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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.
Descriptive network analysis of a Standardbred horse training facility contact network: Implications for disease transmission.
The Canadian veterinary journal = La revue veterinaire canadienne    August 4, 2020   Volume 61, Issue 8 853-859 
Rossi TM, Milwid RM, Moore A, O'Sullivan TL, Greer AL.Infectious respiratory disease is a common cause of morbidity among racehorses. Quantification of contact patterns in training facilities could help inform disease prevention strategies. The study objectives were to: i) describe the contact network among horses, locations, and humans at a Standardbred horse training facility in Ontario; ii) describe the characteristics of highly influential individuals; and iii) investigate how management changes alter the network metrics and discuss the potential implications for disease transmission. Proximity loggers detected contacts among horses, staff, a...
Equine piroplasmosis: an insight into global exposure of equids from 1990 to 2019 by systematic review and meta-analysis.
Parasitology    August 3, 2020   Volume 147, Issue 13 1411-1424 doi: 10.1017/S0031182020001407
Onyiche TE, Taioe MO, Molefe NI, Biu AA, Luka J, Omeh IJ, Yokoyama N, Thekisoe O.Equine piroplasmosis (EP) is a tick-borne disease of economic importance, relevant in the international movement of equids. The causative agents are at least two apicomplexan protozoan parasites Babesia caballi and Theileria equi. To date, there is no study that estimates global and regional exposure of equids to EP. We therefore conducted a systematic review and meta-analysis to estimate the pooled prevalence and heterogeneity of EP using random-effects model. Six electronic databases were searched for publications on EP and assessed according to Preferred Reporting Items for Systematic Revie...
A first clinical case report of west nile viral encephalitis in poltava region of Ukraine.
Wiadomosci lekarskie (Warsaw, Poland : 1960)    August 1, 2020   Volume 73, Issue 4 831-834 
Kotelevska TM, Pryimenko NO, Dubynska HM, Iziumska OM, Koval TI, Pikul KV, Purdenko TY.West Nile Fever (WNF) is the most common arbovirus infection caused by West Nile Virus (WNV), which has been responsible for numerous epidemic outbreaks of disease among humans, birds and horses on all continents, with the exception of Antarctica, over the past two decades. On the territory of Ukraine, the earliest reports of cases of WNV circulation in humans and birds relate to the 70s of the XX century. In Poltava region WNF was first registered in 2011. Though the epidemiological and clinical patterns of WNF in Ukraine and Poltava region remain understudied, primarily due to the lack of al...
Bovine and equine trypanosomosis in Northwest Ethiopia: Prevalence, density of vectors and control measures.
Parasite epidemiology and control    July 31, 2020   Volume 11 e00170 doi: 10.1016/j.parepi.2020.e00170
Dagnachew S, Mohammed S, Dessie B, Tilahun M, Ayele A, Kefyalew H.A cross-sectional study was carried out from November 2016 to May 2017 in selected districts of Northwest Ethiopia (Jawi, South Achefer, Dembecha and Jabitehenan) with the aim of determining the prevalence of bovine and equine trypanosomosis, estimating the apparent density of vectors and assessing the effectiveness of control measures of the disease. A total of 1257 animals of which 803 bovine and 454 equine were examined for the determination of prevalence using blood sample collected from ear vein of animals. The buffy coat technique was employed to determine the prevalence and the packed c...
Molecular detection of 7SL-derived small RNA is a promising alternative for trypanosomosis diagnosis.
Transboundary and emerging diseases    July 31, 2020   Volume 67, Issue 6 3061-3068 doi: 10.1111/tbed.13744
Verney M, Grey F, Lemans C, Géraud T, Berthier D, Thévenon S, Rincé A, Hans A, Morrison L, Hébert L.Equine trypanosomosis comprises different parasitic diseases caused by protozoa of the subgenus Trypanozoon: Trypanosoma equiperdum (causative agent of dourine), Trypanosoma brucei (nagana) and Trypanosoma evansi (surra). Due to the absence of a vaccine and the lack of efficacy of the few available drugs, these diseases represent a major health and economic problem for international equine trade. Development of affordable, sensitive and specific diagnostic tests is therefore crucial to ensure the control of these diseases. Recently, it has been shown that a small RNA derived from the 7SL gene ...
