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Biomedical subjects

G H Nesbitt

Publications and source records attributed to G H Nesbitt.

10 recordsLinked to original sources

Michel's medium as a preservative for immunofluorescent staining of cutaneous biopsy specimens in dogs and cats.

Paired 3-mm skin biopsy specimens from 24 dogs and 11 cats with suspected autoimmune dermatopathies were stained with fluorescein-conjugated antisera. In each case, 1 specimen was immediately embedded in optimum cutting temperature compound, quick frozen to -30 C, processed, stained, and examined. The other sample was placed in Michel's transport medium, held for 7 days, and then processed, stained, and examined. The location, quality, and intensity of immunofluorescent staining (when positive) were then compared in the 2 specimens. There were no differences in the staining patterns between the specimens processed immediately and those held in Michel's medium, thus demonstrating the validity of preserving canine and feline skin biopsy specimens in Michel's medium for immunofluorescent examination.

Animals↗

Diagnosis and management of concurrent diabetes mellitus and hyperadrenocorticism in thirty dogs.

Concurrent diabetes mellitus and hyperadrenocorticism were diagnosed in 30 dogs over a 2-year period. Clinical signs included polyuria, hepatomegaly, polyphagia, abdominal distension, truncal alopecia, anorexia, and vomiting. Because of the similar clinical and laboratory findings for hyperadrenocorticism and diabetes mellitus, hyperadrenocorticism was initially overlooked in some dogs. Insulin resistance, characterized by high daily insulin requirements, developed in the diabetic dogs with untreated hyperadrenocorticism. Therapy with o,p'-DDD resulted in precipitous declines in insulin requirements. By lowering the dosage of o,p'-DDD and supplementing with glucocorticoids during the o,p'-DDD loading period, serious hypoglycemia was avoided. Control of coexisting hyperadrenocorticism lessened the severity of the diabetes mellitus, but insulin therapy remained a necessity in all dogs.

Animals↗

Canine hypothyroidism: a retrospective study of 108 cases.

Hypothyroidism, defined as a serum concentration of less than 70 ng of triiodothyronine (T3)/dl or less than 1.5 microgram of thyroxine (T4)/dl, or both, was diagnosed in 108 dogs by means of radioimmunoassay techniques. Both T3 and T4 values were determined in 96 dogs. Both values were low in approximately 50% (47/96) of the hypothyroid dogs; 25% (24/96) were T3 hypothyroid (low T3, normal T4), and 26% (25/96) were T4 hypothyroid (normal T3, low T4). The T3 values varied markedly between animals. Common clinical signs were alopecia, changes in coat (dryness, dullness, dandruff, scales, coarseness, and slow regrowth of hair), hyperpigmentation, and pyoderma. Doberman Pinschers, Great Danes, Poodles, Schnauzers, Irish Setters, and Boxers accounted for 50% (54/108) of the hypothyroid dogs. Therapy consisted of T4, T3, or combination T3 and T4 replacement. A good clinical response was observed with T4 replacement in 40.4% (19/47) within 2 months and in 21.3% (10/47) within 5 months. A poor clinical response was observed in 25.5% (12/47) after 6 months of therapy. Posttherapeutic evaluation was based on peak serum concentrations of T3 and T4, pretreatment (basal) thyroid hormone values, type of replacement therapy, dosage and time of sampling after treatment, concurrent clinical problems, and, most important, clinical response to thyroid replacement therapy.

Animals↗

Fleabite allergic dermatitis: a review and survey of 330 cases.

Clinical signs of acute fleabite allergic dermatitis (FAD) in dogs included intense pruritus and erythema. Dogs with chronic FAD had diminished pruritus. The primary lesion of FAD was a papule. Secondary lesions (hyperkeratosis and hyerpigmentation) were common. Diagnosis of FAD was based on history of flea infestation and on type and location of lesions. Intradermal testing with glycerinated flea antigen was of little diagnostic value. Treatment of FAD included (1) breaking the flea life cycle in the indoor and kennel environment by vacuuming and washing bedding as well as by the use of aerosol insecticides for fumigation, (2) minimizing flea infestation on the dogs by using insecticidal dips, baths, and flea collars, and (3) hyposensitization with flea antigen.

Animals↗