Analyze Diet

Topic:Vector-borne disease

Vector-borne diseases in horses are illnesses transmitted by vectors such as mosquitoes, ticks, and flies. These diseases can affect equine health by introducing pathogens like viruses, bacteria, or parasites into the horse's system. Common vector-borne diseases in horses include West Nile Virus, Equine Infectious Anemia, and Lyme disease. The transmission dynamics, clinical manifestations, and management strategies for these diseases vary depending on the pathogen and vector involved. Understanding these aspects is important for developing preventive measures and treatment protocols. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, and management of vector-borne diseases in equines.
North American encephalitic arboviruses.
Neurologic clinics    July 29, 2008   Volume 26, Issue 3 727-ix doi: 10.1016/j.ncl.2008.03.012
Davis LE, Beckham JD, Tyler KL.Arboviruses continue to be a major cause of encephalitis in North America, and West Nile virus neuroinvasive disease is now the dominant cause of encephalitis. Transmission to humans of North American arboviruses occurs by infected mosquitoes or ticks. Most infections are asymptomatic or produce a flulike illness. Rapid serum or cerebrospinal fluid IgM antibody capture ELISA assays are available to diagnosis the acute infection for all North American arboviruses. Unfortunately, no antiviral drugs are approved for the treatment of arbovirus infection and current therapy is supportive.
Persistently infected horses are reservoirs for intrastadial tick-borne transmission of the apicomplexan parasite Babesia equi.
Infection and immunity    May 19, 2008   Volume 76, Issue 8 3525-3529 doi: 10.1128/IAI.00251-08
Ueti MW, Palmer GH, Scoles GA, Kappmeyer LS, Knowles DP.Tick-borne pathogens may be transmitted intrastadially and transstadially within a single vector generation as well as vertically between generations. Understanding the mode and relative efficiency of this transmission is required for infection control. In this study, we established that adult male Rhipicephalus microplus ticks efficiently acquire the protozoal pathogen Babesia equi during acute and persistent infections and transmit it intrastadially to naïve horses. Although the level of parasitemia during acquisition feeding affected the efficiency of the initial tick infection, infected t...
Real-time fluorogenic reverse transcription polymerase chain reaction assay for detection of African horse sickness virus. Agüero M, Gómez-Tejedor C, Angeles Cubillo M, Rubio C, Romero E, Jiménez-Clavero A.African horse sickness is an arthropod-borne disease of the equine included in the World Organization for Animal Health (OIE) list with important economic consequences for horse trade. The disease is caused by African horse sickness virus (AHSV; family Reoviridae, genus Orbivirus), which is transmitted by Culicoides midges. It is endemic in sub-Saharan Africa, spreading occasionally outside this area where the occurrence of Culicoides vectors allows virus transmission. Currently, only conventional (gel-based) reverse transcription polymerase chain reaction (RT-PCR) protocols are available for ...
Limited interdecadal variation in mosquito (Diptera: Culicidae) and avian host competence for Western equine encephalomyelitis virus (Togaviridae: Alphavirus).
The American journal of tropical medicine and hygiene    April 4, 2008   Volume 78, Issue 4 681-686 
Reisen WK, Fang Y, Brault AC.Historically, western equine encephalomyelitis virus (WEEV) caused large equine and human epidemics in the Americas from Canada into Argentina. Despite recent enhanced surveillance for West Nile virus, there have been few reports of equine or human cases and little documented enzootic activity of WEEV. During the past three years, WEEV has been active again in California, but without human or equine cases. In the current study, we compared host and vector competence of representative WEEV isolates made during each decade over the past 60 years using white-crowned sparrows, house sparrows, and ...
Transmission dynamics and changing epidemiology of West Nile virus.
Animal health research reviews    March 19, 2008   Volume 9, Issue 1 71-86 doi: 10.1017/S1466252307001430
Blitvich BJ.West Nile virus (WNV) is a flavivirus that is maintained in a bird-mosquito transmission cycle. Humans, horses and other non-avian vertebrates are usually incidental hosts, but evidence is accumulating that this might not always be the case. Historically, WNV has been associated with asymptomatic infections and sporadic disease outbreaks in humans and horses in Africa, Europe, Asia and Australia. However, since 1994, the virus has caused frequent outbreaks of severe neuroinvasive disease in humans and horses in Europe and the Mediterranean Basin. In 1999, WNV underwent a dramatic expansion of ...
