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Topic:Disease Transmission

Disease transmission in horses refers to the spread of infectious agents such as bacteria, viruses, fungi, and parasites among equine populations. These pathogens can be transmitted through various routes, including direct contact, vector-borne transmission, or environmental exposure. Factors influencing disease transmission include horse density, management practices, and biosecurity measures. Understanding the mechanisms and conditions that facilitate the spread of diseases is essential for developing effective prevention and control strategies. This page compiles peer-reviewed research studies and scholarly articles that investigate the modes of transmission, risk factors, and management practices related to infectious diseases in horses.
Epidemic Venezuelan equine encephalitis in La Guajira, Colombia, 1995.
The Journal of infectious diseases    April 1, 1997   Volume 175, Issue 4 828-832 doi: 10.1086/513978
Rivas F, Diaz LA, Cardenas VM, Daza E, Bruzon L, Alcala A, De la Hoz O, Caceres FM, Aristizabal G, Martinez JW, Revelo D, De la Hoz F, Boshell J....In 1995, the first Venezuelan equine encephalitis (VEE) outbreak in Colombia in 22 years caused an estimated 75,000 human cases, 3000 with neurologic complications and 300 fatal, in La Guajira State. Of the state's estimated 50,000 equines, 8% may have died. An epizootic IC virus, probably introduced from Venezuela, was rapidly amplified among unvaccinated equines. Record high rainfall, producing high densities of vector Aedes taeniorhynchus, led to extensive epidemic transmission (30% attack rate) in the four affected municipalities. Native Wayuu Indians, constituting 24% of the state's popul...
Swabbing protocols in screening for contagious equine metritis.
The Veterinary record    March 15, 1997   Volume 140, Issue 11 268-271 
Watson ED.Outbreaks of contagious equine metritis in Britain during 1996 emphasised the importance of preventing the disease through full and widespread implementation of the Horserace Betting Levy Board's code of practice. The provision of satisfactory samples for testing represents an integral part of applying the code. Here, in an article commissioned by the British Equine Veterinary Association, Dr Elaine Watson describes the techniques involved.
Equine epidemiology: Horserace Betting Levy Board workshop. London, 24 October 1996.
Equine veterinary journal    March 1, 1997   Volume 29, Issue 2 92-97 
No abstract available
Case report: field-acquired subclinical Babesia equi infection confirmed by in vitro culture.
Journal of clinical microbiology    February 1, 1997   Volume 35, Issue 2 474-476 doi: 10.1128/jcm.35.2.474-476.1997
Holman PJ, Hietala SK, Kayashima LR, Olson D, Waghela SD, Wagner GG.A horse with no prior clinical history of equine piroplasmosis tested negative for Babesia caballi and Babesia equi in the complement fixation test before importation into the United States from France. After 5 years in residence in the United States, the animal tested serologically positive for B. equi by the complement fixation test, the immunofluorescent antibody test, and Western blot analysis. The carrier status of the horse was confirmed by culture of B. equi parasites. In vitro culture offers an efficient and comparatively inexpensive method to determine the carrier status of horses sus...
[An epizootiologic study of an outbreak of equine influenza in the Czech Republic in the fall of 1995].
Veterinarni medicina    February 1, 1997   Volume 42, Issue 2 39-42 
Lány P, Pospísil Z, Zendulková D, Cíhal P, Jahn P.A mild outbreak of acute respiratory infection was reported in racing horses in the fall of 1995. Four studs were investigated for the sources and routes of infection. In five horses from two herds, virus isolates were obtained which, in preliminary typing experiments, were identified as the influenza A/equi 2 virus. The presence of this illness in all the examined herds was confirmed by a rise in specific antibody titres. The affected animals included both older vaccinated horses and young horses not yet vaccinated. Epidemiological studies suggested that the spread of infection occurred in si...
Naturally occurring persistent and asymptomatic infection of the guttural pouches of horses with Streptococcus equi.
The Veterinary record    January 25, 1997   Volume 140, Issue 4 84-90 doi: 10.1136/vr.140.4.84
Newton JR, Wood JL, Dunn KA, DeBrauwere MN, Chanter N.During an outbreak of strangles on a farm with approximately 1500 horses, the spread of Streptococcus equi infection was monitored by repeated nasopharyngeal swabbing and culture. In order to control the infection and prevent new introductions of strangles on to the premises, a system of quarantine and swabbing of cases and all incoming animals was instituted. Long-term carriage of the organism was detected in four clinically healthy convalescent animals, and in two of 350 new ponies; it persisted for between seven and 39 months, but it was detected only intermittently by the culture of swabs ...
[Equine arteritis virus: clinical symptoms and prevention].
Tijdschrift voor diergeneeskunde    January 1, 1997   Volume 122, Issue 1 2-7 
Glaser AL, de Vries AA, Rottier PJ, Horzinek MC, Colenbrander B.Sero-epidemiological surveys have revealed that equine arteritis virus (EAV) is prevalent in most European countries. The virus causes sporadic cases of respiratory disease and abortion in horses, the incidence of which has increased in recent years. Mares and geldings eliminate virus after acute infection, but 30% to 60% of stallions become persistently infected. In these animals, EAV is maintained within the reproductive tract and is shed continuously in the semen. Persistent infection with EAV in stallions has no negative consequences for fertility but mares inseminated with virus-contamina...
