Analyze Diet

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.
Molecular characterization of Clostridium difficile isolates from horses in an intensive care unit and association of disease severity with strain type.
Journal of the American Veterinary Medical Association    March 2, 2006   Volume 228, Issue 5 751-755 doi: 10.2460/javma.228.5.751
Magdesian KG, Dujowich M, Madigan JE, Hansen LM, Hirsh DC, Jang SS.To determine molecular characteristics, antimicrobial susceptibility, and toxigenicity of Clostridium difficile isolates from horses in an intensive care unit and evaluate associations among severity of clinical disease with specific strains of C difficile. Methods: Prospective study. Methods: 130 horses. Methods: Feces were collected from horses admitted for acute gastrointestinal tract disease with loose feces and submitted for microbial culture and immunoassay for toxin production. Polymerase chain reaction assays were performed on isolates for toxins A and B genes and strain identification...
EHV-1 and EHV-4 infection in vaccinated mares and their foals.
Veterinary immunology and immunopathology    February 28, 2006   Volume 111, Issue 1-2 41-46 doi: 10.1016/j.vetimm.2006.01.007
Foote CE, Love DN, Gilkerson JR, Wellington JE, Whalley JM.A silent cycle of equine herpesvirus 1 infection was described following epidemiological studies of unvaccinated mares and foals on a Hunter Valley stud farm. Following the introduction of routine vaccination with an inactivated whole virus equine herpesvirus 1 (EHV-1) and equine herpesvirus 4 (EHV-4) vaccine in 1997, a subsequent study identified excretion of EHV-1 and EHV-4 in nasal swab samples tested by PCR from vaccinated mares and their unweaned, unvaccinated foals. The current sero-epidemiological investigation of vaccinated mares and their young foals found serological evidence of EHV-...
Fell Pony syndrome in a pony in North America.
Journal of veterinary internal medicine    February 25, 2006   Volume 20, Issue 1 198-203 doi: 10.1892/0891-6640(2006)20[198:fpsiap]2.0.co;2
Gardner RB, Hart KA, Stokol T, Divers TJ, Flaminio MJ.A 5-week-old Fell Pony colt was examined for fever, lethargy, and anemia. The colt had been lethargic for 1 week before examination, had continued to nurse, had a temperature of 104°F (40°C), and was treated with ceftiofur (5 mg/kg IM q12h). Approximately 36 hours before examination, the colt developed watery diarrhea. Blood work performed by the referring veterinarian on the day of admission revealed a PCV of 10%.
Methicillin-resistant Staphylococcus aureus in horses at a veterinary teaching hospital: frequency, characterization, and association with clinical disease.
Journal of veterinary internal medicine    February 25, 2006   Volume 20, Issue 1 182-186 doi: 10.1892/0891-6640(2006)20[182:msaiha]2.0.co;2
Weese JS, Rousseau J, Willey BM, Archambault M, McGeer A, Low DE.Methicillin-resistant Staphylococcus aureus (MRSA) is an emerging equine pathogen. To attempt to control nosocomial and zoonotic transmission, an MRSA screening program was established for all horses admitted to the Ontario Veterinary College Veterinary Teaching Hospital, whereby nasal screening swabs were collected at admission, weekly during hospitalization, and at discharge. MRSA was isolated from 120 (5.3%) of 2,283 horses: 61 (50.8%) at the time of admission, 53 (44.2%) during hospitalization, and 6 from which the origin was unclear because an admission swab had not been collected. Clinic...
Methicillin-resistant staphylococci in companion animals.
Emerging infectious diseases    February 21, 2006   Volume 11, Issue 12 1942-1944 doi: 10.3201/eid1112.050241
Baptiste KE, Williams K, Willams NJ, Wattret A, Clegg PD, Dawson S, Corkill JE, O'Neill T, Hart CA.We determined the molecular characteristics of methicillin-resistant staphylococci from animals and staff at a small animal and equine hospital. Methicillin-resistant Staphylococcus aureus (MRSA) identical to human EMRSA-15 was found in dogs and hospital staff. In contrast, 5 distinct MRSA strains were isolated from horses but not from hospital staff.
Emergence of MRSA infections in horses in a veterinary hospital: strain characterisation and comparison with MRSA from humans. Cuny C, Kuemmerle J, Stanek C, Willey B, Strommenger B, Witte W.Methicillin-resistant Staphylococcus aureus has become an emerging public health problem worldwide, no longer only associated with healthcare-associated infections. With the exception of some recent reports concerning infections in cats, dogs and horses, infections with MRSA in companion animals have been infrequently reported. Here we submit findings for MRSA infections in horses in a central European university hospital.
