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Topic:Disease control

Disease control in horses encompasses the strategies and measures implemented to prevent, manage, and eradicate infectious and non-infectious diseases within equine populations. This field involves the study of pathogen transmission, host-pathogen interactions, and the development of effective vaccination and biosecurity protocols. Disease control also includes monitoring and surveillance of equine health to identify outbreaks and implement timely interventions. Key aspects of disease control in horses involve understanding the epidemiology of equine diseases, improving diagnostic techniques, and enhancing treatment options. This page compiles peer-reviewed research studies and scholarly articles that explore various methodologies, technologies, and practices aimed at controlling diseases in horses, with a focus on improving overall equine health and welfare.
Epidemiological and virological investigations of equine influenza outbreaks in Ireland (2010-2012).
Influenza and other respiratory viruses    November 28, 2013   Volume 7 Suppl 4, Issue Suppl 4 61-72 doi: 10.1111/irv.12192
Gildea S, Fitzpatrick DA, Cullinane A.Outbreaks of equine influenza (EI) in endemic populations cause disruption and economic loss. Objective: To identify (i) factors involved in the spread of EI (ii) virus strains responsible for outbreaks (iii) single radial haemolysis (SRH) antibody levels correlating with protection against current virus strains (iv) evidence of vaccination breakdown. Methods: RT-PCR, virus isolation and SRH were carried out on nasopharyngeal swabs and blood samples collected from horses, ponies and donkeys on affected premises. Data relating to 629 samples from 135 equidae were analysed. Conclusions: Outbreak...
The changing epidemiology of Kunjin virus in Australia.
International journal of environmental research and public health    November 25, 2013   Volume 10, Issue 12 6255-6272 doi: 10.3390/ijerph10126255
Prow NA.West Nile virus (WNV) is a mosquito-borne virus responsible for outbreaks of viral encephalitis in humans and horses, with particularly virulent strains causing recent outbreaks of disease in Eastern Europe, the Middle East and North America. A strain of WNV, Kunjin (WNVKUN), is endemic in northern Australia and infection with this virus is generally asymptomatic. However in early 2011, an unprecedented outbreak of encephalitis in horses occurred in south-eastern Australia, resulting in mortality in approximately 10%-15% of infected horses. A WNV-like virus (WNVNSW2011) was isolated and found ...
Understanding virus-host dynamics following EIAV infection in SCID horses.
Journal of theoretical biology    November 16, 2013   Volume 343 1-8 doi: 10.1016/j.jtbi.2013.11.003
Ciupe SM, Schwartz EJ.We develop a mathematical model for the interaction between two competing equine infectious anemia virus strains and neutralizing antibodies. We predict that elimination of one or both virus strains depends on the initial antibody levels, the strength of antibody mediated neutralization, and the persistence of antibody over time. We further show that the ability of a subdominant, neutralization resistant virus to dominate the infection transiently or permanently is dependent on the antibody-mediated neutralization effect. Finally, we determine conditions for persistence of both virus strains. ...
Equine parasite control under prescription-only conditions in Denmark–awareness, knowledge, perception, and strategies applied.
Veterinary parasitology    November 1, 2013   Volume 204, Issue 1-2 64-72 doi: 10.1016/j.vetpar.2013.10.016
Nielsen MK, Reist M, Kaplan RM, Pfister K, van Doorn DC, Becher A.Due to widespread development of anthelmintic resistance in equine parasites, recommendations for their control are currently undergoing marked changes with a shift of emphasis toward more coprological surveillance and reduced treatment intensity. Denmark was the first nation to introduce prescription-only restrictions of anthelmintic drugs in 1999, but other European countries have implemented similar legislations over recent years. A questionnaire survey was performed in 2008 among Danish horse owners to provide a current status of practices and perceptions with relation to parasite control....
An ethicist’s commentary on horse with possible equine herpes virus.
