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Science (New York, N.Y.)|June 15, 1973
Electrophysiological Evidence that Abnormal Early Visual Experience Can Modify the Human BrainR D Freeman, L N ThibosScience (New York, N.Y.)|May 25, 1973
Electrophysiological evidence that abnormal early visual experience can modify the human brainR D Freeman, L N ThibosScience (New York, N.Y.)|November 9, 1973
Visual experience without lines: effect on developing cortical neuronsJ D Pettigrew, R D FreemanJournal of Neurophysiology|August 13, 1999
Neural mechanisms for encoding binocular disparity: receptive field position versus phaseA Anzai, I Ohzawa, R D FreemanJournal of Neurophysiology|August 13, 1999
Neural mechanisms for processing binocular information I. Simple cellsA Anzai, I Ohzawa, R D FreemanAmerican Journal of Optometry and Physiological Optics|July 1, 1983
On the relation between aniseikonia and axial anisometropiaJ Rabin, A Bradley, R D FreemanProgress in Brain Research|November 13, 2001
Beyond the classical receptive field in the visual cortexR D Freeman, I Ohzawa, G WalkerNature Neuroscience|April 25, 2001
Joint-encoding of motion and depth by visual cortical neurons: neural basis of the Pulfrich effectA Anzai, I Ohzawa, R D FreemanExperimental Brain Research|January 1, 1986
Binocular summation in normal, monocularly deprived, and strabismic cats: visual evoked potentialsG Sclar, I Ohzawa, R D FreemanJournal of Neurophysiology|September 1, 1985
Contrast gain control in the cat's visual systemI Ohzawa, G Sclar, R D FreemanPageof 12