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Topic:Infection

Infections in horses encompass a range of diseases caused by various pathogens, including bacteria, viruses, fungi, and parasites. These infections can affect different systems within the horse, such as the respiratory, gastrointestinal, and integumentary systems, leading to a variety of clinical signs depending on the pathogen and the severity of the infection. Common infectious diseases in horses include equine influenza, strangles, and equine herpesvirus. Diagnosis often involves clinical examination, laboratory testing, and sometimes imaging, to identify the causative agent and assess the extent of the disease. Treatment strategies may include antimicrobial therapy, supportive care, and preventive measures such as vaccination and biosecurity practices. This page aggregates peer-reviewed research studies and scholarly articles that explore the pathogenesis, diagnosis, treatment, and prevention of infectious diseases in equine populations.
Redescription of Demodex caballi (= D. folliculorum var. equi Railliet, 1895) from the horse, Equus caballus.
Acarologia    March 1, 1979   Volume 20, Issue 2 235-240 
Desch CE, Nutting WB.No abstract available
Contagious equine metritis: a review.
Theriogenology    March 1, 1979   Volume 11, Issue 3 209-216 doi: 10.1016/0093-691x(79)90029-3
Hughes JP.Contagious Equine Metritis (CEM) is a highly contagious venereal disease of horses caused by a fastidious, Gram-negative coccobacillus which grows best on chocolate agar under microaerophilic conditions (5-10% CO2). Clinically, the disease is characterized by a copious watery-to-mucopurulent, vaginal discharge two to ten days after breeding by an infected stallion (11, 13). Shortened estrous cycle lengths are common and may be the only indication of endometritis in some instances (7). Inapparent carriers of the disease in both the mare and stallion make control of the disease more difficult. O...
Comparative pathology of glomerulonephritis in animals.
Veterinary pathology    March 1, 1979   Volume 16, Issue 2 135-164 doi: 10.1177/030098587901600201
Slauson DO, Lewis RM.Glomerulonephritis constitutes an important category of renal diseases in animals and has been recognized with increasing frequency in the last decade. We report here the comparative morphologic aspects of glomerulonephritis as a naturally occurring disease of animals. We briefly review the immunopathogenesis of glomerulonephritis. The morphology of renal lesions occurring in glomerulonephritis in dogs, cats, cattle, sheep, horses and swine has been reviewed with emphasis on the range and specificity of various glomerular lesions and on the comparison of lesions between various species. A dist...
Ten clinical cases of human infection with venezuelan equine encephalomyelitis virus, subtype I-D.
The American journal of tropical medicine and hygiene    March 1, 1979   Volume 28, Issue 2 329-334 doi: 10.4269/ajtmh.1979.28.329
Dietz WH, Peralta PH, Johnson KM.The clinical and laboratory findings in ten humans infected with Venezuelan equine encephalitis virus, subtype I-D, are described in this report. Clinical and laboratory data indicate that, in contrast to equine infections, human infection with these enzootic virus strains (I-D) is similar to human infection with epizootic strains (I-ABC). In most cases there was an abrupt onset of fever, muscle pain, and vomiting. Virus was recovered from sera obtained during the first 3 days of illness. Lymphopenia occurred in all patients, and neutropenia occurred in three. No sequelae of these infections w...
Contagious equine metritis: a review.
Theriogenology    March 1, 1979   Volume 11, Issue 3 209-216 doi: 10.1016/0093-691x(79)90029-3
Hughes JP.Contagious Equine Metritis (CEM) is a highly contagious venereal disease of horses caused by a fastidious, Gram-negative coccobacillus which grows best on chocolate agar under microaerophilic conditions (5-10% CO2). Clinically, the disease is characterized by a copious watery-to-mucopurulent, vaginal discharge two to ten days after breeding by an infected stallion (11, 13). Shortened estrous cycle lengths are common and may be the only indication of endometritis in some instances (7). Inapparent carriers of the disease in both the mare and stallion make control of the disease more difficult. O...
[Studies on the bacterial causes of neonatal mortality in foals. Report on post-mortem findings (author’s transl)].
Tijdschrift voor diergeneeskunde    February 15, 1979   Volume 104, Issue 4 165-177 
van der Molen EJ.The causes of neonatal mortality in foals were studied over a period of two years. The total number of foals studied was 121. Bacterial infection was found to be an important factor. Infection caused by A. equuli (1.6%) which previously was the most important one, has been superseded by E. coli infection (56%). E. coli infections particularly occur during the first weeks of life and, depending on the course of the disease, give rise to various pathological changes. Infections running an acute course are mainly marked by pathological changes of the lung and lymphoid organs. Infections running a...