[Introduction of West Nile virus in the Netherlands].
Tijdschrift voor diergeneeskunde    March 4, 2008   Volume 133, Issue 3 106-107 
Klinkhamer K, Lipman LJ.No abstract available
Identification of hyperendemic foci of horses with West Nile virus disease in Texas.
American journal of veterinary research    March 4, 2008   Volume 69, Issue 3 378-384 doi: 10.2460/ajvr.69.3.378
Wittich CA, Ward MP, Fosgate GT, Srinivasan R.To determine whether West Nile virus (WNV) disease hyperendemic foci (hot spots) exist within the horse population in Texas and, if detected, to identify the locations. Methods: Reports of 1,907 horses with WNV disease in Texas from 2002 to 2004. Methods: Case data with spatial information from WNV epidemics occurring in 2002 (1,377 horses), 2003 (396 horses), and 2004 (134 horses) were analyzed by use of the spatial scan statistic (Poisson model) and kriging of empirical Bayes smoothed county attack rates to determine locations of horses with WNV disease in which affected horses were consiste...
Estimation of the transmission dynamics of Theileria equi and Babesia caballi in horses.
Parasitology    February 27, 2008   Volume 135, Issue 5 555-565 doi: 10.1017/S0031182008004204
Rüegg SR, Heinzmann D, Barbour AD, Torgerson PR.For the evaluation of the epidemiology of Theileria equi and Babesia caballi in a herd of 510 horses in SW Mongolia, several mathematical models of the transmission dynamics were constructed. Because the field data contain information on the presence of the parasite (determined by PCR) and the presence of antibodies (determined by IFAT), the models cater for maternal protection with antibodies, susceptible animals, infected animals and animals which have eliminated the parasite and also allow for age-dependent infection in susceptible animals. Maximum likelihood estimation procedures were used...
Hematophagous Diptera collected from a horse and paired carbon dioxide-baited suction trap in southern California: relevance to West Nile virus epizootiology.
Journal of medical entomology    February 21, 2008   Volume 45, Issue 1 115-124 doi: 10.1603/0022-2585(2008)45[115:hdcfah]2.0.co;2
Gerry AC, Nawaey TM, Sanghrajka PB, Wisniewska J, Hullinger P.Hematophagous Diptera landing on a horse were removed by vacuum, and their numbers were related to a paired carbon dioxide-baited suction trap at three locations in southern California where West Nile virus activity was high during the preceding year. Insects collected from the horse included mosquitoes (nine species), biting midges (Culicoides sonorensis Wirth & Jones), and black flies (Simulium bivittatum Malloch). Mosquitoes were predominantly collected from the head, crest, withers, neck, chest, and shoulders of the horse, whereas biting midges and black flies were predominantly collected ...
High subclinical West Nile virus incidence among nonvaccinated horses in northern California associated with low vector abundance and infection.
The American journal of tropical medicine and hygiene    January 12, 2008   Volume 78, Issue 1 45-52 
Nielsen CF, Reisen WK, Armijos MV, Maclachlan NJ, Scott TW.Although horse cases frequently are reported during West Nile virus (WNV) outbreaks, few investigations have focused on the epidemiology of this transmission. From April to October 2003 to 2005, mosquito abundance and infection were monitored 3 days per week at an equine research facility at the University of California, Davis. Thirty-two nonvaccinated horses enrolled as controls in a vaccine study were bled monthly, and their serum was tested for evidence of WNV infection by plaque reduction neutralization test (PRNT). In 2004, one positive Culex pipiens pool was associated with a single hors...
Rickettsia infection in five areas of the state of São Paulo, Brazil.
