The structure of multi-neuron firing patterns in primate retina.
about
Analyzing short-term noise dependencies of spike-counts in macaque prefrontal cortex using copulas and the flashlight transformationA small world of neuronal synchronyInformation theoretic approaches to understanding circuit functionPulse trains to percepts: the challenge of creating a perceptually intelligible world with sight recovery technologiesGeneration of spike trains with controlled auto- and cross-correlation functionsEfficient coding of spatial information in the primate retina.State-space analysis of time-varying higher-order spike correlation for multiple neural spike train dataOptogenetic activation of an inhibitory network enhances feedforward functional connectivity in auditory cortex.Increased neural correlations in primate auditory cortex during slow-wave sleep.Natural stimuli evoke dynamic sequences of states in sensory cortical ensemblesColumnar connectivity and laminar processing in cat primary auditory cortex.A toolbox for the fast information analysis of multiple-site LFP, EEG and spike train recordings.Neuronal couplings between retinal ganglion cells inferred by efficient inverse statistical physics methods.Predictable irregularities in retinal receptive fieldsCircuit topology for synchronizing neurons in spontaneously active networksSparse low-order interaction network underlies a highly correlated and learnable neural population codeBeing critical of criticality in the brain.Gibbs distribution analysis of temporal correlations structure in retina ganglion cells.Visual pattern discrimination by population retinal ganglion cells' activities during natural movie stimulationImpact of network topology on inference of synaptic connectivity from multi-neuronal spike data simulated by a large-scale cortical network model.Thermodynamics and signatures of criticality in a network of neurons.Model cortical association fields account for the time course and dependence on target complexity of human contour perceptionAnalysis of the dynamics of temporal relationships of neural activities using optical imaging dataThe Population Tracking Model: A Simple, Scalable Statistical Model for Neural Population Data.Data-driven significance estimation for precise spike correlationPython for large-scale electrophysiology.Python for information theoretic analysis of neural dataIsing model for neural data: model quality and approximate methods for extracting functional connectivity.A new look at state-space models for neural data.Correlations between prefrontal neurons form a small-world network that optimizes the generation of multineuron sequences of activityCollective dynamics in human and monkey sensorimotor cortex: predicting single neuron spikesMaximally informative pairwise interactions in networksSocial interactions dominate speed control in poising natural flocks near criticality.Open source tools for the information theoretic analysis of neural dataEnergy landscape analysis of neuroimaging data.Statistical inference for assessing functional connectivity of neuronal ensembles with sparse spiking data.Synergistic Coding by Cortical Neural Ensembles.Receptive field mosaics of retinal ganglion cells are established without visual experienceHow advances in neural recording affect data analysisMinimal models of multidimensional computations.
P2860
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P2860
The structure of multi-neuron firing patterns in primate retina.
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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name
The structure of multi-neuron firing patterns in primate retina.
@en
The structure of multi-neuron firing patterns in primate retina.
@nl
type
label
The structure of multi-neuron firing patterns in primate retina.
@en
The structure of multi-neuron firing patterns in primate retina.
@nl
prefLabel
The structure of multi-neuron firing patterns in primate retina.
@en
The structure of multi-neuron firing patterns in primate retina.
@nl
P2093
P50
P1476
The structure of multi-neuron firing patterns in primate retina
@en
P2093
Alan M Litke
Alexander Sher
Dumitru Petrusca
Jonathon Shlens
Matthew I Grivich
P304
P356
10.1523/JNEUROSCI.1282-06.2006
P407
P577
2006-08-01T00:00:00Z