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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.
Detection of cold-adapted vaccine-strain influenza virus using two commercial assays.
Equine veterinary journal    July 16, 2002   Volume 34, Issue 4 400-404 doi: 10.2746/042516402776249218
Adam EN, Morley PS, Chmielewski KE, Carman J, Gonzales G.Because of the contagious nature of influenza virus it is necessary to identify infected individuals after the virus is introduced into a population. The aim of this study was to characterise influenza virus detection with commercially available assays after intranasal vaccinating horses with cold-adapted influenza virus. Seven horses were vaccinated and placed with 3 unvaccinated horses. Nasal secretion samples were evaluated using 2 antigen detection assays. All 10 horses were positive in the Flu OIA assay during the study period, but only one horse was positive on one sample using the Direc...
An analysis of human pathogens found in horse/mule manure along the John Muir Trail in Kings Canyon and Sequoia and Yosemite National Parks.
Wilderness & environmental medicine    July 3, 2002   Volume 13, Issue 2 113-118 doi: 10.1580/1080-6032(2002)013[0113:aaohpf]2.0.co;2
Derlet RW, Carlson JR.To determine the prevalence of microorganisms that are potentially pathogenic for humans in horse/mule manure along the John Muir Trail (JMT). Methods: Random samples of horse/mule manure were collected along sections of the JMT in Yosemite, Kings Canyon, and Sequoia national parks (NP), as well as in portions of the Pacific Crest Trail (PCT) and selected JMT/PCT access trails. Convenience samples of wild animal scat found within I mile of trails were also collected. The fresh specimens were individually preserved both in 0.9% saline and polyvinyl alcohol (PVA)-containing tubes and stored at 4...
The role of birds in the ecology of West Nile virus in Europe and Africa.
Current topics in microbiology and immunology    June 27, 2002   Volume 267 309-322 doi: 10.1007/978-3-642-59403-8_15
Malkinson M, Banet C.Surveys on wild birds conducted during the last two decades in Europe, notably Poland and the Czech Republic, to determine their infection rate with WN virus have revealed endemic foci of infection. Some species of seropositive birds were nonmigrators while others were hatchlings of migrating species. Persistently infected avian reservoirs are potential sources of viruses for mosquitoes that multiply in the temperate European zone in hot, wet summers. In the past, evidence for geographical circulation of WN viruses was based on antigenic analysis of strains from different countries while more ...
West Nile virus in livestock and wildlife.
Current topics in microbiology and immunology    June 27, 2002   Volume 267 271-308 doi: 10.1007/978-3-642-59403-8_14
McLean RG, Ubico SR, Bourne D, Komar N.WN virus is one of the most ubiquitous arboviruses occurring over a broad geographical range and in a wide diversity of vertebrate host and vector species. The virus appears to be maintained in endemic foci on the African continent and is transported annually to temperate climates to the north in Europe and to the south in South Africa. Reports of clinical disease due to natural WN virus infection in wild or domestic animals were much less common than reports of infection (virus isolation or antibody detection). Until recently, records of morbidity and mortality in wild birds were confined to ...
Characterization of Aqx and its operon: the hemolytic RTX determinant of Actinobacillus equuli.
Veterinary microbiology    May 30, 2002   Volume 87, Issue 2 159-174 doi: 10.1016/s0378-1135(02)00048-2
Berthoud H, Frey J, Kuhnert P.Actinobacillus equuli, a member of the family Pasteurellaceae is the etiologic agent of a frequently lethal septicemia in neonatal foals as well as other more chronic diseases like arthritis, pleuritis, pneumonia or peritonitis. It may also be isolated from the oral cavity of healthy horses. Hemolytic isolates of A. equuli are known but so far no virulence determinants have been described for this bacterial species. By screening hemolytic A. equuli strains with specific gene probes, a hemolysin, designated Aqx (A. equuli RTX (repeats in the structural toxin)) was identified. This hemolysin was...
Transmission patterns of African horse sickness and equine encephalosis viruses in South African donkeys.
