E De Schutter, J M Bower. J Neurophysiol 1994
Times Cited: 132
Times Cited: 132
Times Cited
Times Co-cited
Similarity
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
59
Electrophysiological properties of in vitro Purkinje cell dendrites in mammalian cerebellar slices.
R Llinás, M Sugimori. J Physiol 1980
R Llinás, M Sugimori. J Physiol 1980
35
Electrophysiological properties of in vitro Purkinje cell somata in mammalian cerebellar slices.
R Llinás, M Sugimori. J Physiol 1980
R Llinás, M Sugimori. J Physiol 1980
26
The role of synaptic and voltage-gated currents in the control of Purkinje cell spiking: a modeling study.
D Jaeger, E De Schutter, J M Bower. J Neurosci 1997
D Jaeger, E De Schutter, J M Bower. J Neurosci 1997
27
Simulated responses of cerebellar Purkinje cells are independent of the dendritic location of granule cell synaptic inputs.
E De Schutter, J M Bower. Proc Natl Acad Sci U S A 1994
E De Schutter, J M Bower. Proc Natl Acad Sci U S A 1994
26
Physiology, morphology and detailed passive models of guinea-pig cerebellar Purkinje cells.
M Rapp, I Segev, Y Yarom. J Physiol 1994
M Rapp, I Segev, Y Yarom. J Physiol 1994
20
Properties of unitary granule cell-->Purkinje cell synapses in adult rat cerebellar slices.
Philippe Isope, Boris Barbour. J Neurosci 2002
Philippe Isope, Boris Barbour. J Neurosci 2002
20
Integration of quanta in cerebellar granule cells during sensory processing.
Paul Chadderton, Troy W Margrie, Michael Häusser. Nature 2004
Paul Chadderton, Troy W Margrie, Michael Häusser. Nature 2004
20
Low-threshold potassium channels and a low-threshold calcium channel regulate Ca2+ spike firing in the dendrites of cerebellar Purkinje neurons: a modeling study.
T Miyasho, H Takagi, H Suzuki, S Watanabe, M Inoue, Y Kudo, H Miyakawa. Brain Res 2001
T Miyasho, H Takagi, H Suzuki, S Watanabe, M Inoue, Y Kudo, H Miyakawa. Brain Res 2001
35
Tonic synaptic inhibition modulates neuronal output pattern and spatiotemporal synaptic integration.
M Häusser, B A Clark. Neuron 1997
M Häusser, B A Clark. Neuron 1997
18
Compartmental models of rat cerebellar Purkinje cells based on simultaneous somatic and dendritic patch-clamp recordings.
A Roth, M Häusser. J Physiol 2001
A Roth, M Häusser. J Physiol 2001
18
Cerebellar LTD and pattern recognition by Purkinje cells.
Volker Steuber, Wolfgang Mittmann, Freek E Hoebeek, R Angus Silver, Chris I De Zeeuw, Michael Häusser, Erik De Schutter. Neuron 2007
Volker Steuber, Wolfgang Mittmann, Freek E Hoebeek, R Angus Silver, Chris I De Zeeuw, Michael Häusser, Erik De Schutter. Neuron 2007
18
Synaptic control of spiking in cerebellar Purkinje cells: dynamic current clamp based on model conductances.
D Jaeger, J M Bower. J Neurosci 1999
D Jaeger, J M Bower. J Neurosci 1999
20
Patches of synchronized activity in the cerebellar cortex evoked by mossy-fiber stimulation: questioning the role of parallel fibers.
D Cohen, Y Yarom. Proc Natl Acad Sci U S A 1998
D Cohen, Y Yarom. Proc Natl Acad Sci U S A 1998
16
Synaptic currents evoked in Purkinje cells by stimulating individual granule cells.
B Barbour. Neuron 1993
B Barbour. Neuron 1993
16
Congruence of spatial organization of tactile projections to granule cell and Purkinje cell layers of cerebellar hemispheres of the albino rat: vertical organization of cerebellar cortex.