Failure of passive transfer in foals: incidence and outcome on four studs in New South Wales.
Australian veterinary journal    January 1, 1997   Volume 75, Issue 1 56-59 doi: 10.1111/j.1751-0813.1997.tb13832.x
Tyler-McGowan CM, Hodgson JL, Hodgson DR.To determine the regional incidence and effectiveness of treatment of failure of passive transfer (FPT) in foals. Methods: A study of disease incidence. Methods: Eighty-eight foals and 57 mares from four studs in the practice area of the Rural Veterinary Centre were tested. Methods: Foals were tested for their serum IgG and total serum protein (TSP) concentration within the first 72 hours of life. Colostrum was collected from mares and specific gravity determined. FPT and partial failure of passive transfer (PFPT) of immunoglobulins was diagnosed when serum IgG concentrations were < 4 g/L and ...
[Postscript ‘endocarditis in foals].
Tijdschrift voor diergeneeskunde    December 1, 1996   Volume 121, Issue 23 682 
de Groot J, Sloet van Oldruitenborgh-Oosterbaan MM.No abstract available
Observations on the prevalence of trypanosomosis in small ruminants, equines and cattle, in relation to tsetse challenge, in The Gambia.
Veterinary parasitology    November 1, 1996   Volume 66, Issue 1-2 1-11 doi: 10.1016/s0304-4017(96)01003-5
Snow WF, Wacher TJ, Rawlings P.The prevalence of trypanosome infections in Djallonké sheep and West African Dwarf goats at different sites in The Gambia showed a significant, positive correlation with contemporary assessments of tsetse challenge. A similar correlation was observed in village N'Dama cattle which showed comparable prevalence values in the same areas. Trypanosome prevalences also tended to be higher in horses and donkeys in areas with high tsetse challenge compared with sites with relatively few flies. A ranking of the numbers of tsetse blood-meals from cattle, small ruminants and equines (1:0.06: > 0.03) ...
Equine infectious anemia in Alberta.
The Canadian veterinary journal = La revue veterinaire canadienne    October 1, 1996   Volume 37, Issue 10 583 
Darcel C.No abstract available
The retrospective diagnosis of a second outbreak of equine morbillivirus infection.
Australian veterinary journal    September 1, 1996   Volume 74, Issue 3 244-245 doi: 10.1111/j.1751-0813.1996.tb15414.x
Hooper PT, Gould AR, Russell GM, Kattenbelt JA, Mitchell G.No abstract available
Transmission of the South African asinine strain of equine arteritis virus (EAV) among horses and between donkeys and horses.
The Onderstepoort journal of veterinary research    September 1, 1996   Volume 63, Issue 3 189-196 
Paweska JT, Aitchison H, Chirnside ED, Barnard BJ.Lateral and sexual transmission of EAV among horses and lateral transmission between donkeys and horses were attempted by experimental infection with the South African asinine strain. Clinical, immunological and virological responses were evaluated. All intramuscularly inoculated horses developed very mild clinical signs, were viraemic, shed virus from nasopharynx, and seroconverted. Lateral infection was demonstrated in one in-contact mare. Reinfection of two stallions by intranasal instillation was shown by virus recovery from buffy-coat cultures. After nasal instillation of virus, one stall...
The evolving story of the equine morbillivirus.
Australian veterinary journal    September 1, 1996   Volume 74, Issue 3 214 doi: 10.1111/j.1751-0813.1996.tb15406.x
Murray PK.No abstract available
Equine arteritis virus: a review of clinical features and management aspects.
The veterinary quarterly    September 1, 1996   Volume 18, Issue 3 95-99 doi: 10.1080/01652176.1996.9694625
Glaser AL, de Vries AA, Rottier PJ, Horzinek MC, Colenbrander B.Sero-epidemiological surveys have revealed that equine arteritis virus (EAV) is prevalent in most European countries. The virus causes sporadic cases of respiratory disease and abortion in horses, the incidence of which has increased in recent years. Mares and geldings eliminate virus after acute infection, but 30% to 60% of stallions become persistently infected. In these animals, EAV is maintained within the reproductive tract and is shed continuously in the semen. Persistent infection with EAV in stallions has no negative consequences for fertility but mares inseminated with virus-contamina...
Re-emergence of epidemic Venezuelan equine encephalomyelitis in South America. VEE Study Group.
Lancet (London, England)    August 17, 1996   Volume 348, Issue 9025 436-440 doi: 10.1016/s0140-6736(96)02275-1
Weaver SC, Salas R, Rico-Hesse R, Ludwig GV, Oberste MS, Boshell J, Tesh RB.Venezuelan equine encephalomyelitis (VEE) virus has caused periodic epidemics among human beings and equines in Latin America from the 1920s to the early 1970s. The first major outbreak since 1973 occurred in Venezuela and Colombia during 1995, and involved an estimated 75,000 to 100,000 people. We report an epidemiological and virological investigation of this epidemic. Methods: Virus isolates were made in cell culture from human serum, human throat swabs, and brain tissue from aborted and stillborn human fetuses, as well as from horse brain tissue and pooled mosquito collections. Human sera ...
