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Journal of Chromatographic Science|June 1, 1987
Liquid chromatographic determination of sulindac and metabolites in serumC R Clark, C L McMillian, J F Hoke, et al.Journal of Applied Toxicology : JAT|June 29, 2001
MALDI-ToF/MS as a diagnostic tool for the confirmation of sulfur mustard exposureE O Price, J R Smith, C R Clark, et al.Journal of Clinical Pharmacology|June 1, 1993
Pharmacokinetics and dialyzability of sulindac and metabolites in patients with end-stage renal failureW R Ravis, C J Diskin, K D Campagna, et al.The International Journal of Neuroscience|November 17, 2005
The test-retest reliability of a standardized neurocognitive and neurophysiological test battery: "neuromarker"L M Williams, E Simms, C R Clark, et al.Journal of Analytical Toxicology|July 1, 1990
A high-performance liquid chromatographic assay for HI-6 oxime in plasmaM P McCluskey, C R Clark, B G Talbot, et al.Environmental Research|April 1, 1984
Toxicological and chemical characterization of the process stream materials and gas combustion products of an experimental low-btu coal gasifierJ M Benson, R L Hanson, R E Royer, et al.Journal of Toxicology and Environmental Health. Part A|May 20, 1998
A subacute inhalation exposure evaluation of a scrubbing solution used in petroleum refineriesQ Q Bui, C R Clark, D J Naas, et al.Journal of Toxicology and Environmental Health. Part A|March 3, 1998
Developmental toxicity evaluation of a scrubbing solution used in petroleum refineriesQ Q Bui, C R Clark, D G Stump, et al.Inorganic Chemistry|February 24, 2001
Kinetic origin of the chelate effect. Base hydrolysis, H-exchange reactivity, and structures of syn,anti-[Co(cyclen)(NH3)2]3+ and syn,anti-[Co(cyclen)(diamine)]3+ ions (diamine = H2N(CH2)2NH2, H2N(CH2)3NH2)A J Clarkson, D A Buckingham, A J Rogers, et al.Journal of Applied Toxicology : JAT|October 1, 1982
MS/MS analysis of diesel emissions and fuels treated with NO2T R Henderson, R E Royer, C R Clark, et al.Pageof 21