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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.
The internet and the future of equine practice.
The Veterinary clinics of North America. Equine practice    January 22, 2005   Volume 17, Issue 2 297-303 doi: 10.1016/s0749-0739(17)30063-9
Wyant LA.The Internet is a fast-growing technology that allows information (text as well as images) to be shared across the world in an instant. As computer systems, software, and Internet services become less expensive options, the world becomes more experienced and comfortable with these technologies. In the foreseeable future, equine veterinarians are likely to be better educated about diseases and treatments, better connected with specialists for consultations on difficult cases, able to respond to client communications more efficiently, able to accurately educate clients, and able to communicate w...
West Nile virus in the vertebrate world.
Archives of virology    January 19, 2005   Volume 150, Issue 4 637-657 doi: 10.1007/s00705-004-0463-z
van der Meulen KM, Pensaert MB, Nauwynck HJ.West Nile virus (WNV), an arthropod-borne virus belonging to the family Flaviviridae, had been recognized in Africa, Asia and the south of Europe for many decades. Only recently, it has been associated with an increasing number of outbreaks of encephalitis in humans and equines as well as an increasing number of infections in vertebrates of a wide variety of species. In this article, the data available on the incidence of WNV in vertebrates are reviewed. Moreover, the role of vertebrates in the transmission of WNV, the control of WNV infections in veterinary medicine as well as future perspect...
Emerging and nonemerging arboviral diseases and the veterinary/public health interface.
The Canadian veterinary journal = La revue veterinaire canadienne    January 14, 2005   Volume 45, Issue 12 1021-1022 
Artsob H.No abstract available
Occurrence of equine coital exanthema in pastured draft horses and isolation of equine herpesvirus 3 from progenital lesions.
The Journal of veterinary medical science    January 13, 2005   Volume 66, Issue 12 1503-1508 doi: 10.1292/jvms.66.1503
Seki Y, Seimiya YM, Yaegashi G, Kumagai S, Sentsui H, Nishimori T, Ishihara R.During the period from 2001 to the following year, progenital diseases had been epidemic among the draft stallions and mares pastured together in Iwate Prefecture, the northeastern district of Japan. A stallion and 8 of 31 mares were affected in 2001, and 1 of 2 stallions and 10 of 36 mares in 2002. The clinical symptoms consisted of the formation of papules, pustules, ulcers and scabs on the progenital skin and mucosa in stallions and mares. In 2002, Equine herpesvirus 3 (EHV3) was isolated from 2 mares and the glycoprotein G gene of the virus detected from a stallion and 4 mares by polymeras...
Culicoides midge trap enhancement with animal odour baits in Scotland.
Medical and veterinary entomology    January 12, 2005   Volume 18, Issue 4 336-342 doi: 10.1111/j.0269-283X.2004.00516.x
Mands V, Kline DL, Blackwell A.Examples of the commercial trap Mosquito Magnet Pro (MMP emitting attractant 1-octen-3-ol in carbon dioxide 500 mL/min generated from propane fuel), were run 24 h/day on the Isle of Skye, Scotland, during June-August 2001 and evaluated for catching Culicoides biting midges (Diptera: Ceratopogonidae). From 30 days trapping, the catch averaged 2626 +/- 1358 Culicoides females/trap/day (mean +/- SE, range 558 +/- 139 to 6088 +/- 3597, for five sets of six consecutive nights), predominantly the pest Culicoides impunctatus Goetghebuer (68% overall), plus C. vexans (Staeger) > C. delta Edwards &g...
Molecular epidemiologic features of Corynebacterium pseudotuberculosis isolated from horses.
American journal of veterinary research    January 6, 2005   Volume 65, Issue 12 1734-1737 doi: 10.2460/ajvr.2004.65.1734
Foley JE, Spier SJ, Mihalyi J, Drazenovich N, Leutenegger CM.To characterize isolates of Corynebacterium pseudotuberculosis from horses, cattle, and sheep in Colorado, Kentucky, Utah, and California in samples collected during perceived epidemics of infection (increased numbers of cases identified) in 2002 and 2003, and determine how closely isolates were related and their possible source. Methods: 54 isolates of C pseudotuberculosis from 49 horses, 4 cattle, and 1 sheep. Methods: Random amplified polymorphic DNA (RAPD) polymerase chain reaction (PCR) assay, PCR assay for the gene encoding the phospholipase D (PLD) toxin, biochemical analyses, and tests...
