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Dynamics of Encoding in a Population of Neurons
The Journal of General Physiology · 1972 · Vol. 59(6) · pp. 734–766
Bruce W. Knight✉(Rockefeller University)
Abstract
A simple encoder model, which is a reasonable idealization from known electrophysiological properties, yields a population in which the variation of the firing rate with time is a perfect replica of the shape of the input stimulus. A population of noise-free encoders which depart even slightly from the simple model yield a very much degraded copy of the input stimulus. The presence of noise improves the performance of such a population. The firing rate of a population of neurons is related to the firing rate of a single member in a subtle way.
Neural dynamics and brain functionstochastic dynamics and bifurcationNeural Networks and ApplicationsPopulationStimulus (psychology)Biological systemElectrophysiologyComputer scienceNeuroscienceBiologyPsychology
MeSH terms
Models, NeurologicalNeural ConductionNeural InhibitionNeuronsPeriodicityProbability
Citations
729
FWCI
6.14
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References
22
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97%
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Receptive fields and functional architecture of monkey striate cortex
The Journal of Physiology · 1968 · 6,597 citations
Phase-locked response to low-frequency tones in single auditory nerve fibers of the squirrel monkey.
Journal of Neurophysiology · 1967 · 880 citations
The sense of flutter-vibration: comparison of the human capacity with response patterns of mechanoreceptive afferents from the monkey hand.
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