Feeding patterns of Haemagogus janthinomys (Diptera: Culicidae) in different regions of Brazil.
Journal of medical entomology    February 10, 2006   Volume 42, Issue 6 981-985 
Alencar J, Lorosa ES, Dégallier lN, Serra-Freire NM, Pacheco JB, Guimarães AE.New data on the feeding patterns of Haemagogus (Haemagogus) janthinomys Dyar from different geographical regions of Brazil, by using the precipitin test as the bloodmeal-identifying tool, are presented. The following antisera were used: bird, dog, human, rodent, cattle, horse, and opossum. The origins of 287 bloodmeals were identified, whereas 33 specimens were negative to the antiserums tested. Among the reactive specimens, 174 (60.6%) fed on only one food source, of which 35.1% originated from birds, 19.5% from rodents, 12.6% from humans, 10.3% from cattle, 10.3% from opossums, 7.5% from dog...
[Additional information on the article on acute babesiosis].
Tijdschrift voor diergeneeskunde    February 4, 2006   Volume 131, Issue 2 44 
Uilenberg G.No abstract available
Sequence variation of the SeM gene of Streptococcus equi allows discrimination of the source of strangles outbreaks.
Journal of clinical microbiology    February 4, 2006   Volume 44, Issue 2 480-486 doi: 10.1128/JCM.44.2.480-486.2006
Kelly C, Bugg M, Robinson C, Mitchell Z, Davis-Poynter N, Newton JR, Jolley KA, Maiden MC, Waller AS.Improved understanding of the epidemiology of Streptococcus equi transmission requires sensitive and portable subtyping methods that can rationally discriminate between strains. S. equi is highly homogeneous and cannot be distinguished by multilocus enzyme electrophoretic or multilocus sequence-typing methods that utilize housekeeping genes. However, on sequence analysis of the N-terminal region of the SeM genes of 60 S. equi isolates from 27 strangles outbreaks, we identified 21 DNA codon changes. These resulted in the nonsynonymous substitution of 18 amino acids and allowed the assignment of...
New diseases and increased risk of diseases in companion animals and horses due to transport.
Acta veterinaria Scandinavica. Supplementum    January 25, 2006   Volume 100 19-25 
Englund L, Pringle J.Dogs and horses are transported within the European Union for a number of reasons. The transport per se may cause physical problems, exemplified by hyperthermia in dogs and pleuropneumonia in horses, and the stress may reactivate latent infections such as canine herpesvirus-1 and equine herpesvirus-1. Preventive treatments are vital to protect dogs from ticks and mosquitoes transmitting their potentially lethal infectious agents, such as Leishmania donovani infantum, Babesia canis, Ehrlichia canis, and Dirofilaria immitis. However, records show that the travelling dogs are not fully protected ...
Equine influenza in dogs: too late to bolt the stable door?
Veterinary journal (London, England : 1997)    December 28, 2005   Volume 171, Issue 1 7-8 doi: 10.1016/j.tvjl.2005.09.014
Daly JM.No abstract available
An outbreak of methicillin-resistant Staphylococcus aureus skin infections resulting from horse to human transmission in a veterinary hospital.
Veterinary microbiology    December 27, 2005   Volume 114, Issue 1-2 160-164 doi: 10.1016/j.vetmic.2005.11.054
Weese JS, Caldwell F, Willey BM, Kreiswirth BN, McGeer A, Rousseau J, Low DE.There are increasing reports of methicillin-resistant Staphylococcus aureus (MRSA) infection and colonization in horses and evidence that MRSA can be transmitted between horses and humans. The objective of this study was to investigate reports of skin infection in personnel working with a foal with community-associated MRSA colonization and subsequent infection. Clinical diagnostic specimens were collected from individuals reporting skin lesions following contact with the affected foal. Nasal and groin screening swabs were collected from other veterinary personnel that attended a voluntary scr...
[Scabies in business].
Tijdschrift voor diergeneeskunde    December 21, 2005   Volume 130, Issue 23 733 
Boissevain I.No abstract available
Class 1 integrons in Enterobacteriaceae isolated from clinical infections of horses and dogs in the Netherlands.
Microbial drug resistance (Larchmont, N.Y.)    December 20, 2005   Volume 11, Issue 4 383-386 doi: 10.1089/mdr.2005.11.383
Duijkeren EV, Box AT, Schellen P, Houwers DJ, Fluit AC.Integrons in gentamicin- and cotrimoxazole-resistant Enterobacteriaceae from dogs and horses with clinical infections were analyzed by conserved segment PCR-RFLP. Five distinct integron types were found, most of which have previously been reported in Enterobacteriaceae isolated from humans and farm animals, indicating that resistance genes are exchanged between the reservoirs in humans, farm animals, and companion animals.