Ligation of the internal carotid artery to prevent epistaxis due to guttural pouch mycosis.
The Veterinary record    February 3, 1979   Volume 104, Issue 5 100-101 doi: 10.1136/vr.104.5.100
Owen RR, McKelvey WA.No abstract available
Fetal tissue transplantation for immunotherapy of combined immunodeficiency in horses.
Clinical immunology and immunopathology    February 1, 1979   Volume 12, Issue 2 238-251 doi: 10.1016/0090-1229(79)90012-6
Perryman LE, Buening GM, McGuire TC, Torbeck RL, Poppie MJ, Sale GE.Six young horses with combined immunodeficiency were given liver cells intravenously or intraperitoneally and thymuses subcutaneously from equine fetuses ranging from 68 to 110 days of gestational age. Three of four horses given cells from fetuses over 90 days of age developed lesions compatible with graft versus host reactions. One horse given cells from an 80-day fetus developed mitogen-responsive lymphocytes, synthesized immunoglobulins of the four major equine classes, and survived to 11.5 months of age. The sixth foal receiving cells from a 68-day fetus showed no discernable effects from ...
Disseminated Micronema deletrix infection in the horse.
Journal of the American Veterinary Medical Association    February 1, 1979   Volume 174, Issue 3 264-266 
Alstad AD, Berg IE, Samuel C.No abstract available
An equine abortion due to histoplasmosis.
Veterinary medicine, small animal clinician : VM, SAC    February 1, 1979   Volume 74, Issue 2 200-201 
Hall AD.No abstract available
Identification and treatment of colostrum-deficient foals.
Journal of the American Veterinary Medical Association    February 1, 1979   Volume 174, Issue 3 273-276 
Rumbaugh GE, Ardans AA, Ginno D, Trommershausen-Smith A.No abstract available
The relationship of Brucella abortus titers to equine fistulous withers in Ethiopia.
Veterinary medicine, small animal clinician : VM, SAC    February 1, 1979   Volume 74, Issue 2 195-199 
Cramlet SH, Berhanu G.No abstract available
Studies on classification of Acholeplasmas isolated from horses, cattle and abattoir sewage.
Nihon juigaku zasshi. The Japanese journal of veterinary science    February 1, 1979   Volume 41, Issue 1 9-17 doi: 10.1292/jvms1939.41.9
Watabe J, Ogata M.No abstract available
Immunotherapy in ocular equine sarcoid.
Journal of the American Veterinary Medical Association    February 1, 1979   Volume 174, Issue 3 269-272 
Murphy JM, Severin GA, Lavach JD, Hepler DI, Lueker DC.A modified Bacillus Calmette-Guerin (BCG) preparation was used successfully in the treatment of 7 cases of equine sarcoid. The BCG preparation was injected into the lesions. The longest period of remission has been 24 months, and the shortest period of remission has been 9 months, with no signs of recurrence of the tumor in any of the presented cases.
Joint infection in foals.
Modern veterinary practice    February 1, 1979   Volume 60, Issue 2 140-142 
Rooney JR.No abstract available
Specificity of response to viral proteins in horses infected with equine infectious anemia virus.
Infection and immunity    February 1, 1979   Volume 23, Issue 2 472-478 doi: 10.1128/iai.23.2.472-478.1979
Charman H, Long C, Coggins L.Three structural proteins of equine infectious anemia virus were purified, labeled with 125I, and utilized in radioimmunoassays with horse sera and antisera to heterologous retroviruses. Whereas radioimmunoassay titers for the major protein, p25, were 500- to 1,000-fold higher than titers in immunodiffusion, for clinical purposes these two procedures were equivalent. Antibodies to two low-molecular-weight proteins, p12 and p10, were also found in infected horses, but with a lower frequency and lower titers. As a rule, only sera positive for p25 also contained antibody to p12 and p10. Antisera ...
Serologic survey for equine infectious anemia virus in Louisiana.
