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Topic:Disease control

Disease control in horses encompasses the strategies and measures implemented to prevent, manage, and eradicate infectious and non-infectious diseases within equine populations. This field involves the study of pathogen transmission, host-pathogen interactions, and the development of effective vaccination and biosecurity protocols. Disease control also includes monitoring and surveillance of equine health to identify outbreaks and implement timely interventions. Key aspects of disease control in horses involve understanding the epidemiology of equine diseases, improving diagnostic techniques, and enhancing treatment options. This page compiles peer-reviewed research studies and scholarly articles that explore various methodologies, technologies, and practices aimed at controlling diseases in horses, with a focus on improving overall equine health and welfare.
Sero-diagnosis of surra exploiting recombinant VSG antigen based ELISA for surveillance.
Veterinary parasitology    September 6, 2014   Volume 205, Issue 3-4 490-498 doi: 10.1016/j.vetpar.2014.08.012
Sengupta PP, Rudramurthy GR, Ligi M, Roy M, Balamurugan V, Krishnamoorthy P, Nagalingam M, Singh L, Rahman H.Trypanosoma evansi, a haemoflagellate, causes "surra" an important chronic wasting disease of a wide range of wild and domestic herbivorous and carnivorous animals including cattle, buffaloes, camels, horses, etc. The untreated recovered animal can act as a carrier without exhibiting the disease symptoms and can be a source of infection to healthy animals. The diagnosis and subsequent treatment of the carrier animals is helpful to curb the disease. As the parasitaemia in carrier animals is very scanty, the conventional blood smear examination, which is widely practiced in the field, cannot det...
[Defense veterinarians protect people and animals].
Tijdschrift voor diergeneeskunde    September 2, 2014   Volume 139, Issue 8 8-11 
Johan Klein H.No abstract available
Profiles of strongyle EPG values for Thoroughbred mares on 14 farms in Kentucky (2012-2013).
Veterinary parasitology    August 28, 2014   Volume 205, Issue 3-4 646-652 doi: 10.1016/j.vetpar.2014.08.001
Lyons ET, Tolliver SC, Kuzmina TA, Dzeverin II, Nielsen MK, McDowell KJ.The main purpose of the research was to determine if three weekly samplings would produce consistent results for low strongyle egg shedders, generally associated with older horses. Strongyle egg counts per gram of feces (EPG) were done for 661 Thoroughbred mares on 14 farms in 2012-2013 once a week for three consecutive weeks. None of the mares had been treated with ivermectin or moxidectin for more than 90 days and with fenbendazole, oxibendazole, or pyrantel pamoate for more than 60 days. Strongyle EPG count data indicated that 38.3% of the mares were positive at first and second sampling, a...
Evaluation of a copro-antigen ELISA to detect Fasciola hepatica infection in sheep, cattle and horses.
Australian veterinary journal    August 27, 2014   Volume 92, Issue 9 357-361 doi: 10.1111/avj.12224
Palmer DG, Lyon J, Palmer MA, Forshaw D.To determine the specificity and sensitivity of a commercial copro-antigen ELISA for the detection of Fasciola hepatica infection in cattle and sheep and to assess the suitability of the test for use in horses. Methods: Testing was done on more than 100 negative faecal samples from each of sheep, cattle and horses and on at least 40 positive faecal samples from each species. Positive samples were selected based on a positive sedimentation test for liver fluke eggs. Faecal samples of animals from Western Australia, which is free of liver fluke infection, served as negative controls. Specificity...
A pre- and post-intervention study of infection control in equine hospitals in Sweden.
Acta veterinaria Scandinavica    August 22, 2014   Volume 56, Issue 1 52 doi: 10.1186/s13028-014-0052-4
Bergström K, Grönlund U.Detection of nosocomial methicillin-resistant Staphylococcus aureus infections in horses in Sweden has increased attention on infection control (IC) in equine hospitals. This study established baseline data on IC programmes within such settings, evaluated compliance with some IC procedures before and after an education intervention, and examined barriers to compliance.The study was carried out between 2008 and 2011 in four Swedish equine hospitals. Data on current IC of each hospital, purchase data on hand sanitisers and disposable gloves per patient, and direct observations of compliance with...
Report of the International Equine Influenza Roundtable Expert Meeting at Le Touquet, Normandy, February 2013.
Equine veterinary journal    August 21, 2014   Volume 46, Issue 6 645-650 doi: 10.1111/evj.12302
Slater J, Borchers K, Chambers T, Cullinane A, Duggan V, Elton D, Legrand L, Paillot R, Fortier G.No abstract available
Hendra virus in Queensland, Australia, during the winter of 2011: veterinarians on the path to better management strategies.
