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Computational model having Neuron or other electrically excitable cell as Model Type
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Name/Notes
1
A cardiac cell simulator (Puglisi and Bers 2001), applied to the QT interval (Busjahn et al 2004) 
  
2
A dynamic model of the canine ventricular myocyte (Hund, Rudy 2004) 
  
3
A Fast Rhythmic Bursting Cell: in vivo cell modeling (Lee 2007) 
  
4
A finite volume method for stochastic integrate-and-fire models (Marpeau et al. 2009) 
  
5
A four compartmental model for ABPD complex in crustacean pyloric network (Maran et al. 2011) 
  
6
A model for interaural time difference sensitivity in the medial superior olive (Zhou et al 2005) 
  
7
A Model of Multiple Spike Initiation Zones in the Leech C-interneuron (Crisp 2009) 
  
8
A model of the femur-tibia control system in stick insects (Stein et al. 2008) 
  
9
A multi-compartment model for interneurons in the dLGN (Halnes et al. 2011) 
  
10
A multiphysics neuron model for cellular volume dynamics (Lee et al. 2011) 
  
11
A set of reduced models of layer 5 pyramidal neurons (Bahl et al. 2012) 
  
12
A simplified cerebellar Purkinje neuron (the PPR model) (Brown et al. 2010) 
  
13
A spiking model of cortical broadcast and competition (Shanahan 2008) 
  
14
A two-stage model of dendritic integration in CA1 pyramidal neurons (Katz et al. 2009) 
  
15
Accurate and fast simulation of channel noise in conductance-based model neurons (Linaro et al 2011) 
  
16
Action Potential initiation and backpropagation in Neocortical L5 Pyramidal Neuron (Hu et al. 2009) 
  
17
Action potential of adult rat ventricle (Wang et al. 2008) 
  
18
Action potential of striated muscel fiber (Adrian et al 1970) 
  
19
Action potential reconstitution from measured current waveforms (Alle et al. 2009) 
  
20
Action potential-evoked Na+ influx are similar in axon and soma (Fleidervish et al. 2010) 
  
21
Active dendrites and spike propagation in a hippocampal interneuron (Saraga et al 2003) 
  
22
Active dendritic action potential propagation (Casale & McCormick 2011) 
  
23
Activity constraints on stable neuronal or network parameters (Olypher and Calabrese 2007) 
  
24
Activity dependent changes in motoneurones (Dai Y et al 2002, Gardiner et al 2002) 
  
25
Activity dependent conductances in a neuron model (Liu et al. 1998) 
  
26
Activity dependent regulation of pacemaker channels by cAMP (Wang et al 2002) 
  
27
Afferent Integration in the NAcb MSP Cell (Wolf et al. 2005) 
  
28
Alcohol excites Cerebellar Golgi Cells by inhibiting the Na+/K+ ATPase (Botta et al.2010) 
  
29
Altered complexity in layer 2/3 pyramidal neurons (Luuk van der Velden et al. 2012) 
  
30
Ambiguous Encoding and Distorted Perception (Carlson and Kawasaki 2006) 
  
31
Amyloid beta (IA block) effects on a model CA1 pyramidal cell (Morse et al. 2010) 
  
32
Amyloid-beta effects on release probability and integration at CA3-CA1 synapses (Romani et al. 2013) 
  
33
AP back-prop. explains threshold variability and rapid rise (McCormick et al. 2007, Yu et al. 2008) 
  
34
AP shape and parameter constraints in optimization of compartment models (Weaver and Wearne 2006) 
  
35
Application of Parker-Sochacki method to Hodgkin-Huxley equations (Wilanowski 2013, in review) 
  
36
Artificial neuron model (Izhikevich 2003) 
  
37
Auditory nerve model with linear tuning (Heinz et al 2001) 
  
38
Availability of low-threshold Ca2+ current in retinal ganglion cells (Lee SC et al. 2003) 
  
39
Axonal gap junctions produce fast oscillations in cerebellar Purkinje cells (Traub et al. 2008) 
  
40
Axonal NaV1.6 Sodium Channels in AP Initiation of CA1 Pyramidal Neurons (Royeck et al. 2008) 
  
41
Axonal Projection and Interneuron Types (Helmstaedter et al. 2008) 
  
42
Balance of excitation and inhibition (Carvalho and Buonomano 2009) 
  
43
Basal ganglia-thalamic network model for deep brain stimulation (So et al. 2011) 
  
44
BCM-like synaptic plasticity with conductance-based models (Narayanan Johnston, 2010) 
  
45
Biophysical and phenomenological models of spike-timing dependent plasticity (Badoual et al. 2006) 
  
46
Biophysically detailed model of the mouse sino-atrial node cell (Kharche et al. 2011) 
  
47
Breakdown of accmmodation in nerve: a possible role for INAp (Hennings et al 2005) 
  
