Analyze Diet

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.
An online survey of horse-owners in Great Britain.
BMC veterinary research    September 28, 2013   Volume 9 188 doi: 10.1186/1746-6148-9-188
Boden LA, Parkin TD, Yates J, Mellor D, Kao RR.Contingency planning for potential equine infectious disease outbreaks relies on accurate information on horse location and movements to estimate the risk of dissemination of disease(s). An online questionnaire was used to obtain unique information linking owner and horse location to characteristics of horse movements within and outwith Great Britain (GB). Results: This online survey yielded a strong response, providing more than four times the target number of respondents (1000 target respondents) living in all parts of GB. Key demographic findings of this study indicated that horses which we...
Has horsepox become extinct?
The Veterinary record    September 24, 2013   Volume 173, Issue 11 272-273 doi: 10.1136/vr.f5587
Esparza J.Mystery surrounds the extent to which horsepox virus may have contributed to the vaccinia virus used to eradicate smallpox. With few documented cases of horsepox in recent years it may never be solved, says José Esparza, who seeks to raise awareness of the potential historical and  scientific importance of identifying new cases.
Serologic survey of West Nile virus in horses from Central-West, Northeast and Southeast Brazil.
Memorias do Instituto Oswaldo Cruz    September 17, 2013   Volume 108, Issue 7 921-923 doi: 10.1590/S0074-02762013005000001
Silva JR, Medeiros LC, Reis VP, Chavez JH, Munhoz TD, Borges GP, Soares OA, Campos CH, Machado RZ, Baldani CD, Silva ML, Faria JL, Silva EE....Since the emergence of West Nile virus (WNV) in North America in 1999, there have been several reports of WNV activity in Central and South American countries. To detect WNV in Brazil, we performed a serological survey of horses from different regions of Brazil using recombinant peptides from domain III of WNV. Positive samples were validated with the neutralisation test. Our results showed that of 79 ELISA-positive horses, nine expressed WNV-specific neutralising antibodies. Eight of the infected horses were from the state of Mato Grosso do Sul and one was from the state of Paraíba. Our resu...
Natural exposure of horses to mosquito-borne flaviviruses in south-east Queensland, Australia.
International journal of environmental research and public health    September 17, 2013   Volume 10, Issue 9 4432-4443 doi: 10.3390/ijerph10094432
Prow NA, Tan CS, Wang W, Hobson-Peters J, Kidd L, Barton A, Wright J, Hall RA, Bielefeldt-Ohmann H.In 2011 an unprecedented epidemic of equine encephalitis occurred in south-eastern (SE) Australia following heavy rainfall and severe flooding in the preceding 2-4 months. Less than 6% of the documented cases occurred in Queensland, prompting the question of pre-existing immunity in Queensland horses. A small-scale serological survey was conducted on horses residing in one of the severely flood-affected areas of SE-Queensland. Using a flavivirus-specific blocking-ELISA we found that 63% (39/62) of horses older than 3 years were positive for flavivirus antibodies, and of these 18% (7/38) had ne...
Detection and molecular characterisation of equine infectious anaemia virus from field outbreaks in Slovenia.
Equine veterinary journal    September 9, 2013   Volume 46, Issue 3 386-391 doi: 10.1111/evj.12138
Kuhar U, Završnik J, Toplak I, Malovrh T.In 2009, a surprisingly high number of animals seropositive for equine infectious anaemia virus (EIAV; 26 horses from 13 farms) were detected in Slovenia. Objective: To develop a polymerase chain reaction (PCR) assay for the detection of the proviral nucleic acid, to phylogenetically characterise the Slovenian EIAV strains and to investigate whether transmission in utero occurred. Methods: Cross-sectional clinical study. Methods: In total, 26 horses (including 2 foals and 4 pregnant mares) and 4 fetuses were examined in this study. A PCR assay using the EIAV F1 and EIAV R1 primers was designed...
Rapid detection and identification of Theileria equi and Babesia caballi by high-resolution melting (HRM) analysis.
