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Biomedical subjects

P Kothari

Publications and source records attributed to P Kothari.

4 recordsLinked to original sources

Predominant left hemisphere metabolic dysfunction in dementia.

Thirty-one patients with probable Alzheimer's disease and 11 patients with memory disorders, attributable to multiple cerebral infarctions, were studied using 18-F-fluorodeoxyglucose-positron emission tomography scans. Asymmetry in cerebral glucose metabolism within these diagnostic groups was assessed by comparison with the metabolic rates obtained in age-equivalent healthy control subjects. A significantly greater number of individuals in both patient groups exhibited predominant left rather than right hemisphere hypometabolism. In addition, for patients with Alzheimer's disease, the degree of asymmetry was not related to either the severity or duration of dementia. These findings could be explained by greater susceptibility of the left hemisphere to degenerative or ischemic brain disease, by a specific sampling effect, or most likely, by greater metabolic deficits resulting from left rather than right hemisphere impairment.

Brain

Responses of glomerular filtration, renal blood flow and salt-water handling to acute cardioselective and non-selective beta-adrenoceptor blockade in essential hypertension.

The effects on renal hemodynamics and salt-water handling of equipotent doses of the cardioselective beta-blocker metoprolol (M, 100 mg) and of the non-selective (intrinsic sympathetic activity) beta-antagonist pindolol (P, 10 mg) were compared in 30 WHO Grade 1-2 hypertensive men. M lowered pulse rate more than P. Systolic pressure was equally reduced by both agents, and diastolic and mean pressures were decreased only after P. Glomerular filtration rate was not significantly altered by either antagonist, and renal blood flow decreased by approximately 11% both after M and P. Renal vascular resistance was unchanged after P, and was increased by 10% after M. It is concluded that, like the effects on central haemodynamics, ISA is more important in the renal response to beta-adrenoceptor blockade than is beta-receptor selectivity.

Adrenergic beta-Antagonists