Journal of the American Veterinary Medical Association    February 1, 1979   Volume 174, Issue 3 286-288 
Issel CJ, Adams WV.In 1975, a survey was conducted in East Baton Rouge Parish, Louisiana, to determine the prevalence of equine infectious anemia. Using the agar gel immunodiffusion test, 94 of 1,398 horses (6.7%) were found to be infected. Infection rates were especially high in areas where clinical cases of equine infectious anemia had been diagnosed. Clinical signs compatible with the disease were noted in 1 of the 94 seropositive horses. The sample set of 1,398 horses represented 22% of the census population obtained during the 1971 Venezuelan equine encephalomyelitis vaccination campaign.
[Statistical studies on endoparasite infestation of riding horses and trotters].
Berliner und Munchener tierarztliche Wochenschrift    January 15, 1979   Volume 92, Issue 2 21-26 
Keller H, Fries I.No abstract available
Equine reproduction II. Proceedings of the Second International Symposium on Equine Reproduction held at Davis campus of the University of California in July 1978.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 1-626 
No abstract available
Contagious equine metritis: development of enzyme-linked immunosorbent assay to detect antibody to contagious equine metritis organism. Sahu SP, Hamdy FM, Dardiri AH.No abstract available
Antibody to rotavirus in various animal species.
National Institute of Animal Health quarterly    January 1, 1979   Volume 19, Issue 1-2 72-73 
Takahashi E, Inaba Y, Sato K, Kurogi H, Akashi H, Satoda K, Omori T.No abstract available
The in vitro induction of T cells which mediate delayed-type hypersensitivity toward horse red blood cells.
Cellular immunology    January 1, 1979   Volume 42, Issue 1 42-47 doi: 10.1016/0008-8749(79)90219-3
Ramshaw IA, Eidinger D.No abstract available
Contribution to the knowledge of contagious equine metritis in the Federal Republic of Germany.
Comparative immunology, microbiology and infectious diseases    January 1, 1979   Volume 2, Issue 4 551-554 doi: 10.1016/0147-9571(79)90096-1
Blobel H, Brückler J, Kitzrow D, Blobel K.No abstract available
[Use of dichlorvos in gastrointestinal parasitoses in horses in Niger].
Revue d'elevage et de medecine veterinaire des pays tropicaux    January 1, 1979   Volume 32, Issue 2 181-183 
Tager-Kagan P.No abstract available
Eimeria leuckarti in five Minnesota horses.
Veterinary medicine, small animal clinician : VM, SAC    January 1, 1979   Volume 74, Issue 1 77-80 
Bemrick WJ, O'Leary TP, Barnes DM.No abstract available
Contagious equine metritis–outbreak of the disease in Kentucky and laboratory methods for diagnosing the disease.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 361-365 
Swerczek TW.Contagious Equine Metritis (CEM) was initially reported during the 1977 breeding season in England (Crowhurst, 1977) and Ireland (Timoney, Ward & Kelly, 1977. The disease has also been diagnosed in France and Australia (Huges, Bryden & MacDonald, 1978). The first occurrence of CEM in the United States followed the importation or 2 stallions from France late in 1977 which resulted in an outbreak early in the 1978 breeding season (Swerczek, 1978). Mares usually develop clinical signs of CEM 8--10 days after being covered by an infected stallion, when a copious, greyish discharge is seen. Other m...
Isolation of Klebsiella pneumoniae from the urogenital tract of experimentally infected mares.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 317-320 
Stratton LG, Corstvet R, Brown J, Corley L.K. pneumoniae capsule type 68 infused into the uterus of 4 mares was recovered up to 15 weeks after inoculation. The insertion of a tampon for 10 min was more effective than a swab technique in detecting the organism in the uterus. The clitoral fossa and the urethral orifice when sampled by the swab technique were also found to be infected for a comparable period. K. pneumoniae was isolated from the clitoral specimens more often and more consistently than from either urethral or uterine specimens.
Immunology of a persistent retrovirus infection–equine infectious anemia.
Advances in veterinary science and comparative medicine    January 1, 1979   Volume 23 137-159 
McGuire TC, Crawford TB.No abstract available
[Localisation of parasites in the stomach of horses of the region of Settat (Morocco)].
Revue d'elevage et de medecine veterinaire des pays tropicaux    January 1, 1979   Volume 32, Issue 4 347-352 
Ouhelli H, Cabaret J, Pandey VS, Elkhalfane A.No abstract available
Pyometra in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 321-329 
Hughes JP, Stabenfeldt GH, Kindahl H, Kennedy PC, Edqvist LE, Neely DP, Schalm OW.No abstract available