Seroprevalence and evaluation of risk factors associated with seropositivity for Borrelia burgdorferi in Ontario horses.
Equine veterinary journal    July 29, 2020   Volume 53, Issue 2 331-338 doi: 10.1111/evj.13317
Neely M, Arroyo LG, Jardine C, Moore A, Hazlett M, Clow K, Archer H, Weese JS.Recently, the blacklegged tick (Ixodes scapularis), which is the vector of Borrelia burgdorferi, has undergone a range expansion from the northeastern and mid-west United States to areas of southeastern Canada, including parts of Ontario. Understanding the seroprevalence of antibodies against B. burgdorferi in horses and risk factors for exposure is important for monitoring and preventing this emerging disease. Methods: Cross-sectional study of 551 horses in southern, central, and eastern Ontario, Canada. Objective: To assess the seroprevalence of B. burgdorferi in horses in Ontario, Canada; ...
Author Correction: Detection of Neorickettsia risticii, the agent of Potomac horse fever, in horses from Rio de Janeiro, Brazil.
Scientific reports    July 29, 2020   Volume 10, Issue 1 13001 doi: 10.1038/s41598-020-69584-w
Paulino PG, Almosny N, Oliveira R, Viscardi V, Müller A, Guimarães A, Baldani C, da Silva C, Peckle M, Massard C, Santos H.An amendment to this paper has been published and can be accessed via a link at the top of the paper.
Molecular detection of Coxiella burnetii in horse sera in Iran.
Comparative immunology, microbiology and infectious diseases    July 23, 2020   Volume 72 101521 doi: 10.1016/j.cimid.2020.101521
Khademi P, Ownagh A, Ataei B, Kazemnia A, Eydi J, Khalili M, M M, Mardani K.Coxiella burnetii is a zoonotic bacterium that can infect a wide range of animals including horses. However, its circulation dynamics in and through horses are still unclear. The aim of this study was to evaluate prevalence of C. burnetii and its genomic characteristics in horse sera samples in the North of Iran (Golestan Province). The samples were collected in 2018 and the age, sex, and breed of each animal were recorded. Nested-PCR was used to detect C. burnetii based on the presence of the transposable gene IS1111. The results showed that 7.50 % (P < 0.05; 95 % CI: 0.5 %-0.12 %) of the ...
Novel Equine Faecal Egg Diagnostics: Validation of the FECPAKG2.
Animals : an open access journal from MDPI    July 23, 2020   Volume 10, Issue 8 1254 doi: 10.3390/ani10081254
Tyson F, Dalesman S, Brophy PM, Morphew RM.Faecal egg counts (FECs) are the standard method of diagnosing the level of parasitic helminth egg shedding in horses and other grazing animals. Testing before treatment is an important factor in slowing the appearance of anthelmintic resistance in nematode parasites. The FECPAK, optimised for livestock, is reported to allow owners to perform FECs on their own animals without the need for a separate microscope or any specialist knowledge by tapping into remote expertise. However, the performance of the FECPAK has yet to be assessed for equids. Therefore, a comparison of the FECPAK (G2) method ...
West Nile Virus: An Update on Pathobiology, Epidemiology, Diagnostics, Control and “One Health” Implications.
