Genet S, Delord B. (2002). A biophysical model of nonlinear dynamics underlying plateau potentials and calcium spikes in purkinje cell dendrites. Journal of neurophysiology. 88 [PubMed]

See more from authors: Genet S · Delord B

References and models cited by this paper

Baginskas A, Gutman A, Svirskis G. (1993). Bi-stable dendrite in constant electric field: a model analysis. Neuroscience. 53 [PubMed]

Barto AG, Fagg AH, Sitkoff N, Houk JC. (1999). A cerebellar model of timing and prediction in the control of reaching. Neural computation. 11 [PubMed]

Callaway JC, Lasser-Ross N, Ross WN. (1995). IPSPs strongly inhibit climbing fiber-activated [Ca2+]i increases in the dendrites of cerebellar Purkinje neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 15 [PubMed]

Campbell NC, Ekerot CF, Hesslow G, Oscarsson O. (1983). Dendritic plateau potentials evoked in Purkinje cells by parallel fibre volleys in the cat. The Journal of physiology. 340 [PubMed]

Chen C, Thompson RF. (1992). Temporal specificity of long-term depression in parallel fiber-Purkinje synapses in rat cerebellar slices Learn Memory. 2

Cohen D, Yarom Y. (1998). Patches of synchronized activity in the cerebellar cortex evoked by mossy-fiber stimulation: questioning the role of parallel fibers. Proceedings of the National Academy of Sciences of the United States of America. 95 [PubMed]

Daniel H, Levenes C, Crépel F. (1998). Cellular mechanisms of cerebellar LTD. Trends in neurosciences. 21 [PubMed]

De Schutter E, Bower JM. (1994). An active membrane model of the cerebellar Purkinje cell. I. Simulation of current clamps in slice. Journal of neurophysiology. 71 [PubMed]

Eccles JC, Llinás R, Sasaki K. (1966). The excitatory synaptic action of climbing fibres on the Purkinje cells of the cerebellum. The Journal of physiology. 182 [PubMed]

Ekerot CF, Kano M. (1985). Long-term depression of parallel fibre synapses following stimulation of climbing fibres. Brain research. 342 [PubMed]

Ekerot CF, Oscarsson O. (1981). Prolonged depolarization elicited in Purkinje cell dendrites by climbing fibre impulses in the cat. The Journal of physiology. 318 [PubMed]

Fierro L, Llano I. (1996). High endogenous calcium buffering in Purkinje cells from rat cerebellar slices. The Journal of physiology. 496 ( Pt 3) [PubMed]

Genet S, Kado RT. (1997). Hyperpolarizing current of the Na/K ATPase contributes to the membrane polarization of the Purkinje cell in rat cerebellum. Pflugers Archiv : European journal of physiology. 434 [PubMed]

Gruol DL, Dionne VE, Yool AJ. (1989). Multiple voltage-sensitive K+ channels regulate dendritic excitability in cerebellar Purkinje neurons. Neuroscience letters. 97 [PubMed]

Gruol DL, Jacquin T, Yool AJ. (1991). Single-channel K+ currents recorded from the somatic and dendritic regions of cerebellar Purkinje neurons in culture. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Gähwiler BH, Llano I. (1989). Sodium and potassium conductances in somatic membranes of rat Purkinje cells from organotypic cerebellar cultures. The Journal of physiology. 417 [PubMed]

Hansel C, Linden DJ, D'Angelo E. (2001). Beyond parallel fiber LTD: the diversity of synaptic and non-synaptic plasticity in the cerebellum. Nature neuroscience. 4 [PubMed]

Hesslow G, Svensson P, Ivarsson M. (1999). Learned movements elicited by direct stimulation of cerebellar mossy fiber afferents. Neuron. 24 [PubMed]

Hille B. (1992). Potassium channels and chloride channels Ionic Channels of Excitable Membrane.

