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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.
Possible basis of adverse reactions to vaccination against equine influenza.
The Veterinary record    June 26, 1993   Volume 132, Issue 26 658-659 doi: 10.1136/vr.132.26.658
Dalgleish R, Love S.No abstract available
[Selected ectoparasitoses in animals].
Schweizerische medizinische Wochenschrift    June 19, 1993   Volume 123, Issue 24 1256-1267 
Eckert J.Selected ectoparasitoses of animals are reviewed with special reference to the situation in Switzerland. The review contains information on the parasitoses leishmaniasis of dogs, parafilariasis of equines and cattle, onchocercosis of cattle and horses, ixodiosis, demodicosis of dogs and scabies of domestic animals, fly infestation, myiasis, and infestation with fleas and black flies (simuliidiosis). In addition to information on prevalence, biology and pathogenic effects of ectoparasites, the review provides indications on diagnosis and control.
Equine viral arteritis in Britain.
The Veterinary record    June 12, 1993   Volume 132, Issue 24 615 doi: 10.1136/vr.132.24.615
Camm IS, Thursby-Pelham C.No abstract available
Equine influenza virus from the 1991 Swedish epizootic shows major genetic and antigenic divergence from the prototype virus.
Virus research    June 1, 1993   Volume 28, Issue 3 263-272 doi: 10.1016/0168-1702(93)90026-j
Oxburgh L, Berg M, Klingeborn B, Emmoth E, Linné T.The antigenic properties of H3N8 equine influenza virus from the Swedish epizootic of 1991 differ from those of A/eq 2/Fontainebleau/79 (representative of the Swedish vaccine strain) in hemagglutination inhibition tests. The amino acid sequence of the hemagglutinin (HA) of an isolate from the 1991 outbreak was deduced from the nucleotide sequence and comparison was made to the A/eq 2/Fontainebleau/79 strain. Twenty-three amino acid substitutions were found, 10 mapping onto areas of the HA known to bind antibodies in human H3 influenza viruses. The amino acid changes together with the serologic...
Leukoencephalomalacia in horses.
Australian veterinary journal    June 1, 1993   Volume 70, Issue 6 225-226 doi: 10.1111/j.1751-0813.1993.tb03310.x
Christley RM, Begg AP, Hutchins DR, Hodgson DR, Bryden WL.No abstract available
[Foal diseases and foal loss].
Tierarztliche Praxis    June 1, 1993   Volume 21, Issue 3 233-238 
Thein P, Essich G.An investigation was carried out upon occurrence and course of infectious and non infectious diseases as well as the mortality in foals born and raised at the State Stud Marbach/Lauter between 1982 and 1991. The foals have been investigated from birth to weaning, they consisted of 177 Thoroughbred Arabians and 285 German Warmblood foals (total 462 foals). The diseases were divided into pre-, peri- and postnatal according to their known or assumed cause and onset. There was a preponderance of prenatal diseases (11.25%) whereas the perinatal rate was 1.30% and the postnatal rate of diseases was ...
Control strategies for ruminant and equine parasites to counter resistance, encystment, and ecotoxicity in the USA.
Veterinary parasitology    June 1, 1993   Volume 48, Issue 1-4 327-336 doi: 10.1016/0304-4017(93)90166-k
Herd RP.The need for improved parasite control strategies to conserve anthelmintic efficacy and to avoid drug-related problems are addressed. Recent surveys have revealed a trend for sole dependence on ivermectin by livestock owners in the USA, with little regard for epidemiologic-based strategies, or the annual rotation of unrelated anthelmintic groups. Innovative parasite control strategies for cattle, sheep, and horses in northern USA are presented. The importance of closer monitoring and more rational use of anthelmintics is stressed.
Timing of equine flu vaccination.
The Veterinary record    May 22, 1993   Volume 132, Issue 21 539 doi: 10.1136/vr.132.21.539-b
Muirhead FS.No abstract available
African horse sickness viruses isolated in Kenya.
The Veterinary record    April 24, 1993   Volume 132, Issue 17 440 doi: 10.1136/vr.132.17.440
Davies FG, Soi RK, Binepal VS.No abstract available
Seroepidemiological survey of chlamydial infections in light horses in Japan.
