Parallel Processing in the Visual System: The Classification of Retinal Ganglion Cells and its Impact on the Neurobiology of Vision
Book information
Description
In the mid-sixties, John Robson and Christina Enroth-Cugell, without realizing what they were doing, set off a virtual revolution in the study of the visual system. They were trying to apply the methods of linear systems analysis (which were already being used to describe the optics of the eye and the psychophysical performance of the human visual system) to the properties of retinal ganglion cells in the cat. Their idea was to stimulate the retina with patterns of stripes and to look at the way that the signals from the center and the antagonistic surround of the respective field of each ganglion cell (first described by Stephen Kuffier) interact to generate the cell's responses. Many of the ganglion cells behaved themselves very nicely and John and Christina got into the habit (they now say) of calling them I (interesting) cells. However. to their annoyance, the majority of neurons they recorded had nasty, nonlinear properties that couldn't be predicted on the basis of simple summ4tion of light within the center and the surround. These uncoop erative ganglion cells, which Enroth-Cugell and Robson at first called D (dull) cells, produced transient bursts of impulses every time the distribution of light falling on the receptive field was changed, even if the total light flux was unaltered.
Similar books
Mechanistic Approaches to Interactions of Electric and Electromagnetic Fields with Living Systems
1987 · PDF
Ionic Channels in Cells and Model Systems
1986 · PDF
Polarized Light in Animal Vision: Polarization Patterns in Nature
2004 · PDF
Fatigue: Neural and Muscular Mechanisms
1995 · PDF
Single-Channel Recording
1995 · PDF
Neural Control of Movement
1995 · PDF
Advances in the Biomechanics of the Hand and Wrist
1994 · PDF
Human Body Composition: In Vivo Methods, Models, and Assessment
1993 · PDF