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The use of eye movements
Vestibular eye movements
Optokinesis and smooth pursuit
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activity actually adaptation afferent amplitude appears arrangement associated canals cells cerebellum changes colliculus Comparative component considered constant correction corresponding cortex course described deviation direction disparity effect error et al evidence example expected Experimental Brain Research experiments extraocular eye movements fact fibres field figure final firing fixation frequency Fuchs function gain gaze head horizontal human increase input integrator Journal kind latency lateral lesions less linear measurements mechanism method monkey motion motor move muscles natural nerve neurons normal nuclei nystagmus object observed oculomotor optic optokinetic output particular pathways pattern perhaps phase Physiology position possible produce projection properties pursuit recording reflex relation relative response result retinal Robinson rotation saccades seen shown signal similar simple slow smooth step stimulation stretch suggested superior target units velocity vergence vertical vestibular Vision Research visual