Epidemiology and infection    May 11, 2002   Volume 128, Issue 2 265-275 doi: 10.1017/s0950268801006471
Lord CC, Venter GJ, Mellor PS, Paweska JT, Woolhouse ME.African horse sickness (AHS) and equine encephalosis (EE) viruses are endemic to southern Africa. AHS virus causes severe epidemics when introduced to naive equine populations, resulting in severe restrictions on the movement of equines between AHS-positive and negative countries. Recent zoning of South Africa has created an AHS-free zone to facilitate equine movement, but the transmission dynamics of these viruses are not fully understood. Here, we present further analyses of serosurveys of donkeys in South Africa conducted in 1983-5 and in 1993-5. Age-prevalence data are used to derive estim...
Experimental infection of horses with West Nile virus.
Emerging infectious diseases    April 25, 2002   Volume 8, Issue 4 380-386 doi: 10.3201/eid0804.010239
Bunning ML, Bowen RA, Cropp CB, Sullivan KG, Davis BS, Komar N, Godsey MS, Baker D, Hettler DL, Holmes DA, Biggerstaff BJ, Mitchell CJ.A total of 12 horses of different breeds and ages were infected with West Nile virus (WNV) via the bites of infected Aedes albopictus mosquitoes. Half the horses were infected with a viral isolate from the brain of a horse (BC787), and half were infected with an isolate from crow brain (NY99-6625); both were NY99 isolates. Postinfection, uninfected female Ae. albopictus fed on eight of the infected horses. In the first trial, Nt antibody titers reached >1:320, 1:20, 1:160, and 1:80 for horses 1 to 4, respectively. In the second trial, the seven horses with subclinical infections developed Nt a...
Genetic analysis of Group A rotaviruses: evidence for interspecies transmission of rotavirus genes.
Virus genes    April 4, 2002   Volume 24, Issue 1 11-20 doi: 10.1023/a:1014073618253
Palombo EA.Rotaviruses are the major cause of severe gastroenteritis in young children and animals. The rotavirus genome is composed of eleven segments of double-stranded RNA and can undergo genetic reassortment during mixed infections, leading to progeny viruses with novel or atypical phenotypes. There are numerous descriptions of rotavirus strains isolated from human and animals that share genetic and antigenic features of viruses from heterologous species. In many cases, genetic analysis by hybridization has clearly demonstrated the genetic relatedness of gene segments to those from viruses isolated f...
[A case of zoonosis associated with Streptococcus equi ssp. zooepidemicus].
The Canadian veterinary journal = La revue veterinaire canadienne    February 15, 2002   Volume 43, Issue 2 123-124 
Boucher C, Higgins R, Nadeau M, Vincent C.A sexagenarian couple operating a dairy farm, where there were also many horses, suffered a severe respiratory infection associated with the bacterium Streptococcus equi ssp. zooepidemicus. The investigation revealed that the source of infection was due to contacts with a horse having an infected wound from which we isolated this zoonotic agent. A sexagenarian couple operating a dairy farm, where there were also many horses, suffered a severe respiratory infection associated with the bacterium Streptococcus equi ssp. zooepidemicus. The investigation revealed that the source of infection was du...
[Smallpox and smallpox virus–200 years since the first vaccination in Norway].
Tidsskrift for den Norske laegeforening : tidsskrift for praktisk medicin, ny raekke    January 26, 2002   Volume 121, Issue 30 3546-3550 
Tryland M.In December 1801, the first vaccination against smallpox in Norway took place. Vaccine material came from Denmark, England, Ireland, and other countries; it was also obtained from a few local cowpox cases. What mattered was the effect, not the origin. Several reports indicate that variola virus itself, the cause of smallpox, was also used for human vaccination after passages through cows and horses. A vaccine institute for production of vaccine in calves was established in Kristiania in 1891. Cowpox was once a rare disease in cattle, but a total of 70,985 bovine cases were reported between 188...
Experimental infection of horses with West Nile virus and their potential to infect mosquitoes and serve as amplifying hosts.
