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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.
Preliminary trial on the reproducibility of epizootic lymphangitis through experimental infection of two horses.
Veterinary journal (London, England : 1997)    August 25, 2005   Volume 172, Issue 3 553-555 doi: 10.1016/j.tvjl.2005.06.004
Ameni G.Epizootic lymphangitis (EL) was experimentally reproduced in four horses that had been purchased from an EL-free district. Two horses were injected with either 0.2 mL of the yeast form of Histoplasma capsulatum var. farciminosum (HCF) in pus (Horse 1), or 0.2 mL (ca. 20 mg) of a suspension in saline of the mycelial form (Horse 2), both into the pre-scapular and pre-femoral lymph nodes, with scarification of the skin of the left hind limb, conjunctiva of the right eye and the nasal membrane of the right nostril. The two other horses served as controls. Nodular lesions of EL appeared during the ...
Epidemic West Nile virus encephalomyelitis: a temperature-dependent, spatial model of disease dynamics.
Preventive veterinary medicine    August 22, 2005   Volume 71, Issue 3-4 253-264 doi: 10.1016/j.prevetmed.2005.07.008
Ward MP.Since first being detected in New York in 1999, West Nile virus (WNV) has spread throughout the United States and more than 20,000 cases of equine WNV encephalomyelitis have been reported. A spatial model of disease occurrence was developed, using data from an outbreak of serologically confirmed disease in an unvaccinated population of horses at 108 locations in northern Indiana between 3 August and 17 October 2002. Daily maximum temperature data were recorded at meteorological stations surrounding the study area. The distribution of the total number of degree-days elapsing between July 4 and ...
Ability of the vector tick Boophilus microplus to acquire and transmit Babesia equi following feeding on chronically infected horses with low-level parasitemia.
Journal of clinical microbiology    August 6, 2005   Volume 43, Issue 8 3755-3759 doi: 10.1128/JCM.43.8.3755-3759.2005
Ueti MW, Palmer GH, Kappmeyer LS, Statdfield M, Scoles GA, Knowles DP.The protozoan parasite Babesia equi replicates within erythrocytes. During the acute phase of infection, B. equi can reach high levels of parasitemia, resulting in a hemolytic crisis. Horses that recover from the acute phase of the disease remain chronically infected. Subsequent transmission is dependent upon the ability of vector ticks to acquire B. equi and, following development and replication, establishment of B. equi in the salivary glands. Although restriction of the movement of chronically infected horses with B. equi is based on the presumption that ticks can acquire and transmit the ...
Host-feeding patterns of suspected West Nile virus mosquito vectors in Delaware, 2001-2002.
Journal of the American Mosquito Control Association    July 22, 2005   Volume 21, Issue 2 194-200 doi: 10.2987/8756-971X(2005)21[194:HPOSWN]2.0.CO;2
Gingrich JB, Williams GM.Paucity of data on host-feeding patterns and behavior of 43 mosquito species that are reported as suspected West Nile virus (WN) vectors has limited full evaluation of their vectorial capacity. Recent studies addressing this issue need additional confirmation and should also be expanded to include collections of species or subpopulations attracted to humans. We used 4 types of collection methods to collect mosquitoes, including omnidirectional Fay-Prince traps, Centers for Disease Control-type light traps, gravid traps, and human-landing collections. Mosquitoes were collected during 2 full WN ...
Quantitative assessment of the risks of reducing the routine swabbing requirements for the detection of Taylorella equigenitalis.
The Veterinary record    July 12, 2005   Volume 157, Issue 2 41-46 doi: 10.1136/vr.157.2.41
Wood JL, Kelly L, Cardwell JM, Park AW.The transmission of contagious equine metritis (CEM) on stud farms in Britain, Ireland and other European countries is prevented by following the recommendations in the Horserace Betting Levy Board's Code of Practice on CEM. A quantitative risk assessment was undertaken to estimate the likely impact of removing the recommendation, from the 2002 code, to culture endometrial or cervical swabs microaerophilically for the presence of Taylorella equigenitalis, the causative organism. The scientific literature was reviewed for evidence about the anatomical distribution of T. equigenitalis at differe...
Envelope glycoprotein mutations mediate equine amplification and virulence of epizootic venezuelan equine encephalitis virus.