Memorias do Instituto Oswaldo Cruz    December 21, 2007   Volume 102, Issue 7 793-801 doi: 10.1590/s0074-02762007000700003
Horta MC, Labruna MB, Pinter A, Linardi PM, Schumaker TT.This study investigated rickettsial infection in animals, humans, ticks, and fleas collected in five areas of the state of São Paulo. Eight flea species (Adoratopsylla antiquorum antiquorum, Ctenocephalides felis felis, Polygenis atopus, Polygenis rimatus, Polygenis roberti roberti, Polygenis tripus, Rhopalopsyllus lugubris, and Rhopalopsyllus lutzi lutzi), and five tick species (Amblyomma aureolatum, Amblyomma cajennense, Amblyomma dubitatum, Ixodes loricatus, and Rhipicephalus sanguineus) were collected from dogs, cats, and opossums. Rickettsia felis was the only rickettsia found infecting ...
Equine travellers to the Olympic Games in Hong Kong 2008: a review of worldwide challenges to equine health, with particular reference to vector-borne diseases.
Equine veterinary journal    December 18, 2007   Volume 40, Issue 1 87-95 doi: 10.2746/042516408X253136
Herholz C, Füssel AE, Timoney P, Schwermer H, Bruckner L, Leadon D.The past 10-20 years have seen exponential growth in the volume of trade in horses and equine germplasm; and the extent of global horse movements has increased significantly in the last 4 years. In preparing for the transport of elite Olympic horses to Hong Kong in 2008, it will be very important to be as fully informed as possible of the disease situation in both the exporting and importing country, import and re-entry requirements, as well as having a vaccination strategy to protect against particular diseases. In this context the review describes the equine vector-borne disease situation in...
Culicoides species attracted to horses with and without insect hypersensitivity.
Veterinary journal (London, England : 1997)    August 28, 2007   Volume 178, Issue 1 91-97 doi: 10.1016/j.tvjl.2007.07.005
van der Rijt R, van den Boom R, Jongema Y, van Oldruitenborgh-Oosterbaan MM.The aims of this study were to determine (1) which species of Culicoides is most commonly attracted to horses, (2) whether horses suffering insect hypersensitivity attract more Culicoides spp. than unaffected horses, and (3) the times when Culicoides spp. are most active. Horses affected by insect hypersensitivity and unaffected horses were placed inside mosquito netting tents for 30 min at different times of the day. All Culicoides spp. trapped inside the tents were collected and identified. C. obsoletus was the most common species found, followed by C. pulicaris. Healthy horses attracted sli...
Serosurvey of West Nile virus in equids and bovids in Spain.
The Veterinary record    August 19, 2007   Volume 161, Issue 6 212 doi: 10.1136/vr.161.6.212
Jiménez-Clavero MA, Tejedor CG, Rojo G, Soriguer R, Figuerola J.No abstract available
What is your diagnosis? Onchocerciasis.
Journal of the American Veterinary Medical Association    July 4, 2007   Volume 231, Issue 1 39-40 doi: 10.2460/javma.231.1.39
Metry CA, Beard DM, Simon E.No abstract available
An epidemiological investigation of the African horsesickness outbreak in the Western Cape Province of South Africa in 2004 and its relevance to the current equine export protocol.
Journal of the South African Veterinary Association    April 27, 2007   Volume 77, Issue 4 191-196 doi: 10.4102/jsava.v77i4.376
Sinclair M, Bührmann G, Gummow B.African Horsesickness (AHS) is a controlled disease in South Africa. The country is divided into an infected area and a control area. An outbreak of AHS in the control area can result in a ban of exports for at least 2 years. A retrospective epidemiological study was carried out on data collected during the 2004 AHS outbreak in the surveillance zone of the AHS control area in the Western Cape Province. The objective of this study was to describe the 2004 outbreak and compare it with the 1999 AHS outbreak in the same area. As part of the investigation, a questionnaire survey was conducted in th...
Restricted and selective tropism of a Venezuelan equine encephalitis virus-derived replicon vector for human dendritic cells.
Viral immunology    April 12, 2007   Volume 20, Issue 1 88-104 doi: 10.1089/vim.2006.0090
Nishimoto KP, Laust AK, Wang K, Kamrud KI, Hubby B, Smith JF, Nelson EL.Dendritic cells (DCs) consist of heterogeneous phenotypic populations and have diverse immunostimulatory functions dependent on both lineage and functional phenotype, but as exceptionally potent antigen-presenting cells, they are targets for generating effective antigen-specific immune responses. A promising replicon particle vector derived from Venezuelan equine encephalitis virus (VEE) has been reported to transduce murine footpad DCs. However, the receptive DC subset, the degree of restriction for this tropism, and the extent of conservation between rodents and humans have not been well cha...
