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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.
West Nile fever outbreak in horses and humans, Spain, 2010.
Emerging infectious diseases    December 17, 2011   Volume 17, Issue 12 2397-2399 doi: 10.3201/eid1712.110651
García-Bocanegra I, Jaén-Téllez JA, Napp S, Arenas-Montes A, Fernández-Morente M, Fernández-Molera V, Arenas A.TO THE EDITOR: West Nile virus (WNV) is a member of the genus Flavivirus within the Japanese encephalitis antigenic complex. The enzootic virus cycle involves transmission between avian hosts and ornithophilic mosquitoes, whereas humans and horses are considered dead-end hosts. Given the recent increase of WNV infection in humans and horses in Europe, concern has been raised regarding public and animal health.
Animal diseases caused by orbiviruses, Algeria.
Emerging infectious diseases    December 17, 2011   Volume 17, Issue 12 2325-2327 doi: 10.3201/eid1712.110928
Madani H, Casal J, Alba A, Allepuz A, Cêtre-Sossah C, Hafsi L, Kount-Chareb H, Bouayed-Chaouach N, Saadaoui H, Napp S.Antibodies against bluetongue virus were detected in cattle, sheep, goats, and camels in Algeria in 2008. Antibodies against epizootic hemorrhagic disease virus were detected in cattle, but antibodies against African horse sickness virus were not detected in horses and mules. Epizootic hemorrhagic disease in northern Africa poses a major risk for the European Union.
Equine encephalosis virus: evidence for circulation beyond southern Africa.
Epidemiology and infection    December 14, 2011   Volume 140, Issue 11 1982-1986 doi: 10.1017/S0950268811002688
Oura CA, Batten CA, Ivens PA, Balcha M, Alhassan A, Gizaw D, Elharrak M, Jallow DB, Sahle M, Maan N, Mertens PC, Maan S.Prior to the recent outbreak of equine encephalosis in Israel in 2009, equine encephalosis virus (EEV) had only been isolated from equids in South Africa. In this study we show the first evidence for the circulation of EEV beyond South Africa in Ethiopia, Ghana and The Gambia, indicating that EEV is likely to be freely circulating and endemic in East and West Africa. Sequence analysis revealed that the EEV isolate circulating in The Gambia was closely related to an EEV isolate that was isolated from a horse from Israel during the EEV outbreak in 2009, indicating that the two viruses have a com...
Hendra virus infection dynamics in Australian fruit bats.
PloS one    December 9, 2011   Volume 6, Issue 12 e28678 doi: 10.1371/journal.pone.0028678
Field H, de Jong C, Melville D, Smith C, Smith I, Broos A, Kung YH, McLaughlin A, Zeddeman A.Hendra virus is a recently emerged zoonotic agent in Australia. Since first described in 1994, the virus has spilled from its wildlife reservoir (pteropid fruit bats, or 'flying foxes') on multiple occasions causing equine and human fatalities. We undertook a three-year longitudinal study to detect virus in the urine of free-living flying foxes (a putative route of excretion) to investigate Hendra virus infection dynamics. Pooled urine samples collected off plastic sheets placed beneath roosting flying foxes were screened for Hendra virus genome by quantitative RT-PCR, using a set of primers a...
Spatio-temporal patterns of distribution of West Nile virus vectors in eastern Piedmont Region, Italy.
Parasites & vectors    December 9, 2011   Volume 4 230 doi: 10.1186/1756-3305-4-230
Bisanzio D, Giacobini M, Bertolotti L, Mosca A, Balbo L, Kitron U, Vazquez-Prokopec GM.West Nile Virus (WNV) transmission in Italy was first reported in 1998 as an equine outbreak near the swamps of Padule di Fucecchio, Tuscany. No other cases were identified during the following decade until 2008, when horse and human outbreaks were reported in Emilia Romagna, North Italy. Since then, WNV outbreaks have occurred annually, spreading from their initial northern foci throughout the country. Following the outbreak in 1998 the Italian public health authority defined a surveillance plan to detect WNV circulation in birds, horses and mosquitoes. By applying spatial statistical analysi...
Adaptation and validation of a bacteria-specific enzyme-linked immunosorbent assay for determination of farm-specific Lawsonia intracellularis seroprevalence in central Kentucky Thoroughbreds.
