Analyze Diet

Topic:Skin

The skin of horses is a complex organ that serves multiple functions, including protection, thermoregulation, and sensory perception. It consists of several layers, primarily the epidermis and dermis, each contributing to the overall health and functionality of the skin. The epidermis provides a barrier against environmental factors, while the dermis supports the skin structure and houses blood vessels, nerves, and hair follicles. Equine skin is also involved in the production of sweat and sebum, which aid in temperature regulation and skin lubrication, respectively. This page compiles peer-reviewed research studies and scholarly articles that explore the anatomy, physiology, and health conditions of equine skin, as well as advancements in dermatological treatments and care practices.
A congenital vascular naevus in a foal.
Australian veterinary journal    September 1, 1984   Volume 61, Issue 9 286-288 doi: 10.1111/j.1751-0813.1984.tb06012.x
Jabara AG, Hazard GH, O'Shea JD.This paper describes a case of a congenital vascular malformation in the skin of a colt. The lesion arose at the coronary border of the right hind leg. The microscopic structure of a biopsy suggested that the lesion, consisting of multiple foci of closely-packed convoluted small vessels in the dermis, represented a marked exaggeration of glomi which normally occur in considerable numbers in this region of the skin. On the basis of the clinical, macroscopic and histological findings, this lesion was considered to be an hamartoma, rather than a true tumour, and was therefore termed a congenital ...
Dermal collagen degradation and phagocytosis. Occurrence in a horse with hyperextensible fragile skin.
Archives of dermatology    May 1, 1984   Volume 120, Issue 5 599-604 
Gunson DE, Halliwell RE, Minor RR.A 2-year-old female horse had large areas of hyperextensible, fragile skin that were interspersed with areas of normal skin. Affected skin tore easily and contained reduced amounts of dermal collagen. Collagen fibers were fragmented and disorganized, and in trichrome-stained sections, many fibers had abnormal red-stained centers. Electron microscopy showed that many collagen fibers had discrete foci of degradation in which the fibrils were fragmented, loosely packed, and widely separated by granular material. Collagen fibril fragments were present in secondary lysosomes in dermal fibroblasts, ...
Species distribution of coagulase-positive staphylococci in animals.
Journal of clinical microbiology    May 1, 1984   Volume 19, Issue 5 610-615 doi: 10.1128/jcm.19.5.610-615.1984
Biberstein EL, Jang SS, Hirsh DC.A total of 268 isolates of coagulase-positive staphylococci from a variety of animal species, including dogs, horses, cats, monkeys, goats, and cows, were assigned to species on the basis of the API Staph- Ident system (Analytab Products, Inc., Plainview , N.Y.). Of 195 isolates from dogs, 179 (91.8%) were Staphylococcus intermedius, as were 9 of 25 (36%) isolates from horses, 7 of 15 (46.6%) isolates from cats, and 4 of 6 (66.6%) isolates from goats. Only 1 of 10 isolates from monkeys and none of 7 isolates from cows were S. intermedius. Of the remaining 68 cultures, 63 were identified as Sta...
Electrical stimulation on skin wound healing in the horse: preliminary studies.
American journal of veterinary research    April 1, 1984   Volume 45, Issue 4 800-803 
Steckel RR, Page EH, Geddes LA, Van Vleet JF.The effect of low-level direct-current stimulation on skin wound healing in the horse was assessed. Self-sustaining electrical circuits with electrodes were implanted subcutaneously in or near the wound. Stimulation by direct current (10 or 20 microA) was used to determine the effect on equine skin healing. The efficacy of electrotherapy was evaluated by sequentially comparing the clinical appearance of the wound and measuring the size of the granulating wound bed. The histologic appearance of the healing stimulated wounds was compared with that in nonstimulated control wounds created on 9 hor...
Skin grafting in horses.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 215-225 doi: 10.1016/s0196-9846(17)30049-6
Stashak TS.No abstract available
Superficial and deep mycoses in horses.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 47-58 doi: 10.1016/s0196-9846(17)30038-1
Blackford J.No abstract available
Infectious skin diseases of horses.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 27-46 doi: 10.1016/s0196-9846(17)30037-x
Pascoe RR.No abstract available
Parasitic skin diseases of large animals.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 3-26 doi: 10.1016/s0196-9846(17)30036-8
Fadok VA.No abstract available
Noninfectious skin diseases of horses.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 59-78 doi: 10.1016/s0196-9846(17)30039-3
Thomsett LR.No abstract available
Allergic skin diseases in the horse.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 87-90 doi: 10.1016/s0196-9846(17)30041-1
Byars DT.No abstract available
Laser therapy in the horse: histopathologic response.
