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Author Houpt, T.R.; Houpt, K.A.
Title Nitrogen conservation by ponies fed a low -protein ration Type Journal Article
Year 1971 Publication American journal of veterinary research Abbreviated Journal Am J Vet Res
Volume 32 Issue 4 Pages 579-588
Keywords Administration, Oral; Amino Acids/biosynthesis; Animals; Anti-Infective Agents/pharmacology; Body Weight/drug effects; Dietary Proteins/*pharmacology; Horses/*metabolism; Nitrogen/*metabolism; Urea/administration & dosage/antagonists & inhibitors/metabolism; Water/metabolism
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ISSN 0002-9645 ISBN Medium
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Notes PMID:5110116 Approved no
Call Number refbase @ user @ Serial 62
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Author Parry, B.W.; Gay, C.C.; McCarthy, M.A.
Title Influence of head height on arterial blood pressure in standing horses Type Journal Article
Year 1980 Publication American Journal of Veterinary Research Abbreviated Journal
Volume 41 Issue 10 Pages 1626-1631
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Notes Cited By (since 1996): 4; Export Date: 21 October 2008 Approved no
Call Number Equine Behaviour @ team @ Serial 4539
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Author Bottoms, G.D.; Roesel, O.F.; Rausch, F.D.; Akins, E.L.
Title Circadian variation in plasma cortisol and corticosterone in pigs and mares Type Journal Article
Year 1972 Publication American Journal of Veterinary Research Abbreviated Journal Am J Vet Res
Volume 33 Issue 4 Pages 785-790
Keywords Animals; *Circadian Rhythm; Corticosterone/*blood; Female; Horses/*metabolism; Hydrocortisone/*blood; Methods; Swine/*metabolism; Time Factors
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ISSN 0002-9645 ISBN Medium
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Notes PMID:5017871 Approved no
Call Number Equine Behaviour @ team @ Serial 4074
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Author Fazio, F.; Assenza, A.; Piccione, G.; Caola, G.
Title Periodic Monitoring of Some Physiological Parameters during Training in the Athletic Horse Type Journal Article
Year 2003 Publication Veterinary Research Communications Abbreviated Journal
Volume 27 Issue Pages 595-598
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Call Number Equine Behaviour @ team @ Serial 4384
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Author Herron, M.A.; Martin, J.E.; Joyce, J.R.
Title Quantitative study of the decussating optic axons in the pony, cow, sheep, and pig. Type Journal Article
Year 1978 Publication American Journal of Veterinary Research Abbreviated Journal Am. J. Vet .Res.
Volume 39 Issue 7 Pages 1137-9
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 5586
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Author Mellor, P.S.
Title African horse sickness: transmission and epidemiology Type Journal Article
Year 1993 Publication Veterinary Research Abbreviated Journal Vet Res
Volume 24 Issue 2 Pages 199-212
Keywords Africa, Northern/epidemiology; African Horse Sickness/epidemiology/*transmission; African horse sickness virus/*physiology; Animals; Arachnid Vectors/microbiology; Ceratopogonidae/*microbiology; Culicidae/microbiology; Horses; Insect Vectors/*microbiology; Portugal/epidemiology; Spain/epidemiology; Ticks/microbiology
Abstract (up) African horse sickness (AHS) virus causes a non-contagious, infectious, arthropod-borne disease of equines and occasionally of dogs. The virus is widely distributed across sub-Saharan African where it is transmitted between susceptible vertebrate hosts by the vectors. These are usually considered to be species of Culicoides biting midges but mosquitoes and/or ticks may also be involved to a greater or lesser extent. Periodically the virus makes excursions beyond its sub-Saharan enzootic zones but until recently does not appear to have been able to maintain itself outside these areas for more than 2-3 consecutive years at most. This is probably due to a number of factors including the apparent absence of a long term vertebrate reservoir, the prevalence and seasonal incidence of the vectors and the efficiency of control measures (vaccination and vector abatement). The recent AHS epizootics in Iberia and N Africa spanning as they do, 5 or more yr, seem to have established a new pattern in AHS virus persistence. This is probably linked to the continuous presence of adult C imicola in the area. Culicoides imicola is basically an Afro-Asiatic insect and prefers warm climates. Therefore its continuous adult presence in parts of Iberia and N Africa may be due to some recent moderations of the climate in these areas.
Address Institute for Animal Health, Pirbright Laboratory, Woking, Surrey, UK
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ISSN 0928-4249 ISBN Medium
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Notes PMID:8102076 Approved no
Call Number Equine Behaviour @ team @ Serial 2359
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Author Mellor, P.S.; Hamblin, C.
Title African horse sickness Type Journal Article
Year 2004 Publication Veterinary Research Abbreviated Journal Vet Res
Volume 35 Issue 4 Pages 445-466
Keywords African Horse Sickness/epidemiology/*prevention & control/*transmission/virology; African horse sickness virus/pathogenicity; Animals; Culicidae; Europe/epidemiology; Horses; Insect Vectors
