| Models |
1. |
3D model of the olfactory bulb (Migliore et al. 2014)
|
2. |
A detailed and fast model of extracellular recordings (Camunas-Mesa & Qurioga 2013)
|
3. |
A detailed Purkinje cell model (Masoli et al 2015)
|
4. |
A model for recurrent spreading depolarizations (Conte et al. 2017)
|
5. |
A model of ASIC1a and synaptic cleft pH modulating wind-up in wide dynamic range neurons (Delrocq)
|
6. |
A model of the femur-tibia control system in stick insects (Stein et al. 2008)
|
7. |
A model of ventral Hippocampal CA1 pyramidal neurons of Tg2576 AD mice (Spoleti et al. 2021)
|
8. |
A multi-compartment model for interneurons in the dLGN (Halnes et al. 2011)
|
9. |
A set of reduced models of layer 5 pyramidal neurons (Bahl et al. 2012)
|
10. |
A simplified cerebellar Purkinje neuron (the PPR model) (Brown et al. 2011)
|
11. |
Acetylcholine Boosts Dendritic NMDA Spikes in a CA3 Pyramidal Neuron Model (Humphries et al., 2021)
|
12. |
Active dendrites and spike propagation in a hippocampal interneuron (Saraga et al 2003)
|
13. |
Active dendrites shape signaling microdomains in hippocampal neurons (Basak & Narayanan 2018)
|
14. |
Adaptive robotic control driven by a versatile spiking cerebellar network (Casellato et al. 2014)
|
15. |
Age-dependent excitability of CA1 pyramidal neurons in APPPS1 Alzheimer's model (Vitale et al 2021)
|
16. |
Alcohol action in a detailed Purkinje neuron model and an efficient simplified model (Forrest 2015)
|
17. |
Alcohol excites Cerebellar Golgi Cells by inhibiting the Na+/K+ ATPase (Botta et al.2010)
|
18. |
AMPA receptor trafficking and its role in heterosynaptic plasticity (Antunes et al 2018)
|
19. |
Amyloid beta (IA block) effects on a model CA1 pyramidal cell (Morse et al. 2010)
|
20. |
AP back-prop. explains threshold variability and rapid rise (McCormick et al. 2007, Yu et al. 2008)
|
21. |
Biophysically detailed model of somatosensory thalamocortical circuit
|
22. |
Biophysically realistic neuron models for simulation of cortical stimulation (Aberra et al. 2018)
|
23. |
CA1 oriens alveus interneurons: signaling properties (Minneci et al. 2007)
|
24. |
CA1 pyr cell: Inhibitory modulation of spatial selectivity+phase precession (Grienberger et al 2017)
|
25. |
CA1 pyramidal neuron (Migliore et al 1999)
|
26. |
CA1 pyramidal neuron synaptic integration (Jarsky et al. 2005)
|
27. |
CA1 pyramidal neuron synaptic integration (Li and Ascoli 2006, 2008)
|
28. |
CA1 pyramidal neuron to study INaP properties and repetitive firing (Uebachs et al. 2010)
|
29. |
CA1 pyramidal neuron: as a 2-layer NN and subthreshold synaptic summation (Poirazi et al 2003)
|
30. |
CA1 pyramidal neuron: calculation of MRI signals (Cassara et al. 2008)
|
31. |
CA1 pyramidal neuron: conditional boosting of dendritic APs (Watanabe et al 2002)
|
32. |
CA1 pyramidal neuron: Dendritic Na+ spikes are required for LTP at distal synapses (Kim et al 2015)
|
33. |
CA1 pyramidal neuron: dendritic spike initiation (Gasparini et al 2004)
|
34. |
CA1 pyramidal neuron: effects of Ih on distal inputs (Migliore et al 2004)
|
35. |
CA1 pyramidal neuron: effects of Lamotrigine on dendritic excitability (Poolos et al 2002)
|
36. |