Pathogens (Basel, Switzerland)    July 19, 2020   Volume 9, Issue 7 589 doi: 10.3390/pathogens9070589
Habarugira G, Suen WW, Hobson-Peters J, Hall RA, Bielefeldt-Ohmann H.West Nile virus (WNV) is an important zoonotic flavivirus responsible for mild fever to severe, lethal neuroinvasive disease in humans, horses, birds, and other wildlife species. Since its discovery, WNV has caused multiple human and animal disease outbreaks in all continents, except Antarctica. Infections are associated with economic losses, mainly due to the cost of treatment of infected patients, control programmes, and loss of animals and animal products. The pathogenesis of WNV has been extensively investigated in natural hosts as well as in several animal models, including rodents, lagom...
Establishment of a candidate equine influenza Florida Clade 2 strain A/eq/Richmond/1/07 horse antiserum as Ph. Eur. Biological Reference Preparation/OIE International Reference Reagent.
Pharmeuropa bio & scientific notes    July 18, 2020   Volume 2020 125-140 
Paillot R, Regourd E, Behr-Gross ME.Equine influenza (EI) is an important respiratory disease of horses, with welfare and economic consequences. Vaccination remains one of the most efficient prevention methods available. Equine influenza virus (EIV) is constantly evolving and consequently EI vaccines need to be updated on a regular basis. In 2010, the World Organisation for Animal Health (OIE) Expert Surveillance Panel (ESP) on EI provided a new recommendation for EI vaccine strain composition, including the incorporation of representative EIV strains of both Florida Clade 1 and Clade 2 sub-lineages (FC1 and FC2, respectively). ...
Outbreak of African horse sickness in Thailand, 2020.
Transboundary and emerging diseases    July 15, 2020   Volume 67, Issue 5 1764-1767 doi: 10.1111/tbed.13701
King S, Rajko-Nenow P, Ashby M, Frost L, Carpenter S, Batten C.African horse sickness was confirmed in horses in Thailand during March 2020. The virus was determined to belong to serotype 1 and is phylogenetically closely related to isolates from South Africa. This is the first incidence of African horse sickness occurring in South East Asia and of serotype 1 outside of Africa.
Antimicrobial Resistance in Horses.
Animals : an open access journal from MDPI    July 9, 2020   Volume 10, Issue 7 doi: 10.3390/ani10071161
Steinman A, Navon-Venezia S.Antimicrobial resistance (AMR) is an increasingly recognized global public health threat to the modern health-care system that could hamper the control and treatment of infectious diseases [...].
Prevalence of endo- and ecto-parasites of equines in Iran: A systematic review.
Veterinary medicine and science    July 9, 2020   Volume 7, Issue 1 25-34 doi: 10.1002/vms3.321
Khamesipour F, Taktaz-Hafshejani T, Tebit KE, Razavi SM, Hosseini SR.Equines are subject to infection with many parasites, which threaten their health. In the present study, we systematically reviewed existing literature on the prevalence of endo- and ectoparasites of equines in Iran. Major electronic databases, including PubMed, PubMed Central, Google Scholar, Science Direct and Scientific Information Database (SID), were searched (Last updated 11/05/2018) for relevant literature of parasites that have been identified from equines in Iran. Of the 1809 titles produced by bibliographic search, 38 were included in the review. Twenty-seven of the studies were on h...
Seroprevalence of equine glanders in horses in the central and eastern parts of Mongolia.
The Journal of veterinary medical science    July 7, 2020   Volume 82, Issue 9 1247-1252 doi: 10.1292/jvms.20-0219
Erdemsurakh O, Ochirbat K, Gombosuren U, Tserendorj B, Purevdorj B, Vanaabaatar B, Aoshima K, Kobayashi A, Kimura T.Glanders is a contagious and fatal equine disease caused by the gram-negative bacterium Burkholderia mallei. B. mallei is prevalent among horse populations in Asia, the Middle East, and South America. More than four million horses have been registered in Mongolia in 2020. However, the recent prevalence of glanders has not been well investigated. In this study, we aimed to investigate the seropositivity of B. mallei in horse populations in Mongolia using the complement fixation test (CFT) and Rose Bengal plate agglutination test (RBT). We randomly collected blood samples from horses in central ...
