Literature DB >> 31672787

Distinct Waking States for Strong Evoked Responses in Primary Visual Cortex and Optimal Visual Detection Performance.

Garrett T Neske1, Dennis Nestvogel2, Paul J Steffan2, David A McCormick3,2.   

Abstract

Variability in cortical neuronal responses to sensory stimuli and in perceptual decision making performance is substantial. Moment-to-moment fluctuations in waking state or arousal can account for much of this variability. Yet, this variability is rarely characterized across the full spectrum of waking states, leaving the characteristics of the optimal state for sensory processing unresolved. Using pupillometry in concert with extracellular multiunit and intracellular whole-cell recordings, we found that the magnitude and reliability of visually evoked responses in primary visual cortex (V1) of awake, passively behaving male mice increase as a function of arousal and are largest during sustained locomotion periods. During these high-arousal, sustained locomotion periods, cortical neuronal membrane potential was at its most depolarized and least variable. Contrastingly, behavioral performance of mice on two distinct visual detection tasks was generally best at a range of intermediate arousal levels, but worst during high arousal with locomotion. These results suggest that large, reliable responses to visual stimuli in V1 occur at a distinct arousal level from that associated with optimal visual detection performance. Our results clarify the relation between neuronal responsiveness and the continuum of waking states, and suggest new complexities in the relation between primary sensory cortical activity and behavior.SIGNIFICANCE STATEMENT Cortical sensory processing strongly depends on arousal. In the mouse visual system, locomotion (associated with high arousal) has previously been shown to enhance the sensory responses of neurons in primary visual cortex (V1). Yet, arousal fluctuates on a moment-to-moment basis, even during quiescent periods. The characteristics of V1 sensory processing across the continuum of arousal are unclear. Furthermore, the arousal level corresponding to optimal visual detection performance is unknown. We show that the magnitude and reliability of sensory-evoked V1 responses are monotonic increasing functions of arousal, and largest during locomotion. Visual detection behavior, however, is suboptimal during high arousal with locomotion, and usually best during intermediate arousal. Our study provides a more complete picture of the dependence of V1 sensory processing on arousal.
Copyright © 2019 the authors.

Entities:  

Keywords:  arousal; locomotion; pupil; state; visual cortex; visual detection

Mesh:

Year:  2019        PMID: 31672787      PMCID: PMC6978938          DOI: 10.1523/JNEUROSCI.1226-18.2019

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  48 in total

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Review 5.  Waking State: Rapid Variations Modulate Neural and Behavioral Responses.

Authors:  Matthew J McGinley; Martin Vinck; Jacob Reimer; Renata Batista-Brito; Edward Zagha; Cathryn R Cadwell; Andreas S Tolias; Jessica A Cardin; David A McCormick
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7.  The impact of bilateral ongoing activity on evoked responses in mouse cortex.

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9.  Partitioning neuronal variability.

Authors:  Robbe L T Goris; J Anthony Movshon; Eero P Simoncelli
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10.  A synaptic and circuit basis for corollary discharge in the auditory cortex.

Authors:  David M Schneider; Anders Nelson; Richard Mooney
Journal:  Nature       Date:  2014-08-27       Impact factor: 49.962

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