Journal of virology    July 5, 2005   Volume 79, Issue 14 9128-9133 doi: 10.1128/JVI.79.14.9128-9133.2005
Greene IP, Paessler S, Austgen L, Anishchenko M, Brault AC, Bowen RA, Weaver SC.Epidemics of Venezuelan equine encephalitis (VEE) result from high-titer equine viremia of IAB and IC subtype viruses that mediate increased mosquito transmission and spillover to humans. Previous genetic studies suggest that mutations in the E2 envelope glycoprotein allow relatively viremia-incompetent, enzootic subtype ID strains to adapt for equine replication, leading to VEE emergence. To test this hypothesis directly, chimeric VEEV strains containing the genetic backbone of enzootic subtype ID strains and the partial envelope glycoprotein genes of epizootic subtype IC and IAB strains, as ...
Transmission of a Venezuelan equine encephalitis complex Alphavirus by Culex (Melanoconion) gnomatos (Diptera: Culicidae) in northeastern Peru.
Journal of medical entomology    June 21, 2005   Volume 42, Issue 3 404-408 doi: 10.1093/jmedent/42.3.404
Yanoviak SP, Aguilar PV, Lounibos LP, Weaver SC.Venezuelan equine encephalitis (VEE) complex alphaviruses are serious health threats in the Americas and regularly infect humans living in or near Amazonian rain forests. As part of a larger surveillance program, we placed six hamster-baited mosquito traps in a disturbed white sand forest of northeastern Peru for 3 d. Virus isolations from hamster serum and trapped mosquito pools demonstrated that a VEE subtype IIIC alphavirus was transmitted to a hamster by the mosquito Culex (Melanoconion) gnomatos Sallum, Hutchings & Ferreira. This species, like the other seven proven VEE complex alphavirus...
Clostridium difficile-associated disease.
Journal of veterinary internal medicine    June 16, 2005   Volume 19, Issue 3 299 doi: 10.1892/0891-6640(2005)19[299b:c]2.0.co;2
Arroyo LG, Rousseau JD, Staempfli H, Weese JS.No abstract available
A new tool for the diagnosis in vivo of habronemosis in horses.
Equine veterinary journal    May 17, 2005   Volume 37, Issue 3 263-264 doi: 10.2746/0425164054530632
Giangaspero A, Traversa D, Otranto D.No abstract available
Molecular characterization of potentially zoonotic isolates of Giardia duodenalis in horses.
Veterinary parasitology    April 26, 2005   Volume 130, Issue 3-4 317-321 doi: 10.1016/j.vetpar.2005.02.011
Traub R, Wade S, Read C, Thompson A, Mohammed H.Giardia isolates from eight horses from New York State (NY), USA and two horses from Western Australia (WA) were genetically characterized at the SSU-rDNA and triose-phosphate isomerase (TPI) genes. Phylogenetic analysis of the TPI gene provided strong support for the placement of both isolates of Giardia from horses in WA and a single isolate from a horse in NY within the assemblage AI genotype of G. duodenalis. Another two isolates from horses in NY placed within the assemblage AII genotype of G. duodenalis. Phylogenetic analysis of the TPI gene also provided strong bootstrap support for the...
Susceptibility of 7 freshwater gastropod species in Zimbabwe to infection with Gastrodiscus aegyptiacus (Cobbold, 1876) Looss, 1896.
Journal of the South African Veterinary Association    April 16, 2005   Volume 75, Issue 4 186-188 doi: 10.4102/jsava.v75i4.481
Mukaratirwa S, Munjere IF, Takawira M, Chingwena G.Gastrodiscosis outbreaks due to Gastrodiscus aegyptiacus were recorded in horses in the vicinity of Harare, Zimbabwe, in the absence of Bulinus forskalii, B. senegalensis and Cleopatra sp. which are considered to be the only intermediate host snails. This suggested the possibility of other snail species acting as intermediate hosts in the life cycle of the trematode. A study was carried out to determine the susceptibility of 7 freshwater snail species to infection with G. aegyptiacus. First generation (F-1) of 5 freshwater pulmonate snail species, Bulinus tropicus, Bulinus globosus, Biomphalar...
Clustering of equine grass sickness cases in the United Kingdom: a study considering the effect of position-dependent reporting on the space-time K-function.
Epidemiology and infection    April 9, 2005   Volume 133, Issue 2 343-348 doi: 10.1017/s0950268804003322
French NP, McCarthy HE, Diggle PJ, Proudman CJ.Equine grass sickness (EGS) is a largely fatal, pasture-associated dysautonomia. Although the aetiology of this disease is unknown, there is increasing evidence that Clostridium botulinum type C plays an important role in this condition. The disease is widespread in the United Kingdom, with the highest incidence believed to occur in Scotland. EGS also shows strong seasonal variation (most cases are reported between April and July). Data from histologically confirmed cases of EGS from England and Wales in 1999 and 2000 were collected from UK veterinary diagnostic centres. The data did not repre...