Evaluating 5.5 Years of Equinella: A Veterinary-Based Voluntary Infectious Disease Surveillance System of Equines in Switzerland.
Frontiers in veterinary science    June 30, 2020   Volume 7 327 doi: 10.3389/fvets.2020.00327
Özçelik R, Graubner C, Remy-Wohlfender F, Dürr S, Faverjon C.Equine health is important in regard to trade, economy, society, and the veterinary, as well as public health. To reduce the burden of equine infectious diseases internationally, it is important to collect, review, and distribute equine health surveillance data as accurate and timely as possible. Within this study, we aimed at providing a comprehensive descriptive analysis of data submitted to Equinella, a voluntary veterinary-based surveillance system of non-notifiable equine infectious diseases and clinical signs, in Switzerland. This was achieved by reviewing the reports submitted since its...
First report on the molecular prevalence of Enterocytozoon bieneusi in horses in Turkey: genotype distributions and zoonotic potential.
Parasitology research    June 27, 2020   Volume 119, Issue 9 2821-2828 doi: 10.1007/s00436-020-06783-4
Yildirim A, Okur M, Uslug S, Onder Z, Yetismis G, Duzlu O, Ciloglu A, Simsek E, Inci A.Horses might play an important role as reservoir hosts in the epidemiology of Enterocytozoon bieneusi, which is one of the most important zoonotic microsporidian pathogens, with a wide range of hosts. Nevertheless, limited information is available on the infection rates and genotypes of E. bieneusi in horses, and no data are available on the occurrence and molecular characteristics of E. bieneusi in horses in Turkey. We determined the prevalence of E. bieneusi among horses raised on farms from two provinces of Central Anatolia Region, by amplification of the partial small subunit ribosomal RNA...
Science-in-brief: Equine coronavirus – a decade long journey to investigate an emerging enteric virus of adult horses.
Equine veterinary journal    June 26, 2020   Volume 52, Issue 5 651-653 doi: 10.1111/evj.13288
Pusterla N.No abstract available
Serological Survey of Humans Exposed to Burkholderia mallei-Infected Equids: A Public Health Approach.
Asia-Pacific journal of public health    June 25, 2020   Volume 32, Issue 5 274-277 doi: 10.1177/1010539520930500
Singha H, Shanmugasundaram K, Saini S, Tripathi BN.Glanders is a fatal bacterial infection of equids caused by Burkholderia mallei. The infection can be transmitted to humans through prolonged direct contact with glanderous equids. Recently, reemergence of equine glanders has been reported in many countries. To investigate zoonotic transmission of B mallei infection, sera were collected from 538 humans including equine handlers and veterinary professionals exposed to glanderous equids. Samples were tested by ELISA (enzyme-linked immunosorbent assay) and complement fixation test and found negative for B mallei-specific antibodies. Even though t...
Nationwide serological surveillance of non-tsetse-transmitted horse trypanosomoses in Mongolia.
Parasite epidemiology and control    June 25, 2020   Volume 10 e00158 doi: 10.1016/j.parepi.2020.e00158
Mizushima D, Amgalanbaatar T, Davaasuren B, Kayano M, Naransatsral S, Myagmarsuren P, Otgonsuren D, Enkhtaivan B, Davkharbayar B, Mungun-Ochir B....In Mongolia, horses play important roles, not only in livestock production, but also in terms of culture, tradition, and Mongolian beliefs. Although the presence of non-tsetse-transmitted horse trypanosomoses, which are caused by infections with (surra) and (dourine), has been reported in the country, whether there is a nationwide epidemic of these infectious diseases is unknown. In the present study, a nationwide surveillance of horse trypanosomoses was performed. The sample sizes for each province, the whole country, and male and female horses were, respectively, 96, 2,400, and 316 and 306...
Extension Horses, Inc. experts act fast to create online resources to assist the horse industry during COVID-19.
