Meffin H, Burkitt AN, Grayden DB. (2004). An analytical model for the "large, fluctuating synaptic conductance state" typical of neocortical neurons in vivo. Journal of computational neuroscience. 16 [PubMed]

See more from authors: Meffin H · Burkitt AN · Grayden DB

References and models cited by this paper

Abeles M, Horn D, Aviel Y, Pavlov E. (2002). Synfire chain in a balanced network Neurocomput. 44

Abramowitz M, Stegun IA. (1970). Handbook Of Mathematical Functions.

Amit DJ, Brunel N. (1997). Model of global spontaneous activity and local structured activity during delay periods in the cerebral cortex. Cerebral cortex (New York, N.Y. : 1991). 7 [PubMed]

Arieli A, Sterkin A, Grinvald A, Aertsen A. (1996). Dynamics of ongoing activity: explanation of the large variability in evoked cortical responses. Science (New York, N.Y.). 273 [PubMed]

Azouz R, Gray CM. (1999). Cellular mechanisms contributing to response variability of cortical neurons in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience. 19 [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]

Brunel N. (2000). Dynamics of sparsely connected networks of excitatory and inhibitory spiking neurons. Journal of computational neuroscience. 8 [PubMed]

Brunel N, Hakim V. (1999). Fast global oscillations in networks of integrate-and-fire neurons with low firing rates. Neural computation. 11 [PubMed]

Brunel N, Sergi S. (1998). Firing frequency of leaky intergrate-and-fire neurons with synaptic current dynamics. Journal of theoretical biology. 195 [PubMed]

Bugmann G, Taylor JG, Christodoulou C. (1997). Role of temporal integration and fluctuation detection in the highly irregular firing of a leaky integrator neuron model with partial reset. Neural Comp. 9

Burkitt AN. (2001). Balanced neurons: analysis of leaky integrate-and-fire neurons with reversal potentials. Biological cybernetics. 85 [PubMed]

Burkitt AN, Meffin H, Grayden DB. (2003). Study of neuronal gain in a conductance-based leaky integrate-and-fire neuron model with balanced excitatory and inhibitory synaptic input. Biological cybernetics. 89 [PubMed]

Chance FS, Abbott LF, Reyes AD. (2002). Gain modulation from background synaptic input. Neuron. 35 [PubMed]

Câteau H, Fukai T. (2001). Fokker-Planck approach to the pulse packet propagation in synfire chain. Neural networks : the official journal of the International Neural Network Society. 14 [PubMed]

Destexhe A. (2001). Simulations of in-vivo-like activity in neocortical neurons using fluctuating synaptic conductances http:--cns.iaf.cnrs-gif.fr-alain demos.html.

Destexhe A, Paré D. (1999). Impact of network activity on the integrative properties of neocortical pyramidal neurons in vivo. Journal of neurophysiology. 81 [PubMed]

Destexhe A, Rudolph M, Fellous JM, Sejnowski TJ. (2001). Fluctuating synaptic conductances recreate in vivo-like activity in neocortical neurons. Neuroscience. 107 [PubMed]

Diesmann M, Tetzlaff T, Giesel T. (2002). The ground state of cortical feed forward networks. Neurocomput. 44

Feng J, Brown D. (1998). Spike output jitter, mean firing time and coefficient of variation J Physiol. 31

GERSTEIN GL, MANDELBROT B. (1964). RANDOM WALK MODELS FOR THE SPIKE ACTIVITY OF A SINGLE NEURON. Biophysical journal. 4 [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]

Hines ML, Carnevale NT. (1997). The NEURON simulation environment. Neural computation. 9 [PubMed]

Häusser M, Spruston N, Stuart GJ. (2000). Diversity and dynamics of dendritic signaling. Science (New York, N.Y.). 290 [PubMed]

Johnston D, Magee JC, Colbert CM, Cristie BR. (1996). Active properties of neuronal dendrites. Annual review of neuroscience. 19 [PubMed]

Kisley MA, Gerstein GL. (1999). The continuum of operating modes for a passive model neuron. Neural computation. 11 [PubMed]

Koch C, Stemmler M, Usher M, Olami Z. (1994). Network amplification of local fluctuations causes high spike rate variability, fractal firing patterns and oscillatory local field potentials. Neural Comp. 6

Lampl I, Reichova I, Ferster D. (1999). Synchronous membrane potential fluctuations in neurons of the cat visual cortex. Neuron. 22 [PubMed]

Longtin A, Doiron B, Bulsara AR. (2002). Noise-induced divisive gain control in neuron models. Bio Systems. 67 [PubMed]

Mel BW. (1999). Why have dendrites? A computational perspective. Dendrites. Stuart G, Spruston N, and Hausser M eds..

