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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.
Equine syncope.
The Veterinary record    April 9, 1988   Volume 122, Issue 15 371 doi: 10.1136/vr.122.15.371-a
Holmes JR.No abstract available
High-cis permethrin for the control of sweet itch on horses.
The Veterinary record    March 26, 1988   Volume 122, Issue 13 308 doi: 10.1136/vr.122.13.308
Stevens DP, Henderson D, Vlaminck K, Eley J, Kennedy AS.No abstract available
Isolation of pure Babesia equi and Babesia caballi organisms in splenectomized horses from endemic areas in South Africa.
The Onderstepoort journal of veterinary research    March 1, 1988   Volume 55, Issue 1 33-35 
De Waal DT, Van Heerden J, Van den Berg SS, Stegmann GF, Potgieter FT.Both Babesia equi and Babesia caballi are endemic in large parts of South Africa. Attempts were made to obtain pure local isolates of both B. equi and B. caballi for the purpose of developing serological tests to study the epidemiology of equine babesiosis in this country. The indirect fluorescent antibody test was used to screen horses for B. equi and B. caballi in an endemic area. Seven horses and 3 donkeys between 3 and 36 months of age that tested negative were subsequently splenectomized. The splenectomy operation was performed through the abdominal approach. A 100% survival rate was achi...
[Natural infection of Equus caballus by Leishmania sp–São Paulo, Brazil. (Brief scientific communication)].
Revista do Instituto de Medicina Tropical de Sao Paulo    March 1, 1988   Volume 30, Issue 2 79-80 doi: 10.1590/s0036-46651988000200004
Yoshida EL, Marques Sde A, Stolf HO, Barsotti LA, Buéno MM, Sogayar R.No abstract available
Benzimidazole resistance of equine strongyles.
Equine veterinary journal    March 1, 1988   Volume 20, Issue 2 146-147 
Drudge JH.No abstract available
Bogus equine drugs.
Journal of the American Veterinary Medical Association    March 1, 1988   Volume 192, Issue 5 580 
Stoner JC.No abstract available
Equine syncope.
The Veterinary record    February 27, 1988   Volume 122, Issue 9 215 doi: 10.1136/vr.122.9.215-d
Cross EJ.No abstract available
Horse vaccination certificates.
The Veterinary record    January 23, 1988   Volume 122, Issue 4 95 doi: 10.1136/vr.122.4.95-a
Parsons JH, Singleton WB.No abstract available
[African horse sickness in Senegal: the state of natural and/or acquired immunity in horses in a recent foci].
Revue d'elevage et de medecine veterinaire des pays tropicaux    January 1, 1988   Volume 41, Issue 3 243-246 
Sarr J, Diop M, Cissokho S.No abstract available
Natural infection with Eimeria leuckarti: prevalence of oocysts in feces of horse foals on several farms in Kentucky during 1986.
American journal of veterinary research    January 1, 1988   Volume 49, Issue 1 96-98 
Lyons ET, Drudge JH, Tolliver SC.During 1986, fecal specimens were collected 1 or more times from each of 164 horse foals (158 Thoroughbred and 6 mixed light horse type), ranging in age from 0 to 252 days, on 13 farms in central Kentucky. To detect natural infection with Eimeria leuckarti, feces were examined for oocysts. Oocysts were found in 67 (41%) of the foals on 11 (85%) of the farms. The earliest age at which oocysts were first detected was 15 days (1 foal); the latest age was 123 days (1 foal). The mean age for the first appearance of oocysts in the feces of the 67 foals positive for E leuckarti was approximately 70 d...
Equine disease association studies: a clinician’s perspective.
Animal genetics    January 1, 1988   Volume 19, Issue 4 409-415 doi: 10.1111/j.1365-2052.1988.tb00832.x
McClure JJ.Diagnostic criteria should be carefully defined and described in disease association studies to allow (1) comparison among studies from different laboratories evaluating the same disease, (2) critical evaluation of selection procedures of patients, and (3) to strengthen genuine associations with any genetic marker system. Factors to consider include age at onset of disease, specialized diagnostic methods necessary to diagnose or eliminate patients with a selected disease, ranges of affectedness and differences in sex expression.
The application of advanced molecular techniques to investigate epizootics of infectious disease in the equine population.