Pemphigus foliaceus in the horse: a retrospective study of 20 cases.
Veterinary dermatology    December 9, 2004   Volume 15, Issue 6 381-388 doi: 10.1111/j.1365-3164.2004.00423.x
Vandenabeele SI, White SD, Affolter VK, Kass PH, Ihrke PJ.Twenty horses with pemphigus foliaceus were seen over a period of 15 years in a veterinary medical teaching hospital. Breeds seen were seven quarterhorses, five thoroughbreds, three cross-bred horses, two Arabians and one of each of the following: standardbred, Tennessee walker and warmblood. There was no breed, age or sex predisposition. Nine were mares, ten were geldings and one was a stallion. Ages ranged from 2.5 months to 25 years, with a mean of 8.6 years. Sixteen (80%) of the pemphigus foliaceus horses first exhibited signs between September and February. There was a statistically signi...
Testing for equine arteritis virus.
The Veterinary record    December 3, 2004   Volume 155, Issue 20 647-648 
Cullinane AA.No abstract available
Assessment of the efficacy of a single dose of a recombinant vaccine against West Nile virus in response to natural challenge with West Nile virus-infected mosquitoes in horses.
American journal of veterinary research    November 30, 2004   Volume 65, Issue 11 1459-1462 doi: 10.2460/ajvr.2004.65.1459
Siger L, Bowen RA, Karaca K, Murray MJ, Gordy PW, Loosmore SM, Audonnet JC, Nordgren RM, Minke JM.To determine the onset of immunity after IM administration of a single dose of a recombinant canarypox virus vaccine against West Nile virus (WNV) in horses in a blind challenge trial. Methods: 20 mixed-breed horses. Methods: Horses with no prior exposure to WNV were randomly assigned to 1 of 2 groups (10 horses/group). In 1 group, a recombinant canarypox virus vaccine against WNV was administered to each horse once (day 0). The other 10 control horses were untreated. On day 26, 9 treated and 10 control horses were challenged via the bites of mosquitoes (Aedes albopictus) infected with WNV. Cl...
CYP3A in horse intestines.
Toxicology and applied pharmacology    November 16, 2004   Volume 201, Issue 2 112-119 doi: 10.1016/j.taap.2004.05.015
Tydén E, Olsén L, Tallkvist J, Larsson P, Tjälve H.The intestinal enterocytes provide the initial site for cytochrome P450 (CYP)-mediated metabolism of orally absorbed xenobiotics. In man and some animal species, the CYP3A subfamily is highly expressed in the intestines and considered to be important in the first-pass metabolism of drugs and other xenobiotics. The aim of the present study was to investigate the mRNA expression, immunohistochemical localization and catalytic activity of CYP3A in the intestines of horse. Real-time RT-PCR analyses showed that the highest CYP3A mRNA expression was present in the duodenum with a decreasing level to...
Horses and the risk of zoonotic infections.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 643-653 doi: 10.1016/j.cveq.2004.07.003
Bender JB, Tsukayama DT.Infectious agents are insidious, often changing to adapt to host defenses or treatment advances. Because these challenges will continue, the need to apply standard and transmission-based precautions is important not only in the human hospital setting but in the veterinary clinic setting. In addition, to prevent human infection and potential liability, clinics need to establish program algorithms to prevent disease spread for specific agents or planned procedures to respond to potential nosocomial and zoonotic disease events. These need to be done proactively. Furthermore, more money needs to b...