Equine veterinary journal. Supplement    December 7, 2011   Issue 40 25-31 doi: 10.1111/j.2042-3306.2011.00487.x
Page AE, Stills HF, Chander Y, Gebhart CJ, Horohov DW.Lawsonia intracellularis is the causative agent of equine proliferative enteropathy (EPE), a disease for which no large-scale seroprevalence studies have been conducted. Objective: To validate and use an equine-specific enzyme-linked immunosorbent assay (ELISA) for L. intracellularis to determine the seroprevalence of L. intracellularis on numerous farms. Methods: An ELISA, in which purified antigen was used, was adapted from previous work in swine. A total of 337 Thoroughbreds from 25 central Kentucky farms were enrolled and monthly serum samples collected from August 2010 to January/February...
Outbreaks of equine grass sickness in Hungary.
The Veterinary record    November 27, 2011   Volume 170, Issue 3 75 doi: 10.1136/vr.100141
Schwarz B, Brunthaler R, Hahn C, van den Hoven R.Equine grass sickness (EGS) occurs mainly in Great Britain, but has once been reported in Hungary. The stud which was affected by EGS in 2001 had no new cases until 2009/10, when 11 of 60 and five of 12 one- to three-year-old colts died or were euthanased due to EGS. Following a few hours in the high-risk field during the winter of 2010/11 further four cases of acute EGS were noted among these horses. The affected horses showed somewhat different clinical signs compared with the cases reported in Great Britain. Histopathological findings in these horses were consistent with EGS. In most examin...
Contagious equine metritis eradicated from Japan.
The Journal of veterinary medical science    November 25, 2011   Volume 74, Issue 4 519-522 doi: 10.1292/jvms.11-0347
Anzai T, Kamada M, Niwa H, Eguchi M, Nishi H.Contagious equine metritis (CEM), a contagious venereal disease of horses, invaded Japan in 1980 and spread in the Thoroughbred population of the Hidaka-Iburi district of Hokkaido. To eradicate CEM, we ran a program aimed at detecting Taylorella equigenitalis, the causal agent, in carrier horses by using the PCR test, followed by culling or treatment. In 2001, the first year of the program, 12,356 Thoroughbred racing stallions and mares were tested and 11 carriers were found. Four, two, one, and one carrier mares were detected in 2002, 2003, 2004, and 2005, respectively, by application of the ...
Geographic structuring of global EIAV isolates: a single origin for New World strains?
Virus research    November 22, 2011   Volume 163, Issue 2 656-659 doi: 10.1016/j.virusres.2011.11.011
Capomaccio S, Cappelli K, Cook RF, Nardi F, Gifford R, Marenzoni ML, Passamonti F.Equine infectious anaemia virus (EIAV) is classified within the Retroviridae and, like other lentivirus, has the propensity for considerable antigenic variation. An extensive phylogenetic analysis in Bayesian fashion, with significant amounts of new EIAV gag sequence information, revealed a strong geographic compartmentalization clearly related to the phylogeographic history of modern horses, pointing out that New World EIAV strains form a distinct group with a potentially common origin. This evidence suggests that a single founder event may have occurred during the reintroduction of horses to...
A prospective longitudinal study of naturally infected horses to evaluate the performance characteristics of rapid diagnostic tests for equine influenza virus.
Veterinary microbiology    November 6, 2011   Volume 156, Issue 3-4 246-255 doi: 10.1016/j.vetmic.2011.10.031
Read AJ, Arzey KE, Finlaison DS, Gu X, Davis RJ, Ritchie L, Kirkland PD.An outbreak of equine influenza (EI) occurred in Australia in 2007. During the laboratory support for this outbreak, real-time reverse transcriptase polymerase chain reaction (qRT-PCR) assays and a blocking enzyme linked immunosorbent assay (bELISA) were used as testing methods to detect infection with the virus. The qRT-PCR and bELISA tests had not been used for EI diagnosis before, so it was not known how soon after infection these tests would yield positive results, or for how long these results would remain positive. To answer these questions, nasal swabs and blood samples were collected d...
Examining the stable door after the horse has bolted: why is EIA such a challenge?