J M Bower, D C Woolston. J Neurophysiol 1983
J M Bower, D C Woolston. J Neurophysiol 1983
16
Dendritic voltage and calcium-gated channels amplify the variability of postsynaptic responses in a Purkinje cell model.
E De Schutter. J Neurophysiol 1998
E De Schutter. J Neurophysiol 1998
50
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
15
Quantitative Golgi study of the rat cerebellar molecular layer interneurons using principal component analysis.
F Sultan, J M Bower. J Comp Neurol 1998
F Sultan, J M Bower. J Comp Neurol 1998
14
14
Bistability of cerebellar Purkinje cells modulated by sensory stimulation.
Yonatan Loewenstein, Séverine Mahon, Paul Chadderton, Kazuo Kitamura, Haim Sompolinsky, Yosef Yarom, Michael Häusser. Nat Neurosci 2005
Yonatan Loewenstein, Séverine Mahon, Paul Chadderton, Kazuo Kitamura, Haim Sompolinsky, Yosef Yarom, Michael Häusser. Nat Neurosci 2005
14
Initiation and spread of sodium action potentials in cerebellar Purkinje cells.
G Stuart, M Häusser. Neuron 1994
G Stuart, M Häusser. Neuron 1994
13
Coincidence detection in single dendritic spines mediated by calcium release.
S S Wang, W Denk, M Häusser. Nat Neurosci 2000
S S Wang, W Denk, M Häusser. Nat Neurosci 2000
13
Cerebellar long-term depression: characterization, signal transduction, and functional roles.
M Ito. Physiol Rev 2001
M Ito. Physiol Rev 2001
13
The detection and generation of sequences as a key to cerebellar function: experiments and theory.
V Braitenberg, D Heck, F Sultan. Behav Brain Sci 1997
V Braitenberg, D Heck, F Sultan. Behav Brain Sci 1997
12
Prolonged responses in rat cerebellar Purkinje cells following activation of the granule cell layer: an intracellular in vitro and in vivo investigation.
D Jaeger, J M Bower. Exp Brain Res 1994
D Jaeger, J M Bower. Exp Brain Res 1994
15
Climbing fibre induced depression of both mossy fibre responsiveness and glutamate sensitivity of cerebellar Purkinje cells.
M Ito, M Sakurai, P Tongroach. J Physiol 1982
M Ito, M Sakurai, P Tongroach. J Physiol 1982
12
The organization of cerebellar cortical circuitry revisited: implications for function.
James M Bower. Ann N Y Acad Sci 2002
James M Bower. Ann N Y Acad Sci 2002
14
Synchronization of golgi and granule cell firing in a detailed network model of the cerebellar granule cell layer.
R Maex, E De Schutter. J Neurophysiol 1998
R Maex, E De Schutter. J Neurophysiol 1998
11
Ascending granule cell axon: an important component of cerebellar cortical circuitry.
G Gundappa-Sulur, E De Schutter, J M Bower. J Comp Neurol 1999
G Gundappa-Sulur, E De Schutter, J M Bower. J Comp Neurol 1999
13
Spatially resolved calcium dynamics of mammalian Purkinje cells in cerebellar slice.
D W Tank, M Sugimori, J A Connor, R R Llinás. Science 1988
D W Tank, M Sugimori, J A Connor, R R Llinás. Science 1988
11
Computer simulation of cerebellar information processing.
J F Medina, M D Mauk. Nat Neurosci 2000
J F Medina, M D Mauk. Nat Neurosci 2000
11
Membrane potential bistability is controlled by the hyperpolarization-activated current I(H) in rat cerebellar Purkinje neurons in vitro.
Stephen R Williams, Soren R Christensen, Greg J Stuart, Michael Häusser. J Physiol 2002
Stephen R Williams, Soren R Christensen, Greg J Stuart, Michael Häusser. J Physiol 2002
11
Optimal information storage and the distribution of synaptic weights: perceptron versus Purkinje cell.
