1 |
3D model of the olfactory bulb (Migliore et al. 2014) |
2 |
A 1000 cell network model for Lateral Amygdala (Kim et al. 2013) |
3 |
A comparative computer simulation of dendritic morphology (Donohue and Ascoli 2008) |
4 |
A dendritic disinhibitory circuit mechanism for pathway-specific gating (Yang et al. 2016) |
5 |
A Layer V CCS type pyramidal cell, inhibitory synapse current conduction (Kubota Y et al., 2015) |
6 |
A model of unitary responses from A/C and PP synapses in CA3 pyramidal cells (Baker et al. 2010) |
7 |
A neurite to measure ePSP and AP amplitude after passive spread (DeMaegd & Stein, 2021) |
8 |
A set of reduced models of layer 5 pyramidal neurons (Bahl et al. 2012) |
9 |
A simplified cerebellar Purkinje neuron (the PPR model) (Brown et al. 2011) |
10 |
Active dendrites shape signaling microdomains in hippocampal neurons (Basak & Narayanan 2018) |
11 |
Activity dependent changes in dendritic spine density and spine structure (Crook et al. 2007) |
12 |
Axon growth model (Diehl et al. 2016) |
13 |
Biologically Constrained Basal Ganglia model (BCBG model) (Lienard, Girard 2014) |
14 |
CA1 oriens alveus interneurons: signaling properties (Minneci et al. 2007) |
15 |
CA1 pyramidal neuron dendritic spine with plasticity (O`Donnell et al. 2011) |
16 |
CA1 pyramidal neuron: action potential backpropagation (Gasparini & Migliore 2015) |
17 |
CA1 pyramidal neuron: Dendritic Na+ spikes are required for LTP at distal synapses (Kim et al 2015) |
18 |
CA1 pyramidal neuron: dendritic spike initiation (Gasparini et al 2004) |
19 |
CA1 pyramidal neuron: effects of Ih on distal inputs (Migliore et al 2004) |
20 |
CA1 pyramidal neuron: effects of R213Q and R312W Kv7.2 mutations (Miceli et al. 2013) |
21 |
CA1 pyramidal neuron: h channel-dependent deficit of theta oscill. resonance (Marcelin et al. 2008) |
22 |
CA1 pyramidal neuron: integration of subthreshold inputs from PP and SC (Migliore 2003) |
23 |
CA1 pyramidal neuron: nonlinear a5-GABAAR controls synaptic NMDAR activation (Schulz et al 2018) |
24 |
CA1 pyramidal neuron: Persistent Na current mediates steep synaptic amplification (Hsu et al 2018) |
25 |
CA1 pyramidal neuron: rebound spiking (Ascoli et al.2010) |
26 |
Ca1 pyramidal neuron: reduction model (Marasco et al. 2012) |
27 |
CA1 pyramidal neuron: schizophrenic behavior (Migliore et al. 2011) |
28 |
CA1 pyramidal neuron: signal propagation in oblique dendrites (Migliore et al 2005) |
29 |
CA1 pyramidal neuron: synaptic plasticity during theta cycles (Saudargiene et al. 2015) |
30 |
CA1 pyramidal neurons: binding properties and the magical number 7 (Migliore et al. 2008) |
31 |
CA1 pyramidal neurons: effect of external electric field from power lines (Cavarretta et al. 2014) |
32 |
CA1 pyramidal neurons: effects of a Kv7.2 mutation (Miceli et al. 2009) |
33 |
CA1 pyramidal neurons: effects of Alzheimer (Culmone and Migliore 2012) |
34 |
CA3 hippocampal pyramidal neuron with voltage-clamp intrinsic conductance data (Traub et al 1991) |
35 |
CA3 pyramidal neuron (Safiulina et al. 2010) |
36 |
CA3 pyramidal neuron: firing properties (Hemond et al. 2008) |
37 |
Ca3 pyramidal neuron: membrane response near rest (Hemond et al. 2009) |
38 |
CA3 pyramidal neurons: Kv1.2 mediates modulation of cortical inputs (Hyun et al., 2015) |
39 |
Calcium dynamics depend on dendritic diameters (Anwar et al. 2014) |
40 |
Calcium waves and mGluR-dependent synaptic plasticity in CA1 pyr. neurons (Ashhad & Narayanan 2013) |