Abstract (up) African horse sickness virus (AHSV) causes a non-contagious, infectious insect-borne disease of equids and is endemic in many areas of sub-Saharan Africa and possibly Yemen in the Arabian Peninsula. However, periodically the virus makes excursions beyond its endemic areas and has at times extended as far as India and Pakistan in the east and Spain and Portugal in the west. The vectors are certain species of Culicoides biting midge the most important of which is the Afro-Asiatic species C. imicola. This paper describes the effects that AHSV has on its equid hosts, aspects of its epidemiology, and present and future prospects for control. The distribution of AHSV seems to be governed by a number of factors including the efficiency of control measures, the presence or absence of a long term vertebrate reservoir and, most importantly, the prevalence and seasonal incidence of the major vector which is controlled by climate. However, with the advent of climate-change the major vector, C. imicola, has now significantly extended its range northwards to include much of Portugal, Spain, Italy and Greece and has even been recorded from southern Switzerland. Furthermore, in many of these new locations the insect is present and active throughout the entire year. With the related bluetongue virus, which utilises the same vector species of Culicoides this has, since 1998, precipitated the worst outbreaks of bluetongue disease ever recorded with the virus extending further north in Europe than ever before and apparently becoming endemic in that continent. The prospects for similar changes in the epidemiology and distribution of AHSV are discussed.
Address Institute for Animal Health, Department of Arbovirology, Pirbright Laboratory, Ash Rd., Pirbright, Woking, Surrey, GU24 0NF, United Kingdom. philip.mellor@bbsrc.ac.uk
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ISSN 0928-4249 ISBN Medium
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Notes PMID:15236676 Approved no
Call Number Equine Behaviour @ team @ Serial 2358
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Author Fazio, E.; Ferlazzo, A.
Title Evaluation of Stress During Transport Type Journal Article
Year 2003 Publication Veterinary Research Communications Abbreviated Journal
Volume 27 Issue Pages 519-524
Keywords hormones – physiological variables – stress – transport procedures
Abstract (up) Domestic animals are transported for a variety of reasons including breeding, biomedical purposes, slaughter and, in the case of sporting horses, for competitions, pleasure activities or ceremonial proceedings. Studies to determine the amount of stress on farm animals during transport often have highly variable results and are difficult to interpret. The reaction of animals to stressors depends on the duration and intensity of the stressors, the animal's previous experience, its physiological status and the immediate environmental restraints. Behavioural, haematological, haematochemical, physiological and neuro-hormonal (ß-endorphin, ACTH, cortisol, iodothyronines) variables are discussed on the basis of handling, loading and transport procedures of animals.
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 4391
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Author Polley, L.
Title Strongylid parasites of horses: experimental ecology of the free-living stages on the Canadian prairie Type Journal Article
Year 1986 Publication American Journal of Veterinary Research Abbreviated Journal Am J Vet Res
Volume 47 Issue 8 Pages 1686-1693
Keywords Animals; Canada; Ecology; Feces; Female; Horse Diseases/*epidemiology/parasitology; Horses; Larva; Ovum/cytology; Seasons; Strongyloides/isolation & purification; Strongyloidiasis/epidemiology/*veterinary
Abstract (up) 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 winter. During the summer, there was a gradual build up of infective larvae in the fecal masses, which reached a peak in August and September and then decreased into the winter. These results are discussed in the context of the control of strongylid parasites of horses on the Canadian prairie and in other areas of the world with a similar climate and similar horse management practices.
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ISSN 0002-9645 ISBN Medium
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Notes PMID:3752676 Approved no
Call Number Equine Behaviour @ team @ Serial 2682
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Author Flauger, B.; Krueger, K.; Gerhards, H.; Möstl, E.
Title Simplified method to measure glucocorticoid metabolites in faeces of horses Type Journal Article
Year 2010 Publication Veterinary Research Communications Abbreviated Journal Vet Res Comm
Volume 34 Issue 2 Pages 185-195
Keywords ACTH challenge; enzyme immunoassay; stress behaviour; cortisol
Abstract (up) Glucocorticoids or their metabolites can be measured in several body fluids or excreta, including plasma, saliva, urine and faeces. In recent years the measurement of glucocorticoid metabolites (GCMs) in faeces has gained increasing attention, because of its suitability for wild populations. In horses, however, the group-specific enzyme immunoassay described so far has a limited racticability due to its complex extraction procedure. Therefore, we tested the applicability of

other enzyme immunoassays for glucocorticoid metabolites. The present study clearly proved that an enzyme immunoassay (EIA) for 11-oxoetiocholanolone using 11-oxoetiocholanolone-17-CMO: BSA (3α,11-oxo-A EIA) as antigen showed high amounts of immunoreactive substances. Therefore it was possible to use just a small amount of the supernatant of a methanolic suspension of faeces. The results

correlated well with the already described method for measuring GCMs in horse faeces, i.e. analysing the samples with an EIA after a two step clean up procedure of the samples (Merl et al. 2000). In addition, the 3α,11-oxo-A EIA has the advantage of providing a bigger difference between baseline values and peak values after ACTH stimulation. The new assay increased the accuracy of the test,

lowered the expenses per sample, and storing samples at room temperature after collection was less critical than with other assays investigated in our study. This is a big advantage both in the field of wildlife management of equids and in the field of equestrian sports and it shows the importance of choosing an assay which is in good accordance with the metabolites excreted in a given species.
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 5073
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