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Biomedical subjects

J Cooper

Publications and source records attributed to J Cooper.

At least 541 records · Page 30Linked to original sources

Jaundice and rash associated with the use of phenobarbital and hydrochlorothiazide.

Rash, lymphadenopaty, splenomegaly, periorbital edema, and hepatitis occurred in an 18-year-old woman who was taking phenobarbital and hydrochlorothiazide. Tests for fluorescent antinuclear antibody and hepatitis-associated antigen and antibody were negative. Liver biopsy was not characteristic of viral hepatitis. Clinical recovery occurred within two weeks. Treatment consisted of withdrawal of the above drugs plus the administration of methylprednisolone and diphenhydramine.

Adolescent↗

The utilization of a consulting clinical psychologist within an urban vision training clinic.

Multi-disciplinary evaluation of children with learning problems is necessary in many cases. The private optometrist frequently has psychological resources available to him and his patients. In an urban setting with an inner city patient population, the clinical practitioner has much difficulty in referring and in retrieving psychological data. The function of a consulting psychologist as an attending staff member of the Visual Training Department of the Optometric Center of New York is described, and a preliminary report of 52cases referred for psychological consultation between September 1, 1972 and June 30, 1973 is presented.

Community Health Services↗

A non-destructive method for measuring intestinal cell transit time.

Villous exfoliation of intestinal epithelial cells, which had been previously labeled in the crypt with 125I-iododeoxy-uridine, can be detected by thyroidal accumulation of the liberated 125I-. The latter can be monitored externally. The interval between labeled precursor injection and the steep portion of the thyroid activity accumulation curve corresponds to the intestinal cell transit time, as measured by destructive techniques, in three animal species. The technique allows estimations of intestinal cell transit time to be made on an individual basis, and can be expeditiously applied to large animals. Very small tracer doses are required for detection.

Age Factors↗

Proliferative patterns in the mouse jejunal epithelium after fractionated abdominal x-irradiation.

Cell proliferation was studied in the intestinal epithelium of mice exposed to fractionated abdominal X-irradiation. Exposures were separated by 12, 24, 48 or 72 hr. Labelled nuclei and mitotic figures per crypt using the crypt squash technique were determined at closely-spaced time intervals (1 to 96 hr) after 1, 2, 3, 5, 7 and 9 exposures. Cell cycle times including estimates of G-1, S, G-2 and M were determined at 12 and 24 hr. These data show that the intestinal epithelium has a remarkable potential to repair damage and recover following severe injury if sufficient time is allowed for the acceleration in proliferative activity. The damage-repair-recovery pattern, i.e., increase in size of proliferative population and acceleration of the generation cycle, is similar for single and fractionated exposures. The number of 300 R exposures which can be tolerated by a highly organized in vivo cell population is dependent upon time interval between fractions; e.g., when interval between fractions is 12 hr eight 300 R exposures kill all animals, but when the interval is increased to 72 hr some animals survive 20 doses, although time of death is highly variable. The compensatory recovery potential is maintained over a large number of exposures.

Animals↗

The growing conceptus of the domestic cat.

The feline conceptus is similar to larger mammals rather than to rodents in the amounts of fetal fluids and the contribution of the fetus to the total volume of the conceptus. When growth rates of several mammals are compared as Gompertzian functions, the feline fetus is more similar to that of the guinea pig or beagle than that of the mouse, rat, man, sheep or cow. The feline Gompertzian growth starts at about the 6th day of gestation. The weight of the fetus, +/- 10%, as a function of gestational age starting on day 28 is: Weight in grams = 2.6477 X 10(-10) exp (see article) when t = gestational age of 28 days or more. The feline weight to crown-rump relationship can most easily be expressed as a power function where: Crown-rump length in cm = 2.69 (weight in grams) 0.3508; with an error term of +/- 5%. The relationship of three variables gestational age, fetal weight, and fetal crown-rump length can also be expressed mathematically: Gestational age in days = 15.335 + 3.9805 (crown-rump length in cm) -0.0675 (weight in grams) Equations for crown-rump length or weight were calculated, but the inaccuracy of these expressions is too great to allow practical use.

Animals↗