Annals of the New York Academy of Sciences    January 19, 2002   Volume 951 338-339 doi: 10.1111/j.1749-6632.2001.tb02712.x
Bunning ML, Bowen RA, Cropp B, Sullivan K, Davis B, Komar N, Godsey M, Baker D, Hettler D, Holmes D, Mitchell CJ.No abstract available
Epidemiology for the equine practitioner.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 419-432 doi: 10.1016/s0749-0739(17)30042-1
Smith RD.In this article, I have discussed the principles and methods of outbreak investigation, reinforcing important concepts with examples from the veterinary literature. The approach presented is applicable to outbreaks caused by any agent whether it is infectious versus noninfectious or contagious versus noncontagious. The solutions vary. The experience of others presented with similar situations may be especially helpful. Because of their nature, outbreaks are difficult to prepare for. When faced with a potential outbreak, the best strategy is to approach it scientifically, systematically, and wi...
Seasonal transmission of gastrointestinal parasites of equids in southern Louisiana.
The Journal of parasitology    January 10, 2002   Volume 87, Issue 6 1371-1378 doi: 10.1645/0022-3395(2001)087[1371:STOGPO]2.0.CO;2
Chapman MR, French DD, Klei TR.Parasite-naive pony foals were used as sentinels to monitor transmission of gastrointestinal parasites of equids in Louisiana during 4 seasons of the year. Two annual periods were studied, 1988-1989 and 1992-1993. Two or 3 foals each season were turned out to graze a contaminated pasture along with resident parasitized mares and their foals. After a grazing period of 8 wk, sentinel ponies were held in a parasite-free box stall for a period of 6 wk to allow parasites to develop, thus enhancing the evaluation of hypobiotic stages. Following this holding period, necropsies were performed for comp...
The role of international transport of equine semen on disease transmission.
Animal reproduction science    December 18, 2001   Volume 68, Issue 3-4 229-237 doi: 10.1016/s0378-4320(01)00159-2
Metcalf ES.Despite the numerous benefits of having the capability to transport semen internationally, there are serious potential ramifications if that semen is contaminated with a communicable disease. Bacteria: Many commensal bacteria colonize the exterior of the stallion penis and are not regarded as pathogenic. They may be cultured from an ejaculate. Alterations of the normal bacterial flora on the exterior genitalia may cause the growth of opportunistic bacteria such as Klebsiella pneumonia, Pseudomonas aeruginosa, Streptococcus zooepidemicus, which, if inseminated, may cause infertility in suscepti...
Grass sickness–the same old suspects but still no convictions!
Equine veterinary journal    November 27, 2001   Volume 33, Issue 6 540-542 doi: 10.2746/042516401776563454
Collier DS, Collier SO, Rossdale PD.No abstract available
Seasonality and relative abundance of Tabanidae (Diptera) captured on horses in the Pantanal, Brazil.
Memorias do Instituto Oswaldo Cruz    October 31, 2001   Volume 96, Issue 7 917-923 doi: 10.1590/s0074-02762001000700006
Barros AT.Once a month, from June 1992 to May 1993, collections of tabanids on horse were conducted in the Nhecolândia, Pantanal State of Mato Grosso do Sul, Brazil. Tabanid catches using hand nets were conducted from sunrise to sunset at grassland and cerradão (dense savanna) habitats. A total of 3,442 tabanids from 21 species,12 genera, and 3 subfamilies were collected. Although species abundance varied seasonally depending on habitat, no habitat specificity was observed for the most abundant species. In the grassland, 1,625 (47.2%) tabanids belonging to 19 species were collected, while 1,817 (52.8%...
West Nile encephalitis: an emerging disease in the United States.
Clinical infectious diseases : an official publication of the Infectious Diseases Society of America    October 5, 2001   Volume 33, Issue 10 1713-1719 doi: 10.1086/322700
Marfin AA, Gubler DJ.In 1999, an epidemic of West Nile virus (WNV) encephalitis occurred in New York City (NYC) and 2 surrounding New York counties. Simultaneously, an epizootic among American crows and other bird species occurred in 4 states. Indigenous transmission of WNV had never been documented in the western hemisphere until this epidemic. In 2000, the epizootic expanded to 12 states and the District of Columbia, and the epidemic continued in NYC, 5 New Jersey counties, and 1 Connecticut county. In addition to these outbreaks, several large epidemics of WNV have occurred in other regions of the world where t...
