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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.
Parasites of domestic and wild animals in South Africa. XX. Arthropod parasites of the Cape mountain zebra (Equus zebra zebra).
The Onderstepoort journal of veterinary research    September 1, 1986   Volume 53, Issue 3 127-132 
Horak IG, Knight MM, de Vos V.The arthropod parasite burdens of 14 Cape mountain zebra (Equus zebra zebra), shot for survey purposes in the Mountain Zebra National Park in the eastern Cape Province, were determined. Three species of Gasterophilus larvae and 9 ixodid tick species were recovered. Larvae of Gasterophilus pecorum were the most numerous of the fly larvae recovered and Margaropus winthemi was the most abundant tick. Two horses examined in the park were infested with 3 species of Gasterophilus larvae and 7 species of ixodid ticks.
Cloning and fine mapping the DNA of equine herpesvirus type one defective interfering particles.
Virology    September 1, 1986   Volume 153, Issue 2 188-200 doi: 10.1016/0042-6822(86)90022-x
Baumann RP, Staczek J, O'Callaghan DJ.Equine herpesvirus type one (EHV-1) defective interfering (DI) particle DNA fragments were inserted into the XbaI site of the plasmid vector pACYC184. Five DI XbaI fragments, which ranged in molecular weight from 4.5 to 6.7 MDa, were selected for detailed analysis. Each DI DNA clone was labeled with 32P-deoxynucleotides by nick translation and hybridized to genomic digests of EHV-1 standard (STD) DNA bound to nitrocellulose. All five clones were shown to hybridize to DNA sequences derived from the left terminus (0.0-0.04 map units) of the long (L) region and from the short (S) region inverted ...
Responses of horses vaccinated with avirulent modified-live equine arteritis virus propagated in the E. Derm (NBL-6) cell line to nasal inoculation with virulent virus.
American journal of veterinary research    September 1, 1986   Volume 47, Issue 9 1931-1934 
McCollum WH.Nineteen horses with no prior experience with equine arteritis virus (EAV) were inoculated IM with an avirulent live-virus vaccine against equine viral arteritis; the vaccinal virus had been passaged serially 131 times in primary cell cultures of equine kidney, 111 times in primary cell cultures of rabbit kidney, and 16 times in an equine dermis cell line (EAV HK-131/RK-111/ED-16). Three or 4 of the vaccinated horses each, along with appropriate nonvaccinated controls, were inoculated nasally with virulent EAV at each of months 3, 6, 9, 12, 18, and 24 after they were vaccinated. The following ...
Demonstration of the carrier state in naturally acquired equine arteritis virus infection in the stallion.
Research in veterinary science    September 1, 1986   Volume 41, Issue 2 279-280 
Timoney PJ, McCollum WH, Roberts AW, Murphy TW.The chronic carrier state was virologically confirmed in 15 thoroughbred stallions naturally infected with equine arteritis virus based on the results of test matings and, or, isolations of the virus from semen. Carrier stallions were shown to shed equine arteritis virus in the semen for at least one to two years. Existence of a short-term or convalescent carrier state was also demonstrated in five additional stallions. The frequency of the long-term carrier state in stallions naturally infected with equine arteritis virus was 35 per cent; it varied considerably between groups of stallions on ...
Elastase-producing microorganisms in horse lungs: their possible role in the pathogenesis of chronic pulmonary disease in the horse.
Equine veterinary journal    September 1, 1986   Volume 18, Issue 5 396-400 doi: 10.1111/j.2042-3306.1986.tb03665.x
Grünig G, Von Fellenberg R, Maier R, Corboz L.Seventeen out of 21 horses had pulmonary microbial organisms which reached considerable numbers in seven cases. Elastase-producing microorganisms from the environment (Streptomyces species and to a lesser extent Bacillus species) constituted 22 per cent to 99 per cent (mean 79 per cent) of the total growth. There was a considerable number of microorganisms with in vitro-produced elastases which were not or only slightly affected by horse serum. There was no correlation between numbers of organisms and pulmonary histopathological findings thus the significance of these microorganisms in the pat...
Treatment of guttural pouch mycosis.
