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.
Horse species symposium: contagious equine metritis: an insidious threat to the horse breeding industry in the United States.
Journal of animal science    October 1, 2010   Volume 89, Issue 5 1552-1560 doi: 10.2527/jas.2010-3368
Timoney PJ.Contagious equine metritis (CEM) has given rise to international concern since it was first recognized as a novel venereal disease of equids in 1977 and the etiologic agent was identified as a previously undescribed bacterium, Taylorella equigenitalis. Horse industry concerns over CEM centered on the ease with which this bacterium could be disseminated, the significance of T. equigenitalis as a cause of short-term infertility in the mare, and the existence of the carrier state in the stallion and the mare. The first known outbreak of CEM in the United States was in Kentucky in 1978. The econom...
Host preferences of tabanid flies based on identification of blood meals by ELISA.
Veterinary parasitology    September 15, 2010   Volume 174, Issue 3-4 191-198 doi: 10.1016/j.vetpar.2010.08.040
Muzari MO, Burgess GW, Skerratt LF, Jones RE, Duran TL.Tabanid flies in Australia are potential vectors of the parasite Trypanosoma evansi which causes the animal disease surra. It is endemic to most of south-east Asia and could enter Australia, but evaluation of the potential impact of a surra incursion requires identification of the major hosts of Australian tabanids. This study investigated the natural pattern of feeding and host preference by tabanid flies of Townsville, north Queensland by identification of ingested blood in trap-caught tabanids using ELISA. The assays were developed for identification of horse, cow, macropod and pig blood me...
Studies of quinapyramine-resistance of Trypanosoma brucei evansi in China.
Acta tropica    September 8, 2010   Volume 116, Issue 3 173-177 doi: 10.1016/j.actatropica.2010.08.016
Liao D, Shen J.In the present article, we summarize our studies of antrycide-resistance of Trypanosoma brucei evansi in four aspects in the last recent several years, the analysis of quinapyramine-sensitive situation of T. b. evansi in China, biological characteristics of T. b. evansi population in quinapyramine-resistance and biological materials of quinapyramine-resistance in T. b. evansi population. Firstly, the correlative assays of effective dosage of quinapyramine on T. b. evansi disease between in vivo and in vitro methods showed that their relationship was parabolic with positive correlation. On the ...
Cotton rats and house sparrows as hosts for North and South American strains of eastern equine encephalitis virus.
Emerging infectious diseases    August 26, 2010   Volume 16, Issue 9 1373-1380 doi: 10.3201/eid1609.100459
Arrigo NC, Adams AP, Watts DM, Newman PC, Weaver SC.Eastern equine encephalitis virus (EEEV; family Togaviridae, genus Alphavirus) is an arbovirus that causes severe disease in humans in North America and in equids throughout the Americas. The enzootic transmission cycle of EEEV in North America involves passerine birds and the ornithophilic mosquito vector, Culiseta melanura, in freshwater swamp habitats. However, the ecology of EEEV in South America is not well understood. Culex (Melanoconion) spp. mosquitoes are considered the principal vectors in Central and South America; however, a primary vertebrate host for EEEV in South America has not...
Characterization of vancomycin-resistant Enterococcus faecium isolated from swine in three Michigan counties.
Journal of clinical microbiology    August 25, 2010   Volume 48, Issue 11 4156-4160 doi: 10.1128/JCM.02346-09
Donabedian SM, Perri MB, Abdujamilova N, Gordoncillo MJ, Naqvi A, Reyes KC, Zervos MJ, Bartlett P.Vancomycin-resistant enterococci are a major cause of nosocomial infections but are rarely found in humans in the community and have not been identified in food animals in the United States. We evaluated a total of 360 fecal specimens from humans and their animals being raised for exhibit at three county fairs in Michigan. Fecal samples from 158 humans, 55 swine, 50 cattle, 25 horses, 57 sheep, 14 goats, and 1 llama were obtained and plated onto Enterococcosel agar containing 16 μg/ml of vancomycin. Vancomycin-resistant Enterococcus faecium (VREF) was isolated from six pigs but not from human...
Distribution of influenza virus sialoreceptors on upper and lower respiratory tract in horses and dogs.
The Journal of veterinary medical science    August 25, 2010   Volume 73, Issue 1 125-127 doi: 10.1292/jvms.10-0276
Muranaka M, Yamanaka T, Katayama Y, Hidari K, Kanazawa H, Suzuki T, Oku K, Oyamada T.It is strongly suspected that equine influenza virus (EIV) is the origin of canine influenza virus (CIV, H3N8), which was first isolated in U.S.A. in 2004, on the basis of phylogenetic analyses. Although the distribution of influenza virus sialoreceptors seems to be associated with this interspecies transmission, there have been scant data of comparison about distributions of sialoreceptors on the whole respiratory tract between horses and dogs. We examined the histological distribution of influenza virus sialoreceptors on the upper and lower respiratory tract in detail in both animals using d...