Investigations on outbreaks of African horse sickness in the surveillance zone in South Africa.
Revue scientifique et technique (International Office of Epizootics)    March 17, 2007   Volume 25, Issue 3 1097-1109 
Venter GJ, Koekemoer JJ, Paweska JT.Confirmed outbreaks of African horse sickness (AHS) occurred in the surveillance zone of the Western Cape in 1999 and 2004, both of which led to a two-year suspension on the export of horses. Light trap surveys in the outbreak areas showed that known vector competent Culicoides species, notably C. imicola, were abundant and present in numbers equal to those in the traditional AHS endemic areas. Isolations of AHS virus serotypes 1 and 7, equine encephalosis virus, and bluetongue virus from field-collected C. imicola in the surveillance zone demonstrated that this species was highly competent an...
West Nile virus in Europe and Africa: still minor pathogen, or potential threat to public health?
Bulletin de la Societe de pathologie exotique (1990)    January 27, 2007   Volume 99, Issue 5 348-354 
Couissinier-Paris P.Until 1999 the West Nile virus had been reported only in the "Old world" and particularly in Europe, Africa, Middle East and Asia where it was responsible only for sporadic or size-and-time-limited outbreaks in humans and equines. The sudden and unexpected emergence of WN in New York in 1999, followed by a rapid and huge extension to the whole North America in less than four years, made health authorities aware of the potential of previously forgotten viruses to become a threat to public health. The present review will focus on the epidemiology of West Nile virus in Europe and Africa during th...
Response of Tabanidae (Diptera) to different natural attractants.
Journal of vector ecology : journal of the Society for Vector Ecology    January 26, 2007   Volume 31, Issue 2 262-265 doi: 10.3376/1081-1710(2006)31[262:rotdtd]2.0.co;2
Krcmar S, Mikuska A, Merdić E.The response of female tabanids to natural attractants was studied in the Monjoros Forest along the Nature Park Kopacki rit in eastern Croatia. Tabanids were caught in canopy traps baited with either aged cow, horse, sheep, or pig urine and also in unbaited traps. Tabanids were collected in a significantly higher numbers in traps baited with natural attractants compared to unbaited traps. The number of females of Tabanus bromius, Tabanus maculicornis, Tabanus tergestinus, and Hybomitra bimaculata collected from canopy traps baited with cow urine and traps baited with other natural attractants ...
West Nile virus in horses.
The Veterinary record    December 26, 2006   Volume 159, Issue 26 895 
Drummond R.No abstract available
Remote sensing based identification of environmental risk factors associated with West Nile disease in horses in Camargue, France.
Preventive veterinary medicine    December 18, 2006   Volume 79, Issue 1 20-31 doi: 10.1016/j.prevetmed.2006.11.008
Leblond A, Sandoz A, Lefebvre G, Zeller H, Bicout DJ.Geographic information system and remote sensing technologies were used to identify landscape features associated with risk of West Nile virus transmission as defined by the presence of confirmed horse cases. SPOT-4 images of Camargue area were used to generate a map of landscape categories of epidemic foci and the geographic information system was employed to determine the proportion of landscape components surrounding 10 horse case sites and 17 control sites. The spatio-temporal analysis of the cases outbreak gave the best results for a spatial window of 9 km and a temporal window of 18 days...
West Nile virus in horses.
The Veterinary record    December 13, 2006   Volume 159, Issue 24 823 
Coumbe K, Mair T, Samuelson J, Sinclair D.No abstract available
West Nile virus in horses.
The Veterinary record    December 5, 2006   Volume 159, Issue 23 787-788 
Chandler K.No abstract available
Serological assessment of West Nile fever virus activity in the pastoral system of Ferlo, Senegal.