Parasitology research    August 29, 2013   Volume 112, Issue 11 3883-3886 doi: 10.1007/s00436-013-3581-2
Salim B, Bakheit MA, Sugimoto C.The application of high-resolution melting (HRM) analysis in the differentiation between Theileria equi and Babesia caballi was evaluated using control samples from the United States Department of Agriculture and field samples collected from horses in Sudan and China. A region of the 18S rRNA gene, with four known nucleotide differences between the two parasites, was selected for primer design. HRM analysis successfully allowed the detection and differentiation of T. equi and B. caballi without the necessity of performing time-consuming and expensive post-PCR procedures such as sequencing or r...
Global distribution of group A rotavirus strains in horses: a systematic review.
Vaccine    August 28, 2013   Volume 31, Issue 48 5627-5633 doi: 10.1016/j.vaccine.2013.08.045
Papp H, Matthijnssens J, Martella V, Ciarlet M, Bányai K.Group A rotavirus (RVA) is a major cause of diarrhea and diarrhea-related mortality in foals in parts of the world. In addition to careful horse farm management, vaccination is the only known alternative to reduce the RVA associated disease burden on horse farms. The precise evaluation of vaccine effectiveness against circulating strains needs enhanced surveillance of equine RVAs in areas where vaccine is already available or vaccine introduction is anticipated. Therefore, we undertook the overview of relevant information on epidemiology of equine RVA strains through systematic search of publi...
Review of equine piroplasmosis.
Journal of veterinary internal medicine    August 28, 2013   Volume 27, Issue 6 1334-1346 doi: 10.1111/jvim.12168
Wise LN, Kappmeyer LS, Mealey RH, Knowles DP.Equine piroplasmosis is caused by one of 2 erythrocytic parasites Babesia caballi or Theileria equi. Although the genus of the latter remains controversial, the most recent designation, Theileria, is utilized in this review. Shared pathogenesis includes tick-borne transmission and erythrolysis leading to anemia as the primary clinical outcome. Although both parasites are able to persist indefinitely in their equid hosts, thus far, only B. caballi transmits across tick generations. Pathogenesis further diverges after transmission to equids in that B. caballi immediately infects erythrocytes, wh...
West Nile viral infection of equids.
Veterinary microbiology    August 28, 2013   Volume 167, Issue 1-2 168-180 doi: 10.1016/j.vetmic.2013.08.013
Angenvoort J, Brault AC, Bowen RA, Groschup MH.West Nile virus (WNV) is a flavivirus transmitted between certain species of birds and mosquito vectors. Tangential infections of equids and subsequent equine epizootics have occurred historically. Although the attack rate has been estimated to be below 10%, mortality rates can approach 50% in horses that present clinical disease. Symptoms are most commonly presenting in the form of encephalitis with ataxia as well as limb weakness, recumbency and muscle fasciculation. The most effective strategy for prevention of equine disease is proper vaccination with one of the numerous commercially avail...
Eastern equine encephalitis in Latin America.
The New England journal of medicine    August 24, 2013   Volume 369, Issue 8 732-744 doi: 10.1056/NEJMoa1212628
Carrera JP, Forrester N, Wang E, Vittor AY, Haddow AD, López-Vergès S, Abadía I, Castaño E, Sosa N, Báez C, Estripeaut D, Díaz Y, Beltrán D....The eastern equine encephalitis (EEE) and Venezuelan equine encephalitis (VEE) viruses are pathogens that infect humans and horses in the Americas. Outbreaks of neurologic disease in humans and horses were reported in Panama from May through early August 2010. Methods: We performed antibody assays and tests to detect viral RNA and isolate the viruses in serum samples from hospitalized patients. Additional cases were identified with enhanced surveillance. Results: A total of 19 patients were hospitalized for encephalitis. Among them, 7 had confirmed EEE, 3 had VEE, and 1 was infected with both ...
[New drugs for horses and production animals in 2012].
Tierarztliche Praxis. Ausgabe G, Grosstiere/Nutztiere    August 21, 2013   Volume 41, Issue 4 247-252 
Emmerich IU.In 2012, two newly developed active pharmaceutical ingredients for horses and food producing animals were released on the German market for veterinary drug products. Those are the parenterally applicable first generation cephalosporin Cefalonium (Cepravin®) and the nonsteroidal anti-inflammatory drug Suxibuzone (Danilon®). Furthermore, one established veterinary active pharmaceutical ingredient is applicable to additional species: The anticoccidial Amprolium (Eimeryl®) has again been authorized for chicken and turkeys. Additionally, two veterinary drugs with a new formulation as well as thr...
