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Topic:Disease Surveillance

Disease surveillance in horses involves the systematic collection, analysis, and interpretation of health data to monitor and manage equine diseases. This process aids in the early detection of outbreaks, tracking of disease trends, and evaluation of control measures. Surveillance systems may incorporate various data sources, including clinical reports, laboratory testing, and field observations. These systems can focus on infectious diseases, such as equine influenza and West Nile virus, or non-infectious conditions affecting horse populations. This page compiles peer-reviewed research studies and scholarly articles that explore methodologies, technologies, and outcomes associated with disease surveillance in equine populations.
Epidemiological survey on farms with documented occurrence of equine proliferative enteropathy due to Lawsonia intracellularis.
The Veterinary record    August 5, 2008   Volume 163, Issue 5 156-158 doi: 10.1136/vr.163.5.156
Pusterla N, Higgins JC, Smith P, Mapes S, Gebhart C.No abstract available
Post operative ileus: to be or not to be?
Equine veterinary journal    August 2, 2008   Volume 40, Issue 4 295-296 doi: 10.2746/042516408X302537
Merritt AM, Blikslager AT.No abstract available
Equine disease surveillance. Equine disease surveillance, January to March 2008.
The Veterinary record    August 1, 2008   Volume 162, Issue 25 803-806 doi: 10.1136/vr.162.25.803
No abstract available
Inherited disease in the horse: mapping complex disease variants is on the horizon.
Veterinary journal (London, England : 1997)    July 31, 2008   Volume 179, Issue 3 317-318 doi: 10.1016/j.tvjl.2008.06.002
Swinburne J.No abstract available
Hepatitis E virus infection among domestic animals in eastern China.
Zoonoses and public health    July 22, 2008   Volume 55, Issue 6 291-298 doi: 10.1111/j.1863-2378.2008.01136.x
Zhang W, Shen Q, Mou J, Gong G, Yang Z, Cui L, Zhu J, Ju G, Hua X.Hepatitis E virus (HEV) is a zoonotic pathogen of which several species of animal were reported as reservoirs. Antibodies to HEV and HEV RNA have been detected in some Chinese population and swine groups but few other domestic animals. In this study, to investigate the HEV prevalence, we tested sera from 788 pigs, 100 cows, 50 goats, 49 horses, 101 pet dogs, 105 chickens, 47 duck and 45 pigeons in eastern China for anti-HEV immunoglobulin G (IgG). We also tested 50% of the swine sera, all of sera from the other domestic animals and 13 Shanghai human sera which were positive for anti-HEV immuno...
Epidemic of equine influenza among vaccinated racehorses in Japan in 2007.
The Journal of veterinary medical science    July 17, 2008   Volume 70, Issue 6 623-625 doi: 10.1292/jvms.70.623
Yamanaka T, Niwa H, Tsujimura K, Kondo T, Matsumura T.On August 2007, we encountered equine influenza epidemic by Florida sub-lineage strain (H3N8) in Japan Racing Association's facilities where 4142 racehorses in total were stabled. The number of new febrile cases sharply increased, but the occurrence was rapidly calmed down within 2 weeks. The morbidity rate in these facilities was 12.8% and the subclinical infection rate of healthy racehorses examined by rapid antigen detection tests was 19.4% at the early stage of epidemic. The serological studies along with the low morbidity rate and the existence of numbers of asymptomatically infected race...
[Horse Advisory Committee III–infectious complications–tick infestation].
Tijdschrift voor diergeneeskunde    June 27, 2008   Volume 133, Issue 11 478-480 
Werners-Butler CM, Daha TJ, van Door DC, van Duijkeren E, Goehring LS, Houwers DJ, Laan TT, van Maanen C, Picavet T....No abstract available
The economic impact of West Nile virus infection in horses in the North Dakota equine industry in 2002.
Tropical animal health and production    June 14, 2008   Volume 40, Issue 1 69-76 doi: 10.1007/s11250-007-9055-8
Ndiva Mongoh M, Hearne R, Dyer NW, Khaitsa ML.This study estimated economic impacts associated with the West Nile virus (WNV) outbreak in horses for North Dakota in 2002. The 2002 epidemic in the United States was the largest meningoencephalitis epidemic reported in the Western Hemisphere. Over 15,257 horse cases were reported in 43 states with most cases occurring in central United States. North Dakota reported over 569 horse cases, with a mortality rate of 22%. The total costs incurred by the state were approximately US$1.9 million. The costs incurred by horse owners were about US$1.5 million. Of the US$1.5 million, about US$781,203 and...
[Horse Advisory Committee III–Infectious complications–skin].
