1 |
3D model of the olfactory bulb (Migliore et al. 2014) |
2 |
3D olfactory bulb: operators (Migliore et al, 2015) |
3 |
A computational model of action selection in the basal ganglia (Suryanarayana et al 2019) |
4 |
A detailed data-driven network model of prefrontal cortex (Hass et al 2016) |
5 |
A Fast Rhythmic Bursting Cell: in vivo cell modeling (Lee 2007) |
6 |
A full-scale cortical microcircuit spiking network model (Shimoura et al 2018) |
7 |
A model for pituitary GH(3) lactotroph (Wu and Chang 2005) |
8 |
A modified Morris-Lecar model with gM and gAHP (Yang et al., 2022) |
9 |
A modified Morris-Lecar with TRPC4 & GIRK (Tian et al. 2022) |
10 |
A Moth MGC Model-A HH network with quantitative rate reduction (Buckley & Nowotny 2011) |
11 |
A multi-compartment model for interneurons in the dLGN (Halnes et al. 2011) |
12 |
A multilayer cortical model to study seizure propagation across microdomains (Basu et al. 2015) |
13 |
A multiscale approach to analyze circadian rhythms (Vasalou & Henson, 2010) (CellML) |
14 |
A multiscale approach to analyze circadian rhythms (Vasalou & Henson, 2010) (SBML) |
15 |
A network model of tail withdrawal in Aplysia (White et al 1993) |
16 |
A network of AOB mitral cells that produces infra-slow bursting (Zylbertal et al. 2017) |
17 |
A phantom bursting mechanism for episodic bursting (Bertram et al 2008) |
18 |
A simulation method for the firing sequences of motor units (Jiang et al 2006) |
19 |
A single column thalamocortical network model (Traub et al 2005) |
20 |
A spatial model of the intermediate superior colliculus (Moren et. al. 2013) |
21 |
A spiking neural network model of the Lateral Geniculate Nucleus (Sen-Bhattacharya et al 2017) |
22 |
A unified thalamic model of multiple distinct oscillations (Li, Henriquez and Fröhlich 2017) |
23 |
Activity dependent changes in motoneurones (Dai Y et al 2002, Gardiner et al 2002) |
24 |
Activity dependent regulation of pacemaker channels by cAMP (Wang et al 2002) |
25 |
Activity patterns in a subthalamopallidal network of the basal ganglia model (Terman et al 2002) |
26 |
Alcohol action in a detailed Purkinje neuron model and an efficient simplified model (Forrest 2015) |
27 |
AOB mitral cell: persistent activity without feedback (Zylbertal et al., 2015) |
28 |
Artificial neuron model (Izhikevich 2003, 2004, 2007) |
29 |
Auditory cortex layer IV network model (Beeman 2013) |
30 |
Auditory nerve model for predicting performance limits (Heinz et al 2001) |
31 |
Auditory nerve spontaneous rate histograms (Jackson and Carney 2005) |
32 |
Ave. neuron model for slow-wave sleep in cortex Tatsuki 2016 Yoshida 2018 Rasmussen 2017 (all et al) |
33 |
Basal ganglia-thalamic network model for deep brain stimulation (So et al. 2012) |
34 |
Beta-cell hubs maintain Ca2+ oscillations in human and mouse islet simulations (Lei et al 2018) |
35 |
Biologically-plausible models for spatial navigation (Cannon et al 2003) |
36 |
Biophysically detailed model of somatosensory thalamocortical circuit |
37 |
Biophysically realistic neural modeling of the MEG mu rhythm (Jones et al. 2009) |
38 |
BK Channels Promote Bursting in Pituitary Cells (Tabak et al 2011) |
39 |
Boundary effects influence velocity in transverse propagation of cardiac APs (Sperelakis et al 2005) |
40 |
Broadening of activity with flow across neural structures (Lytton et al. 2008) |