1 |
3D olfactory bulb: operators (Migliore et al, 2015) |
2 |
A biophysical model of vestibular ganglion neurons (Hight & Kalluri 2016, Ventura & Kalluri 2018) |
3 |
A computational model of systems memory consolidation and reconsolidation (Helfer & Shultz 2019) |
4 |
A fast model of voltage-dependent NMDA Receptors (Moradi et al. 2013) |
5 |
A Fast Rhythmic Bursting Cell: in vivo cell modeling (Lee 2007) |
6 |
A focal seizure model with ion concentration changes (Gentiletti et al., 2022) |
7 |
A kinetic model unifying presynaptic short-term facilitation and depression (Lee et al. 2009) |
8 |
A Layer V CCS type pyramidal cell, inhibitory synapse current conduction (Kubota Y et al., 2015) |
9 |
A mathematical model of a neurovascular unit (Dormanns et al 2015, 2016) (Farrs & David 2011) |
10 |
A Method for Prediction of Receptor Activation in the Simulation of Synapses (Montes et al. 2013) |
11 |
A model for recurrent spreading depolarizations (Conte et al. 2017) |
12 |
A Model of Multiple Spike Initiation Zones in the Leech C-interneuron (Crisp 2009) |
13 |
A model of neurovascular coupling and the BOLD response (Mathias et al 2017, Kenny et al 2018) |
14 |
A model of unitary responses from A/C and PP synapses in CA3 pyramidal cells (Baker et al. 2010) |
15 |
A multilayer cortical model to study seizure propagation across microdomains (Basu et al. 2015) |
16 |
A multiscale approach to analyze circadian rhythms (Vasalou & Henson, 2010) (CellML) |
17 |
A multiscale approach to analyze circadian rhythms (Vasalou & Henson, 2010) (SBML) |
18 |
A network model of the vertebrate retina (Publio et al. 2009) |
19 |
A neural mass model for critical assessment of brain connectivity (Ursino et al 2020) |
20 |
A NN with synaptic depression for testing the effects of connectivity on dynamics (Jacob et al 2019) |
21 |
A sensorimotor-spinal cord model (Hoshino et al. 2022) |
22 |
A synapse model for developing somatosensory cortex (Manninen et al 2020) |
23 |
ACnet23 primary auditory cortex model (Beeman et al 2019) |
24 |
Active zone model of Ca2+ secretion coupling (Keller et al. 2015) |
25 |
Ambient glutamate shapes AMPA receptor responses to simulated transients (Balmer et al. 2021) |
26 |
Amyloid-beta effects on release probability and integration at CA3-CA1 synapses (Romani et al. 2013) |
27 |
An attractor network model of grid cells and theta-nested gamma oscillations (Pastoll et al 2013) |
28 |
An integrative dynamic model of brain energy metabolism (Coultier et al 2009) |
29 |
Analytical modelling of temperature effects on an AMPA-type synapse (Kufel & Wojcik 2018) |
30 |
Application of a common kinetic formalism for synaptic models (Destexhe et al 1994) |
31 |
Ave. neuron model for slow-wave sleep in cortex Tatsuki 2016 Yoshida 2018 Rasmussen 2017 (all et al) |
32 |
Axonal subthreshold voltage signaling along hippocampal mossy fiber (Kamiya 2022) |
33 |
Basal ganglia network model of subthalamic deep brain stimulation (Hahn and McIntyre 2010) |
34 |
BCM-like synaptic plasticity with conductance-based models (Narayanan Johnston, 2010) |
35 |
Biochemically detailed model of LTP and LTD in a cortical spine (Maki-Marttunen et al 2020) |
36 |
Biologically Constrained Basal Ganglia model (BCBG model) (Lienard, Girard 2014) |
37 |
Biophysical modeling of pathological brain states (Sudhakar et al 2019) |
38 |
Biophysically Realistic Network Model of the Wild-Type and Degenerate Retina (Ly et al 2022) |
39 |
Bursting in dopamine neurons (Li YX et al 1996) |
40 |
Ca+/HCN channel-dependent persistent activity in multiscale model of neocortex (Neymotin et al 2016) |