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Science (New York, N.Y.)|November 1, 1996
Visual pigment gene structure and the severity of color vision defectsJ Neitz, M Neitz, P M KainzVision Research|January 20, 1999
Recent evolution of uniform trichromacy in a New World monkeyP M Kainz, J Neitz, M NeitzNature|December 7, 1989
Analysis of fusion gene and encoded photopigment of colour-blind humansJ Neitz, M Neitz, G H JacobsVision Research|January 20, 1999
Molecular genetic detection of female carriers of protan defectsP M Kainz, M Neitz, J NeitzJournal of the Optical Society of America. A, Optics, Image Science, and Vision|March 9, 2000
Cone pigment gene expression in individual photoreceptors and the chromatic topography of the retinaS A Hagstrom, M Neitz, J NeitzVision Research|August 1, 1995
Genetic basis of photopigment variations in human dichromatsM Neitz, J Neitz, G H JacobsVision Research|January 1, 1993
More than three different cone pigments among people with normal color visionJ Neitz, M Neitz, G H JacobsNeuroreport|July 23, 1998
Variations in cone populations for red-green color vision examined by analysis of mRNAS A Hagstrom, J Neitz, M NeitzJournal of the Optical Society of America. A, Optics, Image Science, and Vision|March 9, 2000
Flicker-photometric electroretinogram estimates of L:M cone photoreceptor ratio in men with photopigment spectra derived from geneticsJ Carroll, C McMahon, M Neitz, et al.Nature Neuroscience|September 24, 1999
Trichromatic color vision with only two spectrally distinct photopigmentsJ Neitz, M Neitz, J C He, et al.Pageof 8