An overview of infection control strategies for equine facilities, with an emphasis on veterinary hospitals.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 507-v doi: 10.1016/j.cveq.2004.07.004
Traub-Dargatz JL, Dargatz DA, Morley PS, Dunowska M.Infection control entails preventing or minimizing exposure to infectious agents or optimizing resistance to infection at the individual and population levels should exposure occur. The degree to which each of these strategies is applied varies according to the attributes of the disease agent and the population at risk. In developing an infection control, biosecurity, or biocontainment plan, it is important to decide which agent or agents are to be controlled, the method by which they might be introduced to the individual or population, and methods by which they might spread once at a farm or ...
Environmental disinfection to control equine infectious diseases.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 531-542 doi: 10.1016/j.cveq.2004.07.001
Dwyer RM.Cleaning and disinfection are essential to the environmental control of infectious diseases of all animals. By understanding the types of pathogens, environment, and disinfection process, success can be attained in effectively stopping disease outbreaks.
Surveillance for nosocomial infections in veterinary hospitals.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 561-vii doi: 10.1016/j.cveq.2004.08.002
Morley PS.Surveillance for nosocomial infection and disease is a critical component in an integrated and highly effective infection control program. Surveillance activities provide a sensory role to guide ongoing control practices so that they are focused and efficient. Without input from surveillance results, infection control practices are likely to be guided more by emotion and opinion than by data and evidence. This article discusses issues to be considered when developing effective nosocomial infection surveillance programs as well as the historical perspective of surveillance efforts for nosocomia...
Methicillin-resistant Staphylococcus aureus in horses and horse personnel.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 601-613 doi: 10.1016/j.cveq.2004.07.009
Weese JS.Fortunately, MRSA infection and colonization are currently uncommon in veterinary medicine. Nevertheless, the increasing reports of the occurrence of MRSA infection in horses, veterinarians, and equine personnel dictate that serious consideration be given to the control of this pathogen in veterinary hospitals as well as in the equine community. It is unclear whether extrapolation from human hospitals and people in the community is appropriate; however, given the rapid increase in nosocomial MRSA in human hospitals and the recent shift of certain clones of MRSA into the community, it would be ...
Clostridium difficile diarrhea: infection control in horses.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 615-630 doi: 10.1016/j.cveq.2004.07.005
Båverud V.C difficile has emerged as an important cause of diarrheic disease in horses. C difficile diarrhea is usually diagnosed in mature horses, mostly when they are treated with antimicrobials and hospitalized. It is important for clinicians at veterinary hospitals to have knowledge about the organism and the infection. To prevent C difficile diarrhea, judicious use of antimicrobials is important, as is minimizing different stress factors at the animal hospital or clinic. Infected horses must be isolated. Routine examination for C difficile and toxin A or B is recommended in horses with antibiotic-a...
Barrier precautions, isolation protocols, and personal hygiene in veterinary hospitals.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 543-559 doi: 10.1016/j.cveq.2004.07.006
Weese JS.Because nosocomial and zoonotic diseases are inherent and ever-present risks in veterinary hospitals, proactive policies should be in place to reduce the risk of sporadic cases and outbreaks. Policies should ideally be put in place before disease issues arise, and policies should be effectively conveyed to all relevant personnel. Written policies are required for practical and liability reasons and should be reviewed regularly. Although no infection control program can eliminate disease concerns, proper implementation of barrier precautions and isolation can reduce the exposure of hospitalized...
Views WNV prevention suggestions as outdated.
Journal of the American Veterinary Medical Association    November 2, 2004   Volume 225, Issue 7 1027-1028 
Reilly FK.No abstract available
Evaluation of an outbreak of West Nile virus infection in horses: 569 cases (2002).
Journal of the American Veterinary Medical Association    November 2, 2004   Volume 225, Issue 7 1084-1089 doi: 10.2460/javma.2004.225.1084
Schuler LA, Khaitsa ML, Dyer NW, Stoltenow CL.To characterize an outbreak of West Nile virus (WNV) infection in horses in North Dakota in 2002, evaluate vaccine effectiveness, and determine horse characteristics and clinical signs associated with infection. Methods: Retrospective study. Methods: 569 horses. Methods: Data were obtained from veterinary laboratory records, and a questionnaire was mailed to veterinarians of affected horses. Results: Affected horses were defined as horses with typical clinical signs and seroconversion or positive results of virus isolation; affected horses were detected in 52 of the 53 counties and concentrate...
