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Visual exposure enhances stimulus encoding and persistence in primary cortex
by
Singer, Wolf
, Lewis, Christopher
, Fries, Pascal
, Lazar, Andreea
, Nikolic, Danko
in
Adaptation, Physiological
/ Animals
/ Biological Sciences
/ Cats
/ Evoked Potentials, Visual - physiology
/ Exposure
/ Female
/ Firing rate
/ Information processing
/ Male
/ Models, Neurological
/ Nerve Net - physiology
/ Neuronal Plasticity
/ Neuroscience
/ Optimization
/ Photic Stimulation - methods
/ Populations
/ Primary Visual Cortex - cytology
/ Primary Visual Cortex - physiology
/ Recruitment, Neurophysiological
/ Selectivity
/ Sensory neurons
/ Sensory Receptor Cells - physiology
/ Somatosensory cortex
/ Visual cortex
/ Visual Perception - physiology
/ Visual stimuli
2021
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Visual exposure enhances stimulus encoding and persistence in primary cortex
by
Singer, Wolf
, Lewis, Christopher
, Fries, Pascal
, Lazar, Andreea
, Nikolic, Danko
in
Adaptation, Physiological
/ Animals
/ Biological Sciences
/ Cats
/ Evoked Potentials, Visual - physiology
/ Exposure
/ Female
/ Firing rate
/ Information processing
/ Male
/ Models, Neurological
/ Nerve Net - physiology
/ Neuronal Plasticity
/ Neuroscience
/ Optimization
/ Photic Stimulation - methods
/ Populations
/ Primary Visual Cortex - cytology
/ Primary Visual Cortex - physiology
/ Recruitment, Neurophysiological
/ Selectivity
/ Sensory neurons
/ Sensory Receptor Cells - physiology
/ Somatosensory cortex
/ Visual cortex
/ Visual Perception - physiology
/ Visual stimuli
2021
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Visual exposure enhances stimulus encoding and persistence in primary cortex
by
Singer, Wolf
, Lewis, Christopher
, Fries, Pascal
, Lazar, Andreea
, Nikolic, Danko
in
Adaptation, Physiological
/ Animals
/ Biological Sciences
/ Cats
/ Evoked Potentials, Visual - physiology
/ Exposure
/ Female
/ Firing rate
/ Information processing
/ Male
/ Models, Neurological
/ Nerve Net - physiology
/ Neuronal Plasticity
/ Neuroscience
/ Optimization
/ Photic Stimulation - methods
/ Populations
/ Primary Visual Cortex - cytology
/ Primary Visual Cortex - physiology
/ Recruitment, Neurophysiological
/ Selectivity
/ Sensory neurons
/ Sensory Receptor Cells - physiology
/ Somatosensory cortex
/ Visual cortex
/ Visual Perception - physiology
/ Visual stimuli
2021
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Visual exposure enhances stimulus encoding and persistence in primary cortex
Journal Article
Visual exposure enhances stimulus encoding and persistence in primary cortex
2021
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Overview
The brain adapts to the sensory environment. For example, simple sensory exposure can modify the response properties of early sensory neurons. How these changes affect the overall encoding and maintenance of stimulus information across neuronal populations remains unclear. We perform parallel recordings in the primary visual cortex of anesthetized cats and find that brief, repetitive exposure to structured visual stimuli enhances stimulus encoding by decreasing the selectivity and increasing the range of the neuronal responses that persist after stimulus presentation. Low-dimensional projection methods and simple classifiers demonstrate that visual exposure increases the segregation of persistent neuronal population responses into stimulus-specific clusters. These observed refinements preserve the representational details required for stimulus reconstruction and are detectable in postexposure spontaneous activity. Assuming response facilitation and recurrent network interactions as the core mechanisms underlying stimulus persistence, we show that the exposure-driven segregation of stimulus responses can arise through strictly local plasticity mechanisms, also in the absence of firing rate changes. Our findings provide evidence for the existence of an automatic, unguided optimization process that enhances the encoding power of neuronal populations in early visual cortex, thus potentially benefiting simple readouts at higher stages of visual processing.
Publisher
National Academy of Sciences
Subject
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