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Clinical Chemistry|February 1, 1987
Transient hyperphosphatasemia of infancy and early childhood: clinical and biochemical features of 21 cases and literature reviewP Stein, S B Rosalki, A Y Foo, et al.Clinical Chemistry|December 17, 2013
Performance of direct estradiol immunoassays with human male serum samplesDavid J Handelsman, Julie D Newman, Mark Jimenez, et al.Clinical Chemistry|February 1, 1990
Laboratory evaluation of an immunochemiluminometric assay of triiodothyronine in serumD Austin, B ToivolaClinical Chemistry|February 1, 1990
Quantifying the MB isoenzyme of creatine kinase with the Abbott "IMx" immunoassay analyzerD R Brandt, R C Gates, K K Eng, et al.Clinical Chemistry|August 1, 1986
Uniform chromatographic conditions for quantifying urinary catecholamines, metanephrines, vanillylmandelic acid, 5-hydroxyindoleacetic acid, by liquid chromatography, with electrochemical detectionN C Parker, C B Levtzow, P W Wright, et al.Clinical Chemistry|April 1, 1987
A simple silver-staining technique for detecting Bence Jones proteins in unconcentrated urineJ M Sheat, M A LorierClinical Chemistry|February 1, 1986
Laboratory tests in the differential diagnosis of hyperamylasemiaN W Tietz, W Y Huang, D F Rauh, et al.Clinical Chemistry|February 1, 1986
Detection of serum proteins by high-pressure gel-permeation chromatography with low-angle laser light scattering, compared with analytical ultracentrifugationW Flapper, P J van den Oetelaar, C P Breed, et al.Clinical Chemistry|February 1, 1986
Agarose electrophoresis and inhibitor tests for isoamylase determination can give complementary clinical informationF Gorus, L Deruyter, B De Waele, et al.Clinical Chemistry|December 6, 2021
Clinical Decision Support for Laboratory TestingAndrew E O Hughes, Ronald JackupsPageof 1,274