Equine cyathostomins.
Veterinary parasitology    October 28, 2004   Volume 125, Issue 1-2 203-220 doi: 10.1016/j.vetpar.2004.05.014
Matthews JB, Dowdall SM, Baudena MA, Klei TR, Kaplan RM, von Samson-Himmelstjerna G, Drögemüller M, Schnieder T.This collection of articles provides an in depth account of five presentations delivered during the Symposium on Equine Cyathostomins held at the 19th International Conference of the World Association for the Advancement of Veterinary Parasitology (WAAVP), New Orleans, Louisiana,10–14 August 2003. The symposium was organized and chaired by Ray M. Kaplan and Jacqui B. Matthews and focused on new developments in two major areas of current importance: the immunobiology of cyathostomin–horse interactions and anthelmintic resistance.
African horsesickness virus serotyping and identification of multiple co-infecting serotypes with a single genome segment 2 RT-PCR amplification and reverse line blot hybridization.
Journal of virological methods    October 19, 2004   Volume 122, Issue 1 49-56 doi: 10.1016/j.jviromet.2004.08.002
Koekemoer JJ, Dijk AA.Since protection against African horsesickness (AHS) is serotype-specific, rapid serotyping of AHSV is crucial to identify the correct vaccine serotype for efficient control of the spread of AHS outbreaks, especially when they occur in non-endemic regions. This paper describes the first one-day serotyping procedure that requires only a single RT-PCR and hybridization and which can identify multiple serotypes in mixed infections in one assay. The same region of genome segment 2 of all nine AHSV serotypes is amplified in a single RT-PCR. A universal primer set, designed to amplify the 5'-termina...
Enzootiology of Trypanosoma evansi in Pantanal, Brazil.
Veterinary parasitology    October 16, 2004   Volume 125, Issue 3-4 263-275 doi: 10.1016/j.vetpar.2004.07.013
Herrera HM, Dávila AM, Norek A, Abreu UG, Souza SS, D'Andrea PS, Jansen AM.In order to better understand the enzootiology of trypanosomiasis caused by Trypanosoma evansi in the Brazilian Pantanal we examined domestic and wild mammals by microhematocrit centrifuge technique (MHCT), immunofluorescence antibody test (IFAT) and polymerase chain reaction (PCR). T. evansi infection was detected in all species sampled with exception of the sheep and the feral pig. High parasitemias were observed in capybaras (5/24), coatis (18/115), horses (31/321) and dogs (3/112). Among these species, only the capybaras did not develop anemia. Low parasitemias, only detected by PCR, were ...
[West Nile virus also in the Netherlands?].
Tijdschrift voor diergeneeskunde    October 6, 2004   Volume 129, Issue 17 561 
Goehring L, Sloet M, Rottier P, Koopmans M, Godeke GJ, Vennema H.No abstract available
Collaborating to tackle the problem of anthelmintic resistance.
The Veterinary record    October 6, 2004   Volume 155, Issue 9 253-254 
Coles GC, Jackson F, Taylor MA, Wolstenholme AJ.No abstract available
Phenotypic characterization of Brucella strains isolated from livestock in Nigeria.
Veterinary microbiology    September 24, 2004   Volume 103, Issue 1-2 47-53 doi: 10.1016/j.vetmic.2004.06.012
Ocholi RA, Kwaga JK, Ajogi I, Bale JO.Isolation of brucellae from aborted fetuses, hygroma fluids, milk and vaginal swabs obtained from aborting cattle, sheep, goats, pigs, and horses in Nigeria was carried out. A total of 25 isolates, obtained mainly from cattle, sheep and horses, were biotyped. All strains belonged to one species, Brucella abortus biovar 1. The epidemiological significance of this finding is discussed. Some preliminary observations on the zoonotic and public health implications of Brucella infection in Nigerian livestock are presented. A control programme involving improved management, animal movement restrictio...
Drug resistance in nematodes of veterinary importance: a status report.