Trypanosoma evansi and surra: a review and perspectives on origin, history, distribution, taxonomy, morphology, hosts, and pathogenic effects.
BioMed research international    August 19, 2013   Volume 2013 194176 doi: 10.1155/2013/194176
Desquesnes M, Holzmuller P, Lai DH, Dargantes A, Lun ZR, Jittaplapong S.Trypanosoma evansi, the agent of "surra," is a salivarian trypanosome, originating from Africa. It is thought to derive from Trypanosoma brucei by deletion of the maxicircle kinetoplastic DNA (genetic material required for cyclical development in tsetse flies). It is mostly mechanically transmitted by tabanids and stomoxes, initially to camels, in sub-Saharan area. The disease spread from North Africa towards the Middle East, Turkey, India, up to 53° North in Russia, across all South-East Asia, down to Indonesia and the Philippines, and it was also introduced by the conquistadores into Latin ...
The changing face of the henipaviruses.
Veterinary microbiology    August 13, 2013   Volume 167, Issue 1-2 151-158 doi: 10.1016/j.vetmic.2013.08.002
Croser EL, Marsh GA.The Henipavirus genus represents a group of paramyxoviruses that are some of the deadliest of known human and veterinary pathogens. Hendra and Nipah viruses are zoonotic pathogens that can cause respiratory and encephalitic illness in humans with mortality rates that exceed 70%. Over the past several years, we have seen an increase in the number of cases and an altered clinical presentation of Hendra virus in naturally infected horses. Recent increase in the number of cases has also been reported with human Nipah virus infections in Bangladesh. These factors, along with the recent discovery of...
Evidence for the circulation of equine encephalosis virus in Israel since 2001.
PloS one    August 12, 2013   Volume 8, Issue 8 e70532 doi: 10.1371/journal.pone.0070532
Westcott D, Wescott DG, Mildenberg Z, Bellaiche M, McGowan SL, Grierson SS, Choudhury B, Steinbach F.Equine encephalosis virus (EEV) distribution was thought to be limited to southern Africa until 2008 when we reported EEV in Israel. It was then assumed that the clinical presentation resembled the initial incursion in Israel. To investigate further we conducted a retrospective analysis of equine sera, which had been collected for diagnosis of other suspected diseases, via serum neutralisation test. The data demonstrated that EEV was circulating as early as 2001 with incidence ranging from 20-100% for time period 2001-2008. As the symptoms of EEV can be similar to other equine notifiable disea...
Sensitivity and specificity of blood leukocyte counts as an indicator of mortality in horses after colic surgery.
The Veterinary record    August 12, 2013   Volume 173, Issue 11 267 doi: 10.1136/vr.101503
Salciccia A, Sandersen C, Grulke S, de la Rebière de Pouyade G, Caudron I, Serteyn D, Detilleux J.The objectives of this study were to describe and relate perioperative changes in blood leukocyte counts to the outcome of surgical colic horses, determine a cut-off value in the early postoperative period to obtain an indicator of the outcome, and compare the obtained value to a validation population of horses. Fifty-three horses undergoing colic surgery were included in the descriptive part of the study. Total leukocyte counts were performed before, during and serially after surgery. A receiver operating characteristic analysis was performed on the leukocyte counts of 45 of these horses to d...
West Nile Virus equine serosurvey in the Czech and Slovak republics.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    August 6, 2013   Volume 13, Issue 10 733-738 doi: 10.1089/vbz.2012.1159
Hubálek Z, Ludvíková E, Jahn P, Treml F, Rudolf I, Svobodová P, Šikutová S, Betášová L, Bíreš J, Mojžíš M, Tinák M, Boldižár M....A serological survey for West Nile virus (WNV) infection involved 395 horses from 43 administrative districts of the Czech Republic (163 animals) and 29 districts of Slovakia (232 animals), sampled between 2008 and 2011. Using a plaque-reduction neutralization microtest, antibodies to WNV were not detected in any horse from the Czech Republic, whereas 19 nonvaccinated horses from Slovakia had specific antibodies to WNV (no cross-reactions were observed with tick-borne encephalitis and Usutu flaviviruses in those animals). The seropositivity rate of nonvaccinated horses in Slovakia was 8.3% (95...
