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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.
Cryptococcal pneumonia in a horse.
Journal of the American Veterinary Medical Association    September 1, 1983   Volume 183, Issue 5 577-579 
Pearson EG, Watrous BJ, Schmitz JA, Sonn RJ.No abstract available
Gentamicin pharmacokinetics in horses given small doses of Escherichia coli endotoxin.
American journal of veterinary research    September 1, 1983   Volume 44, Issue 9 1746-1749 
Wilson RC, Moore JN, Eakle N.The pharmacokinetics of gentamicin (3 mg/kg of body weight) were evaluated in 6 healthy horses and in 6 horses after they were given Escherichia coli endotoxin (0.113 microgram/kg). In the horses given endotoxin, there were a maximum temperature increase of 1.97 +/- 0.44 degrees (C) and a fever index (between the 2 groups) of 8.754 units. Other mild signs of endotoxemia also occurred. Statistically significant changes were not observed in the rate constants for distribution (alpha) or elimination (beta) or in body clearance (ClB) of gentamicin in the 2 groups of horses. In the horses given end...
Transmission of viruses by artificial breeding techniques: a review.
Journal of the Royal Society of Medicine    September 1, 1983   Volume 76, Issue 9 772-775 doi: 10.1177/014107688307600913
Sellers RF.No abstract available
Systemic granulomatous inflammation in a horse grazing hairy vetch.
Journal of the American Veterinary Medical Association    September 1, 1983   Volume 183, Issue 5 569-570 
Anderson CA, Divers TJ.No abstract available
Sarcocystosis.
The British veterinary journal    September 1, 1983   Volume 139, Issue 5 371-377 doi: 10.1016/s0007-1935(17)30381-0
Dubey JP, Fayer R.No abstract available
Isolation of saprophytic Microsporum praecox Rivalier from sites associated with horses.
Sabouraudia    September 1, 1983   Volume 21, Issue 3 255-257 
De Vroey C, Wuytack-Raes C, Fossoul F.Several M. praecox isolates of saprophytic origin were obtained in Belgium from horses and their surroundings. Visualization of macroconidia in dust collected in stables proved its saprophytic origin. A few strains were obtained from human cases of tinea corporis.
Main Drain virus as a cause of equine encephalomyelitis.
Journal of the American Veterinary Medical Association    September 1, 1983   Volume 183, Issue 5 555-558 
Emmons RW, Woodie JD, Laub RL, Oshiro LS.Main Drain virus, which is thought to be transmitted normally among rabbits and various rodents by its natural vector, Culicoides variipennis, was isolated repeatedly from brain tissue of a sick horse from Sacramento County, California, and was implicated as the causative agent. Signs of illness were incoordination and ataxia, stiff neck, head pressing, inability to swallow, fever, and tachycardia.
The in vitro effects of EDTA-tris, EDTA-tris-lysozyme, and antimicrobial agents on equine genital isolants of Pseudomonas aeruginosa.
Theriogenology    September 1, 1983   Volume 20, Issue 3 287-295 doi: 10.1016/0093-691x(83)90062-6
Kirkland KD, Fales WH, Blanchard TL, Youngquist RS, Hurtgen JP.Five isolants of Pseudomonas aeruginosa collected from clinical cases of equine genital infection and one standard strain of P. aeruginosa were exposed to various concentrations of ethylene-diaminetetraacetic acid (EDTA) and tris (hydroxymethyl) aminomethane (tris buffer pH 8) and EDTA-tris lysozyme. Colony forming units of the isolants and minimal inhibitory concentrations for 11 antimicrobial agents were determined with each isolant before and after exposure to the EDTA solutions. Decreased cellular viability was found with all six isolants after exposure to the EDTA-tris solutions. Reversal...
Isolation and characterization of an equine rotavirus.
Journal of clinical microbiology    September 1, 1983   Volume 18, Issue 3 585-591 doi: 10.1128/jcm.18.3.585-591.1983
Hoshino Y, Wyatt RG, Greenberg HB, Kalica AR, Flores J, Kapikian AZ.A rotavirus, designated as the H-1 strain, was isolated from a diarrheic foal in primary African green monkey kidney cells and MA104 cells. This cell culture-adapted strain hemagglutinated erythrocytes of human group O, rhesus monkeys, guinea pigs, and sheep. It was found to be similar, if not identical, to porcine rotaviruses (strains OSU, EE, and A-580) by plaque reduction neutralization and hemagglutination inhibition tests, and, in addition, it was found to belong to subgroup 1. This equine rotavirus has an RNA electrophoretic migration pattern which was distinct from those of the three st...
Precipitating cross-reactions among pneumococcal types.
