Published 1992 | Version Published
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A Contrast Sensitive Silicon Retina with Reciprocal Synapses

Abstract

The goal of perception is to extract invariant properties of the underlying world. By computing contrast at edges, the retina reduces incident light intensities spanning twelve decades to a twentyfold variation. In one stroke, it solves the dynamic range problem and extracts relative reflectivity, bringing us a step closer to the goal. We have built a contrast-sensitive silicon retina that models all major synaptic interactions in the outer-plexiform layer of the vertebrate retina using current-mode CMOS circuits: namely, reciprocal synapses between cones and horizontal cells, which produce the antagonistic center/surround receptive field, and cone and horizontal cell gap junctions, which determine its size. The chip has 90 x 92 pixels on a 6.8 x 6.9mm die in 2μm n-well technology and is fully functional.

Additional Information

© 1992 Morgan Kaufmann.

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Eprint ID
63786
Resolver ID
CaltechAUTHORS:20160119-165146283

Dates

Created
2016-01-20
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Updated
2019-10-03
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Series Name
Advances in Neural Information Processing Systems
Series Volume or Issue Number
4