Equine veterinary journal    September 1, 1986   Volume 18, Issue 5 362-365 doi: 10.1111/j.2042-3306.1986.tb03654.x
Church S, Wyn-Jones G, Parks AH, Ritchie HE.Seventeen cases of guttural pouch mycosis (including two bilaterally affected cases) were diagnosed in a three year period. The presenting signs were, in order of frequency, epistaxis at rest, nasal catarrh, pharyngeal paralysis, ipsilateral laryngeal hemiplegia, swelling of the submandibular/parotid region, extension of the head and neck and dyspnoea. Ligation of the origin of the internal carotid and occipital arteries was attempted in 10 of the cases exhibiting epistaxis. Bilateral ligation was performed on one animal with an untoward sequelae. Where surgery was successfully completed furth...
Epidemiology and control of parasites in warm climates.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 357-365 doi: 10.1016/s0749-0739(17)30721-6
Craig TM, Courtney CH.The kind of parasites a horse acquires depends upon its environment. Because patterns of transmission vary greatly with climate and management, no one worming program has universal applications. This article discusses epidemiology and control of equine parasites in the southern United States, where climates vary from warm temperate to subtropical and from humid in the southeast to arid in the southwest.
Immunity and potential of vaccination.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 395-402 doi: 10.1016/s0749-0739(17)30724-1
Klei TR.This article will focus on current information available on the equine immune response to helminth parasites as it relates to acquired resistance, hypersensitivity reactions, and vaccine development.
Experimental Babesia equi infection in mature horses.
American journal of veterinary research    August 1, 1986   Volume 47, Issue 8 1668-1670 
Kuttler KL, Gipson CA, Goff WL, Johnson LW.Nine 4-year-old Arabian geldings were experimentally infected with Babesia equi of European origin. All horses developed detectable parasitemia an average of 30 days after they were inoculated, which was accompanied by a decrease in PCV. The infections were generally mild with no animal deaths. All horses became serologically positive by the indirect fluorescent antibody test within an average of 23 days after they were inoculated and by the complement-fixation test 30 days after they were inoculated.
Laboratory diagnosis.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 381-393 doi: 10.1016/s0749-0739(17)30723-x
Klei TR.Diagnosis of internal parasitism is based on many factors, including clinical signs, case histories of individual animals and the herds of which they are a part, and, finally, specific laboratory findings. Laboratory methods used can be divided into those associated with the qualitative and quantitative examination of feces for parasite eggs, larvae, and oocysts, and laboratory findings on changes in physiologic status of individuals that may be produced by specific parasites.
Epidemiology and control of parasites in northern temperate regions.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 337-355 doi: 10.1016/s0749-0739(17)30720-4
Herd RP.The serious and widespread problem of drug resistance has forced a re-thinking of basic philosophy regarding control of equine parasites. It has illustrated the dangers of total reliance on chemical control and stimulated the use of alternate strategies. Two new approaches are described. Prophylactic treatments in the spring and summer provide effective strongyle and colic control with less selection pressure for drug resistance. A nonchemical approach of pasture cleaning twice a week offers the same advantages with the added bonus of a 50 per cent increase in grazing area.
Equine herpesvirus type 1 infection–a reply.
New Zealand veterinary journal    August 1, 1986   Volume 34, Issue 8 136 doi: 10.1080/00480169.1986.35324
Fu ZF, Robinson AJ.No abstract available
Parasitology.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 263-459 
No abstract available
Other parasites. Recent advances.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 329-336 doi: 10.1016/s0749-0739(17)30719-8
Klei TR.This article briefly reviews new information on trichostrongylid stomach worms, spirurid stomach worms, tapeworms, threadworms, pinworms, intestinal protozoa, lungworms, eye worms, and numerous other aberrant parasites as it relates to prevalence, pathogenesis of diseases, and treatments.
Large strongyles. Recent advances.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 263-280 doi: 10.1016/s0749-0739(17)30716-2
Drudge JH, Lyons ET.This review cites recent advances in the knowledge pertaining to infections of large strongyles in equids. Emphasis is placed on Strongylus vulgaris and attention is focused on pathogenesis of clinical manifestations of infections and treatment and control, including chemotherapy of migrating larvae and drug resistance.
