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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.
Molecular epidemiology and evolution of equine arteritis virus.
Advances in experimental medicine and biology    January 5, 2002   Volume 494 19-24 doi: 10.1007/978-1-4615-1325-4_2
Balasuriya UB, Hedges JF, MacLachlan NJ.No abstract available
Duration of immunity induced by an adjuvanted and inactivated equine influenza, tetanus and equine herpesvirus 1 and 4 combination vaccine.
The veterinary quarterly    January 5, 2002   Volume 23, Issue 4 210-217 doi: 10.1080/01652176.2001.9695116
Heldens JG, Kersten AJ, Weststrate MW, van den Hoven R.An adjuvanted vaccine containing inactivated equine influenza, herpesvirus antigens, and tetanus toxoid was administered to young seronegative foals of 8 months of age by deep intramuscular injection in the neck (Group A). The first two vaccinations were given 4 weeks apart. The third was administered 6 months later. Another group of foals (Group B) was vaccinated according to the same scheme at the same time with monovalent equine herpes virus (EHV) vaccine (EHV1.4) vaccine. Antibody responses to the equine influenza (single radial haemolysis; SRH) and tetanus (ToBi ELISA) components of the v...
The mucosal humoral immune response of the horse to infective challenge and vaccination with equine herpesvirus-1 antigens.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 651-657 doi: 10.2746/042516401776249318
Breathnach CC, Yeargan MR, Sheoran AS, Allen GP.Equine herpesvirus-1 (EHV-1) remains a frequent cause of upper respiratory tract infection and abortion in horses worldwide. However, little is known about the local antibody response elicited in the upper airways of horses following exposure to EHV-1. This study analysed the mucosal humoral immune response of weanling foals following experimental infection with virulent EHV-1, or vaccination with either of 2 commercial vaccines. Twenty weanlings were assigned to 5 groups and were inoculated with, or vaccinated against, EHV-1 following different regimens. Finally, all weanlings were simultaneo...
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...
A new modified live equine influenza virus vaccine: phenotypic stability, restricted spread and efficacy against heterologous virus challenge.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 630-636 doi: 10.2746/042516401776249291
Chambers TM, Holland RE, Tudor LR, Townsend HG, Cook A, Bogdan J, Lunn DP, Hussey S, Whitaker-Dowling P, Youngner JS, Sebring RW, Penner SJ....Flu Avert IN vaccine is a new, live attenuated virus vaccine for equine influenza. We tested this vaccine in vivo to ascertain 1) its safety and stability when subjected to serial horse to horse passage, 2) whether it spread spontaneously from horse to horse and 3) its ability to protect against heterologous equine influenza challenge viruses of epidemiological relevance. For the stability study, the vaccine was administered to 5 ponies. Nasal swabs were collected and pooled fluids administered directly to 4 successive groups of naïve ponies by intranasal inoculation. Viruses isolated from th...
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
Immune reconstitution prevents continuous equine infectious anemia virus replication in an Arabian foal with severe combined immunodeficiency: lessons for control of lentiviruses.
Clinical immunology (Orlando, Fla.)    October 31, 2001   Volume 101, Issue 2 237-247 doi: 10.1006/clim.2001.5109
Mealey RH, Fraser DG, Oaks JL, Cantor GH, McGuire TC.Acute infection with equine infectious anemia virus (EIAV), a lentivirus of horses, results in a persistent high-level viremia in Arabian foals affected with severe combined immunodeficiency (SCID). This observation argues against the idea that the transient nature of acute lentiviral viremia is solely a function of viral population dynamics. To extend these studies, EIAV-specific immune reconstitution was attempted prior to EIAV challenge in two SCID foals, using adoptively transferred virus-stimulated lymphocytes derived from persistently EIAV-infected half sibling donors. Following transfer...
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.
Cyathostome fecal egg count trends in horses treated with moxidectin, ivermectin or fenbendazole.