Annals of the New York Academy of Sciences    December 1, 2006   Volume 1081 216-225 doi: 10.1196/annals.1373.026
Chevalier V, Lancelot R, Diaité A, Mondet B, Sall B, De Lamballerie X.The Ferlo area (north-central Senegal) is characterized by a system of temporary ponds favorable to arboviruses among which West Nile fever (WNF) was already identified. During the rainy season in 2003, a serological study was undertaken on horses to assess the activity of the WNF virus (WNFV) in Barkedji (Ferlo). The observed serological prevalence rate was 78.3% for neutralizing antibodies, with a 95% confidence interval (CI) of [64.0, 92.7]. This prevalence rate significantly increased with age (P = 10(-5)). This study confirmed that WNF was endemic in the Ferlo. The transmission risks depe...
New findings on anaplasmosis caused by infection with Anaplasma phagocytophilum.
Annals of the New York Academy of Sciences    December 1, 2006   Volume 1081 360-370 doi: 10.1196/annals.1373.053
Lillini E, Macrì G, Proietti G, Scarpulla M.Ixodes ricinus (I. ricinus) is one of the vectors of Anaplasma phagocytophilum (A. phagocytophilum) in Europe, in which rates of infection range from 1.9% to 34%. In 1998, human granulocytic ehrlichiosis-like (HGE-like) Ehrlichia DNA was detected in Italy, by PCR technique in one I. ricinus nymph out of 55 ticks that were examined. In 1996, 6.3% of 310 human sera in high-risk subjects from Italy were found positive for antibodies to Ehrlichia phagocytophila (E. phagocytophila). In the same year, the authors reported the first case of equine granulocytic ehrlichiosis. In 1997, only 2 out of 563...
West Nile virus in Guadeloupe: introduction, spread, and decrease in circulation level: 2002-2005.
Annals of the New York Academy of Sciences    December 1, 2006   Volume 1081 206-215 doi: 10.1196/annals.1373.025
Lefrançois T, Blitvich BJ, Pradel J, Molia S, Vachiéry N, Martinez D.In July 2002, a surveillance system was implemented on Guadeloupe to detect for the potential introduction and monitor the spread of West Nile virus (WNV). From 2002 to 2004, equines and chickens were serologically assayed for antibodies to WNV by IgG and IgM enzyme-linked immunosorbent assay (ELISA), epitope-blocking ELISA, and plaque reduction neutralization tests. After introduction, probably through migratory birds at the end of 2001, many seroconversions occurred between July and October 2002 resulting in a high seroprevalence (19.3%) in equines in 2003. WNV circulation levels decreased d...
West Nile virus in horses.
The Veterinary record    November 23, 2006   Volume 159, Issue 21 723 doi: 10.1136/vr.159.21.723
Durham A.No abstract available
The influence of distance on movement of tabanids (Diptera: Tabanidae) between horses.
Veterinary parasitology    November 16, 2006   Volume 144, Issue 3-4 380-384 doi: 10.1016/j.vetpar.2006.09.041
Barros AT, Foil LD.Two studies evaluated the potential use of spatial barriers to reduce the mechanical transmission of disease agents by tabanids in the Pantanal region of Brazil. Tabanids at stations separated by four different distances (5, 10, 25, and 50m) were marked. In the first study, tabanids were marked and allowed to feed until engorgement or natural interruption occurred and captured if they transferred to the other horse. A total of 2847 tabanids belonging to nine different species were marked. The percentage of tabanids that moved between horses was 10.5 at 5m, 6.8 at 10m, and 4.6 at 25m. In the se...
Experimental vesicular stomatitis virus infection in horses: effect of route of inoculation and virus serotype.
Veterinary pathology    November 14, 2006   Volume 43, Issue 6 943-955 doi: 10.1354/vp.43-6-943
Howerth EW, Mead DG, Mueller PO, Duncan L, Murphy MD, Stallknecht DE.Horses were inoculated with Vesicular stomatitis New Jersey and Indiana viruses by routes simulating contact and vector transmission. Clinical signs, lesions, antibody development, viral shedding and persistence, and viremia were monitored. Horses were infected with both viruses by all routes as confirmed by seroconversion. Salivation, primary lesions at inoculation sites, and secondary oral lesions were the most common clinical findings. Viral shedding was most often from the oral cavity, followed by the nasal cavity; titers were highest from oral cavity samples. Virus was rarely isolated fro...
1 15 16 17 18 19 29