Veterinary journal (London, England : 1997)    November 1, 2011   Volume 192, Issue 3 253-254 doi: 10.1016/j.tvjl.2011.09.029
Knottenbelt DC.No abstract available
Diagnosis, treatment, control, and prevention of infections caused by Rhodococcus equi in foals.
Journal of veterinary internal medicine    November 1, 2011   Volume 25, Issue 6 1209-1220 doi: 10.1111/j.1939-1676.2011.00835.x
Giguère S, Cohen ND, Chaffin MK, Slovis NM, Hondalus MK, Hines SA, Prescott JF.Rhodococcus equi, a gram-positive facultative intracellular pathogen, is one of the most common causes of pneumonia in foals. Although R. equi can be cultured from the environment of virtually all horse farms, the clinical disease in foals is endemic at some farms, sporadic at others, and unrecognized at many. On farms where the disease is endemic, costs associated with morbidity and mortality attributable to R. equi may be very high. The purpose of this consensus statement is to provide recommendations regarding the diagnosis, treatment, control, and prevention of infections caused by R. equi...
Development and application of loop-mediated isothermal amplification methods targeting the seM gene for detection of Streptococcus equi subsp. equi.
The Journal of veterinary medical science    October 28, 2011   Volume 74, Issue 3 329-333 doi: 10.1292/jvms.11-0317
Hobo S, Niwa H, Oku K.Loop-mediated isothermal amplification (LAMP) constitutes a potentially valuable diagnostic tool for rapid diagnosis of contagious diseases. In this study, we developed a novel LAMP method (seM-LAMP) to detect the seM gene of Streptococcus equi subsp. equi (S. equi), the causative agent of strangles in equids. The seM-LAMP successfully amplified the target sequence of the seM gene at 63°C within 60 min. The sensitivity of the seM-LAMP was slightly lower than the 2nd reaction of the seM semi-nested PCR. To evaluate the species specificity of the seM-LAMP, we tested 100 S. equi and 189 non-S. e...
Update on infectious diseases affecting the equine nervous system.
The Veterinary clinics of North America. Equine practice    October 21, 2011   Volume 27, Issue 3 573-587 doi: 10.1016/j.cveq.2011.08.008
Johnson AL.No abstract available
Outbreak of equine endometritis caused by a genotypically identical strain of Pseudomonas aeruginosa. Allen JL, Begg AP, Browning GF.Pseudomonas aeruginosa is an opportunistic pathogen that has been recognized as a cause of endometritis in mares. Pulsed field gel electrophoresis was used to characterize and compare isolates of P. aeruginosa from an outbreak of endometritis and unrelated isolates collected at the same time as the outbreak. The restriction endonuclease digestion patterns and antimicrobial resistance profiles of all outbreak isolates were identical. Therefore, a single strain of P. aeruginosa was responsible for the cases of endometritis. The unrelated isolates could be distinguished from the outbreak strain u...
Isolation and phylogenetic grouping of equine encephalosis virus in Israel.
Emerging infectious diseases    October 18, 2011   Volume 17, Issue 10 1883-1886 doi: 10.3201/eid1710.110350
Aharonson-Raz K, Steinman A, Bumbarov V, Maan S, Maan NS, Nomikou K, Batten C, Potgieter C, Gottlieb Y, Mertens P, Klement E.During 2008-2009 in Israel, equine encephalosis virus (EEV) caused febrile outbreaks in horses. Phylogenetic analysis of segment 10 of the virus strains showed that they form a new cluster; analysis of segment 2 showed ≈92% sequence identity to EEV-3, the reference isolate. Thus, the source of this emerging EEV remains uncertain.
Equine piroplasmosis associated with Amblyomma cajennense Ticks, Texas, USA.
Emerging infectious diseases    October 18, 2011   Volume 17, Issue 10 1903-1905 doi: 10.3201/eid1710.101182
Scoles GA, Hutcheson HJ, Schlater JL, Hennager SG, Pelzel AM, Knowles DP.We report an outbreak of equine piroplasmosis in southern Texas, USA, in 2009. Infection prevalence reached 100% in some areas (292 infected horses). Amblyomma cajennense was the predominant tick and experimentally transmitted Theileria equi to an uninfected horse. We suggest that transmission by this tick species played a role in this outbreak.
