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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.
A mark-recapture method for measuring effects of spatial separation of horses on tabanid (Diptera) movement between hosts.
Journal of medical entomology    May 26, 1983   Volume 20, Issue 3 301-305 doi: 10.1093/jmedent/20.3.301
Foil L.No abstract available
Equine herds as sentinels for Venezuelan Equine encephalitis virus activity, Nicaragua 1977.
Bulletin of the Pan American Health Organization    January 1, 1983   Volume 17, Issue 1 14-18 
Dickerman RW, Scherer WF.No abstract available
Ross River virus activity along the south coast of New South Wales.
The Australian journal of experimental biology and medical science    December 1, 1982   Volume 60, Issue 6 701-706 doi: 10.1038/icb.1982.71
Cloonan MJ, O'Neill BJ, Vale TG, Carter IW, Williams JE.The sera of 468 blood donors and 63 domestic animals, collected from the south coast of New South Wales, were tested for the presence of antibodies to Ross River virus. Antibodies were detected in 7% of human sera, 25% of cow sera and 65% of horse sera. Using the blood donors as 'human sentinels', seroconversions were demonstrated in two donors from the Nowra-Kiama region and from a patient in the same area; none of the three had been outside of the study area during the period of seroconversion or at the time of infection. Of the 15 seropositive horses, 6 (40%) had lived continuously since bi...
Serologic evidence of Jamestown Canyon and Keystone virus infection in vertebrates of the DelMarVa Peninsula.
The American journal of tropical medicine and hygiene    November 1, 1982   Volume 31, Issue 6 1245-1251 doi: 10.4269/ajtmh.1982.31.1245
Watts DM, LeDuc JW, Bailey CL, Dalrymple JM, Gargan TP.Serological data accumulated during the past decade indicated that a variety of feral and domestic animals of the Delaware-Maryland-Virginia (DelMarVa) Peninsula were infected with Jamestown Canyon (JC) and/or Keystone (KEY) viruses (Bunyaviridae, California serogroup). Neutralizing (N) antibody to JC virus was most prevalent in white-tailed deer, sika deer, cottontail rabbits and horses. KEY virus N antibody was detected most frequently in gray squirrels and domestic goats. N antibody indicative of past infection by one or both viruses also was found in raccoons, horses and humans. JC and/or ...
Variation in arbovirus infection rates in species of birds sampled in a serological survey during an encephalitis epidemic in the Murray Valley of South-eastern Australia, February 1974.
The Australian journal of experimental biology and medical science    October 1, 1982   Volume 60 (Pt 5) 471-478 doi: 10.1038/icb.1982.52
Marshall ID, Brown BK, Keith K, Gard GP, Thibos E.There was extensive and exuberant breeding of waterbirds before and during an epidemic of arboviral encephalitis in the Murray Valley of south eastern Australia in 1974. As estimated by haemagglutination inhibition tests on 432 bird sera collected between 4th and 13th February, 1974, infection with Murray Valley encephalitis virus, Kunjin virus and possibly other flaviviruses was concentrated in species of the Order Ciconiiformes (55% positive) and Pelecaniformes (41%), compared with only 5% in Anseriformes. Although Sindbis virus infections were also highest in these 2 Orders (56% and 46%, re...
The role played by Hyalomma dromedarii in the transmission of African horse sickness virus in Egypt. Awad FI, Amin MM, Salama SA, Khide S.No abstract available
[Study of combined foci of mosquito-transmitted arbovirus infections].
Voprosy virusologii    September 1, 1981   Issue 5 611-615 
Bochkova NG, Koreshkova GV, Pogodina VV.A total of 5227 serum specimens from humans, horses and swine collected in the seasons of 1968--1976 in 15 administrative areas of the Primorskiy Kray were examined with antigens of a number of mosquito-borne arboviruses: Japanese encephalitis (JE), West Nile (WN), Getah, and Sindbis. Both independent and combined circulation of these viruses in the region was established. Sindbis virus was found to be circulating separately most frequently, West Nile virus the least frequently. According to the results of the serological analysis, the conditions for combined circulation are most closely relat...
Studies with equine infectious anemia virus: transmission attempts by mosquitoes and survival of virus on vector mouthparts and hypodermic needles, and in mosquito tissue culture.
American journal of veterinary research    September 1, 1981   Volume 42, Issue 9 1469-1473 
Williams DL, Issel CJ, Steelman CD, Adams WV, Benton CV.Biological and mechanical transmission trials with Psorophora columbiae (Dyar and Knab) and Aedes sollicitans (Walker) and ponies acutely infected with equine infectious anemia virus (EIAV) were negative. The EIAV antigen was detected by radioimmunoassay in Ae sollicitans immediately after the mosquitoes had fed on an acutely ill pony, but not 14 days after feeding. Psorophora columbiae mosquitoes had detectable EIAV antigen as determined by radioimmunoassay 24 hours after they fed on an acutely ill pony; this antigen was not detected again until 6 days after feeding and was still detected 14 ...
