Zeldenrust F, Chameau PJ, Wadman WJ. (2013). Reliability of spike and burst firing in thalamocortical relay cells. Journal of computational neuroscience. 35 [PubMed]

See more from authors: Zeldenrust F · Chameau PJ · Wadman WJ

References and models cited by this paper

Badel L et al. (2008). Dynamic I-V curves are reliable predictors of naturalistic pyramidal-neuron voltage traces. Journal of neurophysiology. 99 [PubMed]

Bernander O, Douglas RJ, Martin KA, Koch C. (1991). Synaptic background activity influences spatiotemporal integration in single pyramidal cells. Proceedings of the National Academy of Sciences of the United States of America. 88 [PubMed]

Bryant HL, Segundo JP. (1976). Spike initiation by transmembrane current: a white-noise analysis. The Journal of physiology. 260 [PubMed]

Cafaro J, Rieke F. (2010). Noise correlations improve response fidelity and stimulus encoding. Nature. 468 [PubMed]

Chacron MJ, Longtin A, Maler L. (2004). To burst or not to burst? Journal of computational neuroscience. 17 [PubMed]

Destexhe A, Babloyantz A, Sejnowski TJ. (1993). Ionic mechanisms for intrinsic slow oscillations in thalamic relay neurons. Biophysical journal. 65 [PubMed]

Dyhrfjeld-Johnsen J, Morgan RJ, Földy C, Soltesz I. (2008). Upregulated H-current in hyperexcitable CA1 dendrites after febrile seizures. Frontiers in cellular neuroscience. 2 [PubMed]

George MS, Abbott LF, Siegelbaum SA. (2009). HCN hyperpolarization-activated cation channels inhibit EPSPs by interactions with M-type K(+) channels. Nature neuroscience. 12 [PubMed]

Goldberg JM, Smith CE, Fernández C. (1984). Relation between discharge regularity and responses to externally applied galvanic currents in vestibular nerve afferents of the squirrel monkey. Journal of neurophysiology. 51 [PubMed]

Golding NL, Kath WL, Spruston N. (2001). Dichotomy of action-potential backpropagation in CA1 pyramidal neuron dendrites. Journal of neurophysiology. 86 [PubMed]

Gutkin B, Ermentrout GB, Rudolph M. (2003). Spike generating dynamics and the conditions for spike-time precision in cortical neurons. Journal of computational neuroscience. 15 [PubMed]

Gutkin BS, Ermentrout GB. (1998). Dynamics of membrane excitability determine interspike interval variability: a link between spike generation mechanisms and cortical spike train statistics. Neural computation. 10 [PubMed]

Hodgkin AL. (1948). The local electric changes associated with repetitive action in a non-medullated axon. The Journal of physiology. 107 [PubMed]

Huguenard JR, McCormick DA. (1992). Simulation of the currents involved in rhythmic oscillations in thalamic relay neurons. Journal of neurophysiology. 68 [PubMed]

Hunter JD, Milton JG. (2003). Amplitude and frequency dependence of spike timing: implications for dynamic regulation. Journal of neurophysiology. 90 [PubMed]

Hunter JD, Milton JG, Thomas PJ, Cowan JD. (1998). Resonance effect for neural spike time reliability. Journal of neurophysiology. 80 [PubMed]

Izhikevich EM. (2007). Dynamical Systems in Neuroscience: The Geometry of Excitability and Bursting.

Jahnsen H, Llinás R. (1984). Ionic basis for the electro-responsiveness and oscillatory properties of guinea-pig thalamic neurones in vitro. The Journal of physiology. 349 [PubMed]

Johansson RS, Birznieks I. (2004). First spikes in ensembles of human tactile afferents code complex spatial fingertip events. Nature neuroscience. 7 [PubMed]

Jolivet R, Rauch A, Lüscher HR, Gerstner W. (2006). Predicting spike timing of neocortical pyramidal neurons by simple threshold models. Journal of computational neuroscience. 21 [PubMed]

Kepecs A, Lisman J. (2003). Information encoding and computation with spikes and bursts. Network (Bristol, England). 14 [PubMed]