Infection and immunity    September 1, 1983   Volume 41, Issue 3 1234-1244 doi: 10.1128/iai.41.3.1234-1244.1983
Heidelberger M.Data accumulated over many years are brought together on cross-reactions of 46 among the more than 80 pneumococcal serological types, with the idea of correlating cross-reactions with the structures of the relevant type-specific capsular polysaccharides, insofar as these have been determined. The precipitin reaction was carried out with the polysaccharides and antibodies raised in horses, rabbits, and a mule. Quantitative values (micrograms of antibody nitrogen per milliliter of antiserum at 0 to 1 degree C) are given in many instances and discussed, together with arbitrary qualitative data, i...
Ivermectin: a potent new antiparasitic agent.
Science (New York, N.Y.)    August 26, 1983   Volume 221, Issue 4613 823-828 doi: 10.1126/science.6308762
Campbell WC, Fisher MH, Stapley EO, Albers-Schönberg G, Jacob TA.Ivermectin is the 22,23-dihydro derivative of avermectin B1, a macrocyclic lactone produced by an actinomycete, Streptomyces avermitilis. It is active at extremely low dosage against a wide variety of nematode and arthropod parasites, apparently by virtue of its action on the mediation of neurotransmission by gamma-aminobutyric acid. It is now in commercial use in various countries for the treatment and control of parasites in cattle, horses, and sheep, and is expected to become available for use in swine and dogs. Since studies with the drug in man are in a preliminary stage, it is not yet kn...
Intussusception of the left dorsal colon in a horse.
Journal of the American Veterinary Medical Association    August 15, 1983   Volume 183, Issue 4 464-465 
Wilson DG, Wilson WD, Reinertson EL.No abstract available
Hepatotoxicosis in neonatal foals.
Journal of the American Veterinary Medical Association    August 15, 1983   Volume 183, Issue 4 388 
Swerczek TW, Crowe MW.No abstract available
[Illustrated case report: parasitic enteritis in a horse].
DTW. Deutsche tierarztliche Wochenschrift    August 8, 1983   Volume 90, Issue 8 326 
Rosenbruch M.No abstract available
Relative activities of acyclovir and BW759 against Aujeszky’s disease and equine rhinopneumonitis viruses.
Antimicrobial agents and chemotherapy    August 1, 1983   Volume 24, Issue 2 221-226 doi: 10.1128/AAC.24.2.221
Rollinson EA, White G.Compound BW759 (9-[2-hydroxy-1-(hydroxymethyl)ethoxymethyl]guanine) was shown to be about 230 times more active than acyclovir (9-[2-hydroxyethoxymethyl]guanine) (ACV) against Equid herpesvirus type 1 infection in Syrian hamsters and was more effective against Aujeszky's disease in mice. The therapeutic superiority of BW759 over ACV was greater than expected from quantitative inhibitory results in tissue culture with these viruses. When administered to hamsters at dose rates sufficient to prevent any Equid herpesvirus type 1-induced mortality (100 mg of ACV per kg per day; 3 mg of BW759 per kg...
Ataxia as the only clinical sign of cerebrospinal meningitis in a horse with equine infectious anemia.
Journal of the American Veterinary Medical Association    August 1, 1983   Volume 183, Issue 3 324-325 
Held JP, McGavin MD, Geiser D.No abstract available
Evaluation of various serotests to detect antibodies in ponies and horses infected with contagious equine metritis bacteria.
American journal of veterinary research    August 1, 1983   Volume 44, Issue 8 1405-1409 
Sahu SP, Rommel FA, Fales WH, Hamdy FM, Swerczek TW, Youngquist RS, Bryans JT.No abstract available
Ulcerative stomatitis in horses and cattle caused by triticale hay.
Australian veterinary journal    August 1, 1983   Volume 60, Issue 8 259 doi: 10.1111/j.1751-0813.1983.tb05986.x
McCosker JE, Keenan DM.No abstract available
A new ciliate, Spirodinium magnum sp. nov., from the light horse.
Nihon juigaku zasshi. The Japanese journal of veterinary science    August 1, 1983   Volume 45, Issue 4 525-527 doi: 10.1292/jvms1939.45.525
Ike K, Imai S, Ishii T.No abstract available
Effect of isometamidium on infections by Trypanosoma vivax and T. evansi in experimentally-infected animals.
Veterinary parasitology    August 1, 1983   Volume 13, Issue 1 35-43 doi: 10.1016/0304-4017(83)90018-3
Toro M, León E, López R, Pallota F, Garcia JA, Ruíz A.Assays dealing with the therapeutic and prophylactic activity of isometamidium on experimental infections by Trypanosoma vivax and T. evansi were carried out. The drug was found to be highly effective against T. vivax infection in sheep and cattle in which periods of protection ranging from 118 to 195 days were achieved. No complete effects against infection by T. evansi were observed. The drug was well tolerated in sheep and cattle while side-effects were noted in treated mares. It was concluded that isometamidium could be used to prevent damage and economical losses caused by T. vivax in Ven...