Epizootiology of eastern equine encephalomyelitis virus in upstate New York, USA. III. Population dynamics and vector potential of adult Culiseta morsitans (Diptera: Culicidae).
Journal of medical entomology    July 1, 1981   Volume 18, Issue 4 313-316 doi: 10.1093/jmedent/18.4.313
Morris CD, Zimmerman RH.No abstract available
Intestinal threshold of an enzootic strain of Venezuelan encephalitis virus in Culex (Melanoconion) taeniopus mosquitoes and its implications to vector competency and vertebrate amplifying hosts.
The American journal of tropical medicine and hygiene    July 1, 1981   Volume 30, Issue 4 862-869 doi: 10.4269/ajtmh.1981.30.862
Scherer WF, Cupp EW, Lok JB, Brenner RJ, Ordonez JV.The minimal intestinal dose of an enzootic strain of Venezuelan encephalitis (VE) virus for Culex (Melanoconion) taeniopus mosquitoes caught at a marsh habitat of VE virus in Guatemala was less than five plaque forming units (pfu) of virus. Ingestion of this dose of virus in blood of viremic hamsters resulted in transmission of virus to other hamsters. This low intestinal threshold of an enzootic strain of VE virus indicates that the natural Guatemalan population of Cu. (Mel.) taeniopus can acquire VE virus from vertebrates that have viremia levels as low as 1,000-5,000 pfu/ml of blood, provid...
[Tick-borne encephalitis in the horse].
Schweizer Archiv fur Tierheilkunde    May 1, 1981   Volume 123, Issue 5 227-233 
Waldvogel A, Matile H, Wegmann C, Wyler R, Kunz C.No abstract available
Complement fixation tests for equine piroplasmosis (Babesia equi and B caballi) performed in the UK during 1976 to 1979.
Equine veterinary journal    April 1, 1981   Volume 13, Issue 2 103-106 doi: 10.1111/j.2042-3306.1981.tb04127.x
Joyner LP, Donnelly J, Huck RA.The results of complement fixation (CF) test for equine piroplasmosis on sera from horses destined for international movement from Great Britain and Ireland are presented and analysed. No horses born and continuously resident in the British Isles were found carrying CF antibodies to either Babesia equi or B caballi. Positive animals were found to have association with the following countries where known tick vectors occur: Spain, Portugal, Belgium, France, Poland, USSR and Arabian Gulf countries. Data on the persistence of CF antibodies in animals subjected to repeated testing showed that some...
The role of stable flies and mosquitoes in the transmission of equine infectious anemia virus. Cupp EW, Kemen MJ.No abstract available.
Arthropod-borne encephalitides in the Americas.
Bulletin of the World Health Organization    January 1, 1979   Volume 57, Issue 4 513-533 
Monath TP.The arthropod-borne encephalitides are an important cause of equine and human morbidity in the Americas. Between 1975 and 1978, 6970 human cases of arboviral encephalitis were reported in the United States of America; however, this represents only a fraction of the true incidence. St Louis encephalitis (4824 cases), California encephalitis (1035 cases), and western equine encephalitis (WEE, 947 cases) accounted for 98.5% of all reported infections. Approximately 1000-4000 cases of equine encephalitis occur annually in the United States, the majority due to WEE. In tropical America, important o...
California encephalitis virus activity in mosquitoes and horses in southern Ontario, 1975.
Canadian journal of microbiology    December 1, 1978   Volume 24, Issue 12 1544-1547 doi: 10.1139/m78-246
Artsob H, Wright R, Shipp L, Spence L, Th'ng C.A study was undertaken in 1975 to determine California encephalitis virus activity in southern Ontario. Three thousand and sixty-one mosquitoes, primarily Aedes species, were divided into 104 pools and inoculated into suckling mice. Isolates of snowshoe hare virus were obtained from one pool each of Aedes fitchii and A. triseriatus mosquitoes collected in the Guelph area. Serological testing of horse sera revealed extensive virus activity in southern Ontario and indicated that horses may serve as excellent monitors for California encephalitis virus.
Eastern equine encephalomyelitis in upstate New York: studies of a 1976 epizootic by a modified serologic technique, hemagglutination reduction, for rapid detection of virus infections.
The American journal of tropical medicine and hygiene    November 1, 1978   Volume 27, Issue 6 1240-1245 doi: 10.4269/ajtmh.1978.27.1240
Srihongse S, Grayson MA, Morris CD, Deibel R, Duncan CS.An extensive outbreak of eastern equine encephalomyelitis (EEE) occurred in upstate New York during the summer of 1976, with 37 cases confirmed in horses by isolation of virus and/or by serologic examination. Other specimens collected in the affected area yielded 16 further isolates: 9 from 818 pools of 33,365 mosquitoes, 5 from tissues of 64 birds and 2 from 4 sentinel pheasants with serologic conversions. EEE antibodies were also detected in 81 of 499 wild birds tested. Our data implicate sparrows, cowbirds, and catbirds in the amplification of EEE virus and Culiseta melanura mosquitoes as v...
