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Topic:Disease Diagnosis

Disease diagnosis in horses involves the identification and characterization of illnesses through various diagnostic methods and tools. This process is essential for effective veterinary care and management of equine health. Techniques used in diagnosing diseases in horses include clinical examinations, laboratory tests, imaging modalities such as ultrasonography and radiography, and molecular diagnostics. Blood tests are frequently utilized to assess parameters such as complete blood count and biochemical profiles, which can indicate underlying health issues. Additionally, advancements in genetic testing and biomarker identification have enhanced the ability to detect specific diseases early. This page aggregates peer-reviewed research studies and scholarly articles that explore diagnostic methodologies, their applications, and their impact on equine health management.
Assessment of the proportion of under-reporting during the 2007 equine influenza outbreak in New South Wales, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 73-74 doi: 10.1111/j.1751-0813.2011.00754.x
Dhand NK, Sergeant ES.During the 2007 equine influenza (EI) outbreak in Australia, there was no objective information about the possible under-reporting of cases by horse owners either so that they would avoid movement restrictions or because of their inability to detect infection. This investigation aimed to estimate the proportion of under-reporting during the outbreak based on the results of surveillance undertaken in conjunction with vaccination. The results provided improved estimates of morbidity during the outbreak and indicated the level of under-reporting likely to occur in future outbreaks of other infect...
Clinical signs of equine influenza in a closed population of horses at a 3-day event in southern Queensland, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 17-18 doi: 10.1111/j.1751-0813.2011.00729.x
Dups JN, Morton JM, Anthony ND, Dwyer JF.This report describes the clinical signs of equine influenza (EI) during an epidemic in a closed, predominantly immunologically naïve population of horses. It included 254 study horses, few of which exhibited all three signs of pyrexia, nasal discharge and cough simultaneously. We conclude that although the majority of affected horses exhibit temperature patterns resembling those most often described in the published literature, clinicians should be aware that other profiles are quite common.
Clinical impression of equine influenza at Morgan Park and the western region of Brisbane, Queensland, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 16-17 doi: 10.1111/j.1751-0813.2011.00727.x
Anthony ND.The clinical signs of horses infected with equine influenza in two Queensland locations, Morgan Park Recreational Grounds at Warwick, and the western region of Brisbane, are described and compared. Clinical signs were observed to be more severe, and treatment more intensive, in horses in stressful settings.
In this issue: Equine influenza in Australia in 2007–the definitive story.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 1-2 doi: 10.1111/j.1751-0813.2011.00783.x
Jackson AE.No abstract available
The August 2007 equine influenza response management framework.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 92-97 doi: 10.1111/j.1751-0813.2011.00758.x
Webster WR.This section outlines the most important issues addressed in the management of the response in the two infected states, New South Wales and Queensland. There were differences in the management of the response between the states for logistic, geographic and organisation structural reasons. Issues included the use of control centres, information centres, the problems associated with the lack of trained staff to undertake all the roles, legislative issues, controls of horse movements, the availability of resources for adequate surveillance, the challenges of communication between disparate groups...
Pathological changes in horses dying with equine influenza in Australia, 2007.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 19-22 doi: 10.1111/j.1751-0813.2011.00731.x
Begg AP, Reece RL, Hum S, Townsend W, Gordon A, Carrick J.Analysis of pathology results from the 2007 equine influenza (EI) outbreak in Australia indicate that young foals in naïve horse populations are prone to developing broncho-interstitial pneumonia, and that this can be a rare manifestation of EI virus infection in mature horses. All horses may develop secondary bacterial bronchopneumonia, with mature horses more likely to die. EI outbreaks among heavily pregnant mares can result in increased neonatal losses because of premature placental separation and dystocia causing fetal hypoxia.
Application of real-time PCR and ELISA assays for equine influenza virus to determine the duration of viral RNA shedding and onset of antibody response in naturally infected horses.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 42-43 doi: 10.1111/j.1751-0813.2011.00740.x
Read AJ, Finlaison DS, Gu X, Davis RJ, Arzey KE, Kirkland PD.During the equine influenza (EI) outbreak, two assays were used in parallel to diagnose the disease, to demonstrate freedom from infection in disease control zones and ultimately to demonstrate that EI virus had been eliminated from the Australian horse population. A longitudinal study of a population of naturally infected horses was established to determine the performance characteristics of these assays.