The Journal of veterinary medical science    April 1, 1993   Volume 55, Issue 2 333-335 doi: 10.1292/jvms.55.333
Miyamoto C, Takashima I, Karaiwa H, Sugiura T, Kamada M, Hashimoto N.To investigate the overall prevalence of chlamydial infections in light (i.e. non-draught) horses in Japan, 599 sera obtained from 12 localities in 1991 were tested for complement fixation antibodies. The mean antibody positive rates of the all sera were 15.2% (91/599) and the regional positive rates were higher in Honshu (19.1%, 48/251) and Kyushu (20.0%, 20/100) than in Hokkaido (9.3%, 23/248). In Honshu, the highest rate (56.0%, 28/50) was observed in Utsunomiya. Analysis of the positive rate in different age groups showed that the 2-5 years age-group had the highest prevalence of chlamydia...
Serological titers of equine monocytic ehrlichiosis associated with gastro-intestinal disorders and serological follow-up on two endemic farms.
Veterinary microbiology    April 1, 1993   Volume 34, Issue 4 345-353 doi: 10.1016/0378-1135(93)90059-g
Farrar WP, Bech-Nielsen S, Gordon JC, Reed SM, Pretzman CI, Kohn CW.The purpose of this work was to study the association of positive serological titers to Ehrlichia risticii, the causative agent of equine monocytic ehrlichiosis (EME) with gastro-intestinal disorders in hospitalized horses referred to The Ohio State University College of Veterinary Medicine Teaching Hospital (OSU VMTH). In addition, serological titers for E. risticii were monitored in two horse populations with endemic EME for one season to monitor temporal changes in titers. A statistically significant difference was found between the proportion of the total hospitalized horse population pres...
Culture confirmation of the carrier status of Babesia caballi-infected horses.
Journal of clinical microbiology    March 1, 1993   Volume 31, Issue 3 698-701 doi: 10.1128/jcm.31.3.698-701.1993
Holman PJ, Frerichs WM, Chieves L, Wagner GG.Culture of horse blood for Babesia caballi identified four carrier horses among nine previously infected horses. Three of the carriers had no detectable parasitemias on stained blood smears, and sera from two carrier horses were complement fixation test negative. Three cultures were continuously cultivated. Cryopreserved fourth-passage B. caballi was successfully reestablished in vitro. Blood from a 10th horse previously subinoculated with blood from a suspected carrier was cultured, with negative results.
Report of the Thirteenth Meeting of the OIE Ad hoc Group on Non Tsetse-Transmitted Animal Trypanosomoses.
Revue scientifique et technique (International Office of Epizootics)    March 1, 1993   Volume 12, Issue 1 237-272 
Touratier L.There is increasing interest in many parts of the world in trypanosomoses other than those transmitted by tsetse flies, as shown by numerous research projects and field studies. The refinement of techniques for studying the behaviour of trypanosomes (techniques of molecular biology) in axenic culture or in the parasitised host has led to progress in diagnosis and immunology, and a rational approach to chemotherapy and chemoprophylaxis of these infections. Field trials of enzyme-linked immunosorbent assays in Africa, Asia and South America have shown that these tests may now be regarded as reli...
Equine influenza in Hong Kong.
The Veterinary record    February 6, 1993   Volume 132, Issue 6 144 doi: 10.1136/vr.132.6.144-a
Watkins KL, Shortridge KF, Powell DG.No abstract available
Trypanosomiasis of domestic animals in China.
Parasitology today (Personal ed.)    February 1, 1993   Volume 9, Issue 2 41-45 doi: 10.1016/0169-4758(93)90029-f
Lun ZR, Fang Y, Wang CJ, Brun R.Trypanosomiasis caused by Trypanosoma evansi (surra) is a problem of great economic importance in livestock in China because it affects important working animals: buffaloes in the south and east, and horses and cattle in the north and west. In addition, buffaloes are an important source of meat and leather for the Chinese population. In the north and west, T. evansi is found mainly in camels, whereas in the east, the south and the southwest, it is primarily buffaloes, cattle and horses that are affected by this parasitic flagellate. Although trypanosomiasis is one of the most important parasit...
Current status of the diagnosis and control of African horse sickness.
Veterinary research    January 1, 1993   Volume 24, Issue 2 189-197 
Rodriguez M, Hooghuis H, Castaño M.African horse sickness (AHS) is an infectious, non-contagious, highly fatal viral disease of Equidae, transmitted by arthropod vectors of the genus Culicoides, and endemic in Africa south and east of the Sahara. The disease is caused by a virus of the Reoviridae family, genus Orbivirus, and 9 serotypes have been recognized. Recent outbreaks of AHS in the Iberian peninsula and Northern Africa emphasize the need for accurate diagnosis and rapid implementation of control measures. In this paper, the epizootiological factors, clinical signs and necropsy findings of AHS are discussed, and an update...
Did vaccinia virus come from a horse?
Equine veterinary journal    January 1, 1993   Volume 25, Issue 1 8-10 doi: 10.1111/j.2042-3306.1993.tb02892.x
Taylor CE.No abstract available
African horse sickness: transmission and epidemiology.
Veterinary research    January 1, 1993   Volume 24, Issue 2 199-212 
Mellor PS.African horse sickness (AHS) virus causes a non-contagious, infectious, arthropod-borne disease of equines and occasionally of dogs. The virus is widely distributed across sub-Saharan African where it is transmitted between susceptible vertebrate hosts by the vectors. These are usually considered to be species of Culicoides biting midges but mosquitoes and/or ticks may also be involved to a greater or lesser extent. Periodically the virus makes excursions beyond its sub-Saharan enzootic zones but until recently does not appear to have been able to maintain itself outside these areas for more t...
WHO/OIE meeting: consultation on newly emerging strains of equine influenza. 18-19 May 1992, Animal Health Trust, Newmarket, Suffolk, UK.
Vaccine    January 1, 1993   Volume 11, Issue 11 1172-1175 doi: 10.1016/0264-410x(93)90092-c
Mumford J, Wood J.No abstract available
Recommendations for African horse sickness vaccines for use in nonendemic areas.
Revue d\'elevage et de medecine veterinaire des pays tropicaux    January 1, 1993   Volume 46, Issue 1-2 77-81 
House JA.African horse sickness (AHS), which causes mortality up to 95%, is caused by orbiviruses and is transmitted by Culicoides. The goal of a control and eradication program for AHS is to prevent the spread of the virus via the biological vector. Control measures include slaughter of infected animals, housing of suspected infected animals in insect-proof stalls, and vaccination. Vaccination has played a key role in eradication when AHS occurred outside of Africa. Both modified live vaccines (MLV) and inactivated vaccines have been used to control AHS. An acceptable vaccine should be: safe, efficaci...
Efficacy of equine influenza vaccines for protection against A/Equine/Jilin/89 (H3N8)–a new equine influenza virus.
Vaccine    January 1, 1993   Volume 11, Issue 10 987-993 doi: 10.1016/0264-410x(93)90122-e
Webster RG, Thomas TL.A new H3N8 equine influenza virus [A/Equine/Jilin/1/89 (Eq/Jilin)] appeared in Northeastern China in 1989 and caused high mortality in horses; the available evidence indicates that it has not yet spread outside this region of the world. Serological analysis with postinfection ferret sera in haemagglutination inhibition (HI) tests confirmed that Eq/Jilin is antigenically distinct from H3N8 equine influenza viruses isolated between 1963 and 1991 and also showed that a current equine influenza virus [A/Equine/Alaska/1/91 (H3N8)] had undergone antigenic drift. In the present study we determine if ...
Eastern equine encephalitis virus in Ohio during 1991.
Journal of medical entomology    January 1, 1993   Volume 30, Issue 1 217-222 doi: 10.1093/jmedent/30.1.217
Nasci RS, Berry RL, Restifo RA, Parsons MA, Smith GC, Martin DA.During August and September of 1991, an epizootic of eastern equine encephalitis (EEE) virus in horses occurred in Wayne and Holmes countries, OH. This was the first recorded epizootic of EEE virus in the state. Twelve horses were confirmed positive for EEE virus through virus isolation or seroconversion, and seven additional horses with compatible symptoms were in close spatial and temporal proximity to the confirmed cases and were presumed to have died from EEE virus. The outbreak was centered around the Killbuck Wildlife Area, a 2,147-ha tract maintained by the state, half of which consists...