Tijdschrift voor diergeneeskunde    June 13, 2008   Volume 133, Issue 9 388-392 
Sloet van Oldruitenborgh-Oosterbaan MM, Butler CM, Daha TJ, van Doorn DC, van Duijkeren E, Goehring LS, Houwers DJ, Laan TT, van Maanen C, Picavet C.No abstract available
Analysis and distribution of class 1 and class 2 integrons and associated gene cassettes among Escherichia coli isolates from swine, horses, cats and dogs collected in the BfT-GermVet monitoring study.
The Journal of antimicrobial chemotherapy    June 11, 2008   Volume 62, Issue 3 469-473 doi: 10.1093/jac/dkn233
Kadlec K, Schwarz S.In the BfT-GermVet monitoring study, 417 Escherichia coli isolates collected during 2004-06 in Germany from various disease conditions of pigs (n = 87), horses (n = 102) or cats/dogs (n = 228) were investigated for their susceptibility to 24 antimicrobial agents. This study dealt with the identification of integron-associated resistance genes among these isolates. Methods: Class 1 and class 2 integrons were detected by PCR. The variable parts of the integrons were cloned and sequenced. Transformation and conjugation experiments were conducted to confirm a plasmid location of the integrons. Res...
Surveillance for West Nile virus in horses.
The Veterinary record    June 10, 2008   Volume 162, Issue 23 763 doi: 10.1136/vr.162.23.763-a
Drummond R.This research article focuses on the monitoring of West Nile Virus (WNV) in horses, highlighting the importance of reporting any suspected WNV infection case to a local Animal Health office. […]
Rhabdomyolysis associated with Anaplasma phagocytophilum infection in a horse.
Journal of veterinary internal medicine    June 10, 2008   Volume 22, Issue 4 1061-1064 doi: 10.1111/j.1939-1676.2008.0115.x
Hilton H, Madigan JE, Aleman M.No abstract available
Use of viral loads in blood and nasopharyngeal secretions for the diagnosis of EHV-1 infection in field cases.
The Veterinary record    June 3, 2008   Volume 162, Issue 22 728-729 doi: 10.1136/vr.162.22.728
Pusterla N, Mapes S, Wilson WD.No abstract available
Henipaviruses: a new family of emerging Paramyxoviruses.
Pathologie-biologie    June 3, 2008   Volume 57, Issue 2 188-196 doi: 10.1016/j.patbio.2008.04.006
Wild TF.Paramyxoviruses have been implicated in both animal and human infections. Some viruses, such as Morbilliviruses are responsible for large-scale epidemics. However, there are limited observations of these viruses crossing the host species barrier in nature. In 1994, in Australia a fatal infection in horses and humans was identified to be caused by a new Paramyxovirus, Hendra virus (HeV), and in 1998 in Malaysia, a closely related virus, Nipah virus (NiV) was responsible for fatal infections in pigs and humans. These two viruses were sufficiently different from previously described Paramyxovirus...
Endemic status of Trypanosoma evansi infection in a horse stable of eastern region of India–a field investigation.
Tropical animal health and production    May 30, 2008   Volume 40, Issue 5 357-361 doi: 10.1007/s11250-007-9107-0
Laha R, Sasmal NK.Diagnosis of Trypanosoma evansi infection in a horse stable of Eastern Region of India on the basis of examination of Giemsa stained blood smears have been done. A high percentage (12.74%) of horses of this stable was found suffering from T evansi infection. This high prevalence of T evansi in horses, in this area could be considered as an alarming situation which has never been explored previously in horses of Eastern Region of India. After a period of 2 months and 18 days of treatment with quinapyramine sulphate and quinapyramine chloride, reinfection with T evansi in treated horses of this ...
Equine influenza: a team effort.
Australian veterinary journal    May 24, 2008   Volume 86, Issue 6 N4 doi: 10.1111/j.1751-0813.2008.00296.x
Twentyman B.No abstract available
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 ...
Collaborative study for the establishment of a candidate equine influenza subtype 2 American-like strain A/EQ/South Africa/4/03 – horse antiserum biological reference preparation.
Pharmeuropa bio    April 17, 2008   Volume 2007, Issue 1 7-14 
Daly J, Daas A, Behr-Gross ME.In 2004, the Office International des Epizooties (OIE) Expert Surveillance Panel on equine influenza recommended that the American lineage component (H3N8) of equine influenza vaccines (A/eq/Newmarket/1/93-like) be updated to an A/eq/South Africa/4/03-like virus. As a consequence the common European Pharmacopoeia (Ph. Eur.) - OIE reference for equine influenza subtype 2 American-like antiserum had to be complemented by an antiserum raised in horses against an A/eq/South Africa/4/03 strain. An international collaborative study run by the European Directorate for the Quality of Medicines (EDQM) ...
[Chemical and biological dangers to a horse veterinarian who becomes exposed].
Tijdschrift voor diergeneeskunde    April 9, 2008   Volume 133, Issue 5 184-186 
Rijnen K, ter Linde M, Noteboom D, Lipman L.No abstract available
[Horse Advisory Committee III–Infectious complications–digestion (part II)].