CA1 pyramidal neuron: functional significance of axonal Kv7 channels (Shah et al. 2008)
|
37. |
CA1 pyramidal neuron: h channel-dependent deficit of theta oscill. resonance (Marcelin et al. 2008)
|
38. |
CA1 pyramidal neuron: Ih current (Migliore et al. 2012)
|
39. |
CA1 pyramidal neuron: integration of subthreshold inputs from PP and SC (Migliore 2003)
|
40. |
CA1 pyramidal neuron: Persistent Na current mediates steep synaptic amplification (Hsu et al 2018)
|
41. |
CA1 pyramidal neuron: rebound spiking (Ascoli et al.2010)
|
42. |
Ca1 pyramidal neuron: reduction model (Marasco et al. 2012)
|
43. |
CA1 pyramidal neuron: schizophrenic behavior (Migliore et al. 2011)
|
44. |
CA1 pyramidal neuron: signal propagation in oblique dendrites (Migliore et al 2005)
|
45. |
CA1 Pyramidal Neuron: slow Na+ inactivation (Migliore 1996)
|
46. |
CA1 pyramidal neurons: binding properties and the magical number 7 (Migliore et al. 2008)
|
47. |
CA1 pyramidal neurons: effect of external electric field from power lines (Cavarretta et al. 2014)
|
48. |
CA1 pyramidal neurons: effects of a Kv7.2 mutation (Miceli et al. 2009)
|
49. |
CA1 pyramidal neurons: effects of Alzheimer (Culmone and Migliore 2012)
|
50. |
CA1 pyramidal: Stochastic amplification of KCa in Ca2+ microdomains (Stanley et al. 2011)
|
51. |
CA1 stratum radiatum interneuron multicompartmental model (Katona et al. 2011)
|
52. |
CA3 pyramidal neuron (Lazarewicz et al 2002)
|
53. |
CA3 Pyramidal Neuron (Migliore et al 1995)
|
54. |
CA3 pyramidal neuron (Safiulina et al. 2010)
|
55. |
CA3 pyramidal neuron: firing properties (Hemond et al. 2008)
|
56. |
Calcium dynamics depend on dendritic diameters (Anwar et al. 2014)
|
57. |
CaMKII system exhibiting bistability with respect to calcium (Graupner and Brunel 2007)
|
58. |
Cellular classes revealed by heartbeat-related modulation of extracellular APs (Mosher et al 2020)
|
59. |
Cerebellar gain and timing control model (Yamazaki & Tanaka 2007)(Yamazaki & Nagao 2012)
|
60. |
Cerebellar Nucleus Neuron (Steuber, Schultheiss, Silver, De Schutter & Jaeger, 2010)
|
61. |
Cerebellar purkinje cell (De Schutter and Bower 1994)
|
62. |
Cerebellar purkinje cell: K and Ca channels regulate APs (Miyasho et al 2001)
|
63. |
Channel density variability among CA1 neurons (Migliore et al. 2018)
|
64. |
Chirp stimulus responses in a morphologically realistic model (Narayanan and Johnston, 2007)
|
65. |
Circadian rhythmicity shapes astrocyte morphology and neuronal function in CA1 (McCauley et al 2020)
|
66. |
Coincidence detection in avian brainstem (Simon et al 1999)
|
67. |
Combining modeling, deep learning for MEA neuron localization, classification (Buccino et al 2018)
|
68. |
Complex CA1-neuron to study AP initiation (Wimmer et al. 2010)
|
69. |
Computational model of bladder small DRG neuron soma (Mandge & Manchanda 2018)
|
70. |
Computer models of corticospinal neurons replicate in vitro dynamics (Neymotin et al. 2017)
|
71. |
Correcting space clamp in dendrites (Schaefer et al. 2003 and 2007)
|
72. |
Cortical Layer 5b pyr. cell with [Na+]i mechanisms, from Hay et al 2011 (Zylbertal et al 2017)
|
73. |
Cortical network model of posttraumatic epileptogenesis (Bush et al 1999)
|
74. |