Veterinary parasitology    October 6, 2001   Volume 101, Issue 1 75-79 doi: 10.1016/s0304-4017(01)00495-2
Martin-Downum K, Yazwinski T, Tucker C, Fincher M, Ralph J, Hamilton J.Commercial preparations of fenbendazole (Safe-Guard, Intervet), ivermectin (Eqvalan, Merial) or moxidectin (Quest, Fort Dodge) were administered once to horses scheduled for routine parasiticide treatment. In total, 93 horses from six cooperating farms were used in the study. Computer generated, random allocation of horses to treatment group was conducted at each farm. Fecal egg counts were determined for all horses on trial days 0, 56, 84 and 112, with corresponding calendar dates that were unique to each farm. Only strongyle egg counts from animals which were positive at day 0 were used for ...
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 ...
Suppression of mosquito (Diptera: Culicidae) and black fly (Diptera: Simuliidae) blood feeding from Hereford cattle and ponies treated with permethrin.
Journal of medical entomology    October 3, 2001   Volume 38, Issue 5 728-734 doi: 10.1603/0022-2585-38.5.728
Schmidtmann ET, Lloyd JE, Bobian RJ, Kumar R, Waggoner JW, Tabachinick WJ, Legg D.The blood feeding of mosquitoes and black flies from Hereford cattle and ponies treated with commercial formulations of permethrin was evaluated using an animal enclosure trap sample system that allowed comparison of insect blood-feeding levels between treated and nontreated animals. Blood feeding of both Aedes dorsalis Meigen and A. melanimon Dyar from heifers treated with pour-on concentrate and whole body spray treatments was reduced significantly by 79-88% at 4 d posttreatment, with apparent but not significant reductions of 61-68% at 11 d posttreatment. Simulium bivittatum Malloch and S. ...
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...
Characterization of alpha-adrenoceptor subtypes in smooth muscle of equine ileum.
American journal of veterinary research    September 19, 2001   Volume 62, Issue 9 1370-1374 doi: 10.2460/ajvr.2001.62.1370
Re G, Badino P, Odore R, Galaverna D, Girardi C.To determine the concentration and binding characteristics of alpha-adrenoceptor subtypes in smooth muscle cell membranes of equine ileum. Methods: Segments of longitudinal and circular smooth muscle from the ileum of 8 male and 8 female adult horses. Methods: Distribution of alpha-adrenoceptor subtypes was assessed by use of radioligand binding assays incorporating [3H]-prazosin and [3H]-rauwolscine, highly selective alpha1- and alpha2-adrenoceptor antagonists, respectively. Characterization of adrenoceptor subtypes was performed by use of binding inhibition assays. Results: On the basis of b...
The novel picornavirus Equine rhinitis B virus contains a strong type II internal ribosomal entry site which functions similarly to that of Encephalomyocarditis virus.
The Journal of general virology    August 22, 2001   Volume 82, Issue Pt 9 2257-2269 doi: 10.1099/0022-1317-82-9-2257
Hinton TM, Crabb BS.Equine rhinitis B virus (ERBV) has recently been classified as an Erbovirus, a new genus in the Picornaviridae family. ERBV is distantly related to members of the Cardiovirus and Aphthovirus genera which utilize a type II internal ribosome entry sequence (IRES) to initiate translation. We show that ERBV also possesses the core stem-loop structures (H-L) of a type II IRES. The function of the ERBV IRES was characterized using bicistronic plasmids that were analysed both by transfection into BHK-21 cells and by in vitro transcription and translation in rabbit reticulocyte lysates. In both system...
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
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...
Evaluation of equine immunoglobulin specific for Rhodococcus equi virulence-associated proteins A and C for use in protecting foals against Rhodococcus equi-induced pneumonia.
American journal of veterinary research    August 11, 2001   Volume 62, Issue 8 1307-1313 doi: 10.2460/ajvr.2001.62.1307
Hooper-McGrevy KE, Giguere S, Wilkie BN, Prescott JF.To determine whether purified equine immunoglobulin specific for Rhodococcus equi virulence-associated proteins A and C (VapA and VapC) can confer passive protection against R. equi-induced pneumonia in foals. Methods: Twenty-eight 3-week-old mixed-breed pony foals. Methods: 7 foals received IV injections of equine hyperimmune plasma (HIP) against whole-cell R. equi, and 7 received purified equine immunoglobulin specific for VapA and VapC 1 day prior to intrabronchial infection with R. equi strain 103+. Eleven foals were not treated prior to infection, and 3 control foals were neither treated ...