The Canadian veterinary journal = La revue veterinaire canadienne    October 25, 2013   Volume 54, Issue 10 922 
Rollin BE.No abstract available
Historical aspects of Potomac horse fever in Ontario (1924-2010).
The Canadian veterinary journal = La revue veterinaire canadienne    October 25, 2013   Volume 54, Issue 6 565-572 
Baird JD, Arroyo LG.In the summer of 1924 Dr. Frank W. Schofield conducted investigations into an endemic disease of horses in the Kent and Essex counties of Ontario. According to farmers in these counties the disease had existed in this region for at least 50 years previously. The clinical, pathological, histopathological, and epidemiological findings outlined in Schofield's detailed report strongly suggest that this endemic disease was what was designated in 1979 as "Potomac horse fever" (PHF). This assumption is further substantiated by transmission experiments involving horses and laboratory animals that were...
Equine infectious diseases.
Veterinary microbiology    October 24, 2013   Volume 167, Issue 1-2 1 doi: 10.1016/j.vetmic.2013.10.009
Adler B, Gaastra W, Gilkerson J, Osterrieder K, Schwarz S, Truyen U.No abstract available
A generic screening methodology for horse doping control by LC-TOF-MS, GC-HRMS and GC-MS.
Journal of chromatography. B, Analytical technologies in the biomedical and life sciences    October 16, 2013   Volume 941 69-80 doi: 10.1016/j.jchromb.2013.10.008
In the present study a general screening protocol was developed to detect prohibited substances and metabolites for doping control purposes in equine sports. It was based on the establishment of a unified sample preparation and on the combined implementation of liquid and gas chromatographic MS analysis. The sample pretreatment began with two parallel procedures: enzymatic hydrolysis of sulfate and glucuronide conjugates, and methanolysis of the 17β-sulfate steroid conjugates. The extracts were treated for LC-TOF-MS, GC-HRMS and GC-MS assays. The majority of the prohibited substances were ide...
Vaccination for equine influenza: the sports regulator’s viewpoint.
Equine veterinary journal    October 15, 2013   Volume 45, Issue 6 770-771 doi: 10.1111/evj.12151
Cooke G.No abstract available
Influenza: are we protecting our horses effectively?
Equine veterinary journal    October 15, 2013   Volume 45, Issue 6 766-767 doi: 10.1111/evj.12172
Marr CM, Sellon D, Mountford D.No abstract available
Influenza vaccine strains: licensing perspectives.
Equine veterinary journal    October 15, 2013   Volume 45, Issue 6 772-773 doi: 10.1111/evj.12155
Woodland RM.No abstract available
Equine influenza: antigenic drift and implications for vaccines.
Equine veterinary journal    October 15, 2013   Volume 45, Issue 6 768-769 doi: 10.1111/evj.12148
Elton D, Cullinane A.No abstract available
Equine influenza vaccines in Europe: a view from the animal health industry.
Equine veterinary journal    October 15, 2013   Volume 45, Issue 6 774-775 doi: 10.1111/evj.12171
Horspool LJ, King A.No abstract available
Helping working Equidae and their owners in developing countries: monitoring and evaluation of evidence-based interventions.
Veterinary journal (London, England : 1997)    October 4, 2013   Volume 199, Issue 2 210-216 doi: 10.1016/j.tvjl.2013.09.065
Upjohn MM, Pfeiffer DU, Verheyen KL.There are an estimated 112 million Equidae (horses, donkeys, mules) in the developing world, providing essential resources for their owners' livelihoods and well-being. The impoverished situation of their owners and the often harsh conditions in which they work mean that the animals' welfare is a cause for concern. A number of equine non-governmental organisations (NGOs) operate within working equid communities providing veterinary care, education and training programmes aimed at improving equine welfare. However, there is little published information available that describes monitoring and ev...
