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Journal of the Optical Society of America. A, Optics, Image Science, and Vision|June 8, 2001
Macular pigment density measured by autofluorescence spectrometry: comparison with reflectometry and heterochromatic flicker photometryF C Delori, D G Goger, B R Hammond, et al.Vision Research|January 1, 1987
Effects of light and dark environments on macaque and human fixational eye movementsD M SnodderlyThe American Journal of Clinical Nutrition|December 1, 1995
Evidence for protection against age-related macular degeneration by carotenoids and antioxidant vitaminsD M SnodderlyExperimental Eye Research|September 10, 2008
The utility of using customized heterochromatic flicker photometry (cHFP) to measure macular pigment in patients with age-related macular degenerationJ M Stringham, B R Hammond, J M Nolan, et al.Vision Research|January 1, 1985
Eye position during fixation tasks: comparison of macaque and humanD M Snodderly, D KurtzVision Research|February 1, 1997
A dissociation between brain activity and perception: chromatically opponent cortical neurons signal chromatic flicker that is not perceivedM Gur, D M SnodderlyInvestigative Ophthalmology & Visual Science|August 1, 1997
Dietary modification of human macular pigment densityB R Hammond, E J Johnson, R M Russell, et al.Journal of Neurophysiology|November 1, 1995
Organization of striate cortex of alert, trained monkeys (Macaca fascicularis): ongoing activity, stimulus selectivity, and widths of receptive field activating regionsD M Snodderly, M GurVision Research|February 1, 1997
Visual receptive fields of neurons in primary visual cortex (V1) move in space with the eye movements of fixationM Gur, D M SnodderlyThe American Journal of Clinical Nutrition|June 6, 2000
Relation among serum and tissue concentrations of lutein and zeaxanthin and macular pigment densityE J Johnson, B R Hammond, K J Yeum, et al.Pageof 9