Acta veterinaria Scandinavica. Supplementum    January 1, 1988   Volume 84 337-339 
Powell DG, Timoney PJ, Murphy T, Allen G, Donahue JM, Wilson J, Tudor L, Ferris K, Kawaoka Y.No abstract available
The lentiviruses: maedi/visna, caprine arthritis-encephalitis, and equine infectious anemia.
Advances in virus research    January 1, 1988   Volume 34 189-215 doi: 10.1016/s0065-3527(08)60518-7
Cheevers WP, McGuire TC.No abstract available
[Actual problems of leptospirosis in animals in Poland].
Przeglad epidemiologiczny    January 1, 1988   Volume 42, Issue 4 364-369 
Kocik T.No abstract available
An epidemiological investigation of farms with Potomac horse fever (equine monocytic ehrlichiosis).
Acta veterinaria Scandinavica. Supplementum    January 1, 1988   Volume 84 319-322 
Gordon JC, Bech-Nielsen S, Kohn C, Farrar W, Parsons M, Foster W.No abstract available
Comparison of empirically developed sepsis score with a computer generated and weighted scoring system for the identification of sepsis in the equine neonate.
Equine veterinary journal    January 1, 1988   Volume 20, Issue 1 23-24 doi: 10.1111/j.2042-3306.1988.tb01446.x
Brewer BD, Koterba AM, Carter RL, Rowe ED.No abstract available
Development of free-living stages of equine strongyles in faeces on pasture in a tropical environment.
Veterinary parasitology    January 1, 1988   Volume 26, Issue 3-4 285-296 doi: 10.1016/0304-4017(88)90097-0
Mfitilodze MW, Hutchinson GW.The development of the free-living stages and yields of infective third stage strongyle larvae in faeces from a horse with a mixed natural infection deposited on pasture plots were studied over a 2-year period in a coastal area in tropical north Queensland. Two sets of faecal masses (one exposed to, and the other protected from the action of a natural population of dung beetles) were deposited monthly and after 7 days faecal samples were taken for larval recovery and counts. Hatching and development of the free-living stages occurred in faeces on pasture throughout the year. Development was ra...
[Preventative vaccination against EHV (equine herpesvirus) abortion].
Tierarztliche Praxis    January 1, 1988   Volume 16, Issue 1 61-63 
Becker W.From 1981 until 1987 we investigated the more detailed circumstances regarding a prophylactic vaccination in altogether 37 stud farms with a history of virus abortion. In 23 cases, in which Prevaccinol and/or Resequin were used, it was found that the following of vaccination schedule and necessary immunization programmes respectively, had considerable imperfections. In seven cases prophylactic vaccinations were not carried out or corresponding questionnaires were not answered. The fact that in the present data no case of virus abortion was observed, when the mare was vaccinated according to th...
Outbreak of equine influenza in India.
The Veterinary record    December 12, 1987   Volume 121, Issue 24 569-570 
Uppal PK, Yadav MP.No abstract available
The laboratory as an aid to clinical diagnosis.
The Veterinary clinics of North America. Equine practice    December 1, 1987   Volume 3, Issue 3 445-460 doi: 10.1016/s0749-0739(17)30658-2
Ricketts SW.The clinician may use the clinical pathology laboratory as a valuable aid to diagnosis and management, for the assessment of response to treatment, and in preventive medicine programs. Each "link in the chain," that is, sample selection, collection, handling, analysis, result reporting, and interpretation must be carefully and efficiently managed, using an informed combination of art and science, to provide a useful endpoint. This general introduction precedes more specific and detailed articles.
Sero-epizootiological study of racehorses with pyrexia in the training centers of the Japan Racing Association.
Nihon juigaku zasshi. The Japanese journal of veterinary science    December 1, 1987   Volume 49, Issue 6 1087-1096 doi: 10.1292/jvms1939.49.1087
Sugiura T, Matsumura T, Fukunaga Y, Hirasawa K.A sero-epizootiological study was conducted on horses which showed clinical pyrexia at two training centers, each of which maintained 1, 200 to 2, 100 racehorses for training, of the Japan Racing Association. It continued from 1980 to 1985 to clarify the cause of pyrexia, so that measures might be considered for the prevention of infectious disease. A total of 3, 849 horses were found to be affected with pyrexia for the 6 years. Of them, 2, 852 horses were tested to equine herpesvirus type 1 (EHV-1), equine rhinovirus type 1 (ERhV-1), rotavirus and equine adenovirus (EAdV) by collecting paired...