Preventive veterinary medicine    August 19, 2014   Volume 117, Issue 1 40-51 doi: 10.1016/j.prevetmed.2014.08.002
Mendez D, Buttner P, Speare R.Following the emergence of Hendra virus (HeV), private veterinarians have had to adopt additional infection control strategies to manage this zoonosis. Between 1994 and 2010, seven people became infected with HeV, four fatally. All infected people were at a higher risk of exposure from contact with horses as they were either veterinary personnel, assisting veterinarians, or working in the horse industry. The management of emerging zoonoses is best approached from a One Health perspective as it benefits biosecurity as well as a public health, including the health of those most at risk, in this ...
Equine infectious anemia virus in Japan: viral isolates V70 and V26 are of North American not Japanese origin.
Veterinary microbiology    August 15, 2014   Volume 174, Issue 1-2 276-278 doi: 10.1016/j.vetmic.2014.08.004
Dong J, Cook FR, Zhu W.No abstract available
Equine influenza and air transport.
Equine veterinary education    August 15, 2014   Volume 26, Issue 9 456-457 doi: 10.1111/eve.12215
Cullinane A.No abstract available
Science-in-brief: Report from the second [corrected] European Equine Endocrinology symposium.
Equine veterinary journal    August 8, 2014   Volume 46, Issue 5 525-528 doi: 10.1111/evj.12313
Durham AE, Geor RJ, Ireland JL, McGowan CM, Schott HC.No abstract available
‘Attila the Hen’ and Hendra research.
Australian veterinary journal    August 7, 2014   Volume 92, Issue 7 N8 
Balzer M.No abstract available
Importance of wetlands management for West Nile Virus circulation risk, Camargue, Southern France.
International journal of environmental research and public health    August 4, 2014   Volume 11, Issue 8 7740-7754 doi: 10.3390/ijerph110807740
Pradier S, Sandoz A, Paul MC, Lefebvre G, Tran A, Maingault J, Lecollinet S, Leblond A.To assess environmental and horse-level risk factors associated with West Nile Virus (WNV) circulation in Camargue, Southern France, a serosurvey was conducted on non-vaccinated horses (n = 1159 from 134 stables) in 2007 and 2008. Fifteen Landsat images were examined to quantify areas with open water and flooded vegetation around sampled horses. Mean percentages of areas of open water and flooded vegetation, as well as variations in these percentages between 3 periods (November to February = NOT, March to July = END and August to October = EPI), were calculated for buffers of 2 km radius aroun...
[Equine infectious anemia–a review].
Berliner und Munchener tierarztliche Wochenschrift    August 2, 2014   Volume 127, Issue 7-8 297-300 
Haas L.This article combines essential facts of equine infectious anemia. Beside etiology and epidemiology, emphasis is put on the clinical course and laboratory diagnosis. Finally, control measures and prophylactic issues are discussed.
Equine disease surveillance: quarterly summary.
The Veterinary record    August 2, 2014   Volume 175, Issue 5 111-114 doi: 10.1136/vr.g4585
No abstract available
Focus on: vaccination against equine grass sickness.
The Veterinary record    August 2, 2014   Volume 175, Issue 5 114-115 doi: 10.1136/vr.g4684
Ireland J.Jo Ireland of the Animal Health Trust describes a new field trial of a potential vaccine against equine grass sickness.
Efficacy of a Parapoxvirus ovis-based immunomodulator against equine herpesvirus type 1 and Streptococcus equi equi infections in horses.
Veterinary microbiology    July 27, 2014   Volume 173, Issue 3-4 232-240 doi: 10.1016/j.vetmic.2014.07.015
Ons E, Van Brussel L, Lane S, King V, Cullinane A, Kenna R, Lyons P, Hammond TA, Salt J, Raue R.The efficacy of Zylexis®, an immunomodulator in horses based on inactivated Parapoxvirus ovis (iPPVO), was assessed using an equine herpesvirus type 1 (EHV-1) challenge model in the presence of a natural infection with Streptococcus equi equi (S. equi). Eleven horses were treated with iPPVO and twelve were kept as controls. Six horses were challenged with EHV-1 and commingled with the horses on study. Animals were dosed on Days -2, 0 (just before commingling) and Day 7. On Day 11 significantly less nasal discharge, enlarged lymph nodes, EHV-1 shedding and lower rectal temperatures were observ...
