Analyze Diet

Topic:Influenza

Equine influenza is a highly contagious respiratory disease caused by influenza A viruses, specifically affecting horses. The disease is characterized by symptoms such as fever, coughing, nasal discharge, and lethargy. Transmission occurs primarily through aerosolized droplets and direct contact, leading to rapid spread among susceptible populations. Vaccination is a common preventive measure, though the virus's ability to mutate necessitates ongoing surveillance and vaccine updates. This page gathers peer-reviewed research studies and scholarly articles that explore the virology, epidemiology, clinical presentation, and management strategies of equine influenza, with a focus on its impact on equine health and welfare.
Antigenic properties of some equine influenza viruses.
Archives of virology    January 1, 1982   Volume 73, Issue 1 15-24 doi: 10.1007/BF01341723
Burrows R, Denyer M.The antigenic relationships between the haemagglutinins of five A/equine-1 viruses and between six A/equine-2 viruses were examined using post-infection ferret and immunized pony sera. Similar results were obtained with sera from both species for the A/equine-1 viruses and these confirmed minor antigenic differences between the prototype A/Prague 1/56 virus and viruses isolated in England in 1973 and 1977. Considerable antigenic differences were found between five of the A/equine-2 viruses, using ferret sera, but these differences were less evident using pony sera. The response of ponies to th...
Antibody responses of horses to equine influenza viruses during a postepizootic period in Japan.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1982   Volume 46, Issue 1 27-32 
Goto H, Shimizu K, Taya Y, Noda H, Tokunaga T.The antibody responses to equine influenza viruses were investigated during a postepizootic period of the disease. Serum samples were collected from a total of 128 horses on three occasions during the years 1967-77. No significant increase of hemagglutination-inhibition antibody titers to subtypes 1 and 2 of equine influenza virus were detected in any of the sera tested. The maternal hemagglutination-inhibition antibody titers of foals decreased over a four month interval. A marked increase of the titers was recognized in only the equine influenza virus vaccinated horses. These findings sugges...
[Effect of low pH values on the infectivity and neuraminidase activity of human and animal strains of influenza virus type A].
Acta biologica et medica Germanica    January 1, 1982   Volume 41, Issue 11 1075-1078 
Glathe H, Strittmatter HU, Kunze M, Sinnecker H.The influence of acidic pH on the infectivity and neuraminidase activity of human, equine and avian type A influenza virus strains has been studied. Following exposure to pH 3 human and equine strains lost their infectivity completely, whereas all investigated strains of the subtypes Hav6N2 and Hav7Neq2 retained a certain amount of infectivity. In contrast to human and equine strains the avian strains retained also 38% of their original neuraminidase activity after acidic treatment. Partial retention of infectivity and the relative stability of the neuraminidase following exposure to acidic pH...
Field and laboratory studies of equine influenza viruses isolated in 1979.
The Veterinary record    October 17, 1981   Volume 109, Issue 16 353-356 doi: 10.1136/vr.109.16.353
Burrows R, Denyer M, Goodridge D, Hamilton F.Experimental ponies developed signs of disease four days after the intranasal instillation of A/England 1/79 equine influenza virus and virus was recovered from the nasopharynx from the second to the ninth day. No significant antigenic difference was found between the virus and the prototype A/Miami 1/63 virus, using post infection ferret and chicken sera and post vaccination pony sera. No antigenic differences were found between four viruses isolated between January and July 1979, although some differences were found in their ability to detect haemagglutination inhibiting antibody in convales...
Equine influenza in the Netherlands during the winter of 1978-1979; antigenic drift of the A-equi 2 virus.
The veterinary quarterly    April 15, 1981   Volume 3, Issue 2 80-84 doi: 10.1080/01652176.1981.9693801
van Oirschot JT, Masurel N, Huffels AD, Anker WJ.Influenza virus A-equi 2(Heq2Neq2) caused an epizootic in the Netherlands in the winter of 1978-1979. Horses vaccinated with A/Equi/Praha/56 (HEq1Neq1) and A/Equi/Miami/63 (Heq2Neq2) were also infected and showed clinical signs. The virus involved showed a marked antigenic drift from the prototype and vaccine strain A/Equi/Miami/63 (Heq2Neq2). Infection of ferrets with the Dutch/79 isolates gave rise to high haemagglutination-inhibition antibody titres to a number of A-Equi 2-1963, 1968 and 1979 viruses. The incorporation of this virus into future influenza vaccines should be considered.
Lyophilized hyperimmune equine serum as a source of antibodies for neonatal foals.
American journal of veterinary research    February 1, 1981   Volume 42, Issue 2 308-310 
Burton SC, Hintz HF, Kemen MJ, Holmes DF.In a study with 15 neonatal foals (5 per treatment group), foals were fed within 4 hours of birth as follows: 250 ml of colostrum, 250 ml of lyophilized serum reconstituted at 5 times the original concentration, or 250 ml of a mixture (1:1) of colostrum and lyophilized serum. Foal serum samples were tested for immunoglobulin (Ig)G concentration and titrated for anti-equine rhinovirus 1 and anti-equine influenza A1 and A2 antibodies at 0 and 24 hours after foals were born. Except in a foal which had suckled the dam before treatment, there was no evidence of IgG or specific viral antibodies in t...