Dendritic L-type Ca currents in motoneurons (Carlin et al 2000)
|
75. |
Dendritic Na+ spike initiation and backpropagation of APs in active dendrites (Nevian et al. 2007)
|
76. |
Dendritic signals command firing dynamics in a Cerebellar Purkinje Cell model (Genet et al. 2010)
|
77. |
Dendritica (Vetter et al 2001)
|
78. |
Dentate Basket Cell: spatial summation of inhibitory synaptic inputs (Bartos et al 2001)
|
79. |
Dentate granule cell: mAHP & sAHP; SK & Kv7/M channels (Mateos-Aparicio et al., 2014)
|
80. |
Detailed passive cable model of Dentate Gyrus Basket Cells (Norenberg et al. 2010)
|
81. |
DG adult-born granule cell: nonlinear a5-GABAARs control AP firing (Lodge et al, 2021)
|
82. |
Dichotomy of action-potential backpropagation in CA1 pyramidal neuron dendrites (Golding et al 2001)
|
83. |
Differential modulation of pattern and rate in a dopamine neuron model (Canavier and Landry 2006)
|
84. |
Dorsal root ganglion (DRG) neuronal model (Amir, Devor 2003)
|
85. |
Double cable myelinated axon (Layer 5 pyramidal neuron; Cohen et al 2020)
|
86. |
Effects of electric fields on cognitive functions (Migliore et al 2016)
|
87. |
Effects of neural morphology on global and focal NMDA-spikes (Poleg-Polsky 2015)
|
88. |
Electrical compartmentalization in neurons (Wybo et al 2019)
|
89. |
Electrotonic transform and EPSCs for WT and Q175+/- spiny projection neurons (Goodliffe et al 2018)
|
90. |
Emergent properties of networks of biological signaling pathways (Bhalla, Iyengar 1999)
|
91. |
Engaging distinct oscillatory neocortical circuits (Vierling-Claassen et al. 2010)
|
92. |
Excitability of PFC Basal Dendrites (Acker and Antic 2009)
|
93. |
Excitatory synaptic interactions in pyramidal neuron dendrites (Behabadi et al. 2012)
|
94. |
Fast AMPA receptor signaling (Geiger et al 1997)
|
95. |
Fast Spiking Basket cells (Tzilivaki et al 2019)
|
96. |
FHF2KO and Wild-Type Mouse Cardiomyocyte Strands (Park et al 2020)
|
97. |
Firing neocortical layer V pyramidal neuron (Reetz et al. 2014; Stadler et al. 2014)
|
98. |
Four-pathway phenomenological synaptic plasticity model (Ebner et al. 2019)
|
99. |
FS Striatal interneuron: K currents solve signal-to-noise problems (Kotaleski et al 2006)
|
100. |
Gap junction coupled network of striatal fast spiking interneurons (Hjorth et al. 2009)
|
101. |
Gating of steering signals through phasic modulation of reticulospinal neurons (Kozlov et al. 2014)
|
102. |
Generation of granule cell dendritic morphology (Schneider et al. 2014)
|
103. |
Glial voltage dynamics driven by Kir & K2P currents (Janjic et al 2023)
|
104. |
Global and multiplexed dendritic computations under in vivo-like conditions (Ujfalussy et al 2018)
|
105. |
Globus pallidus multi-compartmental model neuron with realistic morphology (Gunay et al. 2008)
|
106. |
Globus pallidus neuron models with differing dendritic Na channel expression (Edgerton et al., 2010)
|
107. |
Glutamate mediated dendritic and somatic plateau potentials in cortical L5 pyr cells (Gao et al '20)
|
108. |
Hippocampal CA3 thorny and a-thorny principal neuron models (Linaro et al in review)
|
109. |
Human Cortical L5 Pyramidal Cell (Rich et al. 2021)
|
110. |