Diversity of interferon inducible Mx gene in horses and association of variations with susceptibility vis-à-vis resistance against equine influenza infection. Manuja BK, Manuja A, Dahiya R, Singh S, Sharma RC, Gahlot SK.Equine influenza (EI) is primarily an infection of the upper respiratory tract and is one of the major infectious respiratory diseases of economic importance in equines. Re-emergence of the disease, species jumping by H3N8 virus in canines and possible threat of human pandemic due to the unpredictable nature of the virus have necessitated research on devising strategies for preventing the disease. The myxovirus resistance protein (Mx) has been reported to confer resistance to Orthomyxo virus infection by modifying cellular functions needed along the viral replication pathway. Polymorphisms and...
Structural and antigenic features of the synthetic SF23 peptide corresponding to the receptor binding fragment of diphtheria toxin.
Molecular immunology    July 23, 2014   Volume 63, Issue 2 235-244 doi: 10.1016/j.molimm.2014.07.008
Khrustaleva TA, Khrustalev VV, Barkovsky EV, Kolodkina VL, Astapov AA.The SF23 peptide corresponding to the receptor binding fragment of diphtheria toxin (residues 508-530) has been synthesized. This fragment forming a protruding beta hairpin has been chosen because it is the less mutable B-cell epitope. Affine chromatography and ELISA show that antibodies from the sera of persons infected by toxigenic Corynebacterium diphtheriae and those immunized by diphtheria toxoid are able to bind the synthetic SF23 peptide. There are antibodies recognizing the SF23 peptide in the serum of horses hyperimmunized with diphtheria toxoid. Analysis of circular dichroism spectra...
Frequency of Corynebacterium pseudotuberculosis infection in horses across the United States during a 10-year period.
Journal of the American Veterinary Medical Association    July 17, 2014   Volume 245, Issue 3 309-314 doi: 10.2460/javma.245.3.309
Kilcoyne I, Spier SJ, Carter CN, Smith JL, Swinford AK, Cohen ND.To quantify the number of horses with Corynebacterium pseudotuberculosis infection identified in the United States from January 2003 through December 2012. Methods: Cross-sectional study. Methods: State veterinary diagnostic laboratory records of 2,237 C pseudotuberculosis culture-positive samples from horses. Methods: 44 state veterinary diagnostic laboratories throughout the United States were invited by mail to participate in the study. Data requested included the number of C pseudotuberculosis culture-positive samples from horses identified per year, geographic location from which the C ps...
Emergency and critical care.
The Veterinary clinics of North America. Equine practice    July 14, 2014   Volume 30, Issue 2 xiii-xiv doi: 10.1016/j.cveq.2014.06.001
Cook VL, Hassel DM.No abstract available
Rapid detection of equine influenza virus H3N8 subtype by insulated isothermal RT-PCR (iiRT-PCR) assay using the POCKIT™ Nucleic Acid Analyzer.
Journal of virological methods    June 30, 2014   Volume 207 66-72 doi: 10.1016/j.jviromet.2014.06.016
Balasuriya UB, Lee PY, Tiwari A, Skillman A, Nam B, Chambers TM, Tsai YL, Ma LJ, Yang PC, Chang HF, Wang HT.Equine influenza (EI) is an acute, highly contagious viral respiratory disease of equids. Currently, equine influenza virus (EIV) subtype H3N8 continues to be the most important respiratory pathogen of horses in many countries around the world. The need to achieve a rapid diagnosis and to implement effective quarantine and movement restrictions is critical in controlling the spread of EIV. In this study, a novel, inexpensive and user-friendly assay based on an insulated isothermal RT-PCR (iiRT-PCR) method on the POCKIT™, a field-deployable device, was described and validated for point-of-nee...
Prevalence of hydatid cysts in livestock animals in Xinjiang, China.
The Korean journal of parasitology    June 26, 2014   Volume 52, Issue 3 331-334 doi: 10.3347/kjp.2014.52.3.331
Qingling M, Guanglei W, Jun Q, Xinquan Z, Tianli L, Xuemei S, Jinsheng Z, Huisheng W, Kuojun C, Chuangfu C.Hydatid worms, hosted by humans and animals, impose serious human health risk and cause significant livestock production loss. To better understand the disease infection status in Xinjiang, China, we investigated the disease epidemics in 4 livestock animals, i.e., cattle, sheep (both sheep and goat), camels, and horses, slaughtered at the abattoirs in Urumqi, Yining, Tacheng, and Altay areas. The results showed that the animals were infected at different rates, in the order of sheep (9.8%), cattle (8.4%), camels (6.8%), and horses (4.3%). The infection rates were found to be different between ...
Infection control and biosecurity in equine disease control.