How humans handle the Hendra virus risk.
Australian veterinary journal    July 31, 2013   Volume 91, Issue 8 N2 doi: 10.1111/j.1751-0813.2013.000105.GRP.x
Richmond R.No abstract available
Perceptions of vulnerability to a future outbreak: a study of horse managers affected by the first Australian equine influenza outbreak.
BMC veterinary research    July 31, 2013   Volume 9 152 doi: 10.1186/1746-6148-9-152
Schemann K, Firestone SM, Taylor MR, Toribio JA, Ward MP, Dhand NK.A growing body of work shows the benefits of applying social cognitive behavioural theory to investigate infection control and biosecurity practices. Protection motivation theory has been used to predict protective health behaviours. The theory outlines that a perception of a lack of vulnerability to a disease contributes to a reduced threat appraisal, which results in poorer motivation, and is linked to poorer compliance with advised health protective behaviours. This study, conducted following the first-ever outbreak of equine influenza in Australia in 2007, identified factors associated wit...
3-D technology used to accurately understand equine ileocolonic aganglionosis.
Cells, tissues, organs    July 25, 2013   Volume 198, Issue 2 160-168 doi: 10.1159/000353218
Muniz E, Lobo Ladd AA, Lobo Ladd FV, da Silva AA, Kmit FV, Borges AS, Teixeira R, da Mota LS, Belli CB, de Zoppa AL, da Silva LC, de Melo MP, Coppi AA.Ileocolonic aganglionosis (ICA) is the congenital and hereditary absence of neurons that constitute the enteric nervous system and has been described in various species including humans - Hirschsprung's disease - and horses - overo lethal white syndrome (OLWS). Hirschsprung's disease affects circa 1 in 5,000 live births. At best, this disease means an inability to absorb nutrients from food (humans). At worse, in horses, it always means death. Despite our general understanding of the functional mechanisms underlying ICA, there is a paucity of reliable quantitative information about the structu...
Vesicular stomatitis outbreak in the southwestern United States, 2012. McCluskey BJ, Pelzel-McCluskey AM, Creekmore L, Schiltz J.Vesicular stomatitis is a viral disease primarily affecting horses and cattle when it occurs in the United States. Outbreaks in the southwestern United States occur sporadically, with initial cases typically occurring in Texas, New Mexico, or Arizona and subsequent cases occurring in a northward progression. The viruses causing vesicular stomatitis can be transmitted by direct contact of lesioned animals with other susceptible animals, but transmission is primarily through arthropod vectors. In 2012, an outbreak of vesicular stomatitis in the United States occurred that was caused by Vesicular...
Identification of hotspots in the European union for the introduction of four zoonotic arboviroses by live animal trade.
PloS one    July 23, 2013   Volume 8, Issue 7 e70000 doi: 10.1371/journal.pone.0070000
Durand B, Lecollinet S, Beck C, Martínez-López B, Balenghien T, Chevalier V.Live animal trade is considered a major mode of introduction of viruses from enzootic foci into disease-free areas. Due to societal and behavioural changes, some wild animal species may nowadays be considered as pet species. The species diversity of animals involved in international trade is thus increasing. This could benefit pathogens that have a broad host range such as arboviruses. The objective of this study was to analyze the risk posed by live animal imports for the introduction, in the European Union (EU), of four arboviruses that affect human and horses: Eastern and Western equine enc...
Pathogenesis of Venezuelan equine encephalitis.
Veterinary microbiology    July 22, 2013   Volume 167, Issue 1-2 145-150 doi: 10.1016/j.vetmic.2013.07.012
Taylor KG, Paessler S.Equine encephalids have high mortality rates and represent a significant zoonotic public health threat. Of these the most pathogenic viruses to equids are the alphaviruses in the family Togaviridae. The focus of this review Venezualen equine encephalitis virus (VEEV) has caused the most widespread and recent epidemic outbreaks of disease. Circulation in naturally occuring rodent-mosquito cycles, results in viral spread to both human and equine populations. However, equines develop a high titer viremia and can transmit the virus back to mosquito populations. As such, the early recognition and c...
Sero-surveillance of equine infectious anemia virus in equines in India during more than a decade (1999-2012).