Numbers of fecal streptococci and Escherichia coli in fresh and dry cattle, horse, and sheep manure.
Canadian journal of microbiology    December 8, 2005   Volume 51, Issue 10 847-851 doi: 10.1139/w05-071
Weaver RW, Entry JA, Graves A.Livestock are known contributors to stream pollution. Numbers of fecal streptococci and Escherichia coli in manure naturally deposited by livestock in the field are needed for activities related to bacterial source tracking and determining maximum daily bacterial loading of streams. We measured populations of fecal streptococci and E. coli in fresh and dry manure from cattle (Bos taurus L.), horses (Equus caballus L.), and sheep (Ovis aires L.) on farms in southern Idaho. Populations of indicator bacteria in dry manure were often as high as that in fresh manure from horse and sheep. There was ...
MRSA: an emerging equine problem?
Equine veterinary journal    November 22, 2005   Volume 37, Issue 6 490-492 doi: 10.2746/042516405775314790
Slater JD.No abstract available
The prevalence of methicillin-resistant staphylococci in healthy horses in the Netherlands.
Veterinary microbiology    November 21, 2005   Volume 113, Issue 1-2 131-136 doi: 10.1016/j.vetmic.2005.10.028
Busscher JF, van Duijkeren E, Sloet van Oldruitenborgh-Oosterbaan MM.Two hundred healthy horses housed at 23 different farms and one clinic and 42 persons in close contact with these horses were screened for the presence of methicillin resistant staphylococci. Samples were taken from the nose and the pastern of the horses and from the nose and throat of the humans and incubated in selective media. Isolates were identified by standard techniques and their susceptibilities were tested using an agar diffusion method. Methicillin-resistant strains were tested for the presence of the mecA gene by PCR. In 45 horses (22.5%) and 15 humans (35.7%) mecA positive staphylo...
Update: West Nile virus activity–United States, 2005.
MMWR. Morbidity and mortality weekly report    November 9, 2005   Volume 54, Issue 43 1105-1106 
This report summarizes West Nile virus (WNV) surveillance data reported to CDC through ArboNET as of 3 a.m. Mountain Standard Time, November 1, 2005.
Temporality of early-term abortions associated with mare reproductive loss syndrome in horses.
American journal of veterinary research    November 9, 2005   Volume 66, Issue 10 1792-1797 doi: 10.2460/ajvr.2005.66.1792
Cohen ND, Carey VJ, Donahue JG, Seahorn JL, Brown SE, Riddle TW.To characterize the temporality of dates of breeding and abortion classified as mare reproductive loss syndrome (MRLS) among mares with abortions during early gestation. Methods: 2,314 mares confirmed pregnant at approximately 28 days after breeding from 36 farms in central Kentucky, including 515 mares that had early-term abortions. Methods: Farm veterinarians and managers were interviewed to obtain data for each mare that was known to be pregnant to determine pregnancy status, breeding date, last date known to be pregnant, and date of abortion. Results: Mares bred prior to April 1, 2001, app...
Serological prevalence of Leptospira interrogans serovar Bratislava in horses in Mongolia.
The Veterinary record    October 26, 2005   Volume 157, Issue 17 518-519 doi: 10.1136/vr.157.17.518
Odontsetseg N, Boldbaatar D, Mweene AS, Kida H.No abstract available
Epidemiology. Horse flu virus jumps to dogs.
Science (New York, N.Y.)    October 1, 2005   Volume 309, Issue 5744 2147 doi: 10.1126/science.309.5744.2147a
Enserink M.No abstract available
[West Nile virus infections: overview and epidemiological update].
Virologie (Montrouge, France)    October 1, 2005   Volume 9, Issue 5 395-408 doi: 10.1684/vir.2011.2401
Dauphin G, Zientara S.West Nile virus, a flavivirus transmitted by mosquitoes, has been intensively studied since a few years because of epidemics/epizootics it has caused the last ten years, in particular around the Mediterranean basin and on the North-American continent. This virus mainly circulates in birds ; migrating bird species disseminate the virus while resident species could play a role in viral cycle amplification. A large number of mammal, amphibian and reptile species can also be infected. This virus can cause a lethal disease in humans and horses. For this reason, an active and/or passive surveillance...
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
1 52 53 54 55 56 88