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Journal of Neurophysiology|September 1, 1991
Lateral geniculate neurons in behaving primates. III. Response predictions of a channel model with multiple spatial-to-temporal filtersT J Gawne, J W McClurkin, B J Richmond, et al.Biological Cybernetics|January 1, 1991
Unbiased measures of transmitted information and channel capacity from multivariate neuronal dataL M Optican, T J Gawne, B J Richmond, et al.Journal of Neurophysiology|September 1, 1991
Lateral geniculate neurons in behaving primates. II. Encoding of visual information in the temporal shape of the responseJ W McClurkin, T J Gawne, L M Optican, et al.Journal of Neurophysiology|September 1, 1991
Lateral geniculate neurons in behaving primates. I. Responses to two-dimensional stimuliJ W McClurkin, T J Gawne, B J Richmond, et al.Vision Research|December 1, 1995
A field theory of saccade generation: temporal-to-spatial transform in the superior colliculusL M OpticanJournal of Neurophysiology|June 26, 1998
Commutative saccadic generator is sufficient to control a 3-D ocular plant with pulleysC Quaia, L M OpticanIEEE Transactions on Bio-Medical Engineering|May 1, 1997
Detection, classification, and superposition resolution of action potentials in multiunit single-channel recordings by an on-line real-time neural networkR Chandra, L M OpticanJournal of Neurophysiology|August 1, 1997
Model with distributed vectorial premotor bursters accounts for the component stretching of oblique saccadesC Quaia, L M OpticanCurrent Opinion in Neurobiology|December 1, 1994
Superior colliculus cell types and models of saccade generationR H Wurtz, L M OpticanJournal of Neurophysiology|October 1, 1985
Visually induced adaptive changes in primate saccadic oculomotor control signalsL M Optican, F A MilesPageof 10