Nicolas Brunel, Vincent Hakim, Philippe Isope, Jean-Pierre Nadal, Boris Barbour. Neuron 2004
Nicolas Brunel, Vincent Hakim, Philippe Isope, Jean-Pierre Nadal, Boris Barbour. Neuron 2004
11
Regular patterns in cerebellar Purkinje cell simple spike trains.
Soon-Lim Shin, Freek E Hoebeek, Martijn Schonewille, Chris I De Zeeuw, Ad Aertsen, Erik De Schutter. PLoS One 2007
Soon-Lim Shin, Freek E Hoebeek, Martijn Schonewille, Chris I De Zeeuw, Ad Aertsen, Erik De Schutter. PLoS One 2007
14
Signal transmission in the parallel fiber-Purkinje cell system visualized by high-resolution imaging.
I Vranesic, T Iijima, M Ichikawa, G Matsumoto, T Knöpfel. Proc Natl Acad Sci U S A 1994
I Vranesic, T Iijima, M Ichikawa, G Matsumoto, T Knöpfel. Proc Natl Acad Sci U S A 1994
18
Oscillatory activity in the cerebellar hemispheres of unrestrained rats.
M J Hartmann, J M Bower. J Neurophysiol 1998
M J Hartmann, J M Bower. J Neurophysiol 1998
10
Morphology of parallel fibres in the cerebellar cortex of the rat: an experimental light and electron microscopic study with biocytin.
C Pichitpornchai, J A Rawson, S Rees. J Comp Neurol 1994
C Pichitpornchai, J A Rawson, S Rees. J Comp Neurol 1994
10
Differential roles of two types of voltage-gated Ca2+ channels in the dendrites of rat cerebellar Purkinje neurons.
S Watanabe, H Takagi, T Miyasho, M Inoue, Y Kirino, Y Kudo, H Miyakawa. Brain Res 1998
S Watanabe, H Takagi, T Miyasho, M Inoue, Y Kirino, Y Kudo, H Miyakawa. Brain Res 1998
27
Number of parallel fiber synapses on an individual Purkinje cell in the cerebellum of the rat.
R M Napper, R J Harvey. J Comp Neurol 1988
R M Napper, R J Harvey. J Comp Neurol 1988
10
Is the cerebellum sensory for motor's sake, or motor for sensory's sake: the view from the whiskers of a rat?
J M Bower. Prog Brain Res 1997
J M Bower. Prog Brain Res 1997
10
Tactile responses in the granule cell layer of cerebellar folium crus IIa of freely behaving rats.
M J Hartmann, J M Bower. J Neurosci 2001
M J Hartmann, J M Bower. J Neurosci 2001
16
Modulatory effects of parallel fiber and molecular layer interneuron synaptic activity on purkinje cell responses to ascending segment input: a modeling study.
F Santamaria, D Jaeger, E De Schutter, J M Bower. J Comput Neurosci 2002
F Santamaria, D Jaeger, E De Schutter, J M Bower. J Comput Neurosci 2002
38
Beyond parallel fiber LTD: the diversity of synaptic and non-synaptic plasticity in the cerebellum.
C Hansel, D J Linden, E D'Angelo. Nat Neurosci 2001
C Hansel, D J Linden, E D'Angelo. Nat Neurosci 2001
10
Dynamic organization of motor control within the olivocerebellar system.
J P Welsh, E J Lang, I Suglhara, R Llinás. Nature 1995
J P Welsh, E J Lang, I Suglhara, R Llinás. Nature 1995
9
Ionic currents underlying spontaneous action potentials in isolated cerebellar Purkinje neurons.
I M Raman, B P Bean. J Neurosci 1999
I M Raman, B P Bean. J Neurosci 1999
9
P-type calcium channels in the somata and dendrites of adult cerebellar Purkinje cells.
M M Usowicz, M Sugimori, B Cherksey, R Llinás. Neuron 1992
M M Usowicz, M Sugimori, B Cherksey, R Llinás. Neuron 1992
9
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.