Evidence of multiple virulence subtypes in nosocomial and community-associated MRSA genotypes in companion animals from the upper midwestern and northeastern United States.
Clinical medicine & research    August 25, 2010   Volume 9, Issue 1 7-16 doi: 10.3121/cmr.2010.944
Lin Y, Barker E, Kislow J, Kaldhone P, Stemper ME, Pantrangi M, Moore FM, Hall M, Fritsche TR, Novicki T, Foley SL, Shukla SK.Not much is known about the zoonotic transmission of methicillin-resistant Staphylococcus aureus (MRSA) in companion animals in the United States. We report the rate of prevalence of S. aureus and MRSA recovered from clinical samples of animals requiring treatment at veterinary clinics throughout the upper midwestern and northeastern United States. Methods: We compared phenotypes, genotypes, and virulence profiles of the MRSA isolates identified in companion animals, such as cats, dogs, horses, and pigs, with typical human nosocomial and community-associated MRSA (CA-MRSA) genotypes to assess ...
Salmonella enterica subsp. Enterica in Cattle Egret (Bubulcus ibis) chicks from central Texas: prevalence, serotypes, pathogenicity, and epizootic potential.
Journal of wildlife diseases    August 7, 2010   Volume 46, Issue 2 379-389 doi: 10.7589/0090-3558-46.2.379
Phalen DN, Drew ML, Simpson B, Roset K, Dubose K, Mora M.Cattle Egrets have a worldwide distribution, feed in proximity to cattle and other domestic animals, and often nest in large colonies in urban woodlots. Over a 3-yr period, nestlings from five Cattle Egret colonies from Central Texas, USA, were surveyed for salmonellosis. Prevalence of infection ranged from 29% to 95%. Seventeen Salmonella enterica subsp. enterica serotypes were isolated, of which the 4,5,12:i-monophasic serotype predominated in cultures of both the digestive tract and pooled spleen and liver. Of 11 4,5,12:i-monophasic isolates phage typed, eight were determinate type 193. The...
Mycobacterium avium subsp. hominissuis infection in horses.
Emerging infectious diseases    August 4, 2010   Volume 16, Issue 8 1328-1329 doi: 10.3201/eid1608.100097
Kriz P, Jahn P, Bezdekova B, Blahutkova M, Mrlik V, Slana I, Pavlik I.No abstract available
West Nile virus range expansion into British Columbia.
Emerging infectious diseases    August 4, 2010   Volume 16, Issue 8 1251-1258 doi: 10.3201/eid1608.100483
Roth D, Henry B, Mak S, Fraser M, Taylor M, Li M, Cooper K, Furnell A, Wong Q, Morshed M.In 2009, an expansion of West Nile virus (WNV) into the Canadian province of British Columbia was detected. Two locally acquired cases of infection in humans and 3 cases of infection in horses were detected by ELISA and plaque-reduction neutralization tests. Ten positive mosquito pools were detected by reverse transcription PCR. Most WNV activity in British Columbia in 2009 occurred in the hot and dry southern Okanagan Valley. Virus establishment and amplification in this region was likely facilitated by above average nightly temperatures and a rapid accumulation of degree-days in late summer....
Isolation of Streptococcus zooepidemicus from three dogs in close contact with horses.
The Veterinary record    July 21, 2010   Volume 167, Issue 3 102-103 doi: 10.1136/vr.c3207
Acke E, Abbott Y, Pinilla M, Markey BK, Leonard FC.No abstract available
Equine disease surveillance, January to March 2010.
The Veterinary record    June 29, 2010   Volume 166, Issue 26 808-811 doi: 10.1136/vr.c3252
No abstract available
The utility of animal surveillance in the detection of West Nile virus activity in Puerto Rico, 2007.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    June 24, 2010   Volume 11, Issue 4 447-450 doi: 10.1089/vbz.2010.0011
Phoutrides E, Jusino-Mendez T, Perez-Medina T, Seda-Lozada R, Garcia-Negron M, Davila-Toro F, Hunsperger E.After the isolation of West Nile virus (WNV) from humans, mosquitoes, and chickens in 2007, an analysis of animal surveillance involving multiple species (horses, monkeys, sheep, dogs, and birds) used to track WNV transmission from 2006 to 2008 was performed. During this period 13.4% of all the animal samples collected were seropositive by blocking ELISA for WNV. The most complete island-wide sampling was obtained from horses of which 22% were serologically positive and 96% were confirmed as WNV infections by plaque-reduction neutralization test. Our conclusion from this 3-year study is that a...