Translational animal science    June 25, 2020   Volume 4, Issue 3 txaa085 doi: 10.1093/tas/txaa085
Greene EA, Hein W, Wickens CL, Smarsh DN.The COVID-19 pandemic and resulting stay-at-home directives, adopted out of necessity to protect human health, introduced significant challenges for horse owners and small equine businesses. Restricted access, and in many cases closure of barns, resulted in a multitude of questions and concerns within the equine community which needed to be addressed rapidly. Extension Horses, Inc. (EH) coordinated the development and delivery of a variety of educational resources utilizing a combination of online formats and dissemination through social media and EH member contact lists. A series of infograph...
Applications of minimally invasive multimodal telemetry for continuous monitoring of brain function and intracranial pressure in macaques with acute viral encephalitis.
PloS one    June 25, 2020   Volume 15, Issue 6 e0232381 doi: 10.1371/journal.pone.0232381
Ma H, Lundy JD, Cottle EL, O'Malley KJ, Trichel AM, Klimstra WB, Hartman AL, Reed DS, Teichert T.Alphaviruses such as Venezuelan equine encephalitis virus (VEEV) and Eastern equine encephalitis virus (EEEV) are arboviruses that can cause severe zoonotic disease in humans. Both VEEV and EEEV are highly infectious when aerosolized and can be used as biological weapons. Vaccines and therapeutics are urgently needed, but efficacy determination requires animal models. The cynomolgus macaque (Macaca fascicularis) provides a relevant model of human disease, but questions remain whether vaccines or therapeutics can mitigate CNS infection or disease in this model. The documentation of alphavirus e...
Trypanosome infections in naturally infected horses and donkeys of three active sleeping sickness foci in the south of Chad.
Parasites & vectors    June 23, 2020   Volume 13, Issue 1 323 doi: 10.1186/s13071-020-04192-1
Vourchakbé J, Tiofack AAZ, Mbida M, Simo G.Equine trypanosomiases are complex infectious diseases with overlapping clinical signs defined by their mode of transmission. Despite their economic impacts, these diseases have been neglected by the scientific community, the veterinary authorities and regulatory organizations. To fill the observed knowledge gap, we undertook the identification of different trypanosome species and subspecies naturally infecting horses and donkeys within the Chadian sleeping sickness focus. The objective of the study was to investigate the potential role of these domestic animals as reservoirs of the human-infe...
Letter to the Editor: Venezuelan Equine Encephalitis virus 1B Invasion and Epidemic Control-South Texas, 1971.
Tropical medicine and infectious disease    June 22, 2020   Volume 5, Issue 2 104 doi: 10.3390/tropicalmed5020104
McLean RG.The epidemic strain of Venezuelan equine encephalitis virus (VEE) 1B invaded south Texas in 1971. The success of the eventual containment and control of the virus invasion was the early recognition and immediate detection, cooperation, coordination, and participation among multiple federal agencies. There were 4739 wild vertebrate animals trapped on a ranch in the area with only 1 VEE virus isolation from a Virgina opossum (Didelphis virginiana). A large number of mosquitoes were also collected on the ranch and tested, resulting in 240 VEE virus isolations. Virus isolations were obtained from ...
First outbreak of autochthonous “surra” in horses in Santa Catarina State, Brazil: Parasitological, hematological and biochemical characteristics.
Veterinary parasitology, regional studies and reports    June 21, 2020   Volume 21 100427 doi: 10.1016/j.vprsr.2020.100427
Reck C, Menin Á, Pisetta NL, Batista F, Miletti LC.This study reports the first autochthonous "surra" outbreak in horses in the State of Santa Catarina, southern Brazil. Six horses with clinical suspicion of trypanosomosis had the natural infection by T. evansi confirmed by PCR and rapid serum agglutination test. Clinical, parasitological, and hematology evaluations were performed at initial observation (T0) and 90 days after (T1). At T0, all animals that tested positive for T. evansi in PCR presented with severe clinical signs and out of normal range hematological hematological (hematocrit, leukocytes, platelets, hemoglobin) and serum bioche...
