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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.
Surface receptors on neutrophils and monocytes from immunodeficient and normal horses.
Immunology    March 1, 1975   Volume 28, Issue 3 581-588 
Banks KL, McGuire TC.Surface receptors on peripheral blood neutrophils and monocytes from normal and immunodeficient horses have been studied. Sheep erythrocytes (SRBC) coated with IgG, IgM, and complement but not IgG(T), readily bound to normal equine monocytes and neutrophils. More than 4000 molecules of IgG were required to sensitize each SRBC for adherence to monocytes, and more than 12,000 molecules were required for adherence to neutrophils. Young horses with a severe combined immunodeficiency had an almost total absence of lymphocytes, but normal numbers of monocytes and neutrophils. The number of receptors...
Histological development of the thymic and intestinal lymphoid tissue of the horse.
Journal of the South African Veterinary Association    March 1, 1975   Volume 46, Issue 1 47-55 
Mackenzie CD.The basic components of the immune system, and the defence mechanisms in the gastrointestinal tract, are briefly reviewed. Histological studies in 84 equine foetuses showed that lymphoid cells begin populating the thymic primordium at 11-12 weeks, the mesenteric lymph nodes at 13 weeks, the spleen at 25 weeks and the intestinal lamina propria at 13-14 weeks' gestation. Lymphocytes were seen in the intestinal epithelium very early in gestation. Histological signs of response to antigenic stimulation were seen in five foetuses, indicating that the horse is likely to be capable of mounting an imm...
Inheritance of a lethal immunodeficiency disease of Arabian foals.
Australian veterinary journal    March 1, 1975   Volume 51, Issue 3 109-113 doi: 10.1111/j.1751-0813.1975.tb09429.x
Thompson DB, Studdert MJ, Beilharz RG, Littlejohns IR.A fatal syndrome of certain Arabian foals which begins at about 25 days of age (range 14 to 46 days) and which runs a course of about 23 days (range 13 to 42 days) is described. The syndrome, which affected 17 foals on a single farm is further characterised by pneumonia, in some instances by dermatitis (dermatophilosis) and other infections, together with a progressive decline in health till death at about 49 days of age (range 34 to 77 days), despite intensive therapy. Four of the foals, on histopathological evidence, had adenviral pneumonia, in 2 foals there was histopathological evidence of...
The pathogenesis and control of strongyle infection in the horse.
Journal of the South African Veterinary Association    March 1, 1975   Volume 46, Issue 1 81-85 
Duncan JL, Dargie JD.The migratory route of infective Strongylus vulgaris larvae was determined: penetration of small and large intestine into the lumina of submucosal arteries, migration up the arterial tree, reaching the cranial mesenteric site by three weeks, where the larvae develop to the mature 4th stage. After 3-4 months they exsheath and the young adults migrate down the arteries towards the intestines, to the limit of arterial narrowing, from where they rupture from nodules into the lumen of the intestine. The prepatent period is about 6 months. The clinical syndrome was similar to, but less severe than t...
Activity of organophosphorus compounds against oral stages of gasterophilus intestinalis and Gasterophilus nasalis.
American journal of veterinary research    March 1, 1975   Volume 36, Issue 3 251-253 
Drudge JH, Lyons ET, Tolliver SC.Controlled tests of the efficacy of bot-active compounds, dichlorvos, trichlorfon, trichlorfon butonate, and carbon disulfide on the larvae of Gasterophilus intestinalis and Gasterophilus nasalis during their migratory period in the tissue of the mouth of horses and ponies were completed on experimentally induced and naturally acquired infections. Against the experimental parasitisms in pony foals, the resin-pellet formulation of dichlorvos given on the feed at the dose level of 37 mg/kg, 2 formulations of trichlorfon given by stomach tube at the dose level of 40 mg/kg, another of trichlorfon ...
Differential diagnosis of diarrhoea in horses over six months of age.
Journal of the South African Veterinary Association    March 1, 1975   Volume 46, Issue 1 73-76 
Merritt AM, Bolton JR, Cimprich R.Pertinent questions regarding the history of a horse with diarrhoea are listed, as are diagnostic procedures that might be included in a complete clinical work-up. For purposes of discussion, diarrhoea is regarded as "acute" or "chronic" wherein the former concerns cases where the features of the disease are severe with progressive electrolyte imbalance, dehydration, toxaemia, or other life-threatening manifestations and the latter refers to cases that have been prolonged for a month or more. Patterns of disease, including results of diagnostic techniques, are stressed. In the "acute" category...
Comparative analyses of members of the Venezuelan equine encephalomyelitis virus complex.
American journal of epidemiology    March 1, 1975   Volume 101, Issue 3 245-252 doi: 10.1093/oxfordjournals.aje.a112092
Pedersen CE, Eddy GA.Polyacrylamide gel electrophoretic examination of viruses selected from the Venezuelan equine encephalomyelitis (VEE) complex revealed distinct strain to strain differences in profiles of the two virion envelope proteins. The core protein was identical in all viruses tested. We detected five electrophoretic patterns into which the virus strains could be classified and these were designated alpha (alpha), beta (beta), gamma (gamma), delta (delta), and episolon (episolon). Isolates representing variant E of subtype I exhibited a profile characterized by only one apparent envelope band. The epizo...