[The contamination of western Europe in 1979 with influenza virus A/equi-2. Vaccination protection of various contingents of horses and vaccination directives for the future].
Tierarztliche Praxis    January 1, 1981   Volume 9, Issue 1 87-98 
Bürki F.No abstract available
Surveillance for immunity against equine influenza virus infections.
Comparative immunology, microbiology and infectious diseases    January 1, 1981   Volume 4, Issue 3-4 267-278 doi: 10.1016/0147-9571(81)90012-6
Bürki F, Lamatsch O.No abstract available
Equine influenza vaccine shortage.
The Veterinary record    April 19, 1980   Volume 106, Issue 16 376 doi: 10.1136/vr.106.16.376
Pound BH.No abstract available
Significant antigenic drift within the influenza equi 2 subtype in Sweden.
The Veterinary record    April 19, 1980   Volume 106, Issue 16 363-364 doi: 10.1136/vr.106.16.363
Klingeborn B, Rockborn G, Dinter Z.No abstract available
[European Pharmacopoeia and the test of equine influenza vaccines (author’s transl)].
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 101-104 doi: 10.1016/0147-9571(80)90044-2
Pilet C, Poirier J.No abstract available
Epidemiology of equine influenza, risk by age, breed and sex.
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 67-73 doi: 10.1016/0147-9571(80)90040-5
Nyaga PN, Wiggins AD, Priester WA.Three hundred and sixty cases of diagnosed equine influenza reported to the Veterinary Medical Data Program (VMDP) of the National Cancer Institute, U.S.A., were tested for the independent effects of age, breed and sex, relative to a reference clinic-hospital population of 84,562 equine patients. Horses of age category 2-6 months showed a significant risk above unity for infection with equine influenza virus whereas, horses in age category 7-10 yr showed a significant, low and sparing risk. Horses under two months or over 10 years, as well as those in ages from 6 months to 7 yr had non-s...
[Simple, simultaneous or combined vaccinations of horses against equine influenza, rabies and tetanus (author’s transl)].
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 93-99 doi: 10.1016/0147-9571(80)90043-0
Brun A, Duret C, Devaux B, Calmels D.No abstract available
[World-wide circulation of information concerning equine influenza. (Note FROM AN O.I.E. working party on horse diseases) (author’s transl)].
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 61-66 doi: 10.1016/0147-9571(80)90039-9
Virat J, Benazet P, Santucci J.No abstract available
[Efficiency of equine influenza vaccines including tetanus toxoid of combined vaccines].
Schweizer Archiv fur Tierheilkunde    January 1, 1980   Volume 122, Issue 1 27-37 
Bommeli W, Kihm U, Löhrer J, Fey H.No abstract available
Equine influenza–a segment in influenza virus ecology.
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 45-59 doi: 10.1016/0147-9571(80)90038-7
Tůmová B.No abstract available
Persistence in nature of influenza virus A/eq/Praha/56 (Heq1Neq1).
Acta virologica    January 1, 1980   Volume 24, Issue 1 63-67 
Tåmová B, Stumpa A, Zakopal J, Vĕzníková D, Mensík J.Equine influenza occurred in Czechoslovakia 14 years after the last epizootic in horses that had returned from abroad. Six strains A (Heq1Neq1) antigenically related to, but not identical with, strain A/eq/Praha/56 were isolated from 10 washings. Seroconversion was demonstrated with paired sera, but the antibody increase was more marked against the newly isolated strain.
Effects of influenza, mumps, and western equine encephalitis viruses on fetal rhesus monkeys (Macaca mulatta).
Teratology    August 1, 1979   Volume 20, Issue 1 53-64 doi: 10.1002/tera.1420200109
Moreland AF, Gaskin JM, Schimpff RD, Woodard JC, Olson GA.Pregnant Rhesus monkeys were infected via instillation of influenza, mumps and western equine encephalomyelitis viruses respectively into the amniotic sacs at approximately 90 days gestation to determine if fetal infections would occur. Virus was recovered from fetal tissues after seven days in 100% of the exposed animals. Thus, the viruses are capable of causing fetal infection. Rhesus monkey fetuses were inoculated with influenza, mumps and WEE viruses by the direct intracerebral route at approximately 90 days gestation to determine possible teratogenicity of the viruses. influenza virus cau...
[Outbreak of equine influenza in Chile].
Boletin de la Oficina Sanitaria Panamericana. Pan American Sanitary Bureau    April 1, 1979   Volume 86, Issue 4 334-345 
Muñoz V, Vicente M, Aguilera E, Berrios P.No abstract available
Influenza in foals.