Caterpillars, cherry trees may take blame for foal deaths in Kentucky.
Journal of the American Veterinary Medical Association    July 7, 2001   Volume 219, Issue 1 13-14 
No abstract available
Re-evaluation of ivermectin efficacy against equine gastrointestinal parasites.
Veterinary parasitology    June 26, 2001   Volume 98, Issue 4 315-320 doi: 10.1016/s0304-4017(01)00436-8
Klei TR, Rehbein S, Visser M, Langholff WK, Chapman MR, French DD, Hanson P.Two trials were conducted to confirm the efficacy of ivermectin paste against endoparasites of horses. In these trials, 20 ponies were treated with ivermectin oral paste at 200 mcg x kg body weight once on Day 0, and 20 ponies served as unmedicated controls. The animals carried naturally acquired parasite infections as confirmed by pretrial fecal examination. The animals were necropsied for worm recovery on Days 14, 15 or 16. Parasites recovered were identified to species. Horses treated with ivermectin had significantly (P99.0% reduction) adult small strongyles (Coronocyclus spp including C. ...
Kentucky veterinarians investigate mysterious foal death syndrome.
Journal of the American Veterinary Medical Association    June 22, 2001   Volume 218, Issue 12 1870-1872 
Kuzma CD.No abstract available
West Nile virus encephalomyelitis in eight horses.
Journal of the American Veterinary Medical Association    June 8, 2001   Volume 218, Issue 10 1576-1579 doi: 10.2460/javma.2001.218.1576
Snook CS, Hyman SS, Del Piero F, Palmer JE, Ostlund EN, Barr BS, Desrochers AM, Reilly LK.No abstract available
Equine grass sickness website.
The Veterinary record    June 2, 2001   Volume 148, Issue 19 608 
McGorum B, Milne E.No abstract available
An equine mystery in the bluegrass. An epidemic is killing Kentucky’s finest foals.
U.S. news & world report    June 1, 2001   Volume 130, Issue 21 42-43 
Hayden T.No abstract available
Effects of lower doses of conjugated equine estrogens and medroxyprogesterone acetate on endometrial bleeding.
Fertility and sterility    June 1, 2001   Volume 75, Issue 6 1080-1087 doi: 10.1016/s0015-0282(01)01792-7
Archer DF, Dorin M, Lewis V, Schneider DL, Pickar JH.To evaluate vaginal bleeding profiles with lower doses of conjugated equine estrogens (CEE) and medroxyprogesterone acetate (MPA) as continuous combined therapy. Methods: The Women's Health, Osteoporosis, Progestin, Estrogen (Women's HOPE) study, a randomized, double-blind, placebo-controlled trial. Methods: Study centers across the United States. Methods: Two thousand six hundred seventy-three healthy, postmenopausal women. Methods: Women received CEE, 0.625 mg/d; CEE, 0.625 mg/d, plus MPA 2.5 mg/d; CEE, 0.45 mg/d; CEE, 0.45 mg/d, plus MPA, 2.5 mg/d; CEE 0.45 mg/d, plus MPA, 1.5 mg/d; CEE, 0....
The West Nile virus: its recent emergence in North America.
Microbes and infection    May 19, 2001   Volume 3, Issue 3 223-229 doi: 10.1016/s1286-4579(01)01374-0
Garmendia AE, Van Kruiningen HJ, French RA.West Nile fever emerged in New York in the summer of 1999 when seven people, several horses and thousands of wild birds died. It was soon established that the human disease and the mortality of birds were related. Continued surveillance detected West Nile virus in mosquitoes, birds, horses, small mammals, bats and humans, and has shown its spread to several northeastern states. These events confirm the establishment of West Nile virus endemically in the United States.
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