Kistler WM, van Hemmen JL, Gerstner W. (1997). Reduction of Hodgkin-Huxley equations to a single-variable threshold model. Neural Comput. 9

Kreuz T, Chicharro D, Greschner M, Andrzejak RG. (2011). Time-resolved and time-scale adaptive measures of spike train synchrony. Journal of neuroscience methods. 195 [PubMed]

Kreuz T, Haas JS, Morelli A, Abarbanel HD, Politi A. (2007). Measuring spike train synchrony. Journal of neuroscience methods. 165 [PubMed]

Kruskal PB, Stanis JJ, McNaughton BL, Thomas PJ. (2007). A binless correlation measure reduces the variability of memory reactivation estimates. Statistics in medicine. 26 [PubMed]

Kuznetsova MS, Higgs MH, Spain WJ. (2008). Adaptation of firing rate and spike-timing precision in the avian cochlear nucleus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 28 [PubMed]

Lesica NA, Stanley GB. (2004). Encoding of natural scene movies by tonic and burst spikes in the lateral geniculate nucleus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Lyttle D, Fellous JM. (2011). A new similarity measure for spike trains: sensitivity to bursts and periods of inhibition. Journal of neuroscience methods. 199 [PubMed]

Maccaferri G, Mangoni M, Lazzari A, DiFrancesco D. (1993). Properties of the hyperpolarization-activated current in rat hippocampal CA1 pyramidal cells. Journal of neurophysiology. 69 [PubMed]

Magee JC. (1998). Dendritic hyperpolarization-activated currents modify the integrative properties of hippocampal CA1 pyramidal neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

Mainen ZF, Sejnowski TJ. (1995). Reliability of spike timing in neocortical neurons. Science (New York, N.Y.). 268 [PubMed]

Mainen ZF, Sejnowski TJ. (1996). Influence of dendritic structure on firing pattern in model neocortical neurons. Nature. 382 [PubMed]

McCormick DA, Huguenard JR. (1992). A model of the electrophysiological properties of thalamocortical relay neurons. Journal of neurophysiology. 68 [PubMed]

Migliore M, Messineo L, Ferrante M. (2004). Dendritic Ih selectively blocks temporal summation of unsynchronized distal inputs in CA1 pyramidal neurons. Journal of computational neuroscience. 16 [PubMed]

Morris C, Lecar H. (1981). Voltage oscillations in the barnacle giant muscle fiber. Biophysical journal. 35 [PubMed]

Naud R, Gerhard F, Mensi S, Gerstner W. (2011). Improved similarity measures for small sets of spike trains. Neural computation. 23 [PubMed]

Oswald AM, Chacron MJ, Doiron B, Bastian J, Maler L. (2004). Parallel processing of sensory input by bursts and isolated spikes. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Poirazi P, Brannon T, Mel BW. (2003). Arithmetic of subthreshold synaptic summation in a model CA1 pyramidal cell. Neuron. 37 [PubMed]

Poolos NP, Migliore M, Johnston D. (2002). Pharmacological upregulation of h-channels reduces the excitability of pyramidal neuron dendrites. Nature neuroscience. 5 [PubMed]

Prescott SA, De Koninck Y, Sejnowski TJ. (2008). Biophysical basis for three distinct dynamical mechanisms of action potential initiation. PLoS computational biology. 4 [PubMed]

Prescott SA, Ratté S, De Koninck Y, Sejnowski TJ. (2006). Nonlinear interaction between shunting and adaptation controls a switch between integration and coincidence detection in pyramidal neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 26 [PubMed]

Prescott SA, Ratté S, De Koninck Y, Sejnowski TJ. (2008). Pyramidal neurons switch from integrators in vitro to resonators under in vivo-like conditions. Journal of neurophysiology. 100 [PubMed]

Principe JC, Paiva AR, Park I. (2010). A comparison of binless spike train measures Neural Computing Applications. 19(3)

Purpura K, Victor J. (1997). Metric-space analysis of spike trains: Theory, algorithms and application Comput Neural Syst. 8

Reinagel P, Godwin D, Sherman SM, Koch C. (1999). Encoding of visual information by LGN bursts. Journal of neurophysiology. 81 [PubMed]

Reinagel P, Reid RC. (2000). Temporal coding of visual information in the thalamus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Rinzel J, Ermentrout B. (1998). Analysis of neural excitability and oscillations. Methods In Neuronal Modeling 2nd Edition.