American journal of veterinary research    March 1, 1984   Volume 45, Issue 3 581-582 
Kaneps AJ, Hultgren BD, Riebold TW, Shires GM.Surgical incisions were made in the skin and superficial digital flexor tendons in horses. A low intensity laser therapy device was used to treat the limbs. After laser therapy was completed, skin and superficial digital flexor tendons from incised laser-irradiated, incised-control, and nonincised-control limbs were compared microscopically. Qualitative differences between laser irradiated and nonirradiated tissues were not found. The laser therapy device used in this study may be of insufficient power to affect wound healing.
Management of thermal injuries in large animals.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 91-105 doi: 10.1016/s0196-9846(17)30251-3
Geiser DR, Walker RD.The pathophysiology and histopathology of thermal burns in large animals is very similar to that in humans. Burns are classified as first degree, superficial and deep second degree, third degree, and fourth degree, depending upon the depth of thermal injury. Most severe burns will produce a local and a systemic response--both of which must be properly treated to increase the patient's chances for survival. The systemic response is mainly characterized by hypovolemia, fluid and electrolyte loss, protein loss, pulmonary edema, increased caloric requirements, and depressed immune responses. The l...
Factors limiting the usefulness of histopathologic examination of skin biopsies in the diagnosis of large animal dermatoses.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 203-213 doi: 10.1016/s0196-9846(17)30048-4
McGavin MD, Fadok VA.Skin biopsy for histologic, immunofluorescent, parasitologic, and bacteriologic examination is a common procedure, but for maximum effectiveness the clinician must realize the importance of precautions to select the correct stage of lesion of different diseases; avoiding creating artifacts during removal and fixation; and give full details of history, clinical diagnosis, and differential diagnoses on the laboratory request sheet. Pathology reports describing the subtleties of histologic changes are difficult to write, particularly if the lesions are not specific. Overly long histologic reports...
Autoimmune skin disease of large animals.
The Veterinary clinics of North America. Large animal practice    March 1, 1984   Volume 6, Issue 1 79-86 doi: 10.1016/s0196-9846(17)30040-x
George LW, White SL.No abstract available
Skin biopsy in horses.
Modern veterinary practice    February 1, 1984   Volume 65, Issue 2 122-125 
Hahn RA.No abstract available
[Nutrition and skin diseases in the horse].
Tierarztliche Praxis    January 1, 1984   Volume 12, Issue 4 493-498 
Meyer H.Skin diseases of the horse can be produced or enhanced through nutrient deficiency, intestinal formation of detrimental substances, photosensitizing compounds and by intake of allergenes. An exact case history regarding feeding is useful for evaluation of every skin abnormality.
[Skin grafts in equine and canine veterinary clinical practice].
Chirurgie; memoires de l'Academie de chirurgie    January 1, 1984   Volume 110, Issue 4 391-394 
Bordet R.No abstract available
[Skin necrosis in a horse as a consequence of a disinfection accident].
Tierarztliche Praxis    January 1, 1984   Volume 12, Issue 1 45-48 
Stanek C.No abstract available
A giant congenital pigmented nevus in a horse.
The American Journal of dermatopathology    January 1, 1984   Volume 6 Suppl 325-330 
Calderwood Mays MB, Mayhew IG, Woodard JC.Pigmented nevi have not been widely recognized in domesticated animals. We describe, for the first time, a giant congenital pigmented nevus in a horse. Because of a prominent neuroid component within the lesion, neurofibromatosis was the major differential diagnosis.
Suspected cutaneous iodism in a horse.
Journal of the American Veterinary Medical Association    November 15, 1983   Volume 183, Issue 10 1104-1106 
Fadok VA, Wild S.No abstract available
Facial and vestibulocochlear nerve disease in six horses.
Journal of the American Veterinary Medical Association    November 15, 1983   Volume 183, Issue 10 1076-1080 
Power HT, Watrous BJ, de Lahunta A.In 6 horses, clinical signs of illness implicated a lesion involving the facial and vestibulocochlear nerves. One horse had signs of otitis externa. Five horses had radiographic changes primarily involving periosteal bony proliferation of the stylohyoid bone at its articulation with the temporal bone. Five horses improved with antibiotic therapy. Otitis media-interna was found at necropsy of one horse.
Staphylococcus hyicus in skin lesions of horses.