Rates of infection in, and transmission of, African horse-sickness virus by Aedes aegypti mosquitoes.
Acta virologica    July 1, 1978   Volume 22, Issue 4 329-332 
Braverman Y, Boorman J.Very low infection rates (less than 3%) were obtained when Aedes aegypti mosquitoes ingested blood contained 5.8--6.5 log10 MLD50/0.02 ml African horse sickness virus (AHSV). When A. aegypti mosquitoes were inoculated intrathoracically with virus, however, high infection rates were achieved. Mosquitoes infected by inoculum failed to transmit virus to embryonated hens eggs by bite, and virus could not be detected in membrane or blood when inoculated mosquitoes were allowed to engorge on uninfected blood through a chick skin membrane. It was concluded that the mosquito A. aegypti is unlikely to ...
Failure to propagate equine infectious anemia virus in mosquitoes and Culicoides variipennis.
American journal of veterinary research    May 1, 1978   Volume 39, Issue 5 875-876 
Shen DT, Gorham JR, Jones RH, Crawford TB.Laboratory-colonized mosquitoes, Culex tarsalis, aedes aegypti, Culiseta inornata, and Anopheles free-borni, and the biting gnat, Culicoides variipennis, were exposed to equine infectious anemia virus. Exposure to the virus was by intrathoracic inoculation for mosquitoes and by oral ingestion of an infective blood meal through a membrane for C variipennis. After various intervals, groups of 15 to 20 insects were homogenized and inoculated into susceptible ponies. Positive immunodiffusion test results were used as criterion for equine infectious anemia infection in ponies. Virus was not detecte...
Serological evidence for arboviral infection among horses–HI test by filter paper disc method.
The Indian journal of medical research    May 1, 1978   Volume 67, Issue 5 708-712 
D'Souza MB, Nagarkatti S, Rao KM.No abstract available
Selection of a strain of Culex tarsalis highly resistant to infection following ingestion of western equine encephalomyelitis virus.
The American journal of tropical medicine and hygiene    March 1, 1978   Volume 27, Issue 2 Pt 1 313-321 doi: 10.4269/ajtmh.1978.27.313
Hardy JL, Apperson G, Asman SM, Reeves WC.After prolonged selection, two hybrid strains of Culex tarsalis were evolved that were highly resistant to infection following ingestion of western equine encephalomyelitis virus. These strains were greater than 25,000-fold more resistant than the most susceptible parental strain when fed on viremic chicks. Resistance was associated with a mesenteronal barrier since both refractory and parental strains were equally susceptible to infection by intrathoracic inoculation. Susceptibility was dominant, possibly incompletely dominant, over resistance. Inheritance was probably polyfactorial but this ...
Occurrence and distribution of western equine encephalomyelitis in Florida.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 351-352 
Hoff GL, Bigler WJ, Buff EE, Beck E.Research and surveillance programs relating to the occurrence and distribution of western equine encephalomyelitis virus in Florida, conducted between 1955 and 1976, suggest that the virus is (1) an endemic arbordae, (2) transmitted in a continuous cycle throughout the year by Culiseta melanura mosquitoes, and (3) restricted to fresh water swamps and waterways in central, north, and northwest Florida.
Eastern equine encephalitis in Massachusetts, 1957-1976. A prospective study centered upon analyses of mosquitoes.
American journal of epidemiology    February 1, 1978   Volume 107, Issue 2 170-178 doi: 10.1093/oxfordjournals.aje.a112519
Grady GF, Maxfield HK, Hildreth SW, Timperi RJ, Gilfillan RF, Rosenau BJ, Francy DB, Calisher CH, Marcus LC, Madoff MA.Reappearance of eastern equine encephalitis (EEE) in Massachusetts residents in the 1970's provided an opportunity to assess the predictive value of data on rainfall, EEE in horses, and carriage of EEE virus (EEEV) by mosquitoes, factors which had been studied annually since the last EEE outbreak in 1955-1956. The cycle of multiple cases during 1973-1975 started in a second consecutive year of rainfall that exceeded the annual mean by more than 20 cm, conditions recapitulating the 1955-1956 experience. In 1973, widespread EEE fatalities in horses presaged human cases, another recapitulation of...