Causes of colic and types requiring surgical intervention.
Journal of the South African Veterinary Association    March 1, 1975   Volume 46, Issue 1 95-99 
Wheat JD.The migration of strongyle larvae is the most common or basic underlying cause of colic in the horse. Disease conditions producing symptoms of colic occur in all sections of the intestinal tract and consist of impactions, torsions, herniations and foreign bodies. Colic also occurs as a result of pre- and post-partum diseases such as torsion of the uterus, haemorrhage, rupture and inversion of the uterus. In general, lesions resulting in circulatory obstruction are the types requiring surgical intervention. There are six general types of small intestine obstruction that lend themselves to surgi...
Transformation of horse skin cells by type-C sarcoma viruses.
International journal of cancer    February 15, 1975   Volume 15, Issue 2 171-179 doi: 10.1002/ijc.2910150202
Rhim JS, Ro HS, Kim EB, Gilden RV, Huebner RJ.A horse skin cell line (E. Derm, NBL-6, CCL-57) was susceptible to focus formation by the Kirsten mouse sarcoma virus, feline sarcoma virus (ST stain) and the MSV pseudotypes with woolly monkey, gibbon monkey, RD-114, AT-124, baboon placenta and murine xenotropic (BALB/c 3T3 and C57L/JD) type-C viruses. Foci were detected within 5 days after infection and the transformed cells continued to produce infectious virus and group-specific antigen of their respective type-C leukemia viruses. The transformation efficiency of various type-C sarcoma viruses in horse cells was also very high.
Experimental infection of the horse with Fasciola hepatica.
Experimental parasitology    February 1, 1975   Volume 37, Issue 1 15-19 doi: 10.1016/0014-4894(75)90049-1
Nansen P, Andersen S, Hesselholt M.No abstract available
Experimental acute Babesia caballi infections. I. Red blood cell dynamics.
Experimental parasitology    February 1, 1975   Volume 37, Issue 1 67-77 doi: 10.1016/0014-4894(75)90053-3
Allen PC, Frerichs WM, Holbrook AA.No abstract available
Rapid diagnosis of Venezuelan equine encephalomyelitis by fluorescence microscopy.
American journal of veterinary research    February 1, 1975   Volume 36, Issue 2 167-170 
Erickson GA, Maré CJ.Goat Venezuelan equine encephalomyelitis (VEE) antiserum and normal serum were conjugated and evaluated for staining sensitivity and specificity. Cross-staining with either eastern or western equine encephalomyelitis virus-infected cells did not occur. The baby hamster kidney (BHK-21) cell line when combined with highly specific VEE conjugate detected 100 medium suckling mouse intracerebral lethal doses (suckling mouse LD-50/IC) of the 1B subtype of VEE virus per milliliter of equine tissue suspension. Conjugated goat antiserum was assayed for sensitivity for detection of VEE virus-infected eq...
Letter: Bacterial infection and infertility.
The Veterinary record    January 18, 1975   Volume 96, Issue 3 71 doi: 10.1136/vr.96.3.71
Francis J.No abstract available
Naturally-occurring Tyzzer’s disease (Bacillus piliformis infection) in horse foals.
The Veterinary record    January 18, 1975   Volume 96, Issue 3 59-63 doi: 10.1136/vr.96.3.59
Harrington DD.Spontaneous Tyzzer's disease is described in quarter horse foals which died suddenly with no clinical history of apparent illness. Significant gross findings included icterus, focal paletan areas in the liver and catarrhal entercolitis. Focal dark red lesions were present in the small intestine of one foal, and the mesenteric lymph nodes of another were enlarged and hyperemic. Histopathologically, the liver showed multiple discrete and confluent foci of necrosis, fatty change, sinusoid congestion and haemorrhage. Bundles of intracytoplasmic bacilli were demonstrated in hepatocytes at the margi...
Experimentally induced infection of dogs, cats, and nonhuman primates with Ehrlichia equi, etiologic agent of equine ehrlichiosis.
American journal of veterinary research    January 11, 1975   Volume 36, Issue 1 85-88 
Lewis GE, Huxsoll DL, Ristic M, Johnson AJ.Dogs (German Shepherd Dogs and Beagles), cates, rhesus macaques (Macaca mulatta), and baboons (Papio anubis) were inoculated with Whrlichia equi, the etiologic agent of equine ehrlichiosis. Within 3 to 7 days after inoculation, morulae were observed in the eosinophils of cats, neurtrophils of macaques and baboons, and in both neutrophils and eosinophils of dogs. The severe disease produced in horses by this agent was not a feature of E equi infection in dogs, cats, macaques, and baboons. However, a susceptible horse, inoculated with the pooled blood of 2 infected macaques, developed severe cli...
Survey findings of equine infectious anemia positive horses in New York State. Nusbaum SR.No abstract available
Histopathology of acute hepatitis in the horse.