Molecular investigation of the viral kinetics of equine herpesvirus-1 in blood and nasal secretions of horses after corticosteroid-induced recrudescence of latent infection.
Journal of veterinary internal medicine    June 24, 2010   Volume 24, Issue 5 1153-1157 doi: 10.1111/j.1939-1676.2010.0554.x
Pusterla N, Hussey SB, Mapes S, Johnson C, Collier JR, Hill J, Lunn DP, Wilson WD.Recrudescence of latent equine herpesvirus 1 (EHV-1) with subsequent viral shedding via nasal secretions is a potential source of infection for susceptible horses and has been implicated in outbreaks occurring in closed populations. Objective: To describe the viral kinetics of reactivated EHV-1 in blood and nasal secretions from latently infected horses after administration of corticosteroids, and to study the infectious nature of reactivated EHV-1 to sentinel horses. Methods: Eight healthy horses. Methods: Four horses infected 4 months previously with EHV-1 received dexamethasone on 5 consecu...
Detection and management of an outbreak of equine herpesvirus type 1 infection and associated neurological disease in a veterinary teaching hospital.
Journal of veterinary internal medicine    June 24, 2010   Volume 24, Issue 5 1176-1183 doi: 10.1111/j.1939-1676.2010.0558.x
Goehring LS, Landolt GA, Morley PS.Because of the serious disease sequelae associated with equine herpesvirus type 1 (EHV-1) infections, awareness and control measures used to control outbreaks are important issues for all horse populations. Objective: Describe the occurrence and management of an outbreak of EHV-1 infection at a veterinary hospital. Methods: Horses hospitalized at a referral veterinary hospital. Methods: A horse with myeloencephalopathy associated with EHV-1 infection (EHM) was admitted for diagnostic evaluation and treatment under strict infection control procedures. We describe the occurrence and management o...
Carriage of Clostridium difficile and other enteric pathogens among a 4-H avocational cohort.
Zoonoses and public health    June 10, 2010   Volume 58, Issue 3 192-199 doi: 10.1111/j.1863-2378.2010.01338.x
McNamara SE, Abdujamilova N, Somsel P, Gordoncillo MJ, DeDecker JM, Bartlett PC.Clostridium difficile (CD), Salmonella, Campylobacter and enterohemorrhagic Escherichia coli (EHEC) are major causes of morbidity in a variety of enteric diseases in humans and animals, but subclinical carriage in both is probably more common than are clinical cases. Little is known regarding the prevalence of these pathogens in animals raised for exhibit at Michigan county fairs or the frequency with which Michigan citizens raising these animals may have been subclinically colonized. To address these issues, 361 fecal specimens from 158 humans and 203 of their farm animals were cultured for C...
Vector competence of Culex (Melanoconion) taeniopus for equine-virulent subtype IE strains of Venezuelan equine encephalitis virus.
The American journal of tropical medicine and hygiene    June 4, 2010   Volume 82, Issue 6 1047-1052 doi: 10.4269/ajtmh.2010.09-0556
Deardorff ER, Weaver SC.The mosquito Culex (Melanoconion) taeniopus is a proven vector of enzootic Venezuelan equine encephalitis virus (VEEV) subtype IE in Central America. It has been shown to be highly susceptible to infection by this subtype, and conversely to be highly refractory to infection by other VEEV subtypes. During the 1990s in southern coastal Mexico, two VEE epizootics in horses were attributed to subtype IE VEEV. These outbreaks were associated with VEEV strains with an altered infection phenotype for the epizootic mosquito vector, Aedes (Ochlerotatus) taeniorhynchus. To determine the infectivity for ...
Antimicrobial resistance in commensal faecal Escherichia coli of hospitalised horses.
Irish veterinary journal    June 1, 2010   Volume 63, Issue 6 373-379 doi: 10.1186/2046-0481-63-6-373
Bryan J, Leonard N, Fanning S, Katz L, Duggan V.The objective of this study was to examine the impact of hospitalisation and antimicrobial drug administration on the prevalence of resistance in commensal faecal E. coli of horses. Faecal samples were collected from ten hospitalised horses treated with antimicrobials, ten hospitalised horses not treated with antimicrobials and nine non-hospitalised horses over a consecutive five day period and susceptibility testing was performed on isolated E. coli. Results revealed that hospitalisation alone was associated with increased prevalence of antimicrobial resistance and multidrug resistance in com...
Intra- and interhost evolutionary dynamics of equine influenza virus.