West Nile outbreak in horses in southern France, 2000: the return after 35 years.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 692-696 doi: 10.3201/eid0704.010417
Murgue B, Murri S, Zientara S, Durand B, Durand JP, Zeller H.On September 6, 2000, two cases of equine encephalitis caused by West Nile (WN) virus were reported in southern France (Hérault Province), near Camargue National Park, where a WN outbreak occurred in 1962. Through November 30, 76 cases were laboratory confirmed among 131 equines with neurologic disorders. The last confirmed case was on November 3, 2000. All but three cases were located in a region nicknamed "la petite Camargue," which has several large marshes, numerous colonies of migratory and resident birds, and large mosquito populations. No human case has been confirmed among clinically ...
Isolation of single-chain antibody fragments against Venezuelan equine encephalomyelitis virus from two different immune sources.
Viral immunology    September 27, 2001   Volume 14, Issue 3 263-273 doi: 10.1089/088282401753266774
Duggan JM, Coates DM, Ulaeto DO.Venezuelan equine encephalomyelitis (VEE) virus is an important human and veterinary pathogen of Central and South America. The virus can cause widespread epidemics, affecting hundreds of thousands of horses, and thousands of humans. Detection of the virus early in infection and in mosquito populations may allow epidemics to be predicted such that suitable prophylaxis, such as vaccination, can be used to reduce disease severity and transmission. The sensitivity and specificity of current immunoassays, based on conventional monoclonal and polyclonal antibodies, needs to be improved for the diag...
Listeria monocytogenes septicaemia in foals.
Equine veterinary journal    September 18, 2001   Volume 33, Issue 5 519-522 doi: 10.2746/042516401776254727
Jose-Cunilleras E, Hinchcliff KW.Listeria monocytogenes rarely causes disease in horses (Emerson and Jarvis 1968; McCain and Robinson 1976; Clark et al. 1978; Welsh 1983; Wallace and Hathcock 1995; Larochelle et al. 1999; Wilkins et al. 2000). It is described as a cause of abortion, septicaemia in equine neonates, mature horses and ponies and neurological disease in a foal (Emerson and Jarvis 1968; McCain and Robinson 1976; Clark et al. 1978; Welsh 1983; Wallace and Hathcock 1995; Larochelle et al. 1999; Wilkins et al. 2000). Most cases of listeriosis in other species arise from the ingestion of contaminated food and...
Traceability of Equidae: a population in motion.
Revue scientifique et technique (International Office of Epizootics)    September 11, 2001   Volume 20, Issue 2 500-509 doi: 10.20506/rst.20.2.1292
Sluyter FJ.The accelerated speed of animal transport and the existence of complex and intricate movement systems have created an equine population in motion. This ease in the international movement of horses has an impact on the risk of introduction or spread of disease, specifically in relation to competition horses. Facilitating trade in Equidae, whilst simultaneously safeguarding the health status of the receiving country is a major challenge. To date, the international regulatory bodies are prepared to consider movement of registered horses as a relatively 'low risk' occurrence and thereby apply the ...
Transmission of opportunistic pathogens in a veterinary teaching hospital.
Veterinary microbiology    August 17, 2001   Volume 82, Issue 4 347-359 doi: 10.1016/s0378-1135(01)00396-0
Boerlin P, Eugster S, Gaschen F, Straub R, Schawalder P.Acinetobacter baumannii, Enterococcus faecalis, Enterococcus faecium, and Staphylococcus intermedius isolates from infected surgical wounds and other types of infections in a veterinary teaching hospital were typed by pulsed field gel electrophoresis. A first cluster of infections with a multiresistant A. baumannii strain was observed in dogs and cats in 1998-1999. This strain disappeared after cleaning and disinfection of the companion animals intensive care unit. It was followed in 2000 by a second multiresistant strain, which caused another cluster of infections and was also transmitted to ...
Contagious equine metritis in Turkey: first isolation of Taylorella equigenitalis from mares.
The Veterinary record    August 16, 2001   Volume 149, Issue 4 120-122 doi: 10.1136/vr.149.4.120
Ozgur NY, Ikiz S, Carioglu B, Kilicarslan R, Yilmaz H, Akay O, Ilgaz A.No abstract available
Virulence and viremia characteristics of 1992 epizootic subtype IC Venezuelan equine encephalitis viruses and closely related enzootic subtype ID strains.