Journal of comparative pathology    January 1, 1975   Volume 85, Issue 1 111-118 doi: 10.1016/0021-9975(75)90089-4
Robinson M, Gopinath C, Hughes DL.No abstract available
The pathogenesis of single experimental infections with Strongylus vulgaris in foals.
Research in veterinary science    January 1, 1975   Volume 18, Issue 1 82-93 
Duncan JL, Pirie HM.The clinical signs, pathology and clinical pathology associated with single experimental infections of Strongylus vulgaris in worm-free pony foals are described. The major clinical signs which became apparent in the infected foals during the first three weeks were pyrexia, anorexia, dullness and abdominal pain. Within the first two weeks of infection lesions were confined to the intestine and terminal branches of the intestinal arteries and consisted of mucosal, submucosal and serosal haemorrhage together with arteritis of submucosal and serosal arteries and also a marked inflammatory reaction...
Letter: Petriellidium boydii from the reproductive tracts of mares.
New Zealand veterinary journal    January 1, 1975   Volume 23, Issue 1-2 13 doi: 10.1080/00480169.1975.34183
Carter ME, di Menna ME.No abstract available
[Presence and longevity of hydatid cysts of Echinococcus granulosus in imported horses in Sweden (author’s transl)].
Nordisk veterinaermedicin    January 1, 1975   Volume 27, Issue 1 49-55 
Ronéus O.No abstract available
Neonatal isoerythrolysis in domestic animals: a comparative review.
Advances in veterinary science and comparative medicine    January 1, 1975   Volume 19 23-45 
Stormont C.No abstract available
The sensitizing properties of anti-mouse anti-thymocyte horse serum.
Annales immunologiae Hungaricae    January 1, 1975   Volume 18 151-158 
Osz E, Réthy L.The authors have compared the anaphylaxis due to active and passive sensitization of mice. In the case of active sensitizing, anti-mouse anti-thymocyte horse serum (ATS), and/or normal horse serum (NHS), whereas in the case of passive sensitizing, plasma, peripheral leukocytes, spleen cells and thymocytes of sensitized animals were used. Provocation of shock was carried out by intravenous administration of ATS or NHS. Irreversible anaphylaxis occurred in a significantly higher rate in the case of ATS than NHS sensitivity, produced either actively, or passively. Differences have been found also...
Adenoviral infection in foals.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 83-85 
McChesney AE, England JJ.No abstract available
Viral respiratory infections of horses: structure and function of lungs in relation to viral infection.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 76-77 
McChesney AE.Since the advent of cell culture techniques, numerous viruses have been shown to be related to respiratory diseases in horses. Although the viruses differ in many ways, they cause disease with some common characteristics. This report is a summary of some of the available material from written sources and from personal observations. It is intended to help explain some of the changes observed in viral-induced respiratory disease.
Clinical aspects of viral respiratory infections of horses.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 85-88 
Kemen MJ.No abstract available
The bacterial flora of the nasal mucosa of the horse. I. Gram-negative bacteria (author’s transl).
Folia veterinaria Latina    January 1, 1975   Volume 5, Issue 1 55-92 
Cabassi E, Cattabiani F, Brindani F, Freschi E.No abstract available
[Adaptation of the complement fixation microtechnic to the diagnosis of equine plague].
Revue d'elevage et de medecine veterinaire des pays tropicaux    January 1, 1975   Volume 28, Issue 4 451-457 
Bernard G.No abstract available
Neutropenia and salmonellosis in hospitalized horses.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 65-67 
Dorn CR, Coffman JR, Schmidt DA, Garner HE, Addison JB, McCune EL.Colitis due to salmonellae was diagnosed in 9 horses following hospitalization for various reasons at the University of Missouri Veterinary Teaching Hospital, from May, 1971, to April, 1972. Diarrhea, fever, and either a neutrophil count of less than or equal to 3,600/cmm or a rapid decline in neutrophil numbers were specific for salmonellosis. The value of hematologic survelillance in hospitalized Equidae was demonstrated in another group of 9 horses with neutropenia, each of which was promptly treated and did not develop colitis. Bacteriologic culturing of fecal samples from 28 clinically no...
Hypogammaglobulinemia predisposing to infection in foals.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 71-75 
McGuire TC, Poppie MJ, Banks KL.Measurement of serum immunoglobulins in 46 foals less than 2 weeks old revealed 9 foals with hypogammaglobulinemia. The hypogammaglobulinemia was attributed to failure in transfer of immunoglobulins from dam to foal via colostrum. Three of the affected foals did not nurse at all, or only slightly, and 2 of these died of infections within a few days after birth, whereas the 3rd foal did not grow as well as normal foals. Six of the affected foals nursed in an apparently normal manner, and 5 of these had nonfatal respiratory infections between 2 and 5 weeks of age. Analysis of serum samples from ...
The role of bacterial adjuvant in experimental arthritis.
Rheumatology    January 1, 1975   Volume 6 283-287 
Glynn LE.No abstract available