The spike trains of inhibited pacemaker neurons seen through the magnifying glass of nonlinear analyses.
暂无分享,去创建一个
[1] R. FitzHugh. Impulses and Physiological States in Theoretical Models of Nerve Membrane. , 1961, Biophysical journal.
[2] G. P. Moore,et al. PACEMAKER NEURONS: EFFECTS OF REGULARLY SPACED SYNAPTIC INPUT. , 1964, Science.
[3] L. Glass,et al. Unstable dynamics of a periodically driven oscillator in the presence of noise. , 1980, Journal of theoretical biology.
[4] F. Takens. Detecting strange attractors in turbulence , 1981 .
[5] R. Pérez,et al. Fine Structure of Phase Locking , 1982 .
[6] Leon Glass,et al. Bistability, period doubling bifurcations and chaos in a periodically forced oscillator , 1982 .
[7] R. Pérez,et al. Bifurcation and chaos in a periodically stimulated cardiac oscillator , 1983 .
[8] Alvin Shrier,et al. Chaos in neurobiology , 1983, IEEE Transactions on Systems, Man, and Cybernetics.
[9] L. Glass,et al. Global bifurcations of a periodically forced biological oscillator , 1984 .
[10] M R Guevara,et al. Phase resetting of the rhythmic activity of embryonic heart cell aggregates. Experiment and theory. , 1984, Biophysical journal.
[11] P. Bergé,et al. L'ordre dans le chaos. , 1984 .
[12] G B Ermentrout,et al. Beyond a pacemaker's entrainment limit: phase walk-through. , 1984, The American journal of physiology.
[13] Mw Hirsch,et al. Chaos In Dynamical Systems , 2016 .
[14] Mark Kot,et al. Do Strange Attractors Govern Ecological Systems , 1985 .
[15] P. Rapp,et al. Dynamics of spontaneous neural activity in the simian motor cortex: The dimension of chaotic neurons , 1985 .
[16] Hatsuo Hayashi,et al. Chaotic Response of the Pacemaker Neuron , 1985 .
[17] W Buño,et al. Modulation of pacemaker activity by IPSP and brief length perturbations in the crayfish stretch receptor. , 1987, Journal of neurophysiology.
[18] Å. Edman,et al. Analysis of gated membrane currents and mechanisms of firing control in the rapidly adapting lobster stretch receptor neurone. , 1987, The Journal of physiology.
[19] Michael C. Mackey,et al. From Clocks to Chaos , 1988 .
[20] G. Mpitsos,et al. Evidence for chaos in spike trains of neurons that generate rhythmic motor patterns , 1988, Brain Research Bulletin.
[21] T. Musha,et al. Global Bifurcation Structure in Periodically Stimulated Giant Axons of Squid(Mathematical Topics in Biology) , 1989 .
[22] Martin Casdagli,et al. Nonlinear prediction of chaotic time series , 1989 .
[23] George Sugihara,et al. Nonlinear forecasting as a way of distinguishing chaos from measurement error in time series , 1990, Nature.
[24] Edward Ott,et al. Controlling chaos , 2006, Scholarpedia.
[25] G Sugihara,et al. Distinguishing error from chaos in ecological time series. , 1990, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[26] Michael Stiber,et al. PERIODIC INHIBITION OF LIVING PACEMAKER NEURONS (I): LOCKED, INTERMITTENT, MESSY, AND HOPPING BEHAVIORS , 1991 .
[27] Michael Stiber,et al. Periodic Inhibition of Living Pacemaker Neurons (ii): Influences of Driver Rates and Transients and of Nondriven Postsynaptic Rates , 1991 .
[28] M. Casdagli. Chaos and Deterministic Versus Stochastic Non‐Linear Modelling , 1992 .
[29] D. T. Kaplan,et al. Direct test for determinism in a time series. , 1992, Physical review letters.
[30] S Sato,et al. Response characteristics of the BVP neuron model to periodic pulse inputs. , 1992, Mathematical biosciences.
[31] Michael Stiber,et al. Dynamics of synaptic transfer in living and simulated neurons , 1993, IEEE International Conference on Neural Networks.
[32] André Longtin,et al. NONLINEAR FORECASTING OF SPIKE TRAINS FROM SENSORY NEURONS , 1993 .
[33] George Sugihara,et al. Fractals: A User's Guide for the Natural Sciences , 1993 .
[34] Khashayar Pakdaman,et al. Interneural delay modification synchronizes biologically plausible neural networks , 1994, Neural Networks.
[35] George Sugihara,et al. Nonlinear forecasting for the classification of natural time series , 1994, Philosophical Transactions of the Royal Society of London. Series A: Physical and Engineering Sciences.
[36] P. Rapp,et al. The algorithmic complexity of neural spike trains increases during focal seizures , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[37] Ying-Cheng Lai,et al. Controlling chaos , 1994 .
[38] J. P. Segundo,et al. Transients in the inhibitory driving of neurons and their postsynaptic consequences , 1994, Neuroscience.
[39] Hatsuo Hayashi,et al. Chaotic responses of the hippocampal CA3 region to a mossy fiber stimulation in vitro , 1995, Brain Research.
[40] André Longtin,et al. Reconstructing dynamics from neural spike trains , 1995, Proceedings of 17th International Conference of the Engineering in Medicine and Biology Society.
[41] S. Hanneton,et al. Periodically modulated inhibition and its postsynaptic consequences—I. General features. Influence of modulation frequency , 1995, Neuroscience.
[42] S. Hanneton,et al. Periodically modulated inhibition and its postsynaptic consequences—II. Influence of modulation slope, depth, range, noise and of postsynaptic natural discharges , 1995, Neuroscience.
[43] Karin Hinzer,et al. Encoding with Bursting, Subthreshold Oscillations, and Noise in Mammalian Cold Receptors , 1996, Neural Computation.
[44] G Sugihara,et al. Nonlinear control of heart rate variability in human infants. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[45] Hatsuo Hayashi,et al. Chaotic and phase-locked responses of the somatosensory cortex to a periodic medial lemniscus stimulation in the anesthetized rat , 1996, Brain Research.
[46] E Boussard,et al. Complex responses of living neurons to pacemaker inhibition: a comparison of dynamical models. , 1997, Bio Systems.
[47] A. Di Garbo,et al. Dynamics of the neural discharge in snail neurons. , 1997, Bio Systems.
[48] Kazuyuki Aihara,et al. Chaos in axons , 1998 .
[49] Michael Stiber,et al. Synaptic coding of spike trains , 1998 .
[50] Leon Glass. Chaos in neural systems , 1998 .
[51] M Stiber,et al. Periodically-modulated inhibition of living pacemaker neurons—III. The heterogeneity of the postsynaptic spike trains, and how control parameters affect it 1 Supported by funds from Trent H. Wells, Jr Inc. 1 , 1998, Neuroscience.
[52] Min Xie,et al. Are Neural Spike Trains Deterministically Chaotic or Stochastic Processes , 1994 .
[53] Khashayar Pakdaman,et al. Noise and the Neurosciences: A Long History, a Recent Revival and Some Theory , 2018, Origins.
[54] G. BARD. Beyond . a pacemaker ’ s entrainment limit : phase walk-through , .