The American journal of tropical medicine and hygiene    August 16, 2001   Volume 65, Issue 1 64-69 doi: 10.4269/ajtmh.2001.65.64
Wang E, Bowen RA, Medina G, Powers AM, Kang W, Chandler LM, Shope RE, Weaver SC.Following a 19-year hiatus, Venezuelan equine encephalitis (VEE) reemerged in western Venezuela in December 1992. This outbreak is important in understanding VEE emergence because phylogenetic studies imply that sympatric, enzootic, subtype ID VEE viruses mutated to generate the epizootic/epidemic. Although the 1992-1993 strains belong to subtype IC, a serotype implicated in extensive outbreaks during the 1960s and in 1995, relatively small numbers of human and equine cases occurred in 1992-1993. We, therefore, evaluated the pathogenicity of these Venezuelan enzootic ID and epizootic IC viruse...
Evidence for transmission of Halicephalobus deletrix (H gingivalis) from dam to foal.
Journal of veterinary internal medicine    July 27, 2001   Volume 15, Issue 4 412-417 
Wilkins PA, Wacholder S, Nolan TJ, Bolin DC, Hunt P, Bernard W, Acland H, Del Piero F.No abstract available
An equine mystery in the bluegrass. An epidemic is killing Kentucky’s finest foals.
U.S. news & world report    June 1, 2001   Volume 130, Issue 21 42-43 
Hayden T.No abstract available
Streptococcal meningitis resulting from contact with an infected horse.
Journal of clinical microbiology    May 29, 2001   Volume 39, Issue 6 2358-2359 doi: 10.1128/JCM.39.6.2358-2359.2001
Downar J, Willey BM, Sutherland JW, Mathew K, Low DE.We report a case of group C streptococcal meningitis in a woman with a history of close animal contact as well as head trauma as a result of a kick by a horse. Blood and cerebrospinal fluid cultures grew Streptococcus equi subsp. zooepidemicus, as did a throat culture taken from the colt that had kicked her 2 weeks prior to admission.
Transmission of endoparasites in horse foals born on the same pasture on a farm in central Kentucky (1996-1999).
Veterinary parasitology    May 19, 2001   Volume 97, Issue 2 113-121 doi: 10.1016/s0304-4017(01)00393-4
Lyons ET, Tolliver SC, Collins SS, Drudge JH.Research carried out during the last 4 years (1996-1999) of an 11-year study of the prevalence of internal parasites naturally transmitted to horse foals born on the same pasture on a farm in central Kentucky is presented here. Horses in this herd were not treated with any antiparasitic compound for over 20 years except for a replacement stallion in 1994. A total of 22 species, including 12 species of small strongyles, were recovered in the 4-year period. Transmission patterns of all species (n=35) of endoparasites recovered are compared for the 11-year study. Some of the changes were an incre...
The West Nile virus: its recent emergence in North America.
Microbes and infection    May 19, 2001   Volume 3, Issue 3 223-229 doi: 10.1016/s1286-4579(01)01374-0
Garmendia AE, Van Kruiningen HJ, French RA.West Nile fever emerged in New York in the summer of 1999 when seven people, several horses and thousands of wild birds died. It was soon established that the human disease and the mortality of birds were related. Continued surveillance detected West Nile virus in mosquitoes, birds, horses, small mammals, bats and humans, and has shown its spread to several northeastern states. These events confirm the establishment of West Nile virus endemically in the United States.
A long-term study of 277 cases of equine sinonasal disease. Part 2: treatments and results of treatments.
Equine veterinary journal    May 16, 2001   Volume 33, Issue 3 283-289 doi: 10.2746/042516401776249787
Tremaine WH, Dixon PM.The treatments of 277 horses with equine sinonasal disease (1984-1996), described by Tremaine and Dixon (2001), are reported here. Long-term (median duration 24 months) outcomes of treatment of the more common disorders were good, with 92% of horses with sinonasal mycosis, 84% with primary sinusitis, 82% with sinus cysts, 78% with dental sinusitis and 75% with sinonasal trauma reported to have complete remission of clinical signs. However, only 33% of horses with progressive ethmoidal haematoma (PEH) and 12% with sinonasal neoplasia reported long term remission of clinical signs.
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