Hirano T. (1991). Differential pre- and postsynaptic mechanisms for synaptic potentiation and depression between a granule cell and a Purkinje cell in rat cerebellar culture. Synapse (New York, N.Y.). 7 [PubMed]

Houk JC, Buckingham JT, Barto AG. (1996). Models of the cerebellum and motor learning. Behav Brain Sci. 19

Inoue M et al. (1993). Mathematical Biology..

Ito M. (1984). The Cerebellum And Neural Control.

Jacquin TD, Gruol DL. (1999). Ca2+ regulation of a large conductance K+ channel in cultured rat cerebellar Purkinje neurons. The European journal of neuroscience. 11 [PubMed]

Jaeger D, Bower JM. (1994). Prolonged responses in rat cerebellar Purkinje cells following activation of the granule cell layer: an intracellular in vitro and in vivo investigation. Experimental brain research. 100 [PubMed]

Kaneda M, Wakamori M, Ito C, Akaike N. (1990). Low-threshold calcium current in isolated Purkinje cell bodies of rat cerebellum. Journal of neurophysiology. 63 [PubMed]

Lev-Ram V, Miyakawa H, Lasser-Ross N, Ross WN. (1992). Calcium transients in cerebellar Purkinje neurons evoked by intracellular stimulation. Journal of neurophysiology. 68 [PubMed]

Llinás R, Sugimori M. (1980). Electrophysiological properties of in vitro Purkinje cell dendrites in mammalian cerebellar slices. The Journal of physiology. 305 [PubMed]

Llinás R, Sugimori M. (1980). Electrophysiological properties of in vitro Purkinje cell somata in mammalian cerebellar slices. The Journal of physiology. 305 [PubMed]

Llinás R, Sugimori M, Lin JW, Cherksey B. (1989). Blocking and isolation of a calcium channel from neurons in mammals and cephalopods utilizing a toxin fraction (FTX) from funnel-web spider poison. Proceedings of the National Academy of Sciences of the United States of America. 86 [PubMed]

Maeda H, Ellis-Davies GC, Ito K, Miyashita Y, Kasai H. (1999). Supralinear Ca2+ signaling by cooperative and mobile Ca2+ buffering in Purkinje neurons. Neuron. 24 [PubMed]

Marr D. (1969). A theory of cerebellar cortex. The Journal of physiology. 202 [PubMed]

Mattheij RM, Molenaar J. (1996). Ordinary Differential Equations in Theory and Practice..

Mauk MD, Medina JF, Nores WL, Ohyama T. (2000). Cerebellar function: coordination, learning or timing? Current biology : CB. 10 [PubMed]

McCormick DA, Thompson RF. (1984). Cerebellum: essential involvement in the classically conditioned eyelid response. Science (New York, N.Y.). 223 [PubMed]

Medina JF, Mauk MD. (2000). Computer simulation of cerebellar information processing. Nature neuroscience. 3 Suppl [PubMed]

Medina JF, Nores WL, Ohyama T, Mauk MD. (2000). Mechanisms of cerebellar learning suggested by eyelid conditioning. Current opinion in neurobiology. 10 [PubMed]

Midtgaard J. (1995). Spatial synaptic integration in Purkinje cell dendrites. Journal of physiology, Paris. 89 [PubMed]

Midtgaard J, Lasser-Ross N, Ross WN. (1993). Spatial distribution of Ca2+ influx in turtle Purkinje cell dendrites in vitro: role of a transient outward current. Journal of neurophysiology. 70 [PubMed]

Miyakawa H, Lev-Ram V, Lasser-Ross N, Ross WN. (1992). Calcium transients evoked by climbing fiber and parallel fiber synaptic inputs in guinea pig cerebellar Purkinje neurons. Journal of neurophysiology. 68 [PubMed]

Miyasho T et al. (2001). Low-threshold potassium channels and a low-threshold calcium channel regulate Ca2+ spike firing in the dendrites of cerebellar Purkinje neurons: a modeling study. Brain research. 891 [PubMed]

