1 |
Impact of Small Time Delays on the Onset of Oscillations and Synchrony (Al-Darabsah et al 2021) |
2 |
A bistable model of Spike-Wave seizure and background activity (Taylor et al. 2014) |
3 |
A cortical sheet mesoscopic model for investigating focal seizure onset dynamics (Wang et al. 2014) |
4 |
A model of working memory for encoding multiple items (Ursino et al, in press) |
5 |
A Neural mass computational model of the Thalamocorticothalamic circuitry (Bhattacharya et al. 2011) |
6 |
A neural mass model for critical assessment of brain connectivity (Ursino et al 2020) |
7 |
A neural mass model of cross frequency coupling (Chehelcheraghi et al 2017) |
8 |
A spatially extended model for macroscopic spike-wave discharges (Taylor and Baier 2011) |
9 |
Adaptive dual control of deep brain stimulation in Parkinsons disease simulations (Grado et al 2018) |
10 |
Basal ganglia-corticothalamic (BGCT) network (Chen et al., 2014) |
11 |
Biologically Constrained Basal Ganglia model (BCBG model) (Lienard, Girard 2014) |
12 |
Composite spiking network/neural field model of Parkinsons (Kerr et al 2013) |
13 |
Distributed working memory in large-scale macaque brain model (Mejias and Wang, 2022) |
14 |
E-I-E direction-selective motion discrimination visual cortex traveling waves (Heitmann et al 2020) |
15 |
Effect of cortical D1 receptor sensitivity on working memory maintenance (Reneaux & Gupta 2018) |
16 |
Emergence of Connectivity Motifs in Networks of Model Neurons (Vasilaki, Giugliano 2014) |
17 |
Entrainment and divisive inhibition in a neocortical neural mass model (Papasavvas et al 2020) |
18 |
Exact mean-field models for Izhikevich networks (Chen and Campbell 2022) |
19 |
Human seizures couple across spatial scales through travelling wave dynamics (Martinet et al 2017) |
20 |
Hyperconnectivity, slow synapses in PFC mental retardation and autism model (Testa-Silva et al 2011) |
21 |
Large-scale laminar model of macaque cortex (Mejias et al 2016) |
22 |
LGNcircuit: Minimal LGN network model of temporal processing of visual input (Norheim et al. 2012) |
23 |
Macroscopic model of epilepsy (Fietkiewicz & Loparo 2016) |
24 |
Mean-field models of neural populations under electrical stimulation (Cakan & Obermayer 2020) |
25 |
Mechanisms underlying different onset patterns of focal seizures (Wang Y et al 2017) |
26 |
Modelling enteric neuron populations and muscle fed-state motor patterns (Chambers et al. 2011) |
27 |
Motor Cortex Connectivity & Event Related Desynchronization Based on Neural Mass Models (Ursino 21) |
28 |
Network model of movement disorders (Yousif et al 2020) |
29 |
Neural mass model based on single cell dynamics to model pathophysiology (Zandt et al 2014) |
30 |
Neural Mass Model for relationship between Brain Rhythms + Functional Connectivity (Ricci et al '21) |
31 |
Neural mass model of spindle generation in the isolated thalamus (Schellenberger Costa et al. 2016) |
32 |
Neural mass model of the neocortex under sleep regulation (Costa et al 2016) |
33 |
Neural mass model of the sleeping cortex (Weigenand et al 2014) |
34 |
Neural mass model of the sleeping thalamocortical system (Schellenberger Costa et al 2016) |
35 |
Neural-field model of generalized seizures (Zhao et al., 2015) |
36 |
Nicotinic control of dopamine release in nucleus accumbens (Maex et al. 2014) |
37 |
Synaptic damage underlies EEG abnormalities in postanoxic encephalopathy (Ruijter et al 2017) |
38 |
Thalamocortical model of spike and wave seizures (Suffczynski et al. 2004) |
39 |
Universal feature of developing networks (Tabak et al 2010) |
40 |
Wilson-Cowan Network with Homeostatic Plasticity (Nicola and Campbell 2021) |