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Biomedical subjects

J Crooks

Publications and source records attributed to J Crooks.

At least 73 records · Page 4Linked to original sources

Duplicate prescriptions: an aid to research and review.

We describe a method of studying patterns of prescribing and related morbidity in general practice. Prescribing data were automatically duplicated onto a ;no-carbon-required' prescription-pad. Additional information about diagnosis and indications for each drug, an indication of whether the drug was newly prescribed or a repeat, and a patient identification code were entered onto the bottom copy. A computer was used to process the data, which were gathered over a period of seven months.The method offers an efficient means of collecting data which can be applied by individuals or groups of doctors to improve patient care and help achieve rational prescribing.

Data Collection↗

Prescribing in general practice and the provision of drug information.

Duplicate prescriptions were used to monitor patient prescribing and morbidity data for 20 Tayside general practitioners during a two-year study. Each participant took part in two periods of active monitoring separated by a three-month gap. Prescribing statistics collected during the first period of monitoring formed the basis of drug information which was circulated to participants shortly after the start of the second period. Some of this information was purely statistical; other information included comments as well as statistics. Subsequent monitoring assessed any changes in prescribing. The results indicate that drug information of this kind can influence general practitioner prescribing but that there were no differences in response to information which was purely statistical and information which included comments.

Drug Information Services↗

Propranolol dynamics in thyrotoxicosis.

Twenty-five thyrotoxic patients were treated with propranolol (160 mg/day) for 1 to 2 wk. Although the response to therapy varied there was a reduction (p less than 0.001) in supine and exercise heart rates and in sitting pulse rate. Serum triiodothyronine (T3) fell (p less than 0.001) and serum thyroxine did not change during propranolol therapy. Plasma propranolol levels before assessment varied from 5 to 121 ng/ml, and there were positive correlations between them and percentage reduction in exercise (r = 0.78, p less than 0.001) and resting (r = 0.61, n = 14, p less than 0.05) heart rates, percentage reduction in sitting pulse rate (r = 0.73, p less than 0.001), and the percentage reduction in serum T3 (r = 0.59, n = 23, p less than 0.01). Although weight loss ceased in the group as a whole the degree of continued weight loss or weight gain in individual patients was also related to plasma propranolol concentration (r = 0.61, p less than 0.01). The plasma propranolol level correlated (r = 0.62, p less than 0.01) with thyrotoxicosis therapeutic index. There was no correlation between degress of subjective improvement and plasma propranolol level.

Adolescent↗

Influence of surgery on plasma propranolol levels and protein binding.

The influence of surgery and anesthesia on perioperative plasma propranolol levels was studied in 25 hyperthyroid and five euthyroid patients undergoing thyroidectomy. Propranolol levels fell markedly after surgery as a consequence of poor drug administration in the immediate postoperative period due largely to patients' nausea and inability to swallow. Propranolol was not detectable in the plasma of three hyperthyroid patients 8 hr after surgery. When propranolol was given through a nasogastric tube, propranolol levels were satisfactory throughout. Compared with preoperative levels, in all patients there was a two- to threefold rise in total and free propranolol levels 24 hr after surgery, suggesting decreased hepatic clearance of propranolol. The degree of plasma protein binding of propranolol had also increased on the day after surgery, leading to a 30% reduction in propranolol free fraction. Surgery and anesthesia greatly influence the handling of propranolol in the perioperative period.

Absorption↗

Propranolol dosage in thyrotoxicosis.

Eighteen thyrotoxic patients receiving chronic treatment with propranolol (160 mg/day) were studied to determine the relationship between plasma propranolol concentration and drug effect. There was a considerable interindividual variability in both the plasma propranolol steady state concentration and the degree of beta-adrenergic blockade. The plasma propranolol steady state concentration correlated significantly with both beta-adrenergic blockage and weight change but not with the degree of subjective improvement. In a group of 40 patients, including 10 severely thyrotoxic patients, who had the dosage of propranolol titrated objectively preoperatively to bring about a greater than 25% reduction in exercise heart rate at the end of a dosage interval, no case of thyroid storm was encountered. Many patients, the younger and severely thyrotoxic in particular, require doses in excess of 160 mg/day to achieve this degree of beta-adrenergic blockade.

Adolescent↗

Short-term triiodothyronine in prevention of temporary hypothyroidism after subtotal thyroidectomy for Graves' disease.

To determine whether short-term thyroid hormone replacement prevents or merely delays temporary hypothyroidism after surgery for Graves' disease, serum T3, thyroid-stimulating hormone, and T4 were measured every 2 months for 18 months in two groups of Graves' disease patients who had had subtotal thyroidectomy. Group I (18 patients) were given T3 20 microgram four times daily from surgery through the twelfth postoperative month. Group II (18 patients) received no treatment. Hypothyroidism occurred at some time during the 18-month period in 10 group-II patients, but was temporary in 7. Temporary hypothyroidism did not occur in group-I patients, whose mean T4 level rose to that in group II within 2 months of T3 withdrawal. Short-term T3 replacement after surgery for Graves' disease thus prevents (and does not simply delay) temporary postoperative hypothyroidism without increasing the frequency of permanent hypothyroidism.