Methicillin-resistant Staphylococcus aureus in horses and horse personnel, 2000-2002.
Emerging infectious diseases    March 11, 2005   Volume 11, Issue 3 430-435 doi: 10.3201/eid1103.040481
Weese JS, Archambault M, Willey BM, Hearn P, Kreiswirth BN, Said-Salim B, McGeer A, Likhoshvay Y, Prescott JF, Low DE.Methicillin-resistant Staphylococcus aureus (MRSA) infection was identified in 2 horses treated at a veterinary hospital in 2000, prompting a study of colonization rates of horses and associated persons. Seventy-nine horses and 27 persons colonized or infected with MRSA were identified from October 2000 to November 2002; most isolations occurred in a 3-month period in 2002. Twenty-seven (34%) of the equine isolates were from the veterinary hospital, while 41 (51%) were from 1 thoroughbred farm in Ontario. Seventeen (63%) of 27 human isolates were from the veterinary hospital, and 8 (30%) were ...
Investigation and control of an outbreak of salmonellosis caused by multidrug-resistant Salmonella typhimurium in a population of hospitalized horses.
Veterinary microbiology    February 26, 2005   Volume 107, Issue 3-4 233-240 doi: 10.1016/j.vetmic.2005.01.019
Ward MP, Brady TH, Couëtil LL, Liljebjelke K, Maurer JJ, Wu CC.An outbreak of salmonellosis in a population of hospitalized horses resulted in the closure of a teaching hospital for a period of 10 weeks. Fecal samples were collected from suspected cases and cultured for Salmonella. Salmonella isolates were characterized using antimicrobial susceptibility testing, pulsed-field gel electrophoresis (PFGE) and phage typing. Thirty-three cases of infection by a multidrug-resistant strain of S. typhimurium were detected. The index case was admitted on 26 August 1999. Fifteen (45%) cases occurred between April and June 2000. PFGE results suggested that this stra...
Streptococcus equi infections in horses: guidelines for treatment, control, and prevention of strangles.
Journal of veterinary internal medicine    February 18, 2005   Volume 19, Issue 1 123-134 
Sweeney CR, Timoney JF, Newton JR, Hines MT.No abstract available
Risk of transplacental transmission of Sarcocystis neurona and Neospora hughesi in California horses.
The Journal of parasitology    February 18, 2005   Volume 90, Issue 6 1345-1351 doi: 10.1645/GE-3372
Duarte PC, Conrad PA, Barr BC, Wilson WD, Ferraro GL, Packham AE, Carpenter TE, Gardner IA.The study objective was to assess the risk of transplacental transmission of Sarcocystis neurona and Neospora hughesi in foals from 4 California farms during 3 foaling seasons. Serum of presuckle foals and serum and colostrum of periparturient mares were tested using indirect fluorescent antibody tests for S. neurona and N. hughesi. Serum antibody titers were < or =10 in 366 presuckle foals tested. There was no serologic or histologic evidence of either parasite in aborted fetuses or placentas examined. Positivity for S. neurona and N. hughesi in mares increased with age. Mares < or =9 y...
Molecular characterizations of human and animal group a rotaviruses in the Netherlands.
Journal of clinical microbiology    February 8, 2005   Volume 43, Issue 2 669-675 doi: 10.1128/JCM.43.2.669-675.2005
van der Heide R, Koopmans MP, Shekary N, Houwers DJ, van Duynhoven YT, van der Poel WH.To gain more insight into interspecies transmission of rotavirus group A, human and animal fecal samples were collected between 1997 and 2001 in The Netherlands. A total of 110 human stool samples were successfully P and G genotyped by reverse transcriptase PCR. All strains belonged to the main human rotavirus genotypes G1 to G4, G9, [P4], [P6], [P8], and [P9]. [P8]G1 was predominant, and 5.5% belonged to the G9 genotype. Eleven percent of all P[8] genotypes could be genotyped only by a recently published modified primer. Rotavirus-positive fecal samples from 28 calf herds were genotyped by DN...
Venezuelan equine encephalitis virus, southern Mexico.