Detection of Theileria spp. in ticks, sheep keds (Melophagus ovinus), and livestock in the eastern Tibetan Plateau, China.
Parasitology research    June 18, 2020   Volume 119, Issue 8 2641-2648 doi: 10.1007/s00436-020-06757-6
Hao L, Yuan D, Li S, Jia T, Guo L, Hou W, Lu Z, Mo X, Yin J, Yang A, Zheng W, Li R.Theileria species, with a broad geographic distribution, infect a wide range of both domestic and wild animals and are transmitted by ixodid ticks. Currently, there is no comprehensive report regarding the distribution of Theileria spp. in the eastern Tibetan Plateau, especially in Ganze Tibetan autonomous prefecture (153,700 km) and Ngawa Tibetan and Qiang autonomous prefecture (84,242 km) of Sichuan province, China. In this study, we collected blood samples from yaks (n = 144) (Bos grunniens), Tibetan sheep (n = 92), and Tibet horses (n = 142) in Ganze and Ngawa.Theileria sinen...
Molecular Analysis and Risk Factors Associated With Theileria equi Infection in Domestic Donkeys and Mules of Punjab, Pakistan.
Journal of equine veterinary science    June 12, 2020   Volume 92 103164 doi: 10.1016/j.jevs.2020.103164
Shah MH, Ijaz M, Ahmed A, Aziz MU, Ghaffar A, Ghauri HN, Naveed M.Theileriosis is an important disease of economic significance which badly affects the equine husbandry of developing countries. The present study was planned to investigate the molecular prevalence of theileriosis, associated risk factors, and alterations in hematological parameters of donkeys and mules from district Mianwali, Punjab, Pakistan. Blood samples from 150 equids (n = 75 donkeys; n = 75 mules) were examined microscopically, and the genomic DNA from each sample was processed for the amplification of the 18S rRNA gene of Theileria. The polymerase chain reaction confirmed isolates we...
Ectoparasites of feral horses [Equus ferus caballus (Linnaeus., 1758)] on Karadağ Mountain, Karaman, Turkey.
Journal of parasitic diseases : official organ of the Indian Society for Parasitology    June 11, 2020   Volume 44, Issue 3 590-596 doi: 10.1007/s12639-020-01234-4
Dik B, Ceylan O, Ceylan C, Tekindal MA, Semassel A, Sönmez G, Derinbay Ekici Ö.Approximately 250 feral horses [ (Linnaeus, 1758)] living on Karadağ Mountain near Karaman City were caught by Kazakh horse herdsmen with permission of the Turkish Ministry of Agriculture and Forestry and brought to a farm in Karkın village in Konya Province, 70 km from Karadağ, in November, 2017. This study was carried out to determine the presence of ectoparasites infesting a subsample of 36 feral horses. The horses were visually inspected, and then their bodies were checked by hand for ectoparasites. Thirty-five (97.2%) were infested with at least one of five species of ectoparasites: ...
Genetics of Equine Respiratory Disease.
The Veterinary clinics of North America. Equine practice    June 10, 2020   Volume 36, Issue 2 243-253 doi: 10.1016/j.cveq.2020.03.005
Gerber V.Genetic factors influence the development of guttural pouch tympany, recurrent laryngeal neuropathy, severe equine asthma, exercise-induced pulmonary hemorrhage, and possibly also some malformations and infectious diseases of the respiratory tract. The current data suggest that most of these diseases are complex, resulting from the interaction between several genes and environmental factors. To date, no specific genes or causative mutations have been identified that would allow the development of practical genetic tests. In the future, genetic profiling panels, based on multiple genetic marker...
Equine disease surveillance: quarterly update.
The Veterinary record    June 9, 2020   Volume 186, Issue 18 e18 doi: 10.1136/vr.m2256
No abstract available
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