Repetitive strain injury. Musicians helped by team approach.
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Biomedical subjects
Publications and source records attributed to I M James.
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OBJECTIVE: To determine whether muscle blood flow before and after exercise is abnormal in patients with diabetes mellitus. RESEARCH DESIGN AND METHODS: Muscle blood flow (MBF) was measured with the 133Xe clearance technique in 15 nondiabetic subjects, 10 patients with insulin-dependent diabetes mellitus (IDDM), and 11 patients with non-insulin-dependent diabetes (NIDDM) at rest and after exercise. None of the patients had neuropathy. RESULTS: The median resting MBF was similar in all three groups. The median postexercise MBF was significantly greater in nondiabetic subjects (40.1 ml.min-1.100 g-1 of tissue) than in patients with IDDM (25.7 ml.min-1.100 g-1 of tissue; P less than 0.01) or NIDDM (14 ml.min-1.100 g-1 of tissue; P less than 0.01). The difference between IDDM and NIDDM was not significant. CONCLUSIONS: Diabetic patients have abnormalities of MBF in response to exercise. This abnormality occurs in the absence of clinical diabetic neuropathy.
The first part of this article concerns the general relation between blood pressure lowering and cerebral blood flow. Factors known to affect cerebral blood flow are reviewed, and recent advances in the field of innervation of cerebral blood vessels are outlined. Special emphasis is placed on the importance of the phenomenon of autoregulation and how this is disturbed in patients with hypertension. Not all antihypertensive drugs exert the same action on the cerebral circulation to produce the same blood pressure-lowering effect. In addition, the actions exerted by common antihypertensive drugs on the cerebral circulation are described. The second part of the article provides a comparison between the effect of carvedilol and that of propranolol on blood pressure reduction and cerebral blood flow. In a double-blind, crossover study involving 14 patients with mild-to-moderate hypertension, carvedilol was shown to have no effect on cerebral blood flow, whereas there was a slight tendency for lower flows to occur with the use of propranolol. Because of the small sample size, statistical significance was not reached. These results are consistent with other recently published findings.
The influence of hepatic disease on the pharmacokinetics of the new ACE inhibitor, benazepril hydrochloride, was evaluated in 12 male patients suffering from liver cirrhosis. The patients received a single oral 20 mg dose. The plasma concentrations and urinary excretion of unchanged benazepril and its active metabolite benazeprilat were determined. Compared with a historical control group of healthy volunteers treated with the same benazepril. HC1 dose, the plasma concentrations of benazepril were doubled in the cirrhotic patients. However, the time to reach maximum concentration (0.5 h) was not affected. The plasma kinetics and the urinary excretion of the metabolite benazeprilat were not significantly altered: Area under the curve and maximum concentration as well as time to maximum concentration (1.5 h) were comparable with those in the healthy subjects. There was also no significant difference between the two populations for the total urinary excretion and the renal clearance of benazeprilat. Both benazepril and benazeprilat were highly bound to serum proteins (96 and 94 per cent, respectively). In conclusion, the rate and the amount of bioactivation of the inactive prodrug benazepril to the active benazeprilat were virtually unaffected by hepatic cirrhosis. Thus, there seems to be no need for dosage adjustment of benazepril hydrochloride in patients suffering from cirrhosis of the liver.
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Intra-peritoneal chemo-hyperthermia with mitomycin C was used to treat 9 patients with very advanced gastrointestinal cancers with peritoneal seedings. Resection of the primary tumor was possible in 3 cases. After temporary of closure of the abdominal wall, 90 to 120 minutes of intra-peritoneal chemo-hyperthermia was performed under general anaesthesia with 32 degrees C of systemic hypothermia, via 3 intra-peritoneal drains forming a closed circuit, using 10 mg/l of mitomycin C in 61 of peritoneal dialysate warmed at the inflow temperature of 46 to 49 degrees C. We observed no mortality or morbidity. There were only minor and temporary laboratory side effects and for 6 patients, no malignant cells could be found in the ascitic fluid after intra-peritoneal chemo-hyperthermia. In six patients, we conserved an improvement in the Karnofsky index 3 to 7 months after intra-peritoneal chemo-hyperthermia. These results show that intraperitoneal chemo-hyperthermia with mitomycin C is a safe and reliable treatment for peritoneal seedings in severely advanced gastrointestinal cancers and encourage us to proceed with this new therapeutic modality.