Role of horse flies in transmission of wquine infectious anemia from carrier ponies.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 360-362 
Kemen MJ, McClain DS, Matthysse JG.Equine infectious anemia virus was transmitted from an acutely ill and an inapparently infected pony to uninfected ponies by the interrupted feeding of horse flies (tabanids). Transmission from acutely ill ponies was not accomplished following: (1) the interrupted feeding of a single horse fly, (2) bites of horse flies that had fed on an acutely affected pony 24 hours earlier, (3) bites of horse flies that had oviposited after feeding on an acutely affected pony, or (4) the inoculation of larval material derived from horse flies that had fed to repletion. It was concluded that horse fly transm...
Antibodies to Akabane virus in Australia.
Australian veterinary journal    January 1, 1978   Volume 54, Issue 1 1-3 doi: 10.1111/j.1751-0813.1978.tb00256.x
Cybinski DH, St George TD, Paull NI.Neutralising antibody to Akabane virus was shown to develop in cattle in northern Australia throughout the year and also on the east coast of New South Wales in the summer during 1975/1976. Other species found to have antibody to Akabane virus were buffaloes, horses, camels and sheep, but no antibody was found in domestic chickens, ducks, wallabies or man. The biting midge Culicoides brevitarsis has been detected in all the major areas where antibody was demonstrated in this study.
A survey of biting flies attacking equines in three states of the southwestern United States, 1972.
Journal of medical entomology    December 24, 1977   Volume 14, Issue 4 441-447 doi: 10.1093/jmedent/14.4.441
Jones RH, Hayes RO, Potter HW, Francy DB.A survey of biting flies in the southwestern United States resulted in the recovery of 34 species as they attacked equines. The geographic distribution of each species at 15 sites and the abundance of attacking flies were used to determine that 22 species commonly attack equines. Culicoides variipennis (Coquillett) was the most common species collected; it was recovered at 12 sites and comprised the highest percentage (29.8%) of the total survey catch for all species collected. The next 2 most common species were Psorophora columbiae (Dyar & Knab) and Aedes vexans (Meigen). C. variipennis ...
Venezuelan equine encephalitis vaccination survey in Arizona and New Mexico, 1972.
Public health reports (Washington, D.C. : 1974)    July 1, 1977   Volume 92, Issue 4 357-360 
Moore RM, Moulthrop JI, Sather GE, Holmes CL, Parker RL.Field studies were conducted in 1972 to determine the immunization status of equines along the Mexico, Arizona, and New Mexico borders. Interviews with horse owners were conducted along roads selected at random in the counties of Santa Cruz and Yuma, Ariz., and in Dona Ana County, N. Mex. At least 450 horse owners in each county were asked about the vaccination status of their animals, and information was taken on 1,260 animals. Blood specimens were obtained from every third equine, regardless of stated vaccination status, and tested for the presence of Venezuelan equine encephalitis (VEE), we...
Host feeding patterns of Connecticut mosquitoes (Diptera: Culicidae).
The American journal of tropical medicine and hygiene    May 1, 1977   Volume 26, Issue 3 547-552 doi: 10.4269/ajtmh.1977.26.547
Magnarelli LA.Blood-engorged Coquillettidia perturbans, Psorophora ferox, Culex, Culiseta, and Aedes mosquitoes were collected principally by sweep net from salt marsh and woodland habitats in Connecticut. Of the 570 mosquitoes tested, precipitin tests identified the origins of 517 blood meals and revealed distinct host feeding patterns. Aedes mosquitoes fed chiefly on mammals; A. abserratus, A. cantator, and A. vexans showed selectivity for cattle and (or) horses. A. cantator also obtained blood from avian hosts and, in some instances, showed mixed passerine-mammal blood meals. These findings increase the ...
[Late sequelae of tick-borne encephalomeningitis and equine encephalomyelitis].
Polski tygodnik lekarski (Warsaw, Poland : 1960)    January 31, 1977   Volume 32, Issue 5 189-192 
Migdalska-Kassurowa B.No abstract available
Ecology of Western equine encephalomyelitis in the eastern United States.
Advances in virus research    January 1, 1977   Volume 21 37-83 doi: 10.1016/s0065-3527(08)60761-7
Hayes CG, Wallis RC.Western equine encephalomyelitis (WEE) has been recognized as a serious public health problem in western North America for more than 30 years. WEE appears to exist endemically in numerous foci in that region, with a low incidence rate among humans. Severe outbreaks, however, have occurred periodically. For example, during 1941 a severe epidemic involving more than 3000 cases in humans occurred in North Dakota, Minnesota, and in the adjacent areas of Canada. The case fatality rate ranged from 8% to 15%. Epizootics among horses are more common. More than 600 cases of WEE were diagnosed among hor...
Animal disease agents transmitted by horse flies and deer flies (Diptera: Tabanidae).
Journal of medical entomology    December 8, 1976   Volume 13, Issue 3 225-275 doi: 10.1093/jmedent/13.3.225
Krinsky WL.No abstract available