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Clinical Chemistry|May 4, 2013
Mitochondrial coenzyme Q10 determination by isotope-dilution liquid chromatography-tandem mass spectrometryOuti Itkonen, Anu Suomalainen, Ursula TurpeinenClinical Chemistry|May 1, 1975
New, simple maltogenic assay for mechanized determination of alpha-amylase activity in serum and urineH F Proelss, B W WrightClinical Chemistry|January 1, 1989
Distribution of cyclosporin A metabolites among plasma and cells in whole blood: effect of temperature, hematocrit, and metabolite concentrationG L Lensmeyer, D A Wiebe, I H CarlsonClinical Chemistry|August 19, 2017
High-Speed Melting Analysis: The Effect of Melting Rate on Small Amplicon Microfluidic GenotypingRobert J Pryor, Joseph T Myrick, Robert A Palais, et al.Clinical Chemistry|November 1, 1986
Simultaneous liquid-chromatographic determination of 3,4-dihydroxyphenylglycol, catecholamines, and 3,4-dihydroxyphenylalanine in plasma, and their responses to inhibition of monoamine oxidaseG Eisenhofer, D S Goldstein, R Stull, et al.Clinical Chemistry|October 1, 1981
Clinical applicability of acid phosphatase isoenzyme assayT Sun, K W Lam, L NarukarClinical Chemistry|May 1, 1996
Physical activity releases prostate-specific antigen (PSA) from the prostate gland into blood and increases serum PSA concentrationsG M Oremek, U B SeiffertClinical Chemistry|August 1, 1996
Evaluation of a two-site immunoradiometric assay for measuring noncomplexed (free) prostate-specific antigenC Cuny, L Pham, W Kramp, et al.Clinical Chemistry|April 11, 2009
Circulating calcitriol concentrations and total mortalityArmin Zittermann, Stefanie S Schleithoff, Sabine Frisch, et al.Clinical Chemistry|July 31, 2007
Improving healthcare accessibility through point-of-care technologies, Christopher P Price, Larry J KrickaPageof 1,274