Factors associated with high psychological distress in horse industry participants during the 2007 Australian equine influenza outbreak and evidence of recovery after 1 year.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 158-159 doi: 10.1111/j.1751-0813.2011.00772.x
Taylor M, Agho K, Stevens G, Raphael B.This short report summarises data on the prevalence of high psychological distress in horse industry participants during the 2007 Australian equine influenza (EI) outbreak and the statistical analysis undertaken to identify the factors associated with this high psychological distress. In addition, follow-up data collected 1 year later are reported briefly.
Real-time RT-PCR for detection of equine influenza and its evaluation using samples from horses infected with A/equine/Sydney/2007 (H3N8).
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 37-38 doi: 10.1111/j.1751-0813.2011.00739.x
Foord AJ, Selleck P, Colling A, Klippel J, Middleton D, Heine HG.No abstract available
Demonstrating freedom from equine influenza in New South Wales, Australia, following the 2007 outbreak.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 164-169 doi: 10.1111/j.1751-0813.2011.00779.x
Sergeant ES, Wilson G.To quantify the probability of freedom from equine influenza (EI) in New South Wales (NSW), Australia, based on analysis of polymerase chain reaction (PCR) testing. Methods: Testing in the infected areas of NSW during the period 1 January to 30 April 2008. Results: Data from the random survey were collated and analysed to provide estimates of the probability of detecting EI if it was present at a prevalence ranging from 0.01% to 0.5%. The sensitivity estimates were then combined with a prior estimate of the probability of freedom in a simulation model, to estimate the posterior probability of ...
Special issue: Equine influenza in Australia in 2007. Foreword.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 2 doi: 10.1111/j.1751-0813.2011.00723.x
Glanville R.No abstract available
Use of a blocking ELISA for antibodies to equine influenza virus as a test to distinguish between naturally infected and vaccinated horses: proof of concept studies.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 45-46 doi: 10.1111/j.1751-0813.2011.00743.x
Kirkland PD, Delbridge G.An important consideration in the selection of a vaccine during the Australian equine influenza (EI) outbreak in 2007 was the ability to differentiate between infected and vaccinated animals (DIVA). A blocking enzyme-linked immunosorbent assay (bELISA) targeted for the nucleoprotein of influenza A viruses was developed to differentiate between naturally infected horses and horses vaccinated with the ProteqFlu® vaccine, which only induces a response to viral haemagglutinin. This bELISA assay met the DIVA requirements and was used extensively during the EI control and eradication programs and '...
Diagnosis of equine influenza virus infections in quarantine stations in Australia, 2007.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 4-6 doi: 10.1111/j.1751-0813.2011.00722.x
Watson J, Selleck P, Axell A, Bruce K, Taylor T, Heine H, Daniels P, Jeggo M.In August 2007, several horses showed pyrexia and respiratory signs while in post-arrival quarantine in Australia. Subsequent investigations diagnosed equine influenza by serology and PCR in two quarantine stations. A common origin in a shipment of horses from Japan was indicated.
Positive results in a real-time PCR for type A influenza associated with the use of an inactivated vaccine.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 145-146 doi: 10.1111/j.1751-0813.2011.00746.x
Diallo I, Read AJ, Kirkland PD.A real-time reverse transcription polymerase chain reaction (qRT-PCR) test for the matrix gene of type A influenza viruses was used during the 2007 Australian equine influenza (EI) outbreak in order to confirm diagnosis and, later, eradication of the virus. During the EI outbreak, horses being exported required vaccination and individual proof of freedom from EI. At the end of the outbreak, positive results were obtained from four horses destined for export, because of contamination of the samples with the vaccine. This report highlights the need for EI testing and vaccination to occur on sepa...
Application of high-throughput systems for the rapid detection of DNA and RNA viruses during the Australian equine influenza outbreak.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 38-39 doi: 10.1111/j.1751-0813.2011.00744.x
Kirkland PD, Davis RJ, Gu X, Frost M.No abstract available
Impact of the Australian equine influenza outbreak on a small business that was not infected.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 161-162 doi: 10.1111/j.1751-0813.2011.00773.x
Myers J.At the outbreak of equine influenza (EI) we chose to close our horse-based business, as we did not want to risk our horses contracting the disease and the demand for our services ceased. We report our experiences of the outbreak.
