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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.
Joint disease–a role for serum markers in diagnosis, control and prevention.
The British veterinary journal    July 1, 1996   Volume 152, Issue 4 373-375 doi: 10.1016/s0007-1935(96)80032-7
Thorp B.No abstract available
Contagious equine metritis.
Comparative immunology, microbiology and infectious diseases    June 1, 1996   Volume 19, Issue 3 199-204 doi: 10.1016/0147-9571(96)00005-7
Timoney PJ.Contagious equine metritis (CEM) is a highly contagious venereal infection of equids caused by Taylorella equigenitalis, a bacterium with fastidious growth requirements. A disease of major international concern, CEM can be the cause of short-term infertility and, very rarely, abortion in mares. Unlike the mare, stallions exposed to T. equigenitalis do not develop clinical signs of disease. CEM is transmitted by direct or indirect venereal contact. The carrier state occurs in the mare and the stallion and carrier animals are frequently the source of infection for new outbreaks of the disease. T...
Equine influenza.
Comparative immunology, microbiology and infectious diseases    June 1, 1996   Volume 19, Issue 3 205-211 doi: 10.1016/0147-9571(96)00006-9
Timoney PJ.A highly contagious virus infection of horses, influenza is the single most important equine respiratory disease in many countries. Two subtypes of equine influenza virus have been identified, A/equine-1 and A/equine-2, neither of which immunologically cross-reacts. In the case of A/equine-2 virus, two lineages exist, American and European, which appear to have evolved independently of one another. The acute febrile respiratory disease characteristic of influenza is frequently complicated by secondary bacterial infection, especially in unvaccinated horses. Primarily a respiratory-borne infecti...
Control of Babesia equi parasitemia.
Parasitology today (Personal ed.)    May 1, 1996   Volume 12, Issue 5 195-198 doi: 10.1016/0169-4758(96)10007-7
Knowles DP.Infection of horses with the hemoprotozoan Babesia equi has been reported in southern Florida, US Virgin Islands, part of Asia, Russia, India, the Middle East, Europe, Africa, Australia, South America, Central America, Mexico, Philippine Islands and some Caribbean islands. The restrictions placed on the international movement of infected horses has refocused attention on potential methods to control or eliminate infection. Don Knowles here discusses the primary chemotherapeutic compounds that have been used; the current knowledge concerning immune responses that potentially contribute to contr...
Horse complement protein C9: primary structure and cytotoxic activity.
Molecular immunology    May 1, 1996   Volume 33, Issue 7-8 725-733 doi: 10.1016/0161-5890(96)00007-7
Esser AF, Tarnuzzer RW, Tomlinson S, Tatar LD, Stanley KK.Lack of hemolytic activity of horse serum is an inherent property of horse C9. To understand the molecular reasons for this deficiency we have cloned C9 cDNA from a horse liver cDNA library and have sequenced the cDNA yielding the complete coding sequence for horse C9. Purification of C9 from horse plasma and microsequencing established the N-terminus of the mature protein and verified that the correct horse C9 cDNA clone had been isolated. The deduced amino acid sequence corresponds to a mature protein of 526 amino acids that is 77% identical to human C9. It has the same domain structure as h...
Evaluation of vaccination of horses as a strategy to control equine monocytic ehrlichiosis.
Journal of the American Veterinary Medical Association    April 15, 1996   Volume 208, Issue 8 1290-1294 
Atwill ER, Mohammed HO.To determine whether preferentially vaccinated horses were at risk for exposure to Ehrlichia risticii, whether horses with equine monocytic ehrlichiosis (EME) were likely to have been nonvaccinated, and whether clinical severity and financial costs associated with care and treatment of EME were less for vaccinated horses with EME than for nonvaccinated horses with EME. Methods: Cross-sectional and case-control studies. Methods: Information on usage of E risticii bacterins to control EME was collected for 2,587 horses located on 511 farms throughout New York. Each horse was tested for serum ant...
Benefit-cost analysis of vaccination of horses as a strategy to control equine monocytic ehrlichiosis.
Journal of the American Veterinary Medical Association    April 15, 1996   Volume 208, Issue 8 1295-1299 
Atwill ER, Mohammed HO.To determine whether horses in New York should be vaccinated against equine monocytic ehrlichiosis (EME). Methods: Decision-tree analyses of data from a cross-sectional study and a case-control study. Methods: Horses in New York. Methods: Annual expected monetary loss per horse attributable to EME was calculated for vaccinated and nonvaccinated horses in New York. Because risk of being seropositive was dependent on county in which the horse was located, farm elevation, and use of each horse, decision-tree analyses were stratified by these factors. Results: Annual expected monetary loss per hor...
Antigenic and genetic evolution of equine H3N8 influenza A viruses.
