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Steroids|November 1, 1978
Cardenolide analogues. 3. A fast thin layer chromatographic separation of cardenolide diastereomersK Yoshioka, D S FullertonMolecular and Cellular Biochemistry|May 10, 1990
Digitalis receptor sugar binding site characteristics: a model based upon studies of Na+, K(+)-ATPase preparations with differing digitalis sensitivitiesA H From, D S Fullerton, K AhmedManaged Care Interface|July 4, 2001
Showing outcomes and proving value brings successD S Fullerton, D Atherly, S D SullivanJournal of Pharmacological Methods|June 1, 1982
A simple method for the purification of rat brain Na+,K+-adenosine triphosphatase (ATPase)R R Mayrand, D S Fullerton, K AhmedJournal of Medicinal Chemistry|December 1, 1976
Trichothecene analogues. 1. 1,5-Dioxaspiro(2.5)octanesD S Fullerton, C M Chen, I H HallJournal of Medicinal Chemistry|October 1, 1986
Cardiac glycosides. 7. Sugar stereochemistry and cardiac glycoside activityH Rathore, A H From, K Ahmed, et al.Journal of Medicinal Chemistry|May 1, 1979
Cardenolide analogues. 4. (20R)- and (20S)-Cardanolides: on the roles of the 20(22)-ene and 14beta-hydroxyl in genin activityD S Fullerton, K Yoshioka, D C Rohrer, et al.The American Journal of Managed Care|June 3, 1999
Incorporating clinical outcomes and economic consequences into drug formulary decisions: a practical approachD B Mather, S D Sullivan, D Augenstein, et al.Science (New York, N.Y.)|August 31, 1979
Digitalis genin activity: side-group carbonyl oxygen position is a major determinantD S Fullerton, K Yoshioka, D C Rohrer, et al.Steroids|July 1, 1983
Cardiac glycosides: 2. Synthesis of glucose and galactose analogsM Kihara, K Yoshioka, E Kitatsuji, et al.Pageof 3