Salmonellosis in horses.
Journal of the American Veterinary Medical Association    August 1, 1996   Volume 209, Issue 3 558-560 
Murray MJ.No abstract available
Control of an outbreak of salmonellosis caused by drug-resistant Salmonella anatum in horses at a veterinary hospital and measures to prevent future infections.
Journal of the American Veterinary Medical Association    August 1, 1996   Volume 209, Issue 3 629-631 
Hartmann FA, Callan RJ, McGuirk SM, West SE.Salmonella anatum was isolated from horses treated at a private veterinary clinic or at a university veterinary medical teaching hospital. All isolates were resistant to most commonly used antibiotics. Because of the severity of disease resulting from outbreaks of infections with drug-resistant strains of S anatum, an epidemiologic investigation was conducted. Enteric bacteria, including S anatum, that were resistant to most antibiotics were isolated from the private veterinary clinic environment. Salmonella anatum was not isolated from the university teaching hospital environment. To prevent ...
Analysis of spatial and temporal clustering of horses with Salmonella krefeld in an intensive care unit of a veterinary hospital.
Journal of the American Veterinary Medical Association    August 1, 1996   Volume 209, Issue 3 626-628 
Paré J, Carpenter TE, Thurmond MC.To determine whether clustering existed in the spatial or temporal distribution of horses that shed Salmonella krefeld in their feces during hospitalization. Methods: Retrospective analysis of medical records. Methods: 219 horses housed in the intensive care unit of a veterinary medical teaching hospital from October 1991 through May 1992. Methods: Bacteriologic culturing of fecal samples was used to identify horses shedding S krefeld. For affected horses, the scan statistic was used to analyze temporal clustering, and Knox's method was used to analyze temporal-spatial clustering. Results: 20 ...
Leptospiral abortion in horses following a flooding incident.
Equine veterinary journal    July 1, 1996   Volume 28, Issue 4 327-330 doi: 10.1111/j.2042-3306.1996.tb03097.x
Kinde H, Hietala SK, Bolin CA, Dowe JT.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...
Stability of equine infectious anemia virus in Aedes aegypti (Diptera: Culicidae), Stomoxys calcitrans (Diptera:Muscidae), and Tabanus fuscicostatus (Diptera:Tabanidae) stored at -70 degrees C.
Journal of the American Mosquito Control Association    June 1, 1996   Volume 12, Issue 2 Pt 1 334-336 
Green BE, Foil LD, Hagius SD, Issel CJ.Equine infectious anemia virus (EIAV) was injected intrathoracically into Aedes aegypti, Stomoxys calcitrans, and Tabanus fuscicostatus, and fed to Ae. aegypti in suspensions of either artificial blood of Eagle's Minimum Essential Medium. Insects were stored at -70 degrees C for up to 9 months before testing for the presence of EIAV. The viral tissue culture titers detected from stored insects were similar to those from insects tested at time 0.
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...
Survey on the distribution of ticks of domestic animals in the eastern zone of Ethiopia.
Tropical animal health and production    May 1, 1996   Volume 28, Issue 2 145-146 
Tafesse B.No abstract available
Seasonal variation in the vector competence of Culex tarsalis (Diptera:Culicidae) from the Coachella Valley of California for western equine encephalomyelitis and St. Louis encephalitis viruses.
Journal of medical entomology    May 1, 1996   Volume 33, Issue 3 433-437 doi: 10.1093/jmedent/33.3.433
Reisen WK, Hardy JL, Presser SB, Chiles RE.The vector competence of Culex tarsalis Coquillett from the Coachella Valley of California for western equine encephalomyelitis (WEE) and St. Louis encephalitis (SLE) viruses was monitored monthly from February to November 1993. The concentration of WEE virus required to infect 50% of the females increased during summer coincidentally with ambient temperature and was highest during July. Transmission rates of WEE virus were high during March, low during May-June, and high again during July-September. Females expressed both mesenteronal escape and salivary gland barriers limiting WEE virus diss...
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...
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
Evaluation of travel and use as a risk factor for seropositivity to Ehrlichia risticii in horses of New York state.
American journal of veterinary research    March 1, 1996   Volume 57, Issue 3 272-277 
Atwill ER, Mohammed HO, Lopez JW.To determine whether mean annual frequency and destination of equine travel was associated with exposure to Ehrlichia risticii and whether these associations were modified by horses' place of residence. Methods: Cross-sectional study. Methods: 511 equine operations containing 2,587 horses were visited in New York state from a target population of 39,000 operations. Methods: Each horse was tested for serum antibodies against E risticii, using indirect fluorescent antibody. Information on the horse's travel history, farm's management practices, and surrounding ecology was obtained by personal in...
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...
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