Tijdschrift voor diergeneeskunde    April 9, 2008   Volume 133, Issue 5 190-195 
Picavet T, Butler CM, Daha TJ, van Dooam DC, van Duijkeren E, Goehring LS, Houwers DJ, Laan TT, van Maanen C, Sloet van Oldruitenborgh-Oosterbaan MM.No abstract available
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 ...
Clinical, serological and molecular investigations of EHV-1 and EHV-4 in 15 unweaned thoroughbred foals.
The Veterinary record    March 18, 2008   Volume 162, Issue 11 337-341 doi: 10.1136/vr.162.11.337
Marenzoni ML, Passamonti F, Cappelli K, Veronesi F, Capomaccio S, Supplizi AV, Valente C, Autorino G, Coletti M.Fifteen unweaned thoroughbred foals, born on a stud farm to vaccinated mares, were clinically monitored during their first six months of life and repeatedly tested for equine herpesvirus type 1 (EHV-1) and equine herpesvirus type 4 (EHV-4). Nasopharyngeal swabs and blood samples were collected and screened respectively by PCR and seroneutralisation to detect the presence of the virus, explore its role as a possible cause of respiratory disease, and to assess the efficiency of the pcr for the diagnosis of this disease. The foals were divided into three groups on the basis of their clinical sign...
Health management of horses under high challenge from trypanosomes: a case study from Serengeti, Tanzania.
Veterinary parasitology    March 14, 2008   Volume 154, Issue 3-4 233-241 doi: 10.1016/j.vetpar.2008.02.034
Auty H, Mundy A, Fyumagwa RD, Picozzi K, Welburn S, Hoare R.Horses kept for recreational riding purposes by a wildlife tourism company in a heavily tsetse fly-infested region of north-western Tanzania were systematically monitored to investigate the occurrence, presentation and management of tsetse-transmitted trypanosomosis. During a 23-month period, 18 clinical cases were diagnosed (Trypanosoma brucei or Trypanosoma congolense were identified) and treated and trypanosomes were implicated of involvement in four deaths. Pyrexia consistently aided early detection (17 cases). Ataxia, weight loss and anaemia were seen in chronic cases and conferred a poor...
American cutaneous leishmaniasis in horses from endemic areas in the north-central mesoregion of Paraná state, Brazil.
Zoonoses and public health    March 12, 2008   Volume 55, Issue 3 149-155 doi: 10.1111/j.1863-2378.2008.01106.x
Vedovello Filho D, Jorge FA, Lonardoni MV, Teodoro U, Silveira TG.American cutaneous leishmaniasis (ACL) is an endemic disease in the north-west of Paraná state, Brazil, where it occurs in humans and dogs. Few studies have been undertaken on the occurrence of the disease in other domestic animals and horses. In this study we investigated the infection of horses by Leishmania in ACL-endemic rural areas. Direct agglutination test (DAT) and polymerase chain reaction (PCR) were employed. Fifty-five horses from rural areas in the municipalities of Doutor Camargo, Ourizona, São Jorge do Ivaí, Ivatuba and Santa Fé (Agua do O) were analysed. DAT-detected antibod...
[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
The California Postmortem Program: leading the way.
The Veterinary clinics of North America. Equine practice    March 4, 2008   Volume 24, Issue 1 21-36 doi: 10.1016/j.cveq.2007.11.009
Stover SM, Murray A.The California Postmortem Program studies disease surveillance, discovers new causes of death, and develops new diagnostic methods for disease detection. It also informs directions for research focused on elucidating the etiopathogenesis of, and risk factors for, catastrophic fractures and other causes of death. Because most fatal injuries seem to be the acute culmination of a more chronic process, intervention and prevention of injuries is possible with enhanced knowledge of the etiopathogenesis of injuries and risk factors for injuries. These advances also would facilitate development of man...
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...
Association of soil concentrations of Rhodococcus equi and incidence of pneumonia attributable to Rhodococcus equi in foals on farms in central Kentucky.
American journal of veterinary research    March 4, 2008   Volume 69, Issue 3 385-395 doi: 10.2460/ajvr.69.3.385
Cohen ND, Carter CN, Scott HM, Chaffin MK, Smith JL, Grimm MB, Kuskie KR, Takai S, Martens RJ.To determine whether soil concentrations of total or virulent Rhodococcus equi differed among breeding farms with and without foals with pneumonia caused by R equi. Methods: 37 farms in central Kentucky. Procedures-During January, March, and July 2006, the total concentration of R equi and concentration of virulent R equi were determined by use of quantitative bacteriologic culture and a colony immunoblot technique, respectively, in soil specimens obtained from farms. Differences in concentrations and proportion of virulent isolates within and among time points were compared among farms. Resul...
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 ...
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