Molecular evidence for the origin of the widespread Venezuelan equine encephalitis epizootic of 1969 to 1972.
The Journal of general virology    December 1, 1992   Volume 73 ( Pt 12) 3301-3305 doi: 10.1099/0022-1317-73-12-3301
Kinney RM, Tsuchiya KR, Sneider JM, Trent DW.Venezuelan equine encephalitis (VEE) virus is a mosquito-borne pathogen that has caused encephalitis in equine species and humans during sporadic outbreaks in the western hemisphere. The last, and most widespread, VEE outbreak occurred in South America, Central America, Mexico and the U.S.A. (Texas) during 1969 to 1972. We have cloned and sequenced the genome of a virulent VEE subtype I-AB virus, strain 71-180, isolated in Texas in 1971. Thirty-four nucleotide differences were detected between the genome of 71-180 virus and that of the subtype I-AB Trinidad donkey (TRD) virus isolated during t...
Halicephalobus deletrix infection in a horse in Scotland.
The Veterinary record    November 21, 1992   Volume 131, Issue 21 495 doi: 10.1136/vr.131.21.495-a
Angus KW, Roberts L, Archibald DR, Fraser DG, Jackson F, Gibbons LM.No abstract available
African horse sickness in Spain.
Veterinary microbiology    November 1, 1992   Volume 33, Issue 1-4 129-142 doi: 10.1016/0378-1135(92)90041-q
Rodriguez M, Hooghuis H, Castaño M.The aetiology, pathogenesis and epizootiology of African horse sickness (AHS) are reviewed with special reference to recent outbreaks in the Iberian peninsula. AHS is a highly fatal insect-borne viral disease of Equidae. It is caused by an Orbivirus (family Reoviridae) and nine serotypes are recognised. Outbreaks occurred in central Spain in 1987 and in southern regions of the Iberian peninsula in 1988, 1989 and 1990. All were associated with serotype 4 of the virus, whereas other occurrences of AHS outside Africa have all been caused by serotype 9. The clinical picture in the outbreaks was ma...
History and philosophy of the medical examination of horses for purchase.
The Veterinary clinics of North America. Equine practice    August 1, 1992   Volume 8, Issue 2 257-267 doi: 10.1016/s0749-0739(17)30449-2
Beeman GM, Soule SG, Swanson TD.This article reviews the history of the medical evaluation of the horse for purchase and the gradual development of definitions and guidelines for performing such an examination. The philosophy of pre-purchase examinations, including potential conflicts of interest, recording methods, and procedures, is discussed. The AAEP guidelines for reporting purchase evaluations are also included.
Vectors of African horse sickness in the Cape Verde Islands.
The Veterinary record    July 18, 1992   Volume 131, Issue 3 56 doi: 10.1136/vr.131.3.56
Boorman J, van Harten A.No abstract available
Equine fatigue syndrome.
The Veterinary record    July 18, 1992   Volume 131, Issue 3 58-59 doi: 10.1136/vr.131.3.58-a
Ricketts SW, Young A, Mowbray JF, Yousef GE, Wood J.No abstract available
Pneumocystis carinii infection in foals in the UK.
The Veterinary record    July 4, 1992   Volume 131, Issue 1 19 doi: 10.1136/vr.131.1.19-a
Whitwell K.No abstract available
Haematology of experimental babesiosis and ehrlichiosis in steroid immunosuppressed horses.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    July 1, 1992   Volume 39, Issue 5 345-352 doi: 10.1111/j.1439-0450.1992.tb01179.x
Oladosu LA, Olufemi BE.An investigation was carried out to study the haematology of steroid immunosuppressed horses experimentally infected with Babesia equi and Ehrlichia equi, separately or simultaneously. Horses infected with both pathogens showed less marked changes in their haematology than those inoculated with either pathogen separately. This appeared to result from early elimination of the more pathogenic Babesia as Ehrlichia spread through the granulocytes. The apparent suppression of Babesia by Ehrlichia is of field clinical importance and merits further investigation for its apparent useful potentials in ...
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