Trends in parasitology    September 15, 2004   Volume 20, Issue 10 477-481 doi: 10.1016/j.pt.2004.08.001
Kaplan RM.Reports of drug resistance have been made in every livestock host and to every anthelmintic class. In some regions of world, the extremely high prevalence of multi-drug resistance (MDR) in nematodes of sheep and goats threatens the viability of small-ruminant industries. Resistance in nematodes of horses and cattle has not yet reached the levels seen in small ruminants, but evidence suggests that the problems of resistance, including MDR worms, are also increasing in these hosts. There is an urgent need to develop both novel non-chemical approaches for parasite control and molecular assays cap...
Evidence supporting the inclusion of strains from each of the two co-circulating lineages of H3N8 equine influenza virus in vaccines.
Vaccine    September 15, 2004   Volume 22, Issue 29-30 4101-4109 doi: 10.1016/j.vaccine.2004.02.048
Daly JM, Yates PJ, Newton JR, Park A, Henley W, Wood JL, Davis-Poynter N, Mumford JA.Two lineages of antigenically distinct equine influenza A H3N8 subtype viruses, American and European, co-circulate. Experiments were conducted in ponies to investigate the protection induced by vaccines containing virus from one lineage against challenge infection with homologous or heterologous virus. Regression analysis showed that vaccinated ponies with average pre-challenge single radial haemolysis (SRH) antibody levels (i.e. 45-190mm2) had a higher probability of becoming infected if they were vaccinated with virus heterologous to the challenge strain than if they were vaccinated with ho...
Epidemiology of Trichinella infection in the horse: the risk from animal product feeding practices.
Veterinary parasitology    August 25, 2004   Volume 123, Issue 3-4 223-233 doi: 10.1016/j.vetpar.2004.06.008
Murrell KD, Djordjevic M, Cuperlovic K, Sofronic Lj, Savic M, Djordjevic M, Damjanovic S.A discovery in 2002 of a Trichinella spiralis-infected horse in Serbia offered an opportunity to conduct needed epidemiological studies on how horses, considered herbivores, acquire a meat-borne parasite. This enigma has persisted since the first human outbreaks from infected horse meat occurred in then 1970s. The trace back of the infected horse to a farm owner was carried out. Interviews and investigations on the farm led to the conclusion that the owner had fed the horse food waste in order to condition the horse prior to sale. Further investigations were then carried out to determine the f...
Isolation of methicillin-resistant Staphylococcus aureus from the environment in a veterinary teaching hospital.
Journal of veterinary internal medicine    August 24, 2004   Volume 18, Issue 4 468-470 doi: 10.1892/0891-6640(2004)182.0.co;2
Weese JS, DaCosta T, Button L, Goth K, Ethier M, Boehnke K.After recognition of a cluster of methicillin-resistant Staphylococcus aureus (MRSA) infection in horses and humans at the Ontario Veterinary College Veterinary Teaching Hospital, environmental contamination with MRSA was evaluated. A total of 260 environmental surfaces were sampled during periods when MRSA-infected horses were hospitalized, and MRSA was isolated from 25/260 sites (9.6%). The most commonly contaminated sites were stalls housing MRSA-positive horses, but other stalls, medical equipment, personal items, and equine restraint devices also were contaminated. The role of the environ...
The effects of strain heterology on the epidemiology of equine influenza in a vaccinated population.
Proceedings. Biological sciences    August 13, 2004   Volume 271, Issue 1548 1547-1555 doi: 10.1098/rspb.2004.2766
Park AW, Wood JL, Daly JM, Newton JR, Glass K, Henley W, Mumford JA, Grenfell BT.We assess the effects of strain heterology (strains that are immunologically similar but not identical) on equine influenza in a vaccinated population. Using data relating to individual animals, for both homologous and heterologous vaccinees, we estimate distributions for the latent and infectious periods, quantify the risk of becoming infected in terms of the quantity of cross-reactive antibodies to a key surface protein of the virus (haemagglutinin) and estimate the probability of excreting virus (i.e. becoming infectious) given that infection has occurred. The data suggest that the infectio...
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