Human layer 2/3 cortical microcircuits in health and depression (Yao et al, 2022)
|
111. |
Impact of dendritic atrophy on intrinsic and synaptic excitability (Narayanan & Chattarji, 2010)
|
112. |
Impact of dendritic size and topology on pyramidal cell burst firing (van Elburg and van Ooyen 2010)
|
113. |
Impedance spectrum in cortical tissue: implications for LFP signal propagation (Miceli et al. 2017)
|
114. |
Influence of dendritic structure on neocortical neuron firing patterns (Mainen and Sejnowski 1996)
|
115. |
Interacting synaptic conductances during, distorting, voltage clamp (Poleg-Polsky and Diamond 2011)
|
116. |
Interneuron Specific 3 Interneuron Model (Guet-McCreight et al, 2016)
|
117. |
Intracortical synaptic potential modulation by presynaptic somatic potential (Shu et al. 2006, 2007)
|
118. |
Intrinsic sensory neurons of the gut (Chambers et al. 2014)
|
119. |
KV1 channel governs cerebellar output to thalamus (Ovsepian et al. 2013)
|
120. |
L5 PFC pyramidal neurons (Papoutsi et al. 2017)
|
121. |
L5b PC model constrained for BAC firing and perisomatic current step firing (Hay et al., 2011)
|
122. |
Lamprey spinal CPG neuron (Huss et al. 2007)
|
123. |
Large scale model of the olfactory bulb (Yu et al., 2013)
|
124. |
Large scale neocortical model for PGENESIS (Crone et al 2019)
|
125. |
Layer V PFC pyramidal neuron used to study persistent activity (Sidiropoulou & Poirazi 2012)
|
126. |
Leech Heart (HE) Motor Neuron conductances contributions to NN activity (Lamb & Calabrese 2013)
|
127. |
Leech Mechanosensory Neurons: Synaptic Facilitation by Reflected APs (Baccus 1998)
|
128. |
LGMD - ON excitation to dendritic field C
|
129. |
LGMD impedance (Dewell & Gabbiani 2019)
|
130. |
Library of biophysically detailed striatal projection neurons (Lindroos and Hellgren Kotaleski 2020)
|
131. |
Linear vs non-linear integration in CA1 oblique dendrites (Gómez González et al. 2011)
|
132. |
Low Threshold Calcium Currents in TC cells (Destexhe et al 1998)
|
133. |
Low Threshold Calcium Currents in TC cells (Destexhe et al 1998) (Brian)
|
134. |
MCCAIS model (multicompartmental cooperative AIS) (Öz et al 2015)
|
135. |
Mechanisms for pattern specificity of DBS in Parkinson's disease (Velarde et al 2017)
|
136. |
Mechanisms of fast rhythmic bursting in a layer 2/3 cortical neuron (Traub et al 2003)
|
137. |
Mechanisms of very fast oscillations in axon networks coupled by gap junctions (Munro, Borgers 2010)
|
138. |
Mechanisms underlying subunit independence in pyramidal neuron dendrites (Behabadi and Mel 2014)
|
139. |
Membrane electrical properties of mouse CA1 pyramidal cells during strong inputs (Bianchi et al 22)
|
140. |
Microcircuits of L5 thick tufted pyramidal cells (Hay & Segev 2015)
|
141. |
Mirror Neuron (Antunes et al 2017)
|
142. |
Model of arrhythmias in a cardiac cells network (Casaleggio et al. 2014)
|
143. |
Modeling interactions in Aplysia neuron R15 (Yu et al 2004)
|
144. |
Modeling temperature changes in AMPAR kinetics (Postlethwaite et al 2007)
|
145. |
Modelling platform of the cochlear nucleus and other auditory circuits (Manis & Compagnola 2018)
|
146. |
Molecular layer interneurons in cerebellum encode valence in associative learning (Ma et al 2020)