[Detection of circulation of West Nile virus in equine in the north-west of Tunisia].
Bulletin de la Societe de pathologie exotique (1990)    October 15, 2011   Volume 104, Issue 4 266-271 doi: 10.1007/s13149-011-0173-1
Ben Hassine T, Hammami S, Elghoul H, Ghram A.Two outbreaks of West Nile Fever (FWN) were observed in the Sahel of Tunisia in 1997 and 2003. Several cases of meningitis and meningoencephalitis have been described in humans during these two outbreaks. However, no animal or clinical findings or seroconversion have been detected despite a high seroprevalence in human beings found around the affected areas. Few data are available regarding the spreading of this virus in other parts of the country. The purpose of this study was to detect a possible WNV spread in horses in some areas of Tunisia considered to be at risk for WNV but which had not...
Factsheet: Hendra virus.
New South Wales public health bulletin    October 11, 2011   Volume 22, Issue 7-8 160-161 doi: 10.1071/NB11031
No abstract available
The molecular epidemiology of equine influenza in Ireland from 2007-2010 and its international significance.
Equine veterinary journal    October 6, 2011   Volume 44, Issue 4 387-392 doi: 10.1111/j.2042-3306.2011.00472.x
Gildea S, Quinlivan M, Arkins S, Cullinane A.Antigenic and genetic drift of equine influenza (EI) virus is monitored annually by the Expert Surveillance Panel (ESP), which make recommendations on the need to update vaccines. Surveillance programmes are essential for this process to operate effectively and to decrease the risk of disease spread through the international movement of subclinically infected vaccinated horses. Not only is surveillance necessary to inform vaccine companies which strains are in circulation, but it serves as an early warning system for horse owners, trainers and veterinary clinicians, facilitating the implementa...
Outbreak of equine herpesvirus myeloencephalopathy in France: a clinical and molecular investigation.
Transboundary and emerging diseases    October 4, 2011   Volume 59, Issue 3 256-263 doi: 10.1111/j.1865-1682.2011.01263.x
Pronost S, Legrand L, Pitel PH, Wegge B, Lissens J, Freymuth F, Richard E, Fortier G.Equid herpesvirus 1 (EHV-1)-associated myeloencephalopathy (EHM) is a disease affecting the central nervous system of horses. Despite the constantly increasing interest about this syndrome, epidemiological data are limited especially when related to the description of large outbreaks. The aim of this article is to describe clinical, virological and molecular data obtained throughout a severe outbreak of EHM, with emphasis on laboratory diagnostic methods. The epidemic disease concerned a riding school in France where 7/66 horses aged 12-22 years developed signs of neurological disease in July ...
Network simulation modeling of equine infectious anemia in the non-racehorse population in Japan.
Preventive veterinary medicine    October 2, 2011   Volume 103, Issue 1 38-48 doi: 10.1016/j.prevetmed.2011.09.011
Hayama Y, Kobayashi S, Nishida T, Muroga N, Tsutsui T.An equine infectious anemia (EIA) transmission model was developed by constructing a network structure of horse movement patterns in a non-racehorse population. This model was then used to evaluate the effectiveness and efficiency of several EIA surveillance strategies. Because EIA had not been detected in Japan since 1993, it was appropriate to review the current surveillance strategy, which aims to eradicate EIA by intensive testing, and to consider alternative strategies suitable for the current EIA status in Japan. The non-racehorse population was divided into four sectors based on horse u...
Antigenic and genetic evolution of equine influenza A (H3N8) virus from 1968 to 2007.
Journal of virology    September 21, 2011   Volume 85, Issue 23 12742-12749 doi: 10.1128/JVI.05319-11
Lewis NS, Daly JM, Russell CA, Horton DL, Skepner E, Bryant NA, Burke DF, Rash AS, Wood JL, Chambers TM, Fouchier RA, Mumford JA, Elton DM, Smith DJ.Equine influenza virus is a major respiratory pathogen in horses, and outbreaks of disease often lead to substantial disruption to and economic losses for equestrian industries. The hemagglutinin (HA) protein is of key importance in the control of equine influenza because HA is the primary target of the protective immune response and the main component of currently licensed influenza vaccines. However, the influenza virus HA protein changes over time, a process called antigenic drift, and vaccine strains must be updated to remain effective. Antigenic drift is assessed primarily by the hemagglu...
