1 |
A 1000 cell network model for Lateral Amygdala (Kim et al. 2013) |
2 |
A biophysical model of vestibular ganglion neurons (Hight & Kalluri 2016, Ventura & Kalluri 2018) |
3 |
A computational model of a small DRG neuron to explore pain (Verma et al. 2019, 2020) |
4 |
A detailed Purkinje cell model (Masoli et al 2015) |
5 |
A Fast Rhythmic Bursting Cell: in vivo cell modeling (Lee 2007) |
6 |
A model for a nociceptor terminal and terminal tree (Barkai et al., 2020) |
7 |
A model for interaural time difference sensitivity in the medial superior olive (Zhou et al 2005) |
8 |
A model of ASIC1a and synaptic cleft pH modulating wind-up in wide dynamic range neurons (Delrocq) |
9 |
A model of closed-loop motor unit including muscle spindle feedback (Kim, 2020) |
10 |
A Model of Multiple Spike Initiation Zones in the Leech C-interneuron (Crisp 2009) |
11 |
A model of slow motor unit (Kim, 2017) |
12 |
A model of the T-junction of a C-fiber sensory neuron (Sundt et al. 2015) |
13 |
A multi-compartment model for interneurons in the dLGN (Halnes et al. 2011) |
14 |
A multiphysics neuron model for cellular volume dynamics (Lee et al. 2011) |
15 |
A multiscale approach to analyze circadian rhythms (Vasalou & Henson, 2010) (CellML) |
16 |
A multiscale approach to analyze circadian rhythms (Vasalou & Henson, 2010) (SBML) |
17 |
A neuronal circuit simulator for non Monte Carlo analysis of neuronal noise (Kilinc & Demir 2018) |
18 |
A simplified cerebellar Purkinje neuron (the PPR model) (Brown et al. 2011) |
19 |
A single compartment model of Drosophila motor neuron (Megwa et al 2023) |
20 |
A single kinetic model for all human voltage-gated sodium channels (Balbi et al, 2017) |
21 |
A two-layer biophysical olfactory bulb model of cholinergic neuromodulation (Li and Cleland 2013) |
22 |
Action Potential initiation and backpropagation in Neocortical L5 Pyramidal Neuron (Hu et al. 2009) |
23 |
Action potential initiation in the olfactory mitral cell (Shen et al 1999) |
24 |
Action potential of striated muscle fiber (Adrian et al 1970) |
25 |
Action potential-evoked Na+ influx similar in axon and soma (Fleidervish et al. 2010) (Python) |
26 |
AIS model of L5 cortical pyramidal neuron (Filipis et al., 2023) |
27 |
Alcohol action in a detailed Purkinje neuron model and an efficient simplified model (Forrest 2015) |
28 |
Allen Institute: Gad2-IRES-Cre VISp layer 5 472447460 |
29 |
Allen Institute: Gad2-IRES-Cre VISp layer 5 473561729 |
30 |
Allen Institute: Htr3a-Cre VISp layer 2/3 472352327 |
31 |
Allen Institute: Ntsr1-Cre VISp layer 4 472430904 |
32 |
Allen Institute: Pvalb-IRES-Cre VISp layer 2/3 472306616 |
33 |
Allen Institute: Pvalb-IRES-Cre VISp layer 5 471085845 |
34 |
Allen Institute: Pvalb-IRES-Cre VISp layer 5 472349114 |
35 |
Allen Institute: Pvalb-IRES-Cre VISp layer 5 472912177 |
36 |
Allen Institute: Pvalb-IRES-Cre VISp layer 5 473465774 |
37 |
Allen Institute: Pvalb-IRES-Cre VISp layer 5 473862421 |
38 |
Allen Institute: Pvalb-IRES-Cre VISp layer 6a 471081668 |
39 |
Allen Institute: Pvalb-IRES-Cre VISp layer 6a 472301074 |
40 |
Allen Institute: Pvalb-IRES-Cre VISp layer 6a 473860269 |