Adult↗

Propranolol, triiodothyronine, reverse triiodothyronine and thyroid disease.

Propranolol alone was given to sixteen hyperthyroid, and concomitantly with thyroxine therapy to ten hypothyroid patients. Following treatment of the hyperthyroid group for 1-2 weeks there was a significant decrease in serum triiodothyronine (T3) which correlated with the plasma propranolol steady state concentration. The serum reverse T3 (rT3) rose significantly. Weight loss ceased in this group while weight gain occurred in patients who had a marked fall in serum T3. One patient with T3 toxicosis went into remission. The reduction in serum T3 was maintained in six patients receiving propranolol for more than 1 month. In the hypothyroid group the mean serum T3 level achieved with 0.15 mg thyroxine per day was significantly lower than in a control group who did not receive propranolol. In five patients following propranolol withdrawal there was a significant rise in T3, a fall in rT3 and TSH, and weight loss. Propranol may therefore have a clinically significant and direct action on the peripheral conversion of thyroxine to T3 and rT3.

Adolescent↗

The behaviour of the thyroidal iodide trap after subtotal thyroidectomy for thyrotoxicosis and its implication for the T3-suppression test.

It is important to distinguish between symptomatic response and immunological cure in thyrotoxicosis because it has been suggested that surgery, in addition to providing a rapid symptomatic response, may also cause the disappearance of thyroid-stimulating antibodies. The evidence, however, is based largely on suppression tests which we argue may not be valid in the post-operative period. Seventy thyrotoxicosis patients were treated for 6 months with a standard course of carbimazole and T3, at the end of which each patient was classified as suppressor (S) or non-suppressor (NS) according to the fall in radioiodine uptake. Group I (18 patients) and group II (18 patients) were then randomly selected for immediate surgery while group III (34 patients) continued on antithyroid drugs. All groups were reviewed every two months from the 6th month for 12 months, during which time group I was drug-free and groups II and III received T3. Twenty-min iodide uptakes were performed in all patients at each visit to compare the serial changes in mean iodide trapping capacity between treatment groups. Despite 10-fold differences in TSH levels between groups I and II, and irrespective of suppressibility before surgery, the mean uptakes in both these groups remained basal (less than 4%) throughout the period of study, while the serial mean uptakes in group III S (no TSH, by implication no TSAB, but intact iodide trap) were consistently higher than those of group I NS (high TSH, by implication TSAB as well, but reduced iodide trap size). The data points to an absence of dose-responsiveness between TSH and the surgical-remnant's iodide trap, implying that post-thyroidectomy suppression tests (at least during the first year) cannot measure changes in iodide trapping, and therefore do not measure the same phenomenon after subtotal thyroidectomy as they do before operation when the thyroid is intact. We therefore question the validity of comparing suppressibility before and after surgery and basing the frequency of surgical cure on the result.

Adult↗

High TSH concentrations in "euthyroidism": explanation based on control-loop theory.

High concentrations of thyroid-stimulating hormone (TSH) in the serum have often been reported in apparently euthyroid patients with damaged thyroids. We have confirmed this finding in 14 patients 18 months after subtotal thyroidectomy for Graves's disease (group 1) and in 14 patients with manic-depressive psychosis (group 2) receiving lithium carbonate, which reduces thyroid reserve. One factor common to groups 1 and 2 but not to the controls was reduced thyroid reserve or functioning capacity, and, using established physical principles of servo-control, we have tried to define the mechanism. A series of curves were projected to indicate how TSH might be expected to vary with functioning thyroid capacity.

Adult↗

Post-thyroidectomy hypocalcaemia: A feature of the operation or the thyroid disorder?

It has been suggested that post-thyroidectomy hypocalcaemia is related to the presence of a thyrotoxic osteodystrophy for which a high serum concentration of bone alkaline phosphatase is a marker. Changes in serum-calcium (corrected to a standard albumin concentration of 40 g/l), alkaline phosphatase (A.P.), inorganic phosphate, and albumin were studied prospectively in 54 euthyroid patients with drug-treated Graves' disease, and in 17 controls with simple non-toxic goitre, before and serially after partial thyroidectomy. All data were paired and results indicate that the pattern of biochemical change was the same in both types of patient and that the degree of change was not related to the serum-A.P. concentration in the Graves'-disease patients. Of the patients studied within the first 24 h of operation, 5 out of 12 with Graves' disease and raised serum-A.P. (group I), 9 of 20 with Graves' disease and normal serum-A.P. (group II), and 7 of 15 controls (group III) showed a fall in serum-calcium below the lower limit of the reference range. In all three groups there was a highly significant fall in serum-calcium 24 h after operation but there was no significant difference in serum-calcium between the groups either immediately before or 24 h after operation. Serum-calcium returned to pre-surgical concentrations within 7 days of thyroidectomy and serum-A.P. concentrations by 4 to 6 weeks in all groups. There was no evidence that post-thyroidectomy hypocalcaemia is related to thyrotoxic osteodystrophy and the pattern of the biochemical changes was thought to be consistent with release of thyrocalcitonin at operation.

Adult↗