|
147. |
Multi-comp. CA1 O-LM interneuron model with varying dendritic Ih distributions (Sekulic et al 2015)
|
148. |
Multicompartmental cerebellar granule cell model (Diwakar et al. 2009)
|
149. |
Multiplexed coding in Purkinje neuron dendrites (Zang and De Schutter 2021)
|
150. |
Multiscale model of excitotoxicity in PD (Muddapu and Chakravarthy 2020)
|
151. |
MyFirstNEURON (Houweling, Sejnowski 1997)
|
152. |
NAcc medium spiny neuron: effects of cannabinoid withdrawal (Spiga et al. 2010)
|
153. |
Neocort. pyramidal cells subthreshold somatic voltage controls spike propagation (Munro Kopell 2012)
|
154. |
Nigral dopaminergic neurons: effects of ethanol on Ih (Migliore et al. 2008)
|
155. |
Nonlinear dendritic processing in barrel cortex spiny stellate neurons (Lavzin et al. 2012)
|
156. |
Norns - Neural Network Studio (Visser & Van Gils 2014)
|
157. |
Numerical Integration of Izhikevich and HH model neurons (Stewart and Bair 2009)
|
158. |
O-LM interneuron model (Lawrence et al. 2006)
|
159. |
Olfactory bulb mitral and granule cell column formation (Migliore et al. 2007)
|
160. |
Olfactory bulb mitral and granule cell: dendrodendritic microcircuits (Migliore and Shepherd 2008)
|
161. |
Olfactory Computations in Mitral-Granule cell circuits (Migliore & McTavish 2013)
|
162. |
Olfactory Mitral Cell (Bhalla, Bower 1993)
|
163. |
Optical stimulation of a channelrhodopsin-2 positive pyramidal neuron model (Foutz et al 2012)
|
164. |
Paradoxical GABA-mediated excitation (Lewin et al. 2012)
|
165. |
Parvalbumin-positive basket cells differentiate among hippocampal pyramidal cells (Lee et al. 2014)
|
166. |
Potjans-Diesmann cortical microcircuit model in NetPyNE (Romaro et al 2021)
|
167. |
Principles of Computational Modelling in Neuroscience (Book) (Sterratt et al. 2011)
|
168. |
Proximal inhibition of Renshaw cells (Bui et al 2005)
|
169. |
Purkinje cell: Synaptic activation predicts voltage control of burst-pause (Masoli & D'Angelo 2017)
|
170. |
Rapid desynchronization of an electrically coupled Golgi cell network (Vervaeke et al. 2010)
|
171. |
Rat LGN Thalamocortical Neuron (Connelly et al 2015, 2016)
|
172. |
Regulation of the firing pattern in dopamine neurons (Komendantov et al 2004)
|
173. |
Rhesus Monkey Layer 3 Pyramidal Neurons: V1 vs PFC (Amatrudo, Weaver et al. 2012)
|
174. |
Rhesus Monkey Layer 3 Pyramidal Neurons: Young vs aged PFC (Coskren et al. 2015)
|
175. |
Rhesus Monkey Young and Aged L3 PFC Pyramidal Neurons (Rumbell et al. 2016)
|
176. |
Salamander retinal ganglian cells: morphology influences firing (Sheasby, Fohlmeister 1999)
|
177. |
Salamander retinal ganglion cell: ion channels (Fohlmeister, Miller 1997)
|
178. |
Schiz.-linked gene effects on intrinsic single-neuron excitability (Maki-Marttunen et al. 2016)
|
179. |
Sensory-evoked responses of L5 pyramidal tract neurons (Egger et al 2020)
|
180. |
Shaping NMDA spikes by timed synaptic inhibition on L5PC (Doron et al. 2017)
|
181. |
Single compartment Dorsal Lateral Medium Spiny Neuron w/ NMDA and AMPA (Biddell and Johnson 2013)
|
182. |
Single-cell comprehensive biophysical model of SN pars compacta (Muddapu & Chakravarthy 2021)
|
183. |