Journal of virology    May 5, 2010   Volume 84, Issue 14 6943-6954 doi: 10.1128/JVI.00112-10
Murcia PR, Baillie GJ, Daly J, Elton D, Jervis C, Mumford JA, Newton R, Parrish CR, Hoelzer K, Dougan G, Parkhill J, Lennard N, Ormond D, Moule S....Determining the evolutionary basis of cross-species transmission and immune evasion is key to understanding the mechanisms that control the emergence of either new viruses or novel antigenic variants with pandemic potential. The hemagglutinin glycoprotein of influenza A viruses is a critical host range determinant and a major target of neutralizing antibodies. Equine influenza virus (EIV) is a significant pathogen of the horse that causes periodical outbreaks of disease even in populations with high vaccination coverage. EIV has also jumped the species barrier and emerged as a novel respirator...
Molecular epidemiology and genetic characterization of equine arteritis virus isolates associated with the 2006-2007 multi-state disease occurrence in the USA.
The Journal of general virology    May 5, 2010   Volume 91, Issue Pt 9 2286-2301 doi: 10.1099/vir.0.019737-0
Zhang J, Timoney PJ, Shuck KM, Seoul G, Go YY, Lu Z, Powell DG, Meade BJ, Balasuriya UB.In 2006-2007, equine viral arteritis (EVA) was confirmed for the first time in Quarter Horses in multiple states in the USA. The entire genome of an equine arteritis virus (EAV) isolate from the index premises in New Mexico was 12 731 nt in length and possessed a previously unrecorded unique 15 nt insertion in the nsp2-coding region in ORF1a and a 12 nt insertion in ORF3. Sequence analysis of additional isolates made during this disease occurrence revealed that all isolates from New Mexico, Utah, Kansas, Oklahoma and Idaho had 98.6-100.0 % (nsp2) and 97.8-100 % (ORF3) nucleotide identity and c...
Second Congress of Equine Surgery, Geneva, Switzerland – 11th to 13th December, 1991.
Equine veterinary education    April 26, 2010   Volume 4, Issue 1 51-52 doi: 10.1111/j.2042-3292.1992.tb01552.x
Barrelet F.No abstract available
Severe anthrax outbreaks in Italy in 2004: considerations on factors involved in the spread of infection.
The new microbiologica    April 21, 2010   Volume 33, Issue 1 83-86 
Fasanella A, Garofolo G, Galante D, Quaranta V, Palazzo L, Lista F, Adone R, Jones MH.Anthrax is a disease of humans and animals caused by the encapsulated, spore-forming Bacillus anthracis. In Italy, anthrax is normally a sporadic disease. During the summer 2004, anthrax broke out in the Basilicata, in southern Italy, a region with a low prevalence of anthrax in which vaccination had been suspended since 1998. The disease involved several animals in few weeks and in a large area. Over 41 days, 81 cattle died, as well as 15 sheep, 9 goats, 11 horses and 8 deer. The Multiple-locus Variable-Number Tandem Repeats Analysis (MLVA) showed that all the 53 isolates belonged to the Clus...
A cross-sectional survey of biosecurity practices on Thoroughbred stud farms in New Zealand.
New Zealand veterinary journal    April 13, 2010   Volume 58, Issue 2 64-68 doi: 10.1080/00480169.2010.65087
Rogers CW, Cogger N.To examine the on-farm biosecurity practices of a group of commercial Thoroughbred stud farms in the North Island of New Zealand, in the absence of an exotic disease outbreak. Methods: A cross-sectional survey of biosecurity practices was conducted during the 2006/2007 Thoroughbred breeding season, and consisted of data from commercial Thoroughbred farms in the North Island of New Zealand standing a stallion. Data were collected on-farm by a single interviewer, using 17 open, closed and multiple-choice questions examining general farm/operation size and features, general animal health and bios...
Validation of a commercial enzyme immunoassay for detection of Clostridium difficile toxins in feces of horses with acute diarrhea.
Journal of veterinary internal medicine    April 6, 2010   Volume 24, Issue 3 628-632 doi: 10.1111/j.1939-1676.2010.00506.x
Medina-Torres CE, Weese JS, Staempfli HR.Clostridium difficile infection (CDI) is a recognized cause of colitis in the horse. Identification of its toxins is important for management of individual cases and for prevention of transmission and zoonosis. In humans, CDI diagnosis is performed with enzyme immunoassays, none of which have been validated for horses. Objective: (1) Establish which test for CDI diagnosis was more frequently used by diagnostic laboratories, (2) determine the identified test's performance, sensitivity, and specificity, and (3) validate its use in diarrheic horses. Methods: Samples were obtained from 72 horses p...