The Journal of general virology    April 1, 1996   Volume 77 ( Pt 4) 661-671 doi: 10.1099/0022-1317-77-4-661
Daly JM, Lai AC, Binns MM, Chambers TM, Barrandeguy M, Mumford JA.Evolution of equine influenza a H3N8 viruses was examined by antigenic and genetic analysis of a collection isolates from around the world. It was noted that antigenic and genetic variants of equine H3N8 viruses cocirculate, and in particular that variants currently circulating in Europe and the USA are distinguishable from one another both in terms of antigenic reactivity and genetic structure of the HA1 portion of the haemagglutinin (HA) molecule. Whilst the divergent evolution of American and European isolates may be due to geographical isolation of the two gene pools, some mixing is believ...
Characterization of protective and enhancing immune responses to equine infectious anemia virus resulting from experimental vaccines.
AIDS research and human retroviruses    March 20, 1996   Volume 12, Issue 5 413-415 doi: 10.1089/aid.1996.12.413
Montelaro RC, Grund C, Raabe M, Woodson B, Cook RF, Cook S, Issel CJ.No abstract available
Equine babesiosis (piroplasmosis): a problem in the international movement of horses.
The British veterinary journal    March 1, 1996   Volume 152, Issue 2 123-126 doi: 10.1016/s0007-1935(96)80066-2
Knowles D.No abstract available
Cross-sectional evaluation of environmental, host, and management factors associated with risk of seropositivity to Ehrlichia risticii in horses of New York state.
American journal of veterinary research    March 1, 1996   Volume 57, Issue 3 278-285 
Atwill ER, Mohammed HO, Lopez JW, McCulloch CE, Dubovi EJ.To locate counties within New York state with a high seroprevalence among the equine population, to determine host, management, and environmental factors that were associated with seropositivity to Ehrlichia risticii, and to determine evidence for arthropod- or helminth-mediated transmission of E risticii to horses. Methods: Cross-sectional study. Methods: A random sample of 3,000 of the 39,000 equine operations in New York state was selected, and 2,587 horses from 511 operations were tested. Methods: Blood samples were collected from horses and tested for seropositivity, using the indirect fl...
[Current concepts and implications for future research on Rhodococcus equi].
Nihon saikingaku zasshi. Japanese journal of bacteriology    February 1, 1996   Volume 51, Issue 2 485-496 doi: 10.3412/jsb.51.485
Takai S.No abstract available
[Occurrence of Parascaris equorum in foals and adult horses under different breeding conditions].
Wiadomosci parazytologiczne    January 1, 1996   Volume 42, Issue 2 213-219 
Gawor JJ.Autopsies and analyses of faecal samples from working horses have shown common occurrence of ascarids in foals, whereas 19.6% of adult horses have been found infected. No influence of season on EPG in adult horses has been found. Study based on faecal samples from stud horses has shown that 5-6-month old animals were most susceptible to the infection. 50% of foals have been found infected in spite of deworming with the use of bezimidazole compounds. It has been stated that the proper dose of an anthelminthic is a basic problem in the control of ascarids.
Drug use and misuse: frontiers between biological science, bureaucracy and clinical pragmatism.
Equine veterinary journal    January 1, 1996   Volume 28, Issue 1 7-8 doi: 10.1111/j.2042-3306.1996.tb01581.x
Rossdale PD.No abstract available
Rapid diagnosis of African horse sickness.
Revue d\'elevage et de medecine veterinaire des pays tropicaux    January 1, 1996   Volume 49, Issue 4 295-298 
Adeyefa CA.The rapid diagnosis of African horse sickness (AHS) during the incubation period using virus antigens in peripheral blood mononuclear cells (PBMC) and red blood cells (RBC) in a sandwich indirect enzyme-linked immunosorbent assay (ELISA) is reported. PMBC consistently gave higher positive ELISA results than RBC from blood collected during viraemia from clinically affected horses. The potential of the method described for wider application in rapid diagnosis and virus surveillance in susceptible equine populations, particularly in AHS-free and in enzootic areas, for effective control strategies...
Control of Karoo paralysis ticks through vegetation management.
Medical and veterinary entomology    January 1, 1996   Volume 10, Issue 1 39-43 doi: 10.1111/j.1365-2915.1996.tb00080.x
Fourie LJ, Kok DJ, Krugel L, Snyman A, Van Der Lingen F.Karoo paralysis, caused by feeding Ixodes rubicundus females, is a major disease of small stock in South Africa. Control methods currently practised are almost exclusively chemical based. To limit overdependance on chemicals, vegetation management was investigated as a possible method for control, to be incorporated in an integrated tick management system. Laboratory and field experiments were conducted to determine, firstly, the extent of vertical migration and survival of ticks on long and short copper rods which simulated grasses as questing substrates; secondly, the infestation burdens of ...
Outbreak of Severe Respiratory Disease in Humans and Horses Due to a Previously Unrecognized Paramyxovirus.
Journal of travel medicine    December 1, 1995   Volume 2, Issue 4 275 doi: 10.1111/j.1708-8305.1995.tb00679.x
Selvey L, Sheridan J.No abstract available
Clinical epidemiology: application to laboratory data.