Panzeri S, Rolls ET, Battaglia F, Lavis R. (2001). Speed of feedforward and recurrent processing in multilayer networks of integrate-and-fire neurons. Network (Bristol, England). 12 [PubMed]

Paré D, Shink E, Gaudreau H, Destexhe A, Lang EJ. (1998). Impact of spontaneous synaptic activity on the resting properties of cat neocortical pyramidal neurons In vivo. Journal of neurophysiology. 79 [PubMed]

Pongracz F, Firestein S, Shepherd GM. (1991). Electrotonic structure of olfactory sensory neurons analyzed by intracellular and whole cell patch techniques. Journal of neurophysiology. 65 [PubMed]

Press WH, Teukolsky SA, Flannery BP, Vellerling WT. (1992). Numerical Recipes In C: The Art Of Scientific Computing.

Rudolph M, Destexhe A. (2003). The discharge variability of neocortical neurons during high-conductance states. Neuroscience. 119 [PubMed]

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

Rudolph M, Destexhe A. (2003). A fast-conducting, stochastic integrative mode for neocortical neurons in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience. 23 [PubMed]

Salinas E, Sejnowski TJ. (2000). Impact of correlated synaptic input on output firing rate and variability in simple neuronal models. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Sejnowski TJ. (1995). Rapid state switching in balanced cortical network models. Network. 6

Shadlen MN, Newsome WT. (1994). Noise, neural codes and cortical organization. Current opinion in neurobiology. 4 [PubMed]

Shadlen MN, Newsome WT. (1998). The variable discharge of cortical neurons: implications for connectivity, computation, and information coding. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

Softky WR, Koch C. (1993). The highly irregular firing of cortical cells is inconsistent with temporal integration of random EPSPs. The Journal of neuroscience : the official journal of the Society for Neuroscience. 13 [PubMed]

Spruston N, Hausser M, Stuart G. (1999). Dendrites..

Spruston N, Johnston D. (1992). Perforated patch-clamp analysis of the passive membrane properties of three classes of hippocampal neurons. Journal of neurophysiology. 67 [PubMed]

Stevens CF, Zador AM. (1998). Input synchrony and the irregular firing of cortical neurons. Nature neuroscience. 1 [PubMed]

Tiesinga PH, José JV, Sejnowski TJ. (2000). Comparison of current-driven and conductance-driven neocortical model neurons with Hodgkin-Huxley voltage-gated channels. Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics. 62 [PubMed]

Traub RD, Miles R. (1991). Neuronal Networks Of The Hippocampus.

Treves A. (1993). Mean field analysis of neuronal spike dynamics. Network. 4

Troyer TW, Miller KD. (1997). Physiological gain leads to high ISI variability in a simple model of a cortical regular spiking cell. Neural computation. 9 [PubMed]

Tsodyks M, Kenet T, Grinvald A, Arieli A. (1999). Linking spontaneous activity of single cortical neurons and the underlying functional architecture. Science (New York, N.Y.). 286 [PubMed]

Tuckwell HC. (1988). Introduction to Theoretical Neurobiology. Volume 2: Nonlinear and Stochastic Theories .

Tuckwell HC. (1988). Introduction To Theoretical Neurobiology: Vol 1, Linear Cable Theory And Dendritic Structure. 1

Van_kampen NG. (1992). Stochastic Processes In Physics And Chemistry.

Wang X et al. (2000). AUTO2000: Continuation and Bifurcation Software for ODEs. http:--www.ama.caltech.edu- redrod-auto2000-distribution.

Williams SR, Stuart GJ. