Mechanisms Underlying Development of Visual Maps and Receptive Fields

Author:

Huberman Andrew D.1,Feller Marla B.2,Chapman Barbara3

Affiliation:

1. Department of Neurobiology, Stanford University School of Medicine, Palo Alto, California 94305;

2. Department of Molecular and Cell Biology and Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, California 94720;

3. Center for Neuroscience, University of California, Davis, California 95616;

Abstract

Patterns of synaptic connections in the visual system are remarkably precise. These connections dictate the receptive field properties of individual visual neurons and ultimately determine the quality of visual perception. Spontaneous neural activity is necessary for the development of various receptive field properties and visual feature maps. In recent years, attention has shifted to understanding the mechanisms by which spontaneous activity in the developing retina, lateral geniculate nucleus, and visual cortex instruct the axonal and dendritic refinements that give rise to orderly connections in the visual system. Axon guidance cues and a growing list of other molecules, including immune system factors, have also recently been implicated in visual circuit wiring. A major goal now is to determine how these molecules cooperate with spontaneous and visually evoked activity to give rise to the circuits underlying precise receptive field tuning and orderly visual maps.

Publisher

Annual Reviews

Subject

General Neuroscience

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