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Emergence of physiological oscillation frequencies in neocortex simulations (Neymotin et al. 2011)
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Accession:
138379
"Coordination of neocortical oscillations has been hypothesized to underlie the "binding" essential to cognitive function. However, the mechanisms that generate neocortical oscillations in physiological frequency bands remain unknown. We hypothesized that interlaminar relations in neocortex would provide multiple intermediate loops that would play particular roles in generating oscillations, adding different dynamics to the network. We simulated networks from sensory neocortex using 9 columns of event-driven rule-based neurons wired according to anatomical data and driven with random white-noise synaptic inputs. ..."
Reference:
1 .
Neymotin SA, Lee H, Park E, Fenton AA, Lytton WW (2011) Emergence of physiological oscillation frequencies in a computer model of neocortex.
Front Comput Neurosci
5
:19
[
PubMed
]
Citations
Citation Browser
Model Information
(Click on a link to find other models with that property)
Model Type:
Realistic Network;
Brain Region(s)/Organism:
Neocortex;
Cell Type(s):
Neocortex L5/6 pyramidal GLU cell;
Neocortex L2/3 pyramidal GLU cell;
Neocortex V1 interneuron basket PV GABA cell;
Neocortex fast spiking (FS) interneuron;
Neocortex spiny stellate cell;
Channel(s):
Gap Junctions:
Receptor(s):
GabaA;
AMPA;
NMDA;
Gaba;
Gene(s):
Transmitter(s):
Gaba;
Glutamate;
Simulation Environment:
NEURON;
Model Concept(s):
Activity Patterns;
Oscillations;
Synchronization;
Laminar Connectivity;
Implementer(s):
Lytton, William [bill.lytton at downstate.edu];
Neymotin, Sam [Samuel.Neymotin at nki.rfmh.org];
Search NeuronDB
for information about:
Neocortex L5/6 pyramidal GLU cell
;
Neocortex L2/3 pyramidal GLU cell
;
Neocortex V1 interneuron basket PV GABA cell
;
GabaA
;
AMPA
;
NMDA
;
Gaba
;
Gaba
;
Glutamate
;
/
fdemo
readme.txt
intf6_.mod
misc.mod
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Reinforcement learning of targeted movement (Chadderdon et al. 2012)
Sensorimotor cortex reinforcement learning of 2-joint virtual arm reaching (Neymotin et al. 2013)
Synaptic scaling balances learning in a spiking model of neocortex (Rowan & Neymotin 2013)
The virtual slice setup (Lytton et al. 2008)
Tonic-clonic transitions in a seizure simulation (Lytton and Omurtag 2007)
stats.mod
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vecst.mod
col.hoc
declist.hoc
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decvec.hoc
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default.hoc
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Electrostimulation to reduce synaptic scaling driven progression of Alzheimers (Rowan et al. 2014)
Hopfield and Brody model (Hopfield, Brody 2000) (NEURON+python)
Ih tunes oscillations in an In Silico CA3 model (Neymotin et al. 2013)
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Ketamine disrupts theta modulation of gamma in a computer model of hippocampus (Neymotin et al 2011)
Motor cortex microcircuit simulation based on brain activity mapping (Chadderdon et al. 2014)
Multitarget pharmacology for Dystonia in M1 (Neymotin et al 2016)
Prosthetic electrostimulation for information flow repair in a neocortical simulation (Kerr 2012)
Reinforcement learning of targeted movement (Chadderdon et al. 2012)
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drline.hoc
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Motor cortex microcircuit simulation based on brain activity mapping (Chadderdon et al. 2014)
Multitarget pharmacology for Dystonia in M1 (Neymotin et al 2016)
Prosthetic electrostimulation for information flow repair in a neocortical simulation (Kerr 2012)
Reinforcement learning of targeted movement (Chadderdon et al. 2012)
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misc.h
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nload.hoc
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Hopfield and Brody model (Hopfield, Brody 2000) (NEURON+python)
Ih tunes oscillations in an In Silico CA3 model (Neymotin et al. 2013)
Ketamine disrupts theta modulation of gamma in a computer model of hippocampus (Neymotin et al 2011)
Motor cortex microcircuit simulation based on brain activity mapping (Chadderdon et al. 2014)
Reinforcement learning of targeted movement (Chadderdon et al. 2012)
Sensorimotor cortex reinforcement learning of 2-joint virtual arm reaching (Neymotin et al. 2013)
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params.hoc
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Electrostimulation to reduce synaptic scaling driven progression of Alzheimers (Rowan et al. 2014)
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Hopfield and Brody model (Hopfield, Brody 2000) (NEURON+python)
Ih tunes oscillations in an In Silico CA3 model (Neymotin et al. 2013)
In silico hippocampal modeling for multi-target pharmacotherapy in schizophrenia (Sherif et al 2020)
Ketamine disrupts theta modulation of gamma in a computer model of hippocampus (Neymotin et al 2011)
Motor cortex microcircuit simulation based on brain activity mapping (Chadderdon et al. 2014)
Multitarget pharmacology for Dystonia in M1 (Neymotin et al 2016)
Prosthetic electrostimulation for information flow repair in a neocortical simulation (Kerr 2012)
Reinforcement learning of targeted movement (Chadderdon et al. 2012)
Sensorimotor cortex reinforcement learning of 2-joint virtual arm reaching (Neymotin et al. 2013)
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