[African horse sickness and equine encephalosis: must Switzerland get prepared].
Schweizer Archiv fur Tierheilkunde    April 3, 2010   Volume 152, Issue 4 165-175 doi: 10.1024/0036-7281/a000039
Zimmerli U, Herholz C, Schwermer H, Hofmann M, Griot C.African horse sickness (AHS) of equines is partly transmitted by the same culicoides species as Bluetongue (BT) disease in even-toed ungulates. Horses normally get seriously sick, with a high case fatality rate. Equine Encephalosis is another, but less-known viral disease of equines, caused by viruses of the same genus as BT and AHS. Like BT of serotype 8 in 2006, both diseases could theoretically be introduced to Europe anytime and spread rapidly then. After the lessons learnt from the most recent bluetongue outbreaks in Europe, the regulations and AHS-contingency plans in force must be updat...
Potential effectiveness of public health interventions during the equine influenza outbreak in racehorse facilities in Japan, 2007.
Transboundary and emerging diseases    March 14, 2010   Volume 57, Issue 3 162-170 doi: 10.1111/j.1865-1682.2010.01134.x
Nishiura H, Satou K.An outbreak of equine influenza (H3N8) occurred among fully vaccinated racehorses in Japan from August to September, 2007. To assess the potential effectiveness of public health interventions other than vaccination (i.e. movement restriction, isolation and quarantine), which started immediately on the date of detection of the first febrile case, a simple epidemiological model was developed and applied to the observed data. The epidemic curves in five racehorse facilities revealed consistent temporal patterns: (i) a sharp increase in symptom onset of cases during the first 3 days, which is thou...
Oral infection of weanling foals with an equine isolate of Lawsonia intracellularis, agent of equine proliferative enteropathy.
Journal of veterinary internal medicine    March 10, 2010   Volume 24, Issue 3 622-627 doi: 10.1111/j.1939-1676.2010.0482.x
Pusterla N, Wattanaphansak S, Mapes S, Collier J, Hill J, Difrancesco M, Gebhart C.Equine proliferative enteropathy (EPE) is an emerging disease of weanling foals. Objective: Describe clinical, hematologic, biochemical, serologic, molecular, and ultrasonographic findings in foals experimentally infected with Lawsonia intracellularis. Methods: Eight foals. Methods: Recently weaned foals were assigned to either the challenge (n = 3), the sentinel (n = 3), or the control (n = 2) group. Foals were experimentally challenged via intragastric inoculation of 3 x 10(10)L. intracellularis organisms grown in culture. Each experimentally infected foal was housed with a sentinel foal in ...
Transmission of West Nile virus during horse autopsy.
Emerging infectious diseases    March 6, 2010   Volume 16, Issue 3 573-575 doi: 10.3201/eid1603.091042
Venter M, Steyl J, Human S, Weyer J, Zaayman D, Blumberg L, Leman PA, Paweska J, Swanepoel R.No abstract available
Risk of equine infectious disease transmission by non-race horse movements in Japan.
The Journal of veterinary medical science    February 24, 2010   Volume 72, Issue 7 839-844 doi: 10.1292/jvms.09-0447
Hayama Y, Kobayashi S, Nishida T, Nishiguchi A, Tsutsui T.For determining surveillance programs or infectious disease countermeasures, risk evaluation approaches have been recently undertaken in the field of animal health. In the present study, to help establish efficient and effective surveillance and countermeasures for equine infectious diseases, we evaluated the potential risk of equine infectious disease transmission in non-race horses from the viewpoints of horse movements and health management practices by conducting a survey of non-race horse holdings. From the survey, the non-race horse population was classified into the following five secto...
Environmental risk factors of West Nile virus infection of horses in the Senegal River basin.
Epidemiology and infection    February 23, 2010   Volume 138, Issue 11 1601-1609 doi: 10.1017/S095026881000035X
Chevalier V, Dupressoir A, Tran A, Diop OM, Gottland C, Diallo M, Etter E, Ndiaye M, Grosbois V, Dia M, Gaidet N, Sall AA, Soti V, Niang M.In 2005, a serological study was carried out on horses in five ecologically contrasted zones of the Senegal River basin (Senegal) to assess West Nile virus (WNV) transmission and investigate underlying environmental risk factors. In each study zone, horses were randomly selected and blood samples taken. A land-cover map of the five study areas was built using two satellite ETM+ images. Blood samples were screened by ELISA for anti-WNV IgM and IgG and positive samples were confirmed by seroneutralization. Environmental data were analysed using a principal components analysis. The overall IgG se...
1 46 47 48 49 50 89