Determining the endpoint of an outbreak of equine influenza in a large population of racing Thoroughbreds.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 25-27 doi: 10.1111/j.1751-0813.2011.00732.x
Ryan D.Outbreaks of equine influenza (EI) cause major disruption to the racing industry, resulting in cessation of racing until affected horses have recovered from the disease. The introduction of EI to a large population of Thoroughbred horses stabled at a Sydney racecourse provided the opportunity to observe clinical signs and monitor the spread of EI in this predominantly naïve population and to assist in determining an endpoint to infection spread to allow resumption of racing events.
Longitudinal study describing the clinical signs observed in horses naturally infected with equine influenza.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 22-23 doi: 10.1111/j.1751-0813.2011.00733.x
Faehrmann P, Riddell K, Read AJ.We describe the clinical signs and disease course during an outbreak of equine influenza (EI) in naïve horses in a police stables in Sydney, New South Wales, Australia.
Internet-based survey of horse owners for mortality and morbidity related to equine influenza in the 2007 Australian epidemic.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 23-25 doi: 10.1111/j.1751-0813.2011.00776.x
Smyth GB, Dagley K.Anecdotally, some sections of the horse community were under the impression that there was a high mortality rate in horses in 2007 because of the EI epidemic. A survey of horse deaths in the Hunter Valley of New South Wales (NSW) in 2007 indicated that there were few infections and deaths attributable to equine influenza (EI) infections in foals, but other authors found a very high seroprevalence across all age classes. This study aimed to generate objective information on mortality and morbidity rates associated with EI in Australian horses during the 2007 epidemic.
Overview of the epidemiology of equine influenza in the Australian outbreak.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 50-56 doi: 10.1111/j.1751-0813.2011.00748.x
Moloney BJ.This overview of the equine influenza (EI) epidemic as it occurred in two Australian states, New South Wales and Queensland, in 2007 describes the functions and activities of the epidemiology teams that were engaged during the outbreak and also identifies key features of the epidemiology of EI during the outbreak.
Surveillance and prevention in a non-affected state: Victoria.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 89-91 doi: 10.1111/j.1751-0813.2011.00757.x
Paskin R.The equine influenza outbreak detected in August 2007 in New South Wales and Queensland did not enter Victoria, which was, however, considered at risk because of its sizable border with New South Wales. Accordingly, Victoria implemented a response plan to prevent disease entry and enable early detection of any disease. Horse movement restrictions, surveillance strategies and public awareness formed a large part of this response.
Proof of freedom from equine influenza infection in Australia in 2007-08.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 163-164 doi: 10.1111/j.1751-0813.2011.00778.x
Scott-Orr H.The challenges faced in demonstrating Australia's freedom from equine influenza following the outbreak in 2007-08 and the responding strategy developed by the Proof of Freedom Working Group are presented.
High-level coordination and strategy in the 2007 equine influenza outbreak response.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 97-100 doi: 10.1111/j.1751-0813.2011.00759.x
Glanville RJ, Christie B.The equine influenza (EI) outbreak presented many challenges that required high-level coordination and decision making, as well as the development of new approaches for satisfactory and consistent resolution. This paper outlines the elements of the national coordination arrangements, preparatory arrangements in place prior to the outbreak that facilitated national coordination, and some of the issues faced and resolved in the response.
Isolation and characterisation of an H3N8 equine influenza virus in Australia, 2007.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 35-37 doi: 10.1111/j.1751-0813.2011.00738.x
Watson J, Halpin K, Selleck P, Axell A, Bruce K, Hansson E, Hammond J, Daniels P, Jeggo M.Before 2007, equine influenza had never been diagnosed in Australia. On 22 August 2007, infection was confirmed in horses at Eastern Creek Animal Quarantine Station near Sydney. The virus subsequently isolated (A/equine/Sydney/2888-8/2007) was confirmed by sequence analysis of the haemagglutinin (HA) gene as an H3 virus of the variant American Florida lineage that is now referred to as Clade 1. The HA sequence of the virus was identical to that of a virus isolated from a contemporaneous outbreak in Japan and showed high homology to viruses circulating in North America.
