Corollary Discharge and Oculomotor Proprioception: Cortical Mechanisms for Spatially Accurate Vision.

Linus D Sun, Michael E Goldberg

Journal: Annual review of vision science 2018;2():61-84

PMID: 28532350

Abstract

A classic problem in psychology is understanding how the brain creates a stable and accurate representation of space for perception and action despite a constantly moving eye. Two mechanisms have been proposed to solve this problem: Herman von Helmholtz's idea that the brain uses a corollary discharge of the motor command that moves the eye to adjust the visual representation, and Sir Charles Sherrington's idea that the brain measures eye position to calculate a spatial representation. Here, we discuss the cognitive, neuropsychological, and physiological mechanisms that support each of these ideas. We propose that both are correct: A rapid corollary discharge signal remaps the visual representation before an impending saccade, computing accurate movement vectors; and an oculomotor proprioceptive signal enables the brain to construct a more accurate craniotopic representation of space that develops slowly after the saccade.

Address: Mahoney-Keck Center for Brain and Behavior Research, Department of Neuroscience, Columbia University College of Physicians and Surgeons, New York, NY 10032; email: [email protected].; Department of Neuroscience, Columbia University College of Physicians and Surgeons, New York, NY 10032.; Department of Ophthalmology, Columbia University College of Physicians and Surgeons, New York, NY 10032.; Division of Neurobiology and Behavior, New York State Psychiatric Institute, New York, NY 10032.; Department of Neurology, Columbia University College of Physicians and Surgeons, New York, NY 10032.; Department of Psychiatry, Columbia University College of Physicians and Surgeons, New York, NY 10032.; Kavli Institute for Neuroscience, Columbia University, New York, NY 10032.
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