Equine veterinary journal    June 20, 2014   Volume 46, Issue 6 654-660 doi: 10.1111/evj.12295
Weese JS.Infectious diseases are an important cause of morbidity and mortality in horses, along with economic costs and broader impacts associated with the loss of members of a species that generates income, acts as a working animal and is a companion. Endemic diseases continue to challenge, emerging diseases are an ever-present threat and outbreaks can be both destructive and disruptive. While infectious diseases can never be completely prevented, measures can be introduced to restrict the entry of pathogens into a population or limit the implications of the presence of a pathogen. Objective research ...
Flying-fox species density–a spatial risk factor for Hendra virus infection in horses in eastern Australia.
PloS one    June 17, 2014   Volume 9, Issue 6 e99965 doi: 10.1371/journal.pone.0099965
Smith C, Skelly C, Kung N, Roberts B, Field H.Hendra virus causes sporadic but typically fatal infection in horses and humans in eastern Australia. Fruit-bats of the genus Pteropus (commonly known as flying-foxes) are the natural host of the virus, and the putative source of infection in horses; infected horses are the source of human infection. Effective treatment is lacking in both horses and humans, and notwithstanding the recent availability of a vaccine for horses, exposure risk mitigation remains an important infection control strategy. This study sought to inform risk mitigation by identifying spatial and environmental risk factors...
Field triage of the neonatal foal.
The Veterinary clinics of North America. Equine practice    June 10, 2014   Volume 30, Issue 2 283-vii doi: 10.1016/j.cveq.2014.05.001
Carr EA.The purpose of this article is to provide a quick reference for field triage of the sick neonatal foal. Therefore, information is focused toward diagnostics and treatments that can be performed in the field. When evaluating a weak, recumbent, or lethargic foal on a farm, it is often difficult to make a definitive diagnosis. Therefore, the approach should be to treat what is treatable and prevent what is preventable. In many cases, the goal will be to stabilize a foal before referral to a tertiary care facility where more intensive and continuous treatment can be performed.
Hospital biosecurity–how far have we come in the last 10 years?
Equine veterinary journal    June 10, 2014   Volume 46, Issue 4 402-403 doi: 10.1111/evj.12270
Dallap-Schaer B, Aceto HW.No abstract available
Infection control in equine critical care settings.
The Veterinary clinics of North America. Equine practice    June 10, 2014   Volume 30, Issue 2 467-x doi: 10.1016/j.cveq.2014.04.009
Burgess BA, Morley PS.There is a recognizable standard of practice for infection control in veterinary medicine. Effort must be given to control and prevention of infectious disease transmission within a facility and among animal populations. In the critical care setting, patients typically have a high degree of systemic illness and immune compromise, are commonly subjected to invasive procedures and placement of indwelling devices, and frequently receive antimicrobials and gastric protectants. Every equine critical care unit is distinctive in its physical and operational features and the types of patients that are...
‘Equine research–our only business’: the Grayson-Jockey Club Research Foundation.
Equine veterinary journal    June 10, 2014   Volume 46, Issue 4 515-516 doi: 10.1111/evj.12292
Lunn DP, Antczak DF, McCue P, Richardson D, Scollaly M.No abstract available
Type A influenza virus detection from horses by real-time RT-PCR and insulated isothermal RT-PCR.
Methods in molecular biology (Clifton, N.J.)    June 6, 2014   Volume 1161 393-402 doi: 10.1007/978-1-4939-0758-8_34
Balasuriya UB.Equine influenza (EI) is a highly contagious disease of horses caused by the equine influenza virus (EIV) H3N8 subtype. EI is the most important respiratory virus infection of horses and can disrupt major equestrian events and cause significant economic losses to the equine industry worldwide. Influenza H3N8 virus spreads rapidly in susceptible horses and can result in very high morbidity within 24-48 h after exposure to the virus. Therefore, rapid and accurate diagnosis of EI is critical for implementation of prevention and control measures to avoid the spread of EIV and to reduce the economi...
Equine influenza diagnosis: sample collection and transport.
Methods in molecular biology (Clifton, N.J.)    June 6, 2014   Volume 1161 371-377 doi: 10.1007/978-1-4939-0758-8_32
Chambers TM, Reedy SE.In horses, presumptive diagnosis of equine influenza is commonly made on the basis of clinical signs. This alone is insufficient for confirmation of equine influenza, because other equine infectious respiratory diseases can in some degree have similar clinical presentations. Surveillance and control of equine influenza also necessitate detection of subclinical cases. Effective diagnosis of equine influenza virus infection is critically dependent on obtaining adequate specimens of virus-containing respiratory secretions for testing. These specimens are also valuable as sources for isolation of ...
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