Advanced search
SenseLab
SimToolDB
ModelDB Help
User account
Login
Register
Find models by
Model name
First author
Each author
Region(circuits)
Find models for
Cell type
Current
Receptor
Gene
Transmitters
Concept
Simulators
Methods
Find models of
Realistic Networks
Neurons
Electrical synapses (gap junctions)
Chemical synapses
Ion channels
Neuromuscular junctions
Axons
Pathophysiology
Other resources
SenseLab mailing list
ModelDB related resources
Computational neuroscience ecosystem
Models in a git repository
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
 
Download zip file
Help downloading and running models
Model Information
Model File
Citations
Versions on GitHub
Accession:
244262
"... High frequency deep brain stimulation (DBS) of the subthalamic nucleus (STN) suppresses parkinsonian motor symptoms and modulates cortical activity. ... Cortical evoked potentials (cEP) generated by STN DBS reflect the response of cortex to subcortical stimulation, and the goal was to determine the neural origin of cEP using a two-step approach. First, we recorded cEP over ipsilateral primary motor cortex during different frequencies of STN DBS in awake healthy and unilateral 6-OHDA lesioned parkinsonian rats. Second, we used a biophysically-based model of the thalamocortical network to deconstruct the neural origin of the cEP. The in vivo cEP included short (R1), intermediate (R2) and long-latency (R3) responses. Model-based cortical responses to simulated STN DBS matched remarkably well the in vivo responses. R1 was generated by antidromic activation of layer 5 pyramidal neurons, while recurrent activation of layer 5 pyramidal neurons via excitatory axon collaterals reproduced R2. R3 was generated by polysynaptic activation of layer 2/3 pyramidal neurons via the cortico-thalamic-cortical pathway. Antidromic activation of the hyperdirect pathway and subsequent intracortical and cortico-thalamo-cortical synaptic interactions were sufficient to generate cEP by STN DBS, and orthodromic activation through basal ganglia-thalamus-cortex pathways was not required. These results demonstrate the utility of cEP to determine the neural elements activated by STN DBS that might modulate cortical activity and contribute to the suppression of parkinsonian symptoms."
Reference:
1 .
Kumaravelu K, Oza CS, Behrend CE, Grill WM (2018) Model-based deconstruction of cortical evoked potentials generated by subthalamic nucleus deep brain stimulation.
J Neurophysiol
120
:662-680
[
PubMed
]
Model Information
(Click on a link to find other models with that property)
Model Type:
Realistic Network;
Brain Region(s)/Organism:
Neocortex;
Thalamus;
Cell Type(s):
Neocortex M1 L6 pyramidal corticothalamic GLU cell;
Neocortex M1 L5B pyramidal pyramidal tract GLU cell;
Neocortex M1 L4 stellate GLU cell;
Hodgkin-Huxley neuron;
Neocortex layer 4 neuron;
Neocortex fast spiking (FS) interneuron;
Neocortex primary motor area pyramidal layer 5 corticospinal cell;
Channel(s):
I Na,p;
I K;
I Sodium;
I_KD;
I Calcium;
I T low threshold;
I L high threshold;
I_AHP;
Gap Junctions:
Gap junctions;
Receptor(s):
AMPA;
Gaba;
NMDA;
Gene(s):
Transmitter(s):
Gaba;
Glutamate;
Simulation Environment:
NEURON;
Model Concept(s):
Deep brain stimulation;
Evoked LFP;
Implementer(s):
Kumaravelu, Karthik [kk192 at duke.edu];
Search NeuronDB
for information about:
Neocortex M1 L6 pyramidal corticothalamic GLU cell
;
Neocortex M1 L5B pyramidal pyramidal tract GLU cell
;
Neocortex M1 L4 stellate GLU cell
;
AMPA
;
NMDA
;
Gaba
;
I Na,p
;
I L high threshold
;
I T low threshold
;
I K
;
I Sodium
;
I Calcium
;
I_AHP
;
I_KD
;
Gaba
;
Glutamate
;
/
cEP_stndbs_4.5hz
dat
deepaxax_v_F.dat
*
Other models using deepaxax_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
deepbask_v_F.dat
*
Other models using deepbask_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
deepLTS_v_F.dat
*
Other models using deepLTS_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
nointeraction.spk
*
Other models using nointeraction.spk:
A single column thalamocortical network model (Traub et al 2005)
nontuftRS_v_F.dat
*
Other models using nontuftRS_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
nrntest.spk
*
Other models using nrntest.spk:
A single column thalamocortical network model (Traub et al 2005)
nRT_v_F.dat
*
Other models using nRT_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
p2ctest.spk
*
Other models using p2ctest.spk:
A single column thalamocortical network model (Traub et al 2005)
spinstell_v_F.dat
*
Other models using spinstell_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
supaxax_v_F.dat
*
Other models using supaxax_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
supbask_v_F.dat
*
Other models using supbask_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
supLTS_v_F.dat
*
Other models using supLTS_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
A single column thalamocortical network model (Traub et al 2005)
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018)
suppyrFRB_v_F.dat
*
Other models using suppyrFRB_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
suppyrRS_v_F.dat
*
Other models using suppyrRS_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
TCR_v_F.dat
*
Other models using TCR_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
tuftIB_v_F.dat
*
Other models using tuftIB_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
tuftRS_v_F.dat
*
Other models using tuftRS_v_F.dat:
A single column thalamocortical network model (Traub et al 2005)
File not selected
<- Select file from this column.
Loading data, please wait...