R D Traub, R K Wong, R Miles, H Michelson. J Neurophysiol 1991
Times Cited: 396
Times Cited: 396
Times Cited
Times Co-cited
Similarity
A quantitative description of membrane current and its application to conduction and excitation in nerve.
A L HODGKIN, A F HUXLEY. J Physiol 1952
A L HODGKIN, A F HUXLEY. J Physiol 1952
41
Intrinsic and network rhythmogenesis in a reduced Traub model for CA3 neurons.
P F Pinsky, J Rinzel. J Comput Neurosci 1994
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25
Gamma oscillation by synaptic inhibition in a hippocampal interneuronal network model.
X J Wang, G Buzsáki. J Neurosci 1996
X J Wang, G Buzsáki. J Neurosci 1996
14
Influence of dendritic structure on firing pattern in model neocortical neurons.
Z F Mainen, T J Sejnowski. Nature 1996
Z F Mainen, T J Sejnowski. Nature 1996
9
Reconstruction and Simulation of Neocortical Microcircuitry.
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9
Alternative to hand-tuning conductance-based models: construction and analysis of databases of model neurons.
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8
Computer simulations of morphologically reconstructed CA3 hippocampal neurons.
M Migliore, E P Cook, D B Jaffe, D A Turner, D Johnston. J Neurophysiol 1995
M Migliore, E P Cook, D B Jaffe, D A Turner, D Johnston. J Neurophysiol 1995
8
A model of spindle rhythmicity in the isolated thalamic reticular nucleus.
A Destexhe, D Contreras, T J Sejnowski, M Steriade. J Neurophysiol 1994
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8
Synthesis of models for excitable membranes, synaptic transmission and neuromodulation using a common kinetic formalism.
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A Destexhe, Z F Mainen, T J Sejnowski. J Comput Neurosci 1994
7
A branching dendritic model of a rodent CA3 pyramidal neurone.
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7
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Jun Xu, Colleen E Clancy. PLoS One 2008
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22
A model of the electrophysiological properties of thalamocortical relay neurons.
D A McCormick, J R Huguenard. J Neurophysiol 1992
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7
An active membrane model of the cerebellar Purkinje cell. I. Simulation of current clamps in slice.
E De Schutter, J M Bower. J Neurophysiol 1994
E De Schutter, J M Bower. J Neurophysiol 1994
7
A novel multiple objective optimization framework for constraining conductance-based neuron models by experimental data.
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7
Ionic mechanisms underlying synchronized oscillations and propagating waves in a model of ferret thalamic slices.
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A Destexhe, T Bal, D A McCormick, T J Sejnowski. J Neurophysiol 1996
7
Which model to use for cortical spiking neurons?
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7
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7
Single-column thalamocortical network model exhibiting gamma oscillations, sleep spindles, and epileptogenic bursts.
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6
Thalamocortical oscillations in the sleeping and aroused brain.
M Steriade, D A McCormick, T J Sejnowski. Science 1993
M Steriade, D A McCormick, T J Sejnowski. Science 1993
6
Synaptic integration in tuft dendrites of layer 5 pyramidal neurons: a new unifying principle.
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Model of thalamocortical slow-wave sleep oscillations and transitions to activated States.
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6
6
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6
6
Fast rhythmic bursting can be induced in layer 2/3 cortical neurons by enhancing persistent Na+ conductance or by blocking BK channels.
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5
Minimal Hodgkin-Huxley type models for different classes of cortical and thalamic neurons.
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5
Seizure-like afterdischarges simulated in a model neuron.
H Kager, W J Wadman, G G Somjen. J Comput Neurosci 2007
H Kager, W J Wadman, G G Somjen. J Comput Neurosci 2007
9
Reduced compartmental models of neocortical pyramidal cells.
P C Bush, T J Sejnowski. J Neurosci Methods 1993
P C Bush, T J Sejnowski. J Neurosci Methods 1993
6
State-dependent dendritic computation in hippocampal CA1 pyramidal neurons.
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Sonia Gasparini, Jeffrey C Magee. J Neurosci 2006
5
The local electric changes associated with repetitive action in a non-medullated axon.
A L Hodgkin. J Physiol 1948
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5
Dendritic discrimination of temporal input sequences in cortical neurons.
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Tiago Branco, Beverley A Clark, Michael Häusser. Science 2010
5
Phase relationship between hippocampal place units and the EEG theta rhythm.
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5
Pacemaker neurons for the theta rhythm and their synchronization in the septohippocampal reciprocal loop.
Xiao-Jing Wang. J Neurophysiol 2002
Xiao-Jing Wang. J Neurophysiol 2002
5
A comparative survey of automated parameter-search methods for compartmental neural models.
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M C Vanier, J M Bower. J Comput Neurosci 1999
5
Exploring parameter space in detailed single neuron models: simulations of the mitral and granule cells of the olfactory bulb.
U S Bhalla, J M Bower. J Neurophysiol 1993
U S Bhalla, J M Bower. J Neurophysiol 1993
5
Ion concentration dynamics as a mechanism for neuronal bursting.
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8
Voltage dependence of NMDA-activated macroscopic conductances predicted by single-channel kinetics.
C E Jahr, C F Stevens. J Neurosci 1990
C E Jahr, C F Stevens. J Neurosci 1990
5
Similar network activity from disparate circuit parameters.
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Simulated seizures and spreading depression in a neuron model incorporating interstitial space and ion concentrations.
H Kager, W J Wadman, G G Somjen. J Neurophysiol 2000
H Kager, W J Wadman, G G Somjen. J Neurophysiol 2000
5
A new cellular mechanism for coupling inputs arriving at different cortical layers.
M E Larkum, J J Zhu, B Sakmann. Nature 1999
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5
Computational subunits in thin dendrites of pyramidal cells.
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Cellular and network mechanisms of slow oscillatory activity (<1 Hz) and wave propagations in a cortical network model.
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Albert Compte, Maria V Sanchez-Vives, David A McCormick, Xiao-Jing Wang. J Neurophysiol 2003
5
Impulses and Physiological States in Theoretical Models of Nerve Membrane.
R Fitzhugh. Biophys J 1961
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5
Contribution of persistent Na+ current and M-type K+ current to somatic bursting in CA1 pyramidal cells: combined experimental and modeling study.
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Computational reconstruction of pacemaking and intrinsic electroresponsiveness in cerebellar Golgi cells.
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Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.