Journal of the American Veterinary Medical Association    February 1, 1979   Volume 174, Issue 3 289-290 
Smith BP.No abstract available
Equine respiratory disease on the Western Canadian racetracks.
The Canadian veterinary journal = La revue veterinaire canadienne    February 1, 1979   Volume 20, Issue 2 58-61 
Fretz PB, Babiuk LA, McLaughlin B.The serological results from this study clearly show that both equine influenza and equine rhinopneumonitis viruses were present during spring and autumn epidemics of respiratory disease on Western Canadian racetracks. Approximately 11% of the horses showed significant convalescent titres to influenza while 9% showed significant convalescent titres for equine viral pneumonitis. It was noted in our study a positive vaccination history corresponded with a reduction in the severity of the respiratory infection.
Serological investigations on the circulation of an influenza virus A(H1N1) strain in swine and horses.
Virologie    January 1, 1979   Volume 30, Issue 1 19-23 
Iftimovici R, Iacobescu V, Mihail A, Teodorescu D, Giangă I, Milici V, Tudor G, Moraru G, Bogos L, Gologan G, Ghil KZ, Vlădescu S.No abstract available
Epidemiology of equine upper respiratory tract disease on standardbred racetracks. Sherman J, Mitchell WR, Martin SW, Thorsen J, Ingram DG.The outbreaks of upper respiratory tract infections in horses at Standardbred racetracks were investigated over a three year period. The most serious epidemics of respiratory disease occurred in the winter and spring seasons. Both influenza viruses and equine herpesvirus 1 were shown to be present in the horse population. The herpesvirus was associated with respiratory disease particularly in the winter but the equine influenza viruses apparently were responsible for the major epidemics of respiratory disease at these tracks. Younger horses, two or three years of age, were particularly suscept...
A serologic survey on equine influenza for the past ten years.
Nihon juigaku zasshi. The Japanese journal of veterinary science    August 1, 1978   Volume 40, Issue 4 367-374 doi: 10.1292/jvms1939.40.367
Goto H, Shinagawa M, Shimizu K, Taya Y, Noda H, Tokunaga T.No abstract available
[Outbreak of equine influenza caused by influenza virus A/equi 1 in the State of Rio de Janeiro, Brazil].
Revista brasileira de biologia    August 1, 1978   Volume 38, Issue 3 549-554 
Cunha RG, da Silva Passos W, Correa do Valle MD.No abstract available
[Purification of equine influenza virus A/Equi-2/W/9/69 by the sucrose step density gradient ultracentrifugation].
Medycyna doswiadczalna i mikrobiologia    January 1, 1978   Volume 30, Issue 3 189-192 
Weremowicz S.No abstract available
Antigenic relationship between the Tokyo and the Miami strains of equine influenza subtype 2 virus.
Nihon juigaku zasshi. The Japanese journal of veterinary science    October 1, 1977   Volume 39, Issue 5 571-574 doi: 10.1292/jvms1939.39.571
Goto H, Shimizu K.The first outbreak of equine influenza (EI) infection in Japan was recognized during the period December 1971 to January 1972 [1, 6]. No evidence of the disease had been found before then [2,6]. The etiological agent of this epizootic was identified by hemagglutination-inhibition (HI) and neutralization tests with chicken or ferret antiserum as the subtype 2 of EI virus (6, 7). However, the isolate, A/equine/Tokyo/71 (Tokyo) strain, was not completely identical to the prototypic A/equine/Miami /63 (Miami) strain of the subtype 2, since antibody responses of convalescent horses were 2 to 16 tim...
Equine influenza.
The Veterinary record    September 3, 1977   Volume 101, Issue 10 191-192 doi: 10.1136/vr.101.10.191
Powell DG, Felmingham D.No abstract available
Studies on the antigenicity of an inactivated, aluminum hydroxide adjuvant equine influenza vaccine. Kucera CJ, Beckenhauer WH.An inactivated, aluminum hydroxide adjuvant equine influenza vaccine was tested in horses and guinea pigs to determine the levels of antigen that would elicit maximum serological responses. Vaccine containing serial twofold increments of A/Equi-1/Prague and A/Equi-2/Miami strains of equine influenza virus was administered to random groupings of both types of test animals. The hemagglutination inhibition antibody response for each group was then measured. Results in horses and guinea pigs were compared to determine if the equine serological values could be related to a potency test in laborator...
Field observations on influenza vaccination among horses in Britain, 1971-1976.
Developments in biological standardization    June 1, 1977   Volume 39 347-352 
Powell DG, Burrows R, Spooner P, Mumford J, Thomson G.The observations reported in this paper were obtained as part of a long term surveillance programme designed to monitor the efficacy of influenza vaccines and study the prevalence of influenza and other respiratory viruses among horses in Britain. Inactivated influenza vaccines were found to be effective in protecting horses from disease caused by influenza A/equine-1 but were less successful in protecting horses against influenza A/equine-2. The paper presents the clinical, epidemiological virological and serological findings obtained between 1971 and 1976.
1 21 22 23 24 25 27