[Effectiveness of ivermectin in Strongyloides westeri cases in foals].
Angewandte Parasitologie    August 1, 1986   Volume 27, Issue 3 181-186 
Köhler M, Hiepe T.Efficacy of Ivermectin in combating Strongyloides westeri infection of foal. The efficacy of Ivermectin and Mebendazol in combating spontaneous Strongyloides westeri infections in foals has been tested by examining faecal egg output reduction. Ivermectin as a paste formulation was given to sucking foals and pregnant mares in a single dosage of 200 micrograms/kg bodyweight by oral administration. A high efficacy of Ivermectin in combating patent Strongyloides westeri infection could be demonstrated; no side effects have been observed. Mebendazol at a dosage rate of 8 mg/kg did not yield satisfa...
Anthelmintics and drug resistance.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 367-380 doi: 10.1016/s0749-0739(17)30722-8
Wescott RB.Equine anthelmintics and the resistance of nematode parasites to anthelmintics are reviewed. Recommendations are made for effective treatment of these parasites and for procedures that can be performed to minimize the problem in the future.
Parasitic skin diseases.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 403-437 doi: 10.1016/s0749-0739(17)30725-3
Foil L, Foil C.In this discussion of parasitic skin diseases of horses, details on life cycles are given to aid the understanding and development of control strategies.
Ascarids. Recent advances.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 313-328 doi: 10.1016/s0749-0739(17)30718-6
Clayton HM.P. equorum is a common and ubiquitous parasite that persists for many years in stables and on pasture in spite of good hygiene and anthelmintic control programs. Foals are usually infected early in life. During the migratory phase of the infection, clinical signs include coughing and a nasal discharge followed by depression and unthriftiness as the worms mature in the gut. Some foals die as a result of intestinal impaction or rupture. Patency is established around 3 months of age, and fecal egg counts may rise to very high levels. From 6 months of age onwards, the ascarid burden diminishes as ...
Strongylid parasites of horses: experimental ecology of the free-living stages on the Canadian prairie.
American journal of veterinary research    August 1, 1986   Volume 47, Issue 8 1686-1693 
Polley L.Each month for a 1-year period (October through September), equine fecal masses containing eggs of strongylid nematodes were placed outdoors on small grass plots in Saskatchewan, Canada. Thereafter, feces and grass from the plots were sampled after intervals of 1 week or longer, and the strongylid eggs and larvae recovered were counted. These observations were made over a 2-year period. Development of eggs to infective larvae occurred in all experiments, except those established in October, December, and January. Infective larvae from experiments set up in April through September survived that...
Equine arteritis virus-induced polypeptide synthesis.
The Journal of general virology    August 1, 1986   Volume 67 ( Pt 8) 1543-1549 doi: 10.1099/0022-1317-67-8-1543
van Berlo MF, Rottier PJ, Spaan WJ, Horzinek MC.Intracellular virus-specific proteins induced by equine arteritis virus (EAV) have been compared with in vitro translation products of virion and intracellular EAV RNAs. In infected BHK-21 cells, the two major virion proteins (C and E1) and polypeptides with mol. wt. of 60,000 (p60), 42,000 (p42) and 30,000 (p30) were found. There were no indications that the viral proteins were processed from a larger precursor as shown by pulse-chase, amino acid analogue and protease inhibitor experiments. The six polyadenylated RNAs that occur in EAV-infected cells were isolated and translated in an mRNA-de...
Intracellular equine arteritis virus (EAV)-specific RNAs contain common sequences.
Virology    July 30, 1986   Volume 152, Issue 2 492-496 doi: 10.1016/0042-6822(86)90154-6
van Berlo MF, Rottier PJ, Horzinek MC, van der Zeijst BA.Equine arteritis virus (EAV) is a nonarthropod-borne togavirus. Six virus-specific RNA species have been found in EAV-infected cells having the following molecular weights: 4.3 X 10(6) (RNA1), 1.3 X 10(6) (RNA2), 0.9 X 10(6) (RNA3), 0.7 X 10(6) (RNA4), 0.3 X 10(6) (RNA5), and 0.2 X 10(6) (RNA6). RNA1 comigrates with the viral genome (M. F. Van Berlo, M. C. Horzinek, and B. A. M. Van der Zeijst, 1982, Virology 118, 345-352). All RNAs hybridized with a radio-labeled cDNA probe representing RNA6, indicating that they contain common sequences. To study this homology in more detail, RNase T1 oligon...