[The treatment of a lung worm infection in ponies with albendazole (Valbazen)].
Tijdschrift voor diergeneeskunde    July 15, 1983   Volume 108, Issue 14 569-571 
Reitsma JF.A report on infection with Dictyocaulus arnfieldi in a number of ponies and one horse in which complete clinical recovery was obtained following treatment with albendazole (Valbazen), administered by oral route at a dosage of 25 mg/kg of body weight twice daily for five days.
In vivo harboring of equine herpesvirus-1 in leukocyte populations and subpopulations and their quantitation from experimentally infected ponies.
American journal of veterinary research    July 1, 1983   Volume 44, Issue 7 1344-1348 
Scott JC, Dutta SK, Myrup AC.No abstract available
Evaluation of quantitative bacterial counts as an aid in the treatment of wounds in the horse.
Equine veterinary journal    July 1, 1983   Volume 15, Issue 3 251-252 doi: 10.1111/j.2042-3306.1983.tb01782.x
Peyton LC, Connelly MB.Bacterial quantification was evaluated in 15 cases as a means of wound assessment. This study suggests that bacterial quantification may be used as an aid in the evaluation of treatment procedures and wound preparation in veterinary surgery.
Primary severe combined immunodeficiency (PSCID) of foals.
Equine veterinary journal    July 1, 1983   Volume 15, Issue 3 187-188 doi: 10.1111/j.2042-3306.1983.tb01758.x
No abstract available
Treatment of infectious arthritis.
The Veterinary clinics of North America. Large animal practice    July 1, 1983   Volume 5, Issue 2 363-379 doi: 10.1016/s0196-9846(17)30083-6
McIlwraith CW.No abstract available
Fecal leukocytes and epithelial cells in horses with diarrhea.
The Cornell veterinarian    July 1, 1983   Volume 73, Issue 3 265-274 
Morris DD, Whitlock RH, Palmer JE.Fecal samples from 74 horses with diarrhea were examined microscopically for leukocytes and epithelial cells. The diarrhea was categorized as either acute (less than two weeks) or chronic, Salmonella positive or negative, and mild or severe (based on the fecal consistency). A large number of fecal leukocytes was strongly suggestive of salmonellosis; however, approximately 1/3 of the horses with Salmonella-negative diarrhea also shed fecal leukocytes. Fecal leukocytes were more common in horses with acute and/or severe diarrhea regardless of cause. Numbers of fecal colonic mucosal epithelial ce...
Technique of paracentesis abdominis (peritoneal tap) in the horse.
Equine veterinary journal    July 1, 1983   Volume 15, Issue 3 288-289 doi: 10.1111/j.2042-3306.1983.tb01798.x
Ricketts SW.No abstract available
[Endogenous development of Strongylus vulgaris].
Berliner und Munchener tierarztliche Wochenschrift    July 1, 1983   Volume 96, Issue 7 228-231 
Enigk K.No abstract available
Detection of rotavirus in horses with and without diarrhea by electron microscopy and Rotazyme test.
The Cornell veterinarian    July 1, 1983   Volume 73, Issue 3 280-287 
Conner ME, Gillespie JH, Schiff EI, Frey MS.A total of 142 equine fecal samples (93 field fecal and 49 experimental fecal specimens) were examined for rotavirus using direct electron microscopy (EM) and the Rotazyme test. Eighty-six stool specimens were diarrhea samples. The Rotazyme test sensitivity and accuracy as compared to EM was determined by the visual (color reaction) and spectrophotometric methods. The overall agreement was 94.8% and 92.3% between EM and Rotazyme visual and spectrophotometric methods, respectively when suspect reactions (1 + color reaction or net absorbance between 0.05 and 0.1) were not included. The Rotazyme ...
The pathology of experimental Corynebacterium equi infection in foals following intrabronchial challenge.
Veterinary pathology    July 1, 1983   Volume 20, Issue 4 440-449 doi: 10.1177/030098588302000407
Johnson JA, Prescott JF, Markham RJ.Six foals were inoculated intrabronchially with a suspension of Corynebacterium equi. Six weeks before this challenge, three foals were vaccinated with a C. equi bacterin. Three foals were unvaccinated controls. All foals developed a severe bronchopneumonia in the inoculated lung, indicating that vaccination was not protective. Three foals (two vaccinated, one control) were killed eight to nine days after infection. One control died on day 9 with lesions of disseminated intravascular coagulation. The remaining two foals (one vaccinated, one control) were killed on day 17. C. equi was cultured ...