Regan LJ. (1991). Voltage-dependent calcium currents in Purkinje cells from rat cerebellar vermis. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Sakurai M. (1987). Synaptic modification of parallel fibre-Purkinje cell transmission in in vitro guinea-pig cerebellar slices. The Journal of physiology. 394 [PubMed]

Sala F, Hernández-Cruz A. (1990). Calcium diffusion modeling in a spherical neuron. Relevance of buffering properties. Biophysical journal. 57 [PubMed]

Segev I, Yarom Y, Rapp M. (1992). The impact of parallel fiber background activity on the cable properties of cerebellar Purkinje cells Neural Comput. 4

Shelton DP. (1985). Membrane resistivity estimated for the Purkinje neuron by means of a passive computer model. Neuroscience. 14 [PubMed]

Stuart G, Häusser M. (1994). Initiation and spread of sodium action potentials in cerebellar Purkinje cells. Neuron. 13 [PubMed]

Sugimori M, Llinas RR. (1992). The electrophysiology of the cerebellar Purkinje cell revisited The Cerebellum Revisited.

Svensson P, Ivarsson M. (1999). Short-lasting conditioned stimulus applied to the middle cerebellar peduncle elicits delayed conditioned eye blink responses in the decerebrate ferret. The European journal of neuroscience. 11 [PubMed]

Terasaki M, Slater NT, Fein A, Schmidek A, Reese TS. (1994). Continuous network of endoplasmic reticulum in cerebellar Purkinje neurons. Proceedings of the National Academy of Sciences of the United States of America. 91 [PubMed]

Thompson RF. (1990). Neural mechanisms of classical conditioning in mammals. Philosophical transactions of the Royal Society of London. Series B, Biological sciences. 329 [PubMed]

Usowicz MM, Sugimori M, Cherksey B, Llinás R. (1992). P-type calcium channels in the somata and dendrites of adult cerebellar Purkinje cells. Neuron. 9 [PubMed]

Wang SS, Denk W, Häusser M. (2000). Coincidence detection in single dendritic spines mediated by calcium release. Nature neuroscience. 3 [PubMed]

Wang Y, Strahlendorf JC, Strahlendorf HK. (1991). A transient voltage-dependent outward potassium current in mammalian cerebellar Purkinje cells. Brain research. 567 [PubMed]

Yuen GL, Hockberger PE, Houk JC. (1995). Bistability in cerebellar Purkinje cell dendrites modelled with high-threshold calcium and delayed-rectifier potassium channels. Biological cybernetics. 73 [PubMed]

References and models that cite this paper

Elbasiouny SM, Mushahwar VK. (2007). Suppressing the excitability of spinal motoneurons by extracellularly applied electrical fields: insights from computer simulations. Journal of applied physiology (Bethesda, Md. : 1985). 103 [PubMed]

Fernandez FR, Engbers JD, Turner RW. (2007). Firing dynamics of cerebellar purkinje cells. Journal of neurophysiology. 98 [PubMed]

Genet S, Sabarly L, Guigon E, Berry H, Delord B. (2010). Dendritic signals command firing dynamics in a mathematical model of cerebellar Purkinje cells. Biophysical journal. 99 [PubMed]

Loewenstein Y et al. (2005). Bistability of cerebellar Purkinje cells modulated by sensory stimulation. Nature neuroscience. 8 [PubMed]

Masurkar AV, Chen WR. (2011). Calcium currents of olfactory bulb juxtaglomerular cells: profile and multiple conductance plateau potential simulation. Neuroscience. 192 [PubMed]

Masurkar AV, Chen WR. (2011). Potassium currents of olfactory bulb juxtaglomerular cells: characterization, simulation, and implications for plateau potential firing. Neuroscience. 192 [PubMed]

This website requires cookies and limited processing of your personal data in order to function. By continuing to browse or otherwise use this site, you are agreeing to this use. See our Privacy policy and how to cite and terms of use.