Nucleotide sequence of the 26 S mRNA of the virulent Trinidad donkey strain of Venezuelan equine encephalitis virus and deduced sequence of the encoded structural proteins.
Virology    July 30, 1986   Volume 152, Issue 2 400-413 doi: 10.1016/0042-6822(86)90142-x
Kinney RM, Johnson BJ, Brown VL, Trent DW.A cDNA clone containing all of the 26 S mRNA coding region of the RNA genome of Venezuelan equine encephalitis (VEE) virus, virulent strain Trinidad donkey (TRD), has been constructed and sequenced. The nucleotide and deduced amino acid sequences of the 26 S RNA of VEE virus conform to the general organization of the alphavirus subgenomic mRNA. Excluding the poly(A) tail, the VEE 26 S RNA is 3913 nucleotides long with a protein coding region of 3762 nucleotides. Codon usage in the translated region is nonrandom and correlates well with that reported for Sindbis (SIN), Semliki Forest (SF), and ...
[Echinococcosis in a thoroughbred horse imported from Ireland].
DTW. Deutsche tierarztliche Wochenschrift    July 23, 1986   Volume 93, Issue 7 321-323 
Bauer C, Klein M, Murmann W.No abstract available
Cloning and characterization of an equine cutaneous papillomavirus.
Virology    July 15, 1986   Volume 152, Issue 1 100-109 doi: 10.1016/0042-6822(86)90375-2
O'Banion MK, Reichmann ME, Sundberg JP.Equine papillomaviruses (EqPV) from naturally occurring cases of cutaneous papillomatosis in several ponies and one horse were isolated, cloned, and characterized. Group specific papillomavirus structural antigens were detected in sections of the papillomas by the peroxidase-antiperoxidase technique, and virions were observed in the in the nuclei of cells in the stratum granulosum and corneum. Negatively stained virions purified from papilloma homogenates by isopycnic CsCl centrifugation were 55 nm in diameter and had typical papillomavirus morphology. The entire viral genomes of two separate ...
Nosocomial infections and bacterial antibiotic resistance in a university equine hospital.
Journal of the American Veterinary Medical Association    July 15, 1986   Volume 189, Issue 2 185-191 
Koterba A, Torchia J, Silverthorne C, Ramphal R, Merritt AM, Manucy J.A base-line study of bacteria isolated from horses admitted to the Veterinary Medical Teaching Hospital during a 6-month period was performed to determine the extent of multiresistant nosocomial infections caused by gram-negative aerobic bacteria other than Salmonella spp. Results of this study indicated that 21.9% of the 105 horses from which cultures and sensitivities were available had developed nosocomial gram-negative aerobic infections, with high rates of resistance to gentamicin, kanamycin, and trimethoprim sulfadiazine, three of the most often prescribed antibiotics in this hospital. I...
Gastroenterology.
Equine veterinary journal    July 1, 1986   Volume 18, Issue 4 243-343 
No abstract available
Hands across the colon.
Equine veterinary journal    July 1, 1986   Volume 18, Issue 4 245-246 doi: 10.1111/j.2042-3306.1986.tb03615.x
Wingate D.No abstract available
Submucosal haematoma as a cause of obstruction of the small colon in the horse: a review of four cases.
Equine veterinary journal    July 1, 1986   Volume 18, Issue 4 340-341 doi: 10.1111/j.2042-3306.1986.tb03647.x
Pearson H, Waterman AE.No abstract available
Ehrlichia of Potomac horse fever identified with a silver stain.
Veterinary pathology    July 1, 1986   Volume 23, Issue 4 531-533 doi: 10.1177/030098588602300430
Steele KE, Rikihisa Y, Walton AM.No abstract available