Higher Order Correlations within Cortical Layers Dominate Functional Connectivity in Microcolumns
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Summary
Applied to 32- channel polytrode data recorded from cat visual cortex, the higher-order mod- els discover functional connectivity preferentially linking groups of cells within a cortical layer, demonstrating the importance of modeling higher order in- teractions across space and time when characterizing activity in cortical networks.
- Type
- preprint
- Published
- 2012-12-01
- Cited by
- 12
- References
- 32
- Access
- Open access
- OpenAlex
- https://openalex.org/W131703851
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7575190
Keywords
Boltzmann machine, Ising model, Pairwise comparison, Visual cortex, Restricted Boltzmann machine
References
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- Collective dynamics in human and monkey sensorimotor cortex: predicting single neuron spikes
- Bayesian Inference for Generalized Linear Models for Spiking Neurons
- Some extensions of score matching
- Beitrag zur Theorie des Ferromagnetismus
- Spatio-temporal correlations and visual signalling in a complete neuronal population
- Sparse low-order interaction network underlies a highly correlated and learnable neural population code
- Higher-Order Interactions Characterized in Cortical Activity
- On the quantitative analysis of deep belief networks
- Temporal precision in the visual pathway through the interplay of excitation and stimulus-driven suppression
- Empirical models of spiking in neural populations
- The Asynchronous State in Cortical Circuits
- Current source-density method and application in cat cerebral cortex: investigation of evoked potentials and EEG phenomena.
- Information-geometric measure of 3-neuron firing patterns characterizes scale-dependence in cortical networks
- Accuracy of tetrode spike separation as determined by simultaneous intracellular and extracellular measurements.
Cited by
- Minimum and Maximum Entropy Distributions for Binary Systems with Known Means and Pairwise Correlations
- A Simple Mechanism for Beyond-Pairwise Correlations in Integrate-and-Fire Neurons
- Searching for Collective Behavior in a Large Network of Sensory Neurons
- Modeling neural population data
- When do microcircuits produce beyond-pairwise correlations?
- Increased neural correlations in primate auditory cortex during slow-wave sleep.
- Improved Estimation and Interpretation of Correlations in Neural Circuits
- A simple mechanism for higher-order correlations in integrate-and-fire neurons
- Optogenetic Activation of an Inhibitory Network Enhances Feed-Forward Functional Connectivity in Auditory Cortex
- The Interplay of Architecture and Correlated Variability in Neuronal Networks
- A generative spike train model with time-structured higher order correlations
- Consensus Decisions and Structural Information in Shoaling Fish
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