48
Brette-Gerstner model (Touboul and Brette 2008) 
  
49
Bursting activity of neuron R15 in Aplysia (Canavier et al 1991, Butera et al 1995) 
  
50
CA1 pyramidal cell: I_NaP and I_M contributions to somatic bursting (Golomb et al 2006) 
  
51
CA1 pyramidal neuron (Migliore et al 1999) 
  
52
CA1 pyramidal neuron synaptic integration (Jarsky et al. 2005) 
  
53
CA1 pyramidal neuron synaptic integration (Li and Ascoli 2006, 2008) 
  
54
CA1 pyramidal neuron to study INaP properties and repetitive firing (Uebachs et al. 2010) 
  
55
CA1 pyramidal neuron: as a 2-layer NN and subthreshold synaptic summation (Poirazi et al 2003) 
  
56
CA1 pyramidal neuron: calculation of MRI signals (Cassara et al. 2008) 
  
57
CA1 pyramidal neuron: conditional boosting of dendritic APs (Watanabe et al 2002) 
  
58
CA1 pyramidal neuron: depolarization block (Bianchi et al. 2012) 
  
59
CA1 pyramidal neuron: effects of Lamotrigine on dendritic excitability (Poolos et al 2002) 
  
60
CA1 pyramidal neuron: functional significance of axonal Kv7 channels (Shah et al. 2008) 
  
61
CA1 Pyramidal Neuron: slow Na+ inactivation (Migliore 1996) 
  
62
CA1 Pyramidal Neuron: Synaptic Scaling (London, Segev 2001) 
  
63
CA1 pyramidal neuron: Synaptic Scaling (Magee, Cook 2000) 
  
64
CA1 pyramidal neuron: synaptically-induced bAP predicts synapse location (Sterratt et al. 2012) 
  
65
CA1 pyramidal neurons: effects of Kv7 (M-) channels on synaptic integration (Shah et al. 2011) 
  
66
CA1 pyramidal: Stochastic amplification of KCa in Ca2+ microdomains (Stanley et al. 2011) 
  
67
CA1 stratum radiatum interneuron multicompartmental model (Katona et al. 2011) 
  
68
Ca2+-activated I_CAN and synaptic depression promotes network-dependent oscil. (Rubin et al. 2009) 
  
69
CA3 pyramidal cell: rhythmogenesis in a reduced Traub model (Pinsky, Rinzel 1994) 
  
70
CA3 pyramidal neuron (Lazarewicz et al 2002) 
  
71
CA3 Pyramidal Neuron (Migliore et al 1995) 
  
72
Caffeine-induced electrical oscillations in Aplysia neurons (Komendantov, Kononenko 2000) 
  
73
Calcium and potassium currents of olfactory bulb juxtaglomerular cells (Masurkar and Chen 2011) 
  
74
Calcium spikes in basal dendrites (Kampa and Stuart 2006) 
  
75
Calcium waves in neuroblastoma cells (Fink et al. 2000) 
  
76
Cancelling redundant input in ELL pyramidal cells (Bol et al. 2011) 
  
77
Carbon nanotubes as electrical interfaces to neurons (Giugliano et al. 2008) 
  
78
Cardiac action potentials and pacemaker activity of sinoatrial node (DiFrancesco & Noble 1985) 
  
79
Cardiac Atrial Cell (Courtemanche et al 1998) (C++) 
  
80
Cardiac sarcomere dynamics (Negroni and Lascano 1996) 
  
81
Cerebellar Golgi cell (Solinas et al. 2007a, 2007b) 
  
82
Cerebellar Nucleus Neuron (Steuber, Schultheiss, Silver, De Schutter & Jaeger, 2010) 
  
83
Cerebellar purkinje cell (De Schutter and Bower 1994) 
  
84
Cerebellar purkinje cell: interacting Kv3 and Na currents influence firing (Akemann, Knopfel 2006) 
  
85
Cerebellar purkinje cell: K and Ca channels regulate APs (Miyasho et al 2001) 
  
86
Cerebellar Purkinje Cell: resurgent Na current and high frequency firing (Khaliq et al 2003) 
  
87
Chirp stimulus responses in a morphologically realistic model (Narayanan and Johnston, 2007) 
  
88
ClC-2 channels regulate neuronal excitability, not intracellular Cl- levels (Ratte & Prescott 2011) 
  
89
CN bushy, stellate neurons (Rothman, Manis 2003) 
  
90
CN pyramidal fusiform cell (Kanold, Manis 2001) 
  
91
Coincidence detection in avian brainstem (Simon et al 1999) 
  
92
Comparison of full and reduced globus pallidus models (Hendrickson 2010) 
  
93
Competition for AP initiation sites in a circuit controlling simple learning (Cruz et al. 2007) 
  
94
Complex CA1-neuron to study AP initiation (Wimmer et al. 2010) 
  
95
Computational neuropharmacology of CA1 pyramidal neuron (Ferrante et al. 2008) 
  
96
Computer simulations of neuron-glia interactions mediated by ion flux (Somjen et al. 2008) 
  
97
Conditions of dominant effectiveness of distal dendrites (Korogod, Kulagina 1998) 
  
98
Contibutions of input and history to motoneuron output (Powers et al 2005) 
  
99
Contrast invariance by LGN synaptic depression (Banitt et al. 2007) 
  
100
Control of vibrissa motoneuron firing (Harish and Golomb 2010) 
  
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