1 |
A contracting model of the basal ganglia (Girard et al. 2008) |
2 |
A cortico-cerebello-thalamo-cortical loop model under essential tremor (Zhang & Santaniello 2019) |
3 |
A Model Circuit of Thalamocortical Convergence (Behuret et al. 2013) |
4 |
A Neural mass computational model of the Thalamocorticothalamic circuitry (Bhattacharya et al. 2011) |
5 |
A single column thalamocortical network model (Traub et al 2005) |
6 |
A spiking neural network model of the Lateral Geniculate Nucleus (Sen-Bhattacharya et al 2017) |
7 |
A unified thalamic model of multiple distinct oscillations (Li, Henriquez and Fröhlich 2017) |
8 |
Active dendritic action potential propagation (Casale & McCormick 2011) |
9 |
Alpha rhythm in vitro visual cortex (Traub et al 2020) |
10 |
Basal ganglia-corticothalamic (BGCT) network (Chen et al., 2014) |
11 |
Biophysically detailed model of somatosensory thalamocortical circuit |
12 |
Coding of stimulus frequency by latency in thalamic networks (Golomb et al 2005) |
13 |
Collection of simulated data from a thalamocortical network model (Glabska, Chintaluri, Wojcik 2017) |
14 |
Composite spiking network/neural field model of Parkinsons (Kerr et al 2013) |
15 |
Computer model of clonazepam's effect in thalamic slice (Lytton 1997) |
16 |
Cortex-Basal Ganglia-Thalamus network model (Kumaravelu et al. 2016) |
17 |
Cortical feedback alters visual response properties of dLGN relay cells (Martínez-Cañada et al 2018) |
18 |
Deconstruction of cortical evoked potentials generated by subthalamic DBS (Kumaravelu et al 2018) |
19 |
Disrupted information processing in Fmr1-KO mouse layer 4 barrel cortex (Domanski et al 2019) |
20 |
Dynamics of sleep oscillations coupled to brain temperature on multiple scales (Csernai et al 2019) |
21 |
Electrodecrements in in vitro model of infantile spasms (Traub et al 2020) |
22 |
Event-related simulation of neural processing in complex visual scenes (Mihalas et al. 2011) |
23 |
High frequency stimulation of the Subthalamic Nucleus (Rubin and Terman 2004) |
24 |
Investigation of different targets in deep brain stimulation for Parkinson`s (Pirini et al. 2009) |
25 |
Knox implementation of Destexhe 1998 spike and wave oscillation model (Knox et al 2018) |
26 |
LFP signature of monosynaptic thalamocortical connection (Hagen et al 2017) |
27 |
Mechanisms for pattern specificity of DBS in Parkinson's disease (Velarde et al 2017) |
28 |
Mechanisms for stable, robust, and adaptive development of orientation maps (Stevens et al. 2013) |
29 |
Multiple dynamical modes of thalamic relay neurons (Wang XJ 1994) |
30 |
Network model of movement disorders (Yousif et al 2020) |
31 |
Neural mass model of spindle generation in the isolated thalamus (Schellenberger Costa et al. 2016) |
32 |
Neural mass model of the sleeping thalamocortical system (Schellenberger Costa et al 2016) |
33 |
Rat LGN Thalamocortical Neuron (Connelly et al 2015, 2016) |
34 |
Sensory feedback in an oscillatory interference model of place cell activity (Monaco et al. 2011) |
35 |
Simulated cortical color opponent receptive fields self-organize via STDP (Eguchi et al., 2014) |
36 |
Sleep-wake transitions in corticothalamic system (Bazhenov et al 2002) |
37 |
Synaptic damage underlies EEG abnormalities in postanoxic encephalopathy (Ruijter et al 2017) |
38 |
Thalamic interneuron multicompartment model (Zhu et al. 1999) |
39 |
Thalamic quiescence of spike and wave seizures (Lytton et al 1997) |
40 |
Thalamic Reticular Network (Destexhe et al 1994) |