR) for the diagnosis of equine herpesvirus 3 (EHV3; equine coital exanthema virus), equine gammaherpesviruses 2 (EHV2) and EHV5, equine adenovirus 1 (EAdV1), EAdV2, equine arteritis virus (EAV), equine rhinitis A virus (ERAV; formerly equine rhinovirus 1) Methods: Either single round or second round (seminested) PCRs were developed and validated. Methods: Oligonucleotide primers were designed that were specific for each virus, PCR conditions were defined and the specificity and sensitivity of the assays were determined. The a...
Setaria equina in the UK.
The Veterinary record    November 2, 2001   Volume 149, Issue 15 464 
Hillyer L, Coles G, Randle R.No abstract available
Equine West Nile encephalitis, United States.
Emerging infectious diseases    October 9, 2001   Volume 7, Issue 4 665-669 doi: 10.3201/eid0704.010412
Ostlund EN, Crom RL, Pedersen DD, Johnson DJ, Williams WO, Schmitt BJ.After the 1999 outbreak of West Nile (WN) encephalitis in New York horses, a case definition was developed that specified the clinical signs, coupled with laboratory test results, required to classify cases of WN encephalitis in equines as either probable or confirmed. In 2000, 60 horses from seven states met the criteria for a confirmed case. The cumulative experience from clinical observations and diagnostic testing during the 1999 and 2000 outbreaks of WN encephalitis in horses will contribute to further refinement of diagnostic criteria.
West Nile virus outbreak among horses in New York State, 1999 and 2000.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 745-747 doi: 10.3201/eid0704.010427
Trock SC, Meade BJ, Glaser AL, Ostlund EN, Lanciotti RS, Cropp BC, Kulasekera V, Kramer LD, Komar N.West Nile (WN) virus was identified in the Western Hemisphere in 1999. Along with human encephalitis cases, 20 equine cases of WN virus were detected in 1999 and 23 equine cases in 2000 in New York. During both years, the equine cases occurred after human cases in New York had been identified.
Exposure of domestic mammals to West Nile virus during an outbreak of human encephalitis, New York City, 1999.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 736-738 doi: 10.3201/eid0704.010424
Komar N, Panella NA, Boyce E.We evaluated West Nile (WN) virus seroprevalence in healthy horses, dogs, and cats in New York City after an outbreak of human WN virus encephalitis in 1999. Two (3%) of 73 horses, 10 (5%) of 189 dogs, and none of 12 cats tested positive for WN virus-neutralizing antibodies. Domestic mammals should be evaluated as sentinels for local WN virus activity and predictors of the infection in humans.
West Nile virus surveillance in Connecticut in 2000: an intense epizootic without high risk for severe human disease.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 636-642 doi: 10.3201/eid0704.010406
Hadler J, Nelson R, McCarthy T, Andreadis T, Lis MJ, French R, Beckwith W, Mayo D, Archambault G, Cartter M.In 1999, Connecticut was one of three states in which West Nile (WN) virus actively circulated prior to its recognition. In 2000, prospective surveillance was established, including monitoring bird deaths, testing dead crows, trapping and testing mosquitoes, testing horses and hospitalized humans with neurologic illness, and conducting a human seroprevalence survey. WN virus was first detected in a dead crow found on July 5 in Fairfield County. Ultimately, 1,095 dead crows, 14 mosquito pools, 7 horses, and one mildly symptomatic person were documented with WN virus infection. None of 86 hospit...
West Nile encephalitis: an emerging disease in the United States.
Clinical infectious diseases : an official publication of the Infectious Diseases Society of America    October 5, 2001   Volume 33, Issue 10 1713-1719 doi: 10.1086/322700
Marfin AA, Gubler DJ.In 1999, an epidemic of West Nile virus (WNV) encephalitis occurred in New York City (NYC) and 2 surrounding New York counties. Simultaneously, an epizootic among American crows and other bird species occurred in 4 states. Indigenous transmission of WNV had never been documented in the western hemisphere until this epidemic. In 2000, the epizootic expanded to 12 states and the District of Columbia, and the epidemic continued in NYC, 5 New Jersey counties, and 1 Connecticut county. In addition to these outbreaks, several large epidemics of WNV have occurred in other regions of the world where t...
West Nile outbreak in horses in southern France, 2000: the return after 35 years.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 692-696 doi: 10.3201/eid0704.010417
Murgue B, Murri S, Zientara S, Durand B, Durand JP, Zeller H.On September 6, 2000, two cases of equine encephalitis caused by West Nile (WN) virus were reported in southern France (Hérault Province), near Camargue National Park, where a WN outbreak occurred in 1962. Through November 30, 76 cases were laboratory confirmed among 131 equines with neurologic disorders. The last confirmed case was on November 3, 2000. All but three cases were located in a region nicknamed "la petite Camargue," which has several large marshes, numerous colonies of migratory and resident birds, and large mosquito populations. No human case has been confirmed among clinically ...
Equine monocytic Ehrlichiosis (Potomac horse fever) in horses in Uruguay and southern Brazil. Dutra F, Schuch LF, Delucchi E, Curcio BR, Coimbra H, Raffi MB, Dellagostin O, Riet-Correa F.A disease named locally as churrío or churrido equino (i.e., equine scours) has occurred for at least 100 years in Uruguay and southern Brazil in farms along both shores of the Merín lake. This report describes cases of churrido equino and provides serologic, pathologic, and DNA-based evidence indicating that the disease is in fact equine monocytic ehrlichiosis (Potomac horse fever). Results of an epidemiological investigation conducted on an endemic farm are also presented. Clinical signs in 12 horses were fever, depression, diarrhea, dehydration, and sometimes colic and distal hind limb ed...