Clinical pathology.
The Veterinary clinics of North America. Equine practice    December 1, 1987   Volume 3, Issue 3 445-660 
No abstract available
Western equine encephalitis–United States and Canada, 1987.
MMWR. Morbidity and mortality weekly report    October 9, 1987   Volume 36, Issue 39 655-659 
No abstract available
Animal insurance and the veterinarian.
Journal of the American Veterinary Medical Association    August 1, 1987   Volume 191, Issue 3 279-280 
Hannah HW.No abstract available
Heterogeneity and linkage of equine C4 and steroid 21-hydroxylase genes.
Journal of immunogenetics    August 1, 1987   Volume 14, Issue 4-5 247-253 doi: 10.1111/j.1744-313x.1987.tb00387.x
Kay PH, Dawkins RL, Bowling AT, Bernoco D.The fourth component of complement (C4) is polymorphic in most species studied, and is encoded by a gene or genes within the MHC. In man and mouse there are two closely linked C4 and steroid 21-hydroxylase (21-OH) genes. Therefore we have used Southern blotting to determine whether equine C4 and 21-OH genes are linked. C4 restriction fragment length polymorphism (RFLP) was found with the enzymes EcoRI and BamHI. Comparison of the sizes of EcoRI-digested fragments of genomic DNA hybridizing with C4 and 21-OH probes revealed that equine C4 and 21-OH genes are separated by no more than 13 kb. Fur...
Epidemiology of Rhodococcus equi infection in horses.
Veterinary microbiology    August 1, 1987   Volume 14, Issue 3 211-214 doi: 10.1016/0378-1135(87)90107-6
Prescott JF.Current understanding of the epidemiology of Rhodococcus equi infection on horse farms is reviewed. Infection is widespread in herbivores and their environment, because herbivore manure supplies the simple organic acid substrates on which the organism thrives. There is a progressive development of infection in the soil on horse farms with prolonged use, because: (1) there is a continual supply of nutrients; (2) the organism multiplies progressively as temperatures rise; (3) the bacterium has a robust nature. While this aerobic organism fails to multiply in the largely anaerobic intestine of th...
Dynamics of equi-factor antibodies in sera of foals kept on farms with differing histories of Rhodococcus equi pneumonia.
Veterinary microbiology    August 1, 1987   Volume 14, Issue 3 269-276 doi: 10.1016/0378-1135(87)90114-3
Skalka B.The occurrence of equi-factor antibodies in sera of mares and their foals was studied on two horse breeding farms, one of which (Farm A) had a positive and the other (farm B) a negative history of R. equi infection of foals. The equi-factor neutralization (EFN) and the reverse Elek-Ouchterlony (REO) precipitation were used as assays. On Farm A, 25 mares positive in both tests (EFN+ REO+) and 25 mares negative in both tests (EFN- REO-) was chosen. On Farm B, a group of 25 EFN- REO+ mares and a group of 25 EFN- REO- mares were studied. The first serum samplings in mares were 1 week ante partum a...
Racehorse treatment warning.
The Veterinary record    July 25, 1987   Volume 121, Issue 4 91 doi: 10.1136/vr.121.4.91
Foster CN.No abstract available
[Ecological characteristics of horse stomach botflies in Uzbekistan].
Parazitologiia    July 1, 1987   Volume 21, Issue 4 577-579 
Enileeva NKh.The paper describes the flight periods and dynamics of abundance of horse botflies, life span of females and males, effect of environmental factors on the activity of flies and their behaviour, potential fecundity of different species of botflies, duration of embryonal development, preservation of viability of larvae in egg membranes, localization of different stages of botflies in the host, and methods of their control.
Klebsiella oxytoca Septicemia due to Intravenous Administration of a Contaminated Amino-acid Solution to Three Horses.
The Canadian veterinary journal = La revue veterinaire canadienne    July 1, 1987   Volume 28, Issue 7 422-424 
Hazlett MJ, Goodrow DC, Lynch JA, Kierstead MK.No abstract available
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