Outbreaks of Eastern equine encephalitis in northeastern Brazil. Silva ML, Galiza GJ, Dantas AF, Oliveira RN, Iamamoto K, Achkar SM, Riet-Correa F.Outbreaks of eastern equine encephalitis observed from May 2008 to August 2009 in the Brazilian states of Pernambuco, Ceará, and Paraíba are reported. The disease occurred in 93 farms affecting 229 equids with a case fatality rate of 72.92%. Main clinical signs were circling, depression or hyperexcitability, ataxia, and progressive paralysis with a clinical manifestation period of 3-15 days. Main histologic lesions were a diffuse lymphocytic encephalomyelitis with neuronal death, satellitosis, neuronophagia, and hemorrhages being more severe in the cerebral gray matter of the telencephalon, ...
Horse owners’ biosecurity practices following the first equine influenza outbreak in Australia.
Preventive veterinary medicine    September 4, 2011   Volume 102, Issue 4 304-314 doi: 10.1016/j.prevetmed.2011.08.002
Schemann K, Taylor MR, Toribio JA, Dhand NK.A cross-sectional study was conducted involving 759 Australian horse owners to determine their biosecurity practices and perceptions one year after the 2007 equine influenza outbreak and to investigate the factors influencing these perceptions and practices. A web link to an online questionnaire was sent to 1224 horse owners as a follow-up to a previous study to obtain information about biosecurity perceptions and practices, impacts of the 2007 EI outbreak, demographic information and information about horse industry involvement. Ordinal logistic regression analyses were conducted to determine...
Equine multinodular pulmonary fibrosis in horses in the UK.
The Veterinary record    August 31, 2011   Volume 169, Issue 12 313 doi: 10.1136/vr.d4348
Soare T, Leeming G, Morgan R, Papoula-Pereira R, Kipar A, Stewart J, Hetzel U.No abstract available
Streptococcus equi subspecies equi infection (strangles) in horses.
Compendium (Yardley, PA)    August 27, 2011   Volume 33, Issue 3 E1-E8 
Boyle A.Streptococcus equi subspecies equi (strangles) is a highly contagious upper respiratory infection in horses. The infection is transmitted by inhalation or direct contact with mucopurulent discharge from an infective animal, resulting in fever, depression, and submandibular and retropharyngeal lymph node enlargement that can lead to respiratory distress. Complications include purpura hemorrhagica and metastatic abscessation. Control of outbreaks requires strict isolation protocols and hygiene measures. Detection of carriers is essential for preventing disease recurrence on a farm.
The first five days: field and laboratory investigations during the early stages of the equine influenza outbreak in Australia, 2007.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 6-10 doi: 10.1111/j.1751-0813.2011.00724.x
Kirkland PD, Davis RJ, Wong D, Ryan D, Hart K, Corney B, Hewitson G, Cooper K, Biddle A, Eastwood S, Slattery S, Rayward D, Evers M, Wright T....Until August 2007, Australia was one of only three countries internationally recognised to be free of equine influenza (EI). This report documents the diagnosis of the first cases of EI in Australian horses and summarises the investigations that took place over the next 5 days. During that time, a multifocal outbreak was identified across eastern New South Wales and south-eastern Queensland. The use of an influenza type A pan-reactive real-time reverse transcription polymerase chain reaction allowed rapid confirmation of suspect cases of EI.
Behaviour of equine influenza virus in a naïve population: a practitioner’s perspective.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 13-14 doi: 10.1111/j.1751-0813.2011.00726.x
Major DA, Jones B.We describe the behaviour of equine influenza (EI) virus infection in a naïve population as observed by equine veterinary practitioners. The clinical signs displayed by infected horses and the highly contagious nature of the disease are discussed, as well as the treatment and management of infected horses.
Equine influenza in Australia: a clinical overview.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 11-13 doi: 10.1111/j.1751-0813.2011.00725.x
Gilkerson JR.The clinical symptoms observed during the 2007 equine influenza outbreak are compared and contrasted with those observed in overseas outbreaks and described in the veterinary literature.
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