A prospective analysis of renal function in patients with spinal cord injuries and persistent bacilluria.
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Biomedical subjects
Publications and source records attributed to W K Stacy.
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Hemodialysis removes uremic toxins and excess fluid from the blood by diffusion dialysis and ultrafiltration. The efficiency of this process depends on the size, shape, and type of semipermeable membrane used in the hemodialyzer. Although the hollow-fiber kidney remains popular, the parallel-plate hemodialyzer is reestablishing itself, partly because it can use newer types of membranes. With newer membranes, ultrafiltration can be performed without diffusion dialysis, which appears to have important clinical advantages. The dialysate bath used in the hemodialyzer resembles plasma water in composition, with electrolytes added to compensate for abnormalities of end-stage renal disease. Although the technical problems of hemodialysis have been largely overcome, an accurate, easy-to-use method of evaluating the adequacy of the hemodialysis prescription has yet to be devised.
The response to indomethacin of a patient with Bartter's syndrome and proximal tubular sodium wasting is described. The patient had evidence of excessive prostaglandin activity (elevated urinary prostaglandin E metabolite [PGE-M] excretion) which returned to normal with indomethacin therapy. Indomethacin administration corrected the defect in proximal tubular sodium resorption, but suppressed plasma renin activity and urinary aldosterone excretion only when sufficient dietary sodium was available to allow for extracellular fluid volume (ECFV) expansion. We conclude that the proximal tubular defect in sodium resorption may have been caused by excessive prostaglandin activity and that the sustained hyperactivity of the renin-aldosterone system was mediated by ECFV depletion.
Urinary excretion of sodium and water was investigated in patients with chronic end-stage renal disease before and after three different experimental manipulations: reduction in urea solute load by dialysis while extracellular fluid volume (ECFV) was maintained, dialysis without alteration in urea solute load or ECFV and reduction in ECFV without alteration in urea solute load. Sodium and water excretion significantly declined in association with a reduction in both urea solute load and ECFV, but not during a dialysis when reduction on both of these indexes was prevented. The excretory changes occurred in the absence of any alteration in creatinine clearance. The studies suggest that both solute load and the degree of extracellular fluid volume expansion contribute independently to the rate of sodium and water excretion in chronic renal disease. It is concluded that in any given patient the overall excretion of sodium and water is directly influenced by a number of factors including the solute load, the degree of ECFV and the glomerular filtration rate.
Scintiphotographic studies in six patients with ureteral fistula following renal transplantation are presented. Images were obtained using 99m-Tc-Sn-DTPA or 131-I-orthoiodohippurate. Urinary leakage was accurately detected in each case but the pattern of extravasation is highly variable. When carefully performed, radionuclide scintiphotography is a safe and effective method for detecting urinary leakage after renal transplantation.
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