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The BP of 12 patients with essential hypertension was controlled with captopril over a period of three months. Cerebral blood flow, muscle blood flow (anterior tibialis muscle), platelet aggregation and platelet thromboxane A2 release were measured during a baseline drug-free period, and measurements repeated during the treatment phase on achieving BP control, after one and three months. Cerebral blood flow rose during the early phase of treatment and then dropped to baseline levels during chronic therapy. Muscle blood flow, both at rest and following maximal exercise, was unaffected by captopril therapy. Platelet aggregation was diminished during therapy, and this finding was paralleled by a reduction in platelet thromboxane A2 generation. Control of hypertension with maintenance of regional blood flow and beneficial changes in platelet function during treatment with captopril may improve the overall risk profile of hypertensive patients. Inhibition of platelet aggregation and thromboxane A2 release may contribute to the antihypertensive action of captopril and the maintenance of regional blood flow.
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The effect of a high dose of diflunisal (750 mg twice daily) on platelet aggregation and cerebral blood flow was investigated in 8 healthy volunteers. Diflunisal inhibited platelet aggregation consistently; this effect on platelets was reversed within 24 hours after the last dose of diflunisal. There was, however, no correlation between the anti-aggregatory effect of diflunisal and its plasma concentration. Diflunisal did not alter cerebral blood flow.
The dose of intravenous diazepam required for sedation was estimated in a series of 78 patients aged 17-85 years given the drug for dental and endoscopic procedures. Multiple regression analysis showed a significant correlation (r = 0.71; p less than 0.001) between dose and age, body weight, the taking of regular sedation, and the taking of more than 40 g alcohol daily, but there were no differences in the doses required between men and women, smokers and non-smokers, inpatients and outpatients, or dental and endoscopy patients. Patients aged 80 required an average dose of 10 mg and patients aged 20 an average dose of 30 mg, and the dose required was much higher in those receiving regular sedation or having a high alcohol intake. Plasma total and free diazepam concentrations were measured in the second half of the series of patients (n = 37). Plasma concentrations required for sedation fell twofold to threefold between the ages of 20 and 80 and were significantly higher in those taking regular sedation or alcohol. Differences in the acute response to diazepam appeared to be due to differences in the sensitivity of the central nervous system (pharmacodynamic tolerance) rather than to differences in pharmacokinetic factors.
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The hypnotic and residual sedative effects of the first and seventh of seven regular night-time doses of nitrazepam 5 mg, temazepam 20 mg, and placebo were studied in 58 elderly inpatients. Plasma temazepam and nitrazepam concentrations rose by about 50% and 113% respectively between the mornings of day 1 and day 7. Patients reported sleeping well more often after the first dose of either hypnotic (p less than 0.05), but there was no difference after the seventh dose. Reaction time was unchanged on the morning after the first dose but was significantly prolonged after the seventh dose of both hypnotics (p less than 0.01). The time taken to eliminate the letter E from a page of prose tended to be prolonged after the first dose of both drugs (temazepam v placebo, p less than 0.05; nitrazepam v placebo, not significant) and was further prolonged on the morning after the seventh dose of nitrazepam (nitrazepam v placebo, p less than 0.05). Thus plasma accumulation of the drug was associated with a deterioration in daytime performance. This change in performance did not correlate with age, cerebral blood flow, or plasma concentration, but patients of low intelligence tended to be more severely affected.
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Epoprostenol (prostacyclin, PGI2) was given intravenously to seven healthy volunteers in a dose of 4 ng kg-1 min-1 over a 30 min period. Diastolic blood pressure fell but there was no change in cardiac output. The mean PGI2 concentration at the end of the infusion was 0.43 ng/ml (1.1 nM) and a significant inhibition of ADP-induced platelet aggregation occurred. Although obvious facial flushing occurred in all subjects and some subjects complained of headache, cerebral blood flow tended to fall. The results do not support the hypothesis that PGI2 acts as a physiological vasodilator involved in the homeostasis of normal cerebral blood flow.