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Vision Research|May 26, 1999
Integration after adaptation to transparent motion: static and dynamic test patterns result in different aftereffect directionsF A Verstraten, M J van der Smagt, R E Fredericksen, et al.
Proceedings. Biological Sciences|March 29, 2001
Slow and fast visual motion channels have independent binocular-rivalry stagesW A van de Grind, P van Hof, M J van der Smagt, et al.
Pflugers Archiv : European Journal of Physiology|January 1, 1980
A mechanical oscilloscope for vision researchJ Molenaar, R Voorhorst, A W Schreurs, et al.
Vision Research|May 1, 1993
Inhomogeneity and anisotropies for motion detection in the monocular visual field of human observersW A van de Grind, J J Koenderink, A J van Doorn, et al.
Vision Research|September 25, 1998
Local and global factors affecting the coherent motion of gratings presented in multiple aperturesD Alais, M J van der Smagt, A V van den Berg, et al.
Vision Research|December 1, 1996
Gain control and hyperpolarization level in cat horizontal cells as a function of light and dark adaptationW A van de Grind, M J Lankheet, R J van Wezel, et al.
Vision Research|September 1, 1996
Responses of complex cells in area 17 of the cat to bi-vectorial transparent motionR J van Wezel, M J Lankheet, F A Verstraten, et al.
Vision Research|August 1, 1996
Directional motion sensitivity under transparent motion conditionsF A Verstraten, R E Fredericksen, R J van Wezel, et al.
Vision Research|February 1, 1996
Recovery from adaptation for dynamic and static motion aftereffects: evidence for two mechanismsF A Verstraten, R E Fredericksen, R J Van Wezel, et al.
Vision Research|April 1, 1997
Responses of complex cells in cat area 17 to apparent motion of random pixel arraysR J van Wezel, M J Lankheet, R E Fredericksen, et al.
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