The Veterinary clinics of North America. Equine practice    December 1, 1995   Volume 11, Issue 3 515-524 doi: 10.1016/s0749-0739(17)30313-9
Traub-Dargatz JL, Dargatz DA.No abstract available
The use of laboratory tests in equine practice.
The Veterinary clinics of North America. Equine practice    December 1, 1995   Volume 11, Issue 3 345-350 doi: 10.1016/s0749-0739(17)30305-x
Messer NT IV.No abstract available
Predacious activity of the nematode-trapping fungus Duddingtonia flagrans against cyathostome larvae in faeces after passage through the gastrointestinal tract of horses.
Veterinary parasitology    December 1, 1995   Volume 60, Issue 3-4 315-320 doi: 10.1016/0304-4017(95)00792-8
Larsen M, Nansen P, Henriksen SA, Wolstrup J, Grønvold J, Zorn A, Wedø E.This study was undertaken to examine the potential of the nematode-trapping microfungus Duddingtonia flagrans to survive passage through the gastrointestinal tract of horses and subsequently to destroy free-living stages of cyathostomes in faecal cultures. Three different oral dose levels were tested, two horses being used for each level. Faeces were collected twice daily and the numbers of parasite eggs per gram of faeces were determined. The numbers of infective third stage larvae which developed in faecal cultures were determined after the cultures had been incubated for 2 weeks at 24 degre...
Equine influenza in vaccinated horses.
The Veterinary record    November 4, 1995   Volume 137, Issue 19 495-496 doi: 10.1136/vr.137.19.495
Newton JR, Mumford JA.No abstract available
Genetics and disease in the horse.
Equine veterinary journal    November 1, 1995   Volume 27, Issue 6 400-401 doi: 10.1111/j.2042-3306.1995.tb04416.x
Gerber V, Bailey E.No abstract available
Confidential enquiry into perioperative equine fatalities (CEPEF).
Veterinary surgery : VS    November 1, 1995   Volume 24, Issue 6 518-519 doi: 10.1111/j.1532-950x.1995.tb01364.x
Johnston GM, Steffey E.No abstract available
Disseminated histoplasmosis in a horse.
The Canadian veterinary journal = La revue veterinaire canadienne    November 1, 1995   Volume 36, Issue 11 707-709 
Johnston PF, Reams R, Jakovljevic S, Andrews DA, Heath SE, DeNicola D.No abstract available
Equine viral arteritis with abortions: serological and virological evidence in Germany.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    November 1, 1995   Volume 42, Issue 9 573-576 doi: 10.1111/j.1439-0450.1995.tb00750.x
Eichhorn W, Heilmann M, Kaaden OR.An outbreak of clinical disease with abortions, suspected to be equine viral arteritis in Germany was examined serologically and virologically. Three of five animals tested seroconverted to EAV, and EAV was isolated from an aborted fetus. In view of the significant increase in seropositive horses, the need for control measures is emphasized.
Epidemiologic evidence for clustering of equine motor neuron disease in the United States.
American journal of veterinary research    November 1, 1995   Volume 56, Issue 11 1433-1439 
de la Rúa-Domènech R, Mohammed HO, Atwill ER, Cummings JF, Divers TJ, Summers BA, deLahunta A, Jackson C.To examine the regional variations in the distribution of equine motor neuron disease (EMND) in the United States and the factors that might explain those variations. Methods: Cluster investigation and case-control study. Methods: The study population consisted of 97 horses with histopathologically confirmed EMND and 698 controls with diagnosis of other spinal cord disorders at 21 US veterinary teaching hospitals participating in the Veterinary Medical Data Base. Methods: The total horse population of the United States was divided into 21 regions, and the regional incidence rates of EMND from ...
Venezuelan equine encephalitis–Colombia, 1995.
MMWR. Morbidity and mortality weekly report    October 6, 1995   Volume 44, Issue 39 721-724 
An outbreak of Venezuelan equine encephalitis (VEE) that began in northwestern Venezuela in April 1995 has spread westward to the Guajira peninsula and to Colombia (Figure 1), resulting in an estimated minimum of 13,000 cases in humans and an undetermined number of equine deaths. Governments of both countries have initiated efforts to control the spread of this outbreak by quarantining and vaccinating equines and applying insecticides. This report summarizes the ongoing investigation of the outbreak in Colombia.
Outbreak of Venezuelan equine encephalitis in Colombia and Venezuela.
Releve epidemiologique hebdomadaire    October 6, 1995   Volume 70, Issue 40 283 
No abstract available
Equine colonic lipomatosis. Henry GA, Yamini B.No abstract available
AVMA/Practice Group perspectives: use of drug labels in the prescription of antimicrobial therapy. Representing the American Association of Equine Practitioners (AAEP).
Journal of the American Veterinary Medical Association    October 1, 1995   Volume 207, Issue 7 884-894 
White NA.No abstract available
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