Listeria monocytogenes septicaemia in foals.
Equine veterinary journal    September 18, 2001   Volume 33, Issue 5 519-522 doi: 10.2746/042516401776254727
Jose-Cunilleras E, Hinchcliff KW.Listeria monocytogenes rarely causes disease in horses (Emerson and Jarvis 1968; McCain and Robinson 1976; Clark et al. 1978; Welsh 1983; Wallace and Hathcock 1995; Larochelle et al. 1999; Wilkins et al. 2000). It is described as a cause of abortion, septicaemia in equine neonates, mature horses and ponies and neurological disease in a foal (Emerson and Jarvis 1968; McCain and Robinson 1976; Clark et al. 1978; Welsh 1983; Wallace and Hathcock 1995; Larochelle et al. 1999; Wilkins et al. 2000). Most cases of listeriosis in other species arise from the ingestion of contaminated food and...
Traceability of Equidae: a population in motion.
Revue scientifique et technique (International Office of Epizootics)    September 11, 2001   Volume 20, Issue 2 500-509 doi: 10.20506/rst.20.2.1292
Sluyter FJ.The accelerated speed of animal transport and the existence of complex and intricate movement systems have created an equine population in motion. This ease in the international movement of horses has an impact on the risk of introduction or spread of disease, specifically in relation to competition horses. Facilitating trade in Equidae, whilst simultaneously safeguarding the health status of the receiving country is a major challenge. To date, the international regulatory bodies are prepared to consider movement of registered horses as a relatively 'low risk' occurrence and thereby apply the ...
Contagious equine metritis in Turkey: first isolation of Taylorella equigenitalis from mares.
The Veterinary record    August 16, 2001   Volume 149, Issue 4 120-122 doi: 10.1136/vr.149.4.120
Ozgur NY, Ikiz S, Carioglu B, Kilicarslan R, Yilmaz H, Akay O, Ilgaz A.No abstract available
Virulence and viremia characteristics of 1992 epizootic subtype IC Venezuelan equine encephalitis viruses and closely related enzootic subtype ID strains.
The American journal of tropical medicine and hygiene    August 16, 2001   Volume 65, Issue 1 64-69 doi: 10.4269/ajtmh.2001.65.64
Wang E, Bowen RA, Medina G, Powers AM, Kang W, Chandler LM, Shope RE, Weaver SC.Following a 19-year hiatus, Venezuelan equine encephalitis (VEE) reemerged in western Venezuela in December 1992. This outbreak is important in understanding VEE emergence because phylogenetic studies imply that sympatric, enzootic, subtype ID VEE viruses mutated to generate the epizootic/epidemic. Although the 1992-1993 strains belong to subtype IC, a serotype implicated in extensive outbreaks during the 1960s and in 1995, relatively small numbers of human and equine cases occurred in 1992-1993. We, therefore, evaluated the pathogenicity of these Venezuelan enzootic ID and epizootic IC viruse...
Trypanosoma evansi control and horse mortality in the Brazilian Pantanal.
Memorias do Instituto Oswaldo Cruz    August 14, 2001   Volume 96, Issue 5 599-602 doi: 10.1590/s0074-02762001000500002
Seidl AF, Moraes AS, Silva RA.The impact of three treatment strategies for Trypanosoma evansi control on horse mortality in the Brazilian Pantanal based on four size categories of cattle ranches is explored. The region's 49,000 horses are indispensable to traditional extensive cattle ranching and T. evansi kills horses. About 13% of these horses would be lost, annually, due to T. evansi if no control were undertaken. One preventive and two curative treatment strategies are financially justifiable in the Pantanal. The best available technology for the treatment of T. evansi from a horse mortality perspective is the preventi...
Foxtail-induced ulcerative stomatitis outbreak in a Missouri stable. Turnquist SE, Ostlund EN, Kreeger JM, Turk JR.Twenty of 25 horses in a well-managed Missouri boarding stable were diagnosed with gingivitis/stomatitis. Gross examination of the affected horses revealed varying degrees of gingivitis ranging from mild periodontal swelling to marked swelling and erythema with ulceration and hemorrhage. Fine hair-like material was embedded within the intensely affected areas. Gingival biopsies from 4 affected horses contained pyogranulomatous inflammation with, in some cases, numerous eosinophils and several grass awns in cross and longitudinal section. Numerous foxtail seed heads were identified in hay sampl...
A cross-sectional study of colic in horses on thoroughbred training premises in the British Isles in 1997.
Equine veterinary journal    July 27, 2001   Volume 33, Issue 4 380-385 doi: 10.2746/042516401776249499
Hillyer MH, Taylor FG, French NP.The aim of this study was to estimate the incidence of colic in horses in Thoroughbred training premises in 1997 in the British Isles. The seasonal pattern and outcome of colic episodes were also investigated, together with any association between premises level variables and colic. Data were collected by a postal questionnaire. The results showed a colic incidence density of 7.19/100 horse years (s.e. 0.42) and a cumulative incidence of colic of 5.80% (s.e. 0.30). Premises were grouped according to whether they had more Flat than National Hunt horses (Flat premises) or more National Hunt than...
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