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Experimental Brain Research|May 16, 2007
Concentration-detection functions for eye irritation evoked by homologous n-alcohols and acetates approaching a cut-off pointJ Enrique Cometto-Muñiz, William S Cain, Michael H Abraham, et al.Physiology & Behavior|September 7, 1999
Chemosensory detectability of 1-butanol and 2-heptanone singly and in binary mixturesJ E Cometto-Muñiz, W S Cain, M H Abraham, et al.Chemical Senses|December 1, 1995
Comparison of models of odor interactionW S Cain, F T Schiet, M J Olsson, et al.Chemical Senses|July 21, 1998
Odor identification: perceptual and semantic dimensionsW S Cain, R de Wijk, C Lulejian, et al.Regulatory Toxicology and Pharmacology : RTP|July 17, 2010
Human chemosensory perception of methyl isothiocyanate: chemesthesis and odorWilliam S Cain, Michael L Dourson, Melissa J Kohrman-Vincent, et al.Psychonomic Bulletin & Review|May 19, 2016
Media multitasking in adolescenceMatthew S Cain, Julia A Leonard, John D E Gabrieli, et al.Fundamental and Applied Toxicology : Official Journal of the Society of Toxicology|May 1, 1996
An analysis of nasal irritation thresholds using a new solvation equationM H Abraham, J Andonian-Haftvan, J E Cometto-Muñiz, et al.Chemical Senses|October 7, 2011
An algorithm for 353 odor detection thresholds in humansMichael H Abraham, Ricardo Sánchez-Moreno, J Enrique Cometto-Muñiz, et al.Vision Research|January 6, 2016
Hybrid foraging search: Searching for multiple instances of multiple types of targetJeremy M Wolfe, Avigael M Aizenman, Sage E P Boettcher, et al.Toxicological Sciences : an Official Journal of the Society of Toxicology|March 18, 2006
Chemical boundaries for detection of eye irritation in humans from homologous vaporsJ Enrique Cometto-Muñiz, William S Cain, Michael H Abraham, et al.Pageof 30