Emerging infectious diseases    January 25, 2005   Volume 10, Issue 12 2113-2121 doi: 10.3201/eid1012.040393
Estrada-Franco JG, Navarro-Lopez R, Freier JE, Cordova D, Clements T, Moncayo A, Kang W, Gomez-Hernandez C, Rodriguez-Dominguez G, Ludwig GV....Equine epizootics of Venezuelan equine encephalitis (VEE) occurred in the southern Mexican states of Chiapas in 1993 and Oaxaca in 1996. To assess the impact of continuing circulation of VEE virus (VEEV) on human and animal populations, serologic and viral isolation studies were conducted in 2000 to 2001 in Chiapas State. Human serosurveys and risk analyses indicated that long-term endemic transmission of VEEV occurred among villages with seroprevalence levels of 18% to 75% and that medical personnel had a high risk for VEEV exposure. Seroprevalence in wild animals suggested cotton rats as pos...
West Nile virus in the vertebrate world.
Archives of virology    January 19, 2005   Volume 150, Issue 4 637-657 doi: 10.1007/s00705-004-0463-z
van der Meulen KM, Pensaert MB, Nauwynck HJ.West Nile virus (WNV), an arthropod-borne virus belonging to the family Flaviviridae, had been recognized in Africa, Asia and the south of Europe for many decades. Only recently, it has been associated with an increasing number of outbreaks of encephalitis in humans and equines as well as an increasing number of infections in vertebrates of a wide variety of species. In this article, the data available on the incidence of WNV in vertebrates are reviewed. Moreover, the role of vertebrates in the transmission of WNV, the control of WNV infections in veterinary medicine as well as future perspect...
Occurrence of equine coital exanthema in pastured draft horses and isolation of equine herpesvirus 3 from progenital lesions.
The Journal of veterinary medical science    January 13, 2005   Volume 66, Issue 12 1503-1508 doi: 10.1292/jvms.66.1503
Seki Y, Seimiya YM, Yaegashi G, Kumagai S, Sentsui H, Nishimori T, Ishihara R.During the period from 2001 to the following year, progenital diseases had been epidemic among the draft stallions and mares pastured together in Iwate Prefecture, the northeastern district of Japan. A stallion and 8 of 31 mares were affected in 2001, and 1 of 2 stallions and 10 of 36 mares in 2002. The clinical symptoms consisted of the formation of papules, pustules, ulcers and scabs on the progenital skin and mucosa in stallions and mares. In 2002, Equine herpesvirus 3 (EHV3) was isolated from 2 mares and the glycoprotein G gene of the virus detected from a stallion and 4 mares by polymeras...
Culicoides midge trap enhancement with animal odour baits in Scotland.
Medical and veterinary entomology    January 12, 2005   Volume 18, Issue 4 336-342 doi: 10.1111/j.0269-283X.2004.00516.x
Mands V, Kline DL, Blackwell A.Examples of the commercial trap Mosquito Magnet Pro (MMP emitting attractant 1-octen-3-ol in carbon dioxide 500 mL/min generated from propane fuel), were run 24 h/day on the Isle of Skye, Scotland, during June-August 2001 and evaluated for catching Culicoides biting midges (Diptera: Ceratopogonidae). From 30 days trapping, the catch averaged 2626 +/- 1358 Culicoides females/trap/day (mean +/- SE, range 558 +/- 139 to 6088 +/- 3597, for five sets of six consecutive nights), predominantly the pest Culicoides impunctatus Goetghebuer (68% overall), plus C. vexans (Staeger) > C. delta Edwards &g...
Vector competence of Culicoides species and the seroprevalence of homologous neutralizing antibody in horses for six serotypes of equine encephalosis virus (EEV) in South Africa.
Medical and veterinary entomology    January 12, 2005   Volume 18, Issue 4 398-407 doi: 10.1111/j.0269-283X.2004.00524.x
Paweska JT, Venter GJ.Field-collected Culicoides species (Diptera: Ceratopogonidae) were fed on horse blood-virus mixtures containing one of the six serotypes of equine encephalosis virus (EEV1 to EEV6). The virus mean titres in the bloodmeals varied between 6.1 and 7.0 log10TCID50/mL. Of 19 Culicoides species assayed after 10 days extrinsic incubation at 23.5 degrees C, five yielded the challenge virus, namely Culicoides (Avaritia) imicola Kieffer (EEV1-6), C. (A.) bolitinos Meiswinkel (EEV1, 2, 4, 6), C. (Meijerehelea) leucostictus Kiefer (EEV1, 2), C. (Culicoides) magnus Colaço (EEV1) and C. (Hoffmania) zuluens...
Successful infestation by Amblyomma pseudoconcolor and A. cooperi (Acari: Ixodidae) on horses.
