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Experimental Brain Research|January 1, 1992
Human ocular following responses are plastic: evidence for control by temporal frequency-dependent cortical adaptationT Maddess, M R IbbotsonJournal of Neurophysiology|September 1, 1994
Wide-field nondirectional visual units in the pretectum: do they suppress ocular following of saccade-induced visual stimulationM R Ibbotson, R F MarkClinical & Experimental Ophthalmology|July 12, 2001
Pretectal neurons responding to slow wide-field retinal motion: could they compensate for slow drift during fixation?N S Price, M R IbbotsonJournal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology|February 28, 2003
Orientation and spatiotemporal tuning of cells in the primary visual cortex of an Australian marsupial, the wallaby Macropus eugeniiM R Ibbotson, R F MarkJournal of Neurophysiology|April 5, 2001
Pretectal neurons optimized for the detection of saccade-like movements of the visual imageN S Price, M R IbbotsonJournal of Neurophysiology|November 8, 2001
Spatiotemporal tuning of directional neurons in mammalian and avian pretectum: a comparison of physiological propertiesM R Ibbotson, N S PriceJournal of Neurophysiology|March 1, 1996
Impulse responses distinguish two classes of directional motion-sensitive neurons in the nucleus of the optic tractM R Ibbotson, R F MarkProgress in Neurobiology|February 11, 2003
Fundamental mechanisms of visual motion detection: models, cells and functionsC W G Clifford, M R IbbotsonClinical & Experimental Ophthalmology|September 12, 2000
Employing following eye movements to discriminate normal from glaucoma subjectsW L Severt, T Maddess, M R IbbotsonBiological Cybernetics|June 3, 2000
Recursive implementations of temporal filters for image motion computationC W Clifford, K LangleyPageof 7