Indian journal of virology : an official organ of Indian Virological Society    July 16, 2013   Volume 24, Issue 3 386-390 doi: 10.1007/s13337-013-0142-3
Malik P, Singha H, Goyal SK, Khurana SK, Kumar R, Virmani N, Shanmugasundaram K, Pandey SB, Kant R, Singh BK, Singh RK.Equine infectious anemia (EIA) is a retroviral infection of horses. Horses infected by EIA virus (EIAV) become inapparent carriers that remain asymptomatic for the remainder of their life span and serve as infection source to other horses. In this study, agar gel immunodiffusion test and ELISA were used to investigate the presence of antibodies to EIAV in equines. A total of 67,042 equine serum samples from 19 states and two union territories were tested during April 1999 to September 2012. The results revealed that none of the animals were positive for antibodies to EIAV from 1999 to December...
Equine disease surveillance: quarterly summary.
The Veterinary record    July 9, 2013   Volume 173, Issue 1 11-13 doi: 10.1136/vr.f4254
No abstract available
Focus on: African horse sickness.
The Veterinary record    July 9, 2013   Volume 173, Issue 1 13-14 doi: 10.1136/vr.f4250
Hopley R, Toth B.No abstract available
Surveillance of equine influenza viruses through the RESPE network in France from November 2005 to October 2010.
Equine veterinary journal    July 8, 2013   Volume 45, Issue 6 776-783 doi: 10.1111/evj.12100
Legrand LJ, Pitel PH, Marcillaud-Pitel CJ, Cullinane AA, Couroucé AM, Fortier GD, Freymuth FL, Pronost SL.The Réseau d'Epidémio-Surveillance en Pathologie Equine (RESPE, the French epidemiological network for equine diseases) is a network for epidemio-surveillance of major equine diseases based around sentry veterinarians in France. Objective: The aim of this study was to evaluate the contribution of RESPE to efficient surveillance of equine influenza virus (EIV) in France. Methods: Retrospective cross-sectional study. Methods: From November 2005 to October 2010, epidemiological and phylogenetic studies were performed on 1426 nasopharyngeal swabs received at the Frank Duncombe Laboratory. Detect...
Crisis communication. Horse industry working on better response to disease outbreaks.
Journal of the American Veterinary Medical Association    July 5, 2013   Volume 242, Issue 11 1461-1462 
Larkin M.No abstract available
Equine grass sickness in Scotland: a case-control study of signalment- and meteorology-related risk factors.
Equine veterinary journal    June 28, 2013   Volume 46, Issue 1 64-71 doi: 10.1111/evj.12077
Wylie CE, Shaw DJ, Fordyce FM, Lilly A, McGorum BC.Equine grass sickness (EGS) remains a frequently fatal disease of equids in Britain. Since previous investigations of signalment- and meteorology-related risk factors for EGS have yielded some conflicting data, further investigation is warranted. Objective: To identify signalment- and meteorology-related risk factors for EGS in Scotland. Methods: Retrospective time-matched case-control study. Methods: This study was undertaken using data for 455 EGS cases and 910 time-matched controls that were referred to the Royal (Dick) School of Veterinary Studies, and average UK Meteorological Office weat...
Northern Ireland disease surveillance, January to March 2013.
The Veterinary record    June 26, 2013   Volume 172, Issue 25 657-658 doi: 10.1136/vr.f3577
No abstract available
Isolation and genetic characterization of naturally NS-truncated H3N8 equine influenza virus in South Korea.
Epidemiology and infection    June 26, 2013   Volume 142, Issue 4 759-766 doi: 10.1017/S095026881300143X
Na W, Kang B, Kim HI, Hong M, Park SJ, Jeoung HY, An DJ, Moon H, Kim JK, Song D.Equine influenza virus (EIV) causes a highly contagious respiratory disease in equids, with confirmed outbreaks in Europe, America, North Africa, and Asia. Although China, Mongolia, and Japan have reported equine influenza outbreaks, Korea has not. Since 2011, we have conducted a routine surveillance programme to detect EIV at domestic stud farms, and isolated H3N8 EIV from horses showing respiratory disease symptoms. Here, we characterized the genetic and biological properties of this novel Korean H3N8 EIV isolate. This H3N8 EIV isolate belongs to the Florida sublineage clade 1 of the America...
1 32 33 34 35 36 113