Annals of the New York Academy of Sciences    December 18, 2004   Volume 1026 232-234 doi: 10.1196/annals.1307.035
Chacon SC, Faccini JL, Bittencourt VR.The host relationships for most species of the genus Amblyomma are poorly known in Brazil. The ability of A. pseudoconcolor and A. cooperi to successfully feed on horses was investigated during ongoing research on the life cycle of these two species, which are primarily associated with wildlife. Results of these experiments suggest that horses are potential hosts for the adult stages of both species.
Pemphigus foliaceus in the horse: a retrospective study of 20 cases.
Veterinary dermatology    December 9, 2004   Volume 15, Issue 6 381-388 doi: 10.1111/j.1365-3164.2004.00423.x
Vandenabeele SI, White SD, Affolter VK, Kass PH, Ihrke PJ.Twenty horses with pemphigus foliaceus were seen over a period of 15 years in a veterinary medical teaching hospital. Breeds seen were seven quarterhorses, five thoroughbreds, three cross-bred horses, two Arabians and one of each of the following: standardbred, Tennessee walker and warmblood. There was no breed, age or sex predisposition. Nine were mares, ten were geldings and one was a stallion. Ages ranged from 2.5 months to 25 years, with a mean of 8.6 years. Sixteen (80%) of the pemphigus foliaceus horses first exhibited signs between September and February. There was a statistically signi...
Testing for equine arteritis virus.
The Veterinary record    December 3, 2004   Volume 155, Issue 20 647-648 
Cullinane AA.No abstract available
Onchocerca cervicalis in horses from southern Brazil.
Tropical animal health and production    November 26, 2004   Volume 36, Issue 7 633-636 doi: 10.1023/b:trop.0000042863.83233.78
Marques SM, Scroferneker ML.The objective of this study was to determine the occurrence of Onchocerca cervicalis in 1200 adult horses from rural areas of Rio Grande do Sul, Brazil. Umbilical skin specimens measuring 2 x 2 cm were minced, suspended in 10 ml of distilled water and incubated at room temperature overnight. The liquid volume was centrifuged and the sediment was screened for microfilariae. The ligamentum nuchae were totally removed, preserved in ice and dissected for the detection of adult forms of Onchocerca cervicalis. Microfilariae of Onchocerca cervicalis were detected in midventral skin biopsy samples in ...
CYP3A in horse intestines.
Toxicology and applied pharmacology    November 16, 2004   Volume 201, Issue 2 112-119 doi: 10.1016/j.taap.2004.05.015
Tydén E, Olsén L, Tallkvist J, Larsson P, Tjälve H.The intestinal enterocytes provide the initial site for cytochrome P450 (CYP)-mediated metabolism of orally absorbed xenobiotics. In man and some animal species, the CYP3A subfamily is highly expressed in the intestines and considered to be important in the first-pass metabolism of drugs and other xenobiotics. The aim of the present study was to investigate the mRNA expression, immunohistochemical localization and catalytic activity of CYP3A in the intestines of horse. Real-time RT-PCR analyses showed that the highest CYP3A mRNA expression was present in the duodenum with a decreasing level to...
Horses and the risk of zoonotic infections.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 643-653 doi: 10.1016/j.cveq.2004.07.003
Bender JB, Tsukayama DT.Infectious agents are insidious, often changing to adapt to host defenses or treatment advances. Because these challenges will continue, the need to apply standard and transmission-based precautions is important not only in the human hospital setting but in the veterinary clinic setting. In addition, to prevent human infection and potential liability, clinics need to establish program algorithms to prevent disease spread for specific agents or planned procedures to respond to potential nosocomial and zoonotic disease events. These need to be done proactively. Furthermore, more money needs to b...
An overview of infection control strategies for equine facilities, with an emphasis on veterinary hospitals.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 507-v doi: 10.1016/j.cveq.2004.07.004
Traub-Dargatz JL, Dargatz DA, Morley PS, Dunowska M.Infection control entails preventing or minimizing exposure to infectious agents or optimizing resistance to infection at the individual and population levels should exposure occur. The degree to which each of these strategies is applied varies according to the attributes of the disease agent and the population at risk. In developing an infection control, biosecurity, or biocontainment plan, it is important to decide which agent or agents are to be controlled, the method by which they might be introduced to the individual or population, and methods by which they might spread once at a farm or ...
Environmental disinfection to control equine infectious diseases.
The Veterinary clinics of North America. Equine practice    November 3, 2004   Volume 20, Issue 3 531-542 doi: 10.1016/j.cveq.2004.07.001
Dwyer RM.Cleaning and disinfection are essential to the environmental control of infectious diseases of all animals. By understanding the types of pathogens, environment, and disinfection process, success can be attained in effectively stopping disease outbreaks.
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