41 |
Olfactory bulb mitral cell gap junction NN model: burst firing and synchrony (O`Connor et al. 2012) |
42 |
Olfactory bulb mitral cell: synchronization by gap junctions (Migliore et al 2005) |
43 |
Olfactory Bulb Network (Davison et al 2003) |
44 |
Online learning model of olfactory bulb external plexiform layer network (Imam & Cleland 2020) |
45 |
Orientation selectivity in inhibition-dominated recurrent networks (Sadeh and Rotter, 2015) |
46 |
Oscillations, phase-of-firing coding and STDP: an efficient learning scheme (Masquelier et al. 2009) |
47 |
Pallidostriatal projections promote beta oscillations (Corbit, Whalen, et al 2016) |
48 |
Parallel odor processing by mitral and middle tufted cells in the OB (Cavarretta et al 2016, 2018) |
49 |
Patterns of synchronization in 2D networks of inhibitory neurons (Miller et al, 2022) |
50 |
Persistent synchronized bursting activity in cortical tissues (Golomb et al 2005) |
51 |
Phase precession through acceleration of local theta rhythm (Castro & Aguiar 2011) |
52 |
Phase response curve of a globus pallidal neuron (Fujita et al. 2011) |
53 |
piriform plus endopiriform circuit model. Pyramidal cells, multipolar neurons, interneurons. |
54 |
Purkinje neuron network (Zang et al. 2020) |
55 |
Pyramidal neuron, fast, regular, and irregular spiking interneurons (Konstantoudaki et al 2014) |
56 |
Rapid desynchronization of an electrically coupled Golgi cell network (Vervaeke et al. 2010) |
57 |
Relative spike time coding and STDP-based orientation selectivity in V1 (Masquelier 2012) |
58 |
Reverberatory bursts propagation and synchronization in developing cultured NNs (Huang et al 2016) |
59 |
Role of active dendrites in rhythmically-firing neurons (Goldberg et al 2006) |
60 |
Sensory feedback in an oscillatory interference model of place cell activity (Monaco et al. 2011) |
61 |
Single neuron properties shape chaos and signal transmission in random NNs (Muscinelli et al 2019) |
62 |
Sleep-wake transitions in corticothalamic system (Bazhenov et al 2002) |
63 |
Small world networks of Type I and Type II Excitable Neurons (Bogaard et al. 2009) |
64 |
Spike-Timing-Based Computation in Sound Localization (Goodman and Brette 2010) |
65 |
Spikes,synchrony,and attentive learning by laminar thalamocort. circuits (Grossberg & Versace 2007) |
66 |
Striatal GABAergic microcircuit, dopamine-modulated cell assemblies (Humphries et al. 2009) |
67 |
Striatal NN model of MSNs and FSIs investigated effects of dopamine depletion (Damodaran et al 2015) |
68 |
Structure-dynamics relationships in bursting neuronal networks revealed (Mäki-Marttunen et al. 2013) |
69 |
Synaptic gating at axonal branches, and sharp-wave ripples with replay (Vladimirov et al. 2013) |
70 |
Synchronization by D4 dopamine receptor-mediated phospholipid methylation (Kuznetsova, Deth 2008) |
71 |
Synchronized oscillations of clock gene expression in the choroid plexus (Myung et al 2018) |
72 |
Synchrony by synapse location (McTavish et al. 2012) |
73 |
Synthesis of spatial tuning functions from theta cell spike trains (Welday et al., 2011) |
74 |
Thalamocortical and Thalamic Reticular Network (Destexhe et al 1996) |
75 |
Thalamocortical augmenting response (Bazhenov et al 1998) |
76 |
Wang-Buzsaki Interneuron (Talathi et al., 2010) |
77 |
Wilson-Cowan Network with Homeostatic Plasticity (Nicola and Campbell 2021) |