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Biomedical subjects

F C Walker

Publications and source records attributed to F C Walker.

8 recordsLinked to original sources

Diagnostic evaluation of adult polycystic kidney disease in childhood.

Since adult polycystic kidney disease, an autosomal-dominant disease, results in renal failure in at least 50% of affected patients, its detection before childbearing age is desirable. To evaluate this capability and the preferred screening technique, 28 members of two generations of an affected kindred were studied. Sonograms, excretory urograms with nephrotomograms, and clinical laboratory evaluation were compared. Five of six studied members of the older generation had cysts demonstrated by both sonograms and excretory urograms with nephrotomograms. Eleven of 22 members of the younger generation were affected, the youngest being 5 years old. In this group, excretory urograms with nephrotomograms were a slightly more sensitive detector, especially in the younger patients. However, sonography provided sufficient sensitivity in the older child, and, because of its noninvasive nature, was the preferred screening technique. The clinical laboratory evaluation was of little diagnostic aid in children with adult-type polycystic disease.

Adolescent

Serum creatinine concentration and the discrepancy between enzyme multiplied immunoassay technique and gas-liquid chromatographic phenytoin levels.

In patients on phenytoin therapy and with renal failure, the enzyme multiplied immunoassay technique (EMIT), unlike gas-liquid chromatographic techniques (GLC), can give falsely elevated serum phenytoin concentrations. In 25 patients (creatinine less than or equal to 1.5 mg per dl), discrepancies between the serum EMIT and GLC phenytoin concentrations were accounted for by the inherent imprecision of the methods. However, in 16 of 18 uremic patients (creatinine greater than or equal to 1.7 mg per dl), the discrepancies were greater than could be accounted for by imprecision. For these 18 patients the correlation (r = 0.49) between the discrepancies and the creatinine concentrations appeared to be statistically significant (P less than 0.05). The linear regression relationship was inadequate for accurate correction of the EMIT values using the creatinine concentrations. Another original observation was that in most cases renal dialysis decreases the EMIT to GLC discrepancy. However, post-dialysis serum samples with a creatinine concentration greater than 1.7 mg per dl usually still showed a falsely elevated EMIT phenytoin concentration.

Chromatography, Gas