Mycotoxicoses of ruminants and horses. Riet-Correa F, Rivero R, Odriozola E, Adrien Mde L, Medeiros RM, Schild AL.In the current study, mycotoxicoses of ruminants and horses are reviewed, with an emphasis on the occurrence of these diseases in South America. The main mycotoxicoses observed in grazing cattle include intoxications by indole-diterpenoid mycotoxins (Paspalum spp. contaminated by Claviceps paspali, Lolium perenne infected by Neotyphodium lolii, Cynodon dactylon infected by Claviceps cynodontis, and Poa huecu), gangrenous ergotism and dysthermic syndrome (hyperthermia) caused by Festuca arundinacea (syn. Festuca elatior) infected by Neotyphodium coenophialum (syn. Acremonium coenophialum), and ...
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...
A cost comparison of faecal egg count-directed anthelmintic delivery versus interval programme treatments in horses.
The Veterinary record    September 25, 2013   Volume 173, Issue 15 371 doi: 10.1136/vr.101804
Lester HE, Bartley DJ, Morgan ER, Hodgkinson JE, Stratford CH, Matthews JB.No abstract available
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.
Serum antibodies from a subset of horses positive for Babesia caballi by competitive enzyme-linked immunosorbent assay demonstrate a protein recognition pattern that is not consistent with infection.
Clinical and vaccine immunology : CVI    September 18, 2013   Volume 20, Issue 11 1752-1757 doi: 10.1128/CVI.00479-13
Awinda PO, Mealey RH, Williams LB, Conrad PA, Packham AE, Reif KE, Grause JF, Pelzel-McCluskey AM, Chung C, Bastos RG, Kappmeyer LS, Howe DK, Ness SL....Tick-borne pathogens that cause persistent infection are of major concern to the livestock industry because of transmission risk from persistently infected animals and the potential economic losses they pose. The recent reemergence of Theileria equi in the United States prompted a widespread national survey resulting in identification of limited distribution of equine piroplasmosis (EP) in the U.S. horse population. This program identified Babesia caballi-seropositive horses using rhoptry-associated protein 1 (RAP-1)-competitive enzyme-linked immunosorbent assay (cELISA), despite B. caballi be...
Molecular detection of equine trypanosomes in the Sudan.
Veterinary parasitology    September 7, 2013   Volume 200, Issue 3-4 246-250 doi: 10.1016/j.vetpar.2013.09.002
Salim B, Bakheit MA, Sugimoto C.Equine trypanosomosis (ET) is a protozoan disease affecting equines in many parts of the world. We examined 509 samples collected from geographically distinct regions in eastern, central and western Sudan to estimate the endemicity of ET using the generic ITS1-PCR diagnostic methods. Results revealed that horses and donkeys were infected by Trypanosoma brucei subgroup, Trypanosoma vivax, Trypanosoma simiae and Trypanosoma congolense. The prevalence of Trypanosoma spp. was higher in horses (12.7%, n=393) than in donkeys (3.4%, n=116). The highest prevalence was observed in South Darfur State (1...
Review of Australia’s import policy for horses finalised.
Australian veterinary journal    August 29, 2013   Volume 91, Issue 9 N2 doi: 10.1111/j.1751-0813.2013.000107.GRP.x
No abstract available
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...
Mosquito bites and eastern equine encephalitis.
QJM : monthly journal of the Association of Physicians    August 22, 2013   Volume 107, Issue 5 397-398 doi: 10.1093/qjmed/hct168
Min Z, Gnann JW.No abstract available
[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 ...
Is Lyme disease overdiagnosed in horses?
Equine veterinary journal    August 6, 2013   Volume 45, Issue 5 529-530 doi: 10.1111/evj.12122
Bartol J.No abstract available
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...
What can mathematical models bring to the control of equine influenza?
Equine veterinary journal    August 2, 2013   Volume 45, Issue 6 784-788 doi: 10.1111/evj.12104
Daly JM, Newton JR, Wood JL, Park AW.Mathematical modelling of infectious disease is increasingly regarded as an important tool in the development of disease prevention and control measures. This article brings together key findings from various modelling studies conducted over the past 10 years that are of relevance to those on the front line of the battle against equine influenza.
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
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