Equine influenza: a clinical perspective in Centennial Parklands Equestrian Centre.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 15-16 doi: 10.1111/j.1751-0813.2011.00728.x
Wong D.The clinical signs of horses diagnosed with equine influenza (EI) at Centennial Parklands Equestrian Centre (CPEC) and the events surrounding their diagnosis are described. This was the site of the first case of EI diagnosed outside of the Eastern Creek Animal Quarantine Station. The clinical data demonstrate the rapid spread of the disease after a sufficient viral load had developed from the initial cases within CPEC.
Diagnostic specificity of an equine influenza blocking ELISA estimated from New South Wales field data from the Australian epidemic in 2007.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 43-45 doi: 10.1111/j.1751-0813.2011.00741.x
Sergeant ES, Cowled BD, Bingham P.This observational study was undertaken in order to evaluate the diagnostic specificity of the blocking enzyme-linked immunosorbent assay (bELISA) for serum antibodies to influenza A virus nucleoprotein during the equine influenza (EI) outbreak response in New South Wales, Australia, in 2007. Using data collected during the outbreak response, bELISA testing data were collated for assumed uninfected horses from areas where EI infection was never recorded. Diagnostic specificity of the bELISA used during the EI response was high, but varied significantly between some regions, although the reason...
Equine influenza: patterns of disease and seroprevalence in Thoroughbred studs and implications for vaccination.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 135-137 doi: 10.1111/j.1751-0813.2011.00735.x
Happold J, Rubira R.This study included 10 large Thoroughbred horse studs in the upper Hunter Valley of New South Wales and in southeast Queensland, Australia. The aims were to describe the EI epidemic in studs in the Special Restricted Area (Purple Zone) of NSW, to estimate seroprevalence among different groups of horses on these studs and to look for evidence of exposure to EI virus in horses on 'vaccinated' studs in southeast Queensland that were thought to have remained free of infection. As serology results from Queensland suggest that vaccination may have reduced the sensitivity of clinical surveillance to ...
Analysis of horse movements and events during the 2007 outbreak of equine influenza in New South Wales, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 63-68 doi: 10.1111/j.1751-0813.2011.00775.x
Bell IG, Drury-Klein C.To analyse horse event and horse movement registration data collected between September 2007 and December 2008 during the outbreak of equine influenza in New South Wales, Australia. Results: A total of 9356 events were registered, involving 504,382 horses and 242,952 riders. Registered horse movements totalled 224,084, involving 349,327 horses (excluding mobs) travelling 34.4 million km with an average of 154 km per journey. The number of recorded events and movements were low while movement controls were most stringent, then increased from December 2007 as restrictions were eased, to peak in ...
Role of the diagnostic laboratories during the 2007 equine influenza outbreak in Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 29-32 doi: 10.1111/j.1751-0813.2011.00736.x
Kirkland PD.During the 2007 equine influenza (EI) outbreak in Australia, diagnostic laboratories and the use of appropriate tests played a pivotal role in the response to the crisis. This role began with the detection of EI virus in New South Wales (NSW) on the evening of 24 August 2007 and culminated in providing the final 'proof of freedom' from EI in March 2008. The tests that were used during the EI response were able to provide results quickly, and with high sensitivity and specificity. This section of the supplement describes the roles and functions of the Australian laboratories; tests used and the...
Validation of an influenza virus A 5’Taq nuclease assay for the detection of equine influenza virus A RNA in nasal swab samples.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 39-42 doi: 10.1111/j.1751-0813.2011.00747.x
Oakey J, Hawkesford T, Smith C, Hewitson G, Tolosa X, Wright L, Moody N, Rodwell B, Corney B, Waltisbuhl D.Describe the in-house validation of a previously reported influenza virus type A 5'Taq nuclease assay for detecting equine influenza virus A RNA in nasal swab material. Methods: The validation compares the 5'Taq nuclease assay with a gel-based reverse transcription nested polymerase chain reaction (PCR) previously reported by the Irish Equine Centre for detection of H3N8 and H7N7 equine influenza viruses. This test was chosen because it targets a different region of the viral genome to the real-time test, so it is not merely a repeat of the same test in a different format. Moreover, nested PCR...