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Computational model
Name
Spikes,synchrony,and attentive learning by laminar thalamocort. circuits (Grossberg & Versace 2007)
Model File
GrossbergVersace
[? bytes]
Notes
"... The model hereby clarifies, for the first time, how the following levels of brain organization coexist to realize cognitive processing properties that regulate fast learning and stable memory of brain representations: single cell properties, such as spiking dynamics, spike-timing-dependent plasticity (STDP), and acetylcholine modulation; detailed laminar thalamic and cortical circuit designs and their interactions; aggregate cell recordings, such as current-source densities and local field potentials; and single cell and large-scale inter-areal oscillations in the gamma and beta frequency domains. ..."
Model Neurons
Thalamic relay neuron
 
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Neocortical pyramidal neuron: deep
 
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Neocortical pyramidal neuron: superficial
 
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Thalamic reticular neuron
 
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More Cells
Model Currents
I Potassium
 
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I T low threshold
 
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I Na,t
 
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I K
 
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Model Receptors
Gaba
 
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AMPA
 
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Cholinergic Receptors
 
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Model Type
Network
 
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Model Concept
STDP
 
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Working memory
 
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Synchronization
 
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Pattern Recognition
 
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Activity Patterns
 
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Oscillations
 
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Model papers
Grossberg S and Versace M (2008)
 
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Simulator software
KInNeSS (web link to model)
 
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XML (web link to model)
 
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Gene
hg folder name (applicable when in ModelDB hg)
Region Organism
Model ID Number
Gap Junctions
Implemented by
Read write access code
Public Submitter Email Address
Model Neurotransmitters
Other Neuron
Other Receptor
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Alternative Version
backup of web link
 
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Citation
Default File Notes
current
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Simulation Platform ID
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0
Other categories referring to "
Spikes,synchrony,and attentive learning by laminar thalamocort. circuits (Grossberg & Versace 2007)
"
Revisions:
8
Last time:
4/15/2008 4:02:58 PM
Reviewer:
Tom Morse - MoldelDB admin
Owner:
Tom Morse - MoldelDB admin
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Database Administrator
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