Equine veterinary journal    July 1, 1983   Volume 15, Issue 3 263-265 doi: 10.1111/j.2042-3306.1983.tb01786.x
Devriese LA, Vlaminck K, Nuytten J, De Keersmaecker P.Staphylococcus hyicus (subspecies hyicus) was isolated as the only pathogenic organism from two independent cases of dermatitis of the lower parts of the limbs (grease heel) in horses. The organism was recovered together with other pathogenic staphylococci from similar conditions in two other horses of different origins. These conditions were characterised by epidermolysis, alopecia and crust formation. They responded quickly to antibiotic treatment. The organism was also isolated from a long standing case of "summer eczema" which healed without antibiotic treatment, and from a horse with derm...
Sweet itch: responses of clinically normal and affected horses to intradermal challenge with extracts of biting insects.
Equine veterinary journal    July 1, 1983   Volume 15, Issue 3 266-272 doi: 10.1111/j.2042-3306.1983.tb01788.x
Quinn PJ, Baker KP, Morrow AN.In a study of the skin reactivity of horses with lesions of sweet itch, six clinically normal horses and seven affected horses were challenged intradermally with extracts of Culicoides, Stomoxys, Tabanidae and Culex species. All the affected horses and three of the normal horses responded strongly to the culicoides extract. The skin reactions in the affected horses reached their maxima within 4 h in the majority of animals. Skin reactivity to culicoides was transferred to normal horses with serum from affected animals confirming that the reaction was an immediate hypersensitivity reaction. Thr...
Efficacy of ivermectin against Onchocerca cervicalis microfilarial dermatitis in horses.
American journal of veterinary research    June 1, 1983   Volume 44, Issue 6 1102-1105 
Herd RP, Donham JC.Forty horses having microfilariae of Onchocerca cervicalis in association with dermatitis, alopecia, and pruritus on the ventral midline were given a single IM injection of 0.2 mg of ivermectin/kg of body weight (June to August 1981). Microfilarial counts in the 40 horses ranged from 18 to 42,446 microfilariae/skin snip on the day of treatment, and histopathologic examination of these skin sections indicated a chronic eosinophilic dermatitis. Numerous microfilariae were in the dermis, but there was no consistent relationship between the presence of microfilariae and the severity of the inflamm...
Dermatitis in the horse caused by Acarus farinae.
The Veterinary record    April 16, 1983   Volume 112, Issue 16 385-386 doi: 10.1136/vr.112.16.385
Norval J, McPherson EA.No abstract available
A reagin-like antibody in horse serum. II. Anti-human IgE induced reversed cutaneous anaphylaxis-like responses in horse skin.
Veterinary research communications    March 1, 1983   Volume 6, Issue 2 111-122 doi: 10.1007/BF02214903
Matthews AG, Imlah P, McPherson EA.Fc specific anti-human IgE serum induced prolonged reversed cutaneous anaphylaxis (RCA)-like reactions in horse skin. Morphologically and histologically, these reactions resembled passively induced late cutaneous anaphylaxis responses in human skin, but differed from reversed passive Arthus responses induced in horse skin using anti-horse IgG serum. The induction of RCA-like responses in horse skin by anti-human IgE indicates shared Fc antigenic determinants on human IgE and a horse homocytotropic or reagin-like antibody.
[Contact eczema due to metal ion allergy in a drill show horse].
Tierarztliche Praxis    January 1, 1983   Volume 11, Issue 3 339-344 
Fabry H.No abstract available
Comparison of the hydroxyacids from the epidermis and from the sebaceous glands of the horse.
Comparative biochemistry and physiology. B, Comparative biochemistry    January 1, 1983   Volume 75, Issue 2 217-220 doi: 10.1016/0305-0491(83)90316-4
Wertz PW, Colton SW, Downing DT.The acylglucosylceramides were isolated from the polar lipids of horse epidermis and examined to determine whether the component omega-hydroxyacids are straight chained as in the corresponding lipids from pig epidermis or branched as in horse sebum. The hydroxyacids from horse epidermis were found to be almost entirely straight chained compounds. The results indicate that sebaceous glands, although derived from epidermal cells, have evolved independent pathways of lipid metabolism.
Quantitative bacteriology of experimentally incised skin wounds in horses.
Equine veterinary journal    January 1, 1983   Volume 15, Issue 1 37-39 doi: 10.1111/j.2042-3306.1983.tb01697.x
Hackett RP, Dimock BA, Bentinck-Smith J.No abstract available
Pemphigus and pemphigoid in dogs, cats, and horses.
Annals of the New York Academy of Sciences    January 1, 1983   Volume 420 353-360 doi: 10.1111/j.1749-6632.1983.tb22223.x
Scott DW, Manning TO, Smith CA, Lewis RM.No abstract available
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