Sloppy morphological tuning in identified neurons of the crustacean STG (Otopalik et al 2017)
|
184. |
Smoothing of, and parameter estimation from, noisy biophysical recordings (Huys & Paninski 2009)
|
185. |
Space clamp problems in neurons with voltage-gated conductances (Bar-Yehuda and Korngreen 2008)
|
186. |
Spatial summation of excitatory and inhibitory inputs in pyramidal neurons (Hao et al. 2010)
|
187. |
Spike Initiation in Neocortical Pyramidal Neurons (Mainen et al 1995)
|
188. |
Spike propagation and bouton activation in terminal arborizations (Luscher, Shiner 1990)
|
189. |
Spike-timing dependent inhibitory plasticity for gating bAPs (Wilmes et al 2017)
|
190. |
Spiking GridPlaceMap model (Pilly & Grossberg, PLoS One, 2013)
|
191. |
Spine fusion and branching affects synaptic response (Rusakov et al 1996, 1997)
|
192. |
Spiny Projection Neuron Ca2+ based plasticity is robust to in vivo spike train (Dorman&Blackwell)
|
193. |
Stochastic 3D model of neonatal rat spinal motoneuron (Ostroumov 2007)
|
194. |
Stochastic ion channels and neuronal morphology (Cannon et al. 2010)
|
195. |
Stochastic model of the olfactory cilium transduction and adaptation (Antunes et al 2014)
|
196. |
Stoney vs Histed: Quantifying spatial effects of intracortical microstims (Kumaravelu et al 2022)
|
197. |
Striatal D1R medium spiny neuron, including a subcellular DA cascade (Lindroos et al 2018)
|
198. |
Striatal NN model of MSNs and FSIs investigated effects of dopamine depletion (Damodaran et al 2015)
|
199. |
Striatal Spiny Projection Neuron, inhibition enhances spatial specificity (Dorman et al 2018)
|
200. |
Striatum D1 Striosome and Matrix Upstates (Prager et al., 2020)
|
201. |
Synaptic integration in a model of granule cells (Gabbiani et al 1994)
|
202. |
Synaptic integration in tuft dendrites of layer 5 pyramidal neurons (Larkum et al. 2009)
|
203. |
Synaptic strengths are critical in creating the proper output phasing in a CPG (Gunay et al 2019)
|
204. |
Synchronicity of fast-spiking interneurons balances medium-spiny neurons (Damodaran et al. 2014)
|
205. |
Systematic integration of data into multi-scale models of mouse primary V1 (Billeh et al 2020)
|
206. |
Thalamic reticular neurons: the role of Ca currents (Destexhe et al 1996)
|
207. |
Thalamocortical relay neuron models constrained by experiment and optimization (Iavarone et al 2019)
|
208. |
The electrodiffusive neuron-extracellular-glia (edNEG) model (Sætra et al. 2021)
|
209. |
The electrodiffusive Pinsky-Rinzel (edPR) model (Sætra et al., 2020)
|
210. |
The neocortical microcircuit collaboration portal (Markram et al. 2015)
|
211. |
Theta phase precession in a model CA3 place cell (Baker and Olds 2007)
|
212. |
Transfer properties of Neuronal Dendrites (Korogod et al 1998)
|
213. |
Using Strahler's analysis to reduce realistic models (Marasco et al, 2013)
|
214. |
Vertical system (VS) fly cells with biophysics (Dan et al 2018)
|
215. |
Visual physiology of the layer 4 cortical circuit in silico (Arkhipov et al 2018)
|
216. |
Voltage attenuation in CA1 pyramidal neuron dendrites (Golding et al 2005)
|
217. |
Voltage- and Branch-specific Climbing Fiber Responses in Purkinje Cells (Zang et al 2018)
|