Rubin JE, Terman D. (2004). High frequency stimulation of the subthalamic nucleus eliminates pathological thalamic rhythmicity in a computational model. Journal of computational neuroscience. 16 [PubMed]

Rudolph M, Destexhe A. (2003). Tuning neocortical pyramidal neurons between integrators and coincidence detectors. Journal of computational neuroscience. 14 [PubMed]

Schneider AD, Cullen KE, Chacron MJ. (2011). In vivo conditions induce faithful encoding of stimuli by reducing nonlinear synchronization in vestibular sensory neurons. PLoS computational biology. 7 [PubMed]

Schreiber S, Fellous JM, Tiesinga P, Sejnowski TJ. (2004). Influence of ionic conductances on spike timing reliability of cortical neurons for suprathreshold rhythmic inputs. Journal of neurophysiology. 91 [PubMed]

Schreiber S, Fellous JM, Whitmer D, Tiesinga P, Sejnowski TJ. (2003). A new correlation-based measure of spike timing reliability. Neurocomputing. 52-54 [PubMed]

Schreiber S, Samengo I, Herz AV. (2009). Two distinct mechanisms shape the reliability of neural responses. Journal of neurophysiology. 101 [PubMed]

Sherman SM. (2001). Tonic and burst firing: dual modes of thalamocortical relay. Trends in neurosciences. 24 [PubMed]

Stein RB. (1967). Some models of neuronal variability. Biophysical journal. 7 [PubMed]

Stein RB, Gossen ER, Jones KE. (2005). Neuronal variability: noise or part of the signal? Nature reviews. Neuroscience. 6 [PubMed]

Steriade M, Llinás RR. (1988). The functional states of the thalamus and the associated neuronal interplay. Physiological reviews. 68 [PubMed]

Thomas PJ, Tiesinga PH, Fellous JM, Sejnowski TJ. (2003). Reliability and bifurcation in neurons driven by multiple sinusoids. Neurocomputing. 52-54 [PubMed]

Tiesinga P, Fellous JM, Sejnowski TJ. (2008). Regulation of spike timing in visual cortical circuits. Nature reviews. Neuroscience. 9 [PubMed]

Tort AB, Rotstein HG, Dugladze T, Gloveli T, Kopell NJ. (2007). On the formation of gamma-coherent cell assemblies by oriens lacunosum-moleculare interneurons in the hippocampus. Proceedings of the National Academy of Sciences of the United States of America. 104 [PubMed]

Toups JV, Fellous JM, Thomas PJ, Sejnowski TJ, Tiesinga PH. (2012). Multiple spike time patterns occur at bifurcation points of membrane potential dynamics. PLoS computational biology. 8 [PubMed]

Tuckwell HC, Wan FYM. (1982). Neuronal firing and input variability Journal Of Theoretical Neurobiology. 1

Victor JD, Purpura KP. (1996). Nature and precision of temporal coding in visual cortex: a metric-space analysis. Journal of neurophysiology. 76 [PubMed]

Zeldenrust F. (2012). Neural coding with spikes and bursts: characterizing neurons and networks with noisy input Ph.D. thesis, University of Amsterdam..

de Ruyter van Steveninck RR, Lewen GD, Strong SP, Koberle R, Bialek W. (1997). Reproducibility and variability in neural spike trains. Science (New York, N.Y.). 275 [PubMed]

van Rossum MC. (2001). A novel spike distance. Neural computation. 13 [PubMed]

van Welie I, van Hooft JA, Wadman WJ. (2004). Homeostatic scaling of neuronal excitability by synaptic modulation of somatic hyperpolarization-activated Ih channels. Proceedings of the National Academy of Sciences of the United States of America. 101 [PubMed]

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