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Journal of Medicinal Chemistry|July 5, 1996
Synthesis, ligand binding, and quantitative structure-activity relationship study of 3 beta-(4'-substituted phenyl)-2 beta-heterocyclic tropanes: evidence for an electrostatic interaction at the 2 beta-positionP Kotian, S W Mascarella, P Abraham, et al.Clinical Chemistry|January 1, 1977
Development and use of analytical systems based on mass spectrometryE C Horning, D I Carroll, I Dzidic, et al.Life Sciences|January 1, 1991
RTI-4614-4: an analog of (+)-cis-3-methylfentanyl with a 27,000-fold binding selectivity for mu versus delta opioid binding sitesR B Rothman, H Xu, M Seggel, et al.Journal of Neurochemistry|November 1, 1990
[3H]WIN 35,065-2: a ligand for cocaine receptors in striatumM C Ritz, J W Boja, D Grigoriadis, et al.Synapse (New York, N.Y.)|December 1, 1993
Stereochemical requirements for pseudoirreversible inhibition of opioid mu receptor binding by the 3-methylfentanyl congeners, RTI-46144 and its enantiomers: evidence for different binding domainsQ Ni, H Xu, J S Partilla, et al.Synapse (New York, N.Y.)|June 22, 2001
[(125)I]3beta-(4-ethyl-3-iodophenyl)nortropane-2beta-carboxylic acid methyl ester ([(125)I]EINT): a potent and selective radioligand for the brain serotonin transporterH A Navarro, H Xu, D Zhong, et al.Journal of Medicinal Chemistry|June 19, 2001
Synthesis, nicotinic acetylcholine receptor binding, and antinociceptive properties of 2-exo-2-(2'-substituted 5'-pyridinyl)-7-azabicyclo[2.2.1]heptanes. Epibatidine analoguesF I Carroll, F Liang, H A Navarro, et al.Journal of Medicinal Chemistry|November 16, 2001
Synthesis, nicotinic acetylcholine receptor binding, and antinociceptive properties of 2-exo-2-(2'-substituted-3'-phenyl-5'-pyridinyl)-7-azabicyclo[2.2.1]heptanes. Novel nicotinic antagonistF I Carroll, J R Lee, H A Navarro, et al.MMWR. Morbidity and Mortality Weekly Report|February 10, 2017
Vital Signs: Noise-Induced Hearing Loss Among Adults - United States 2011-2012Yulia I Carroll, John Eichwald, Franco Scinicariello, et al.European Journal of Pharmacology|January 26, 1993
A comparison of (-)-deoxybenzomorphans devoid of opiate activity with their dextrorotatory phenolic counterparts suggests role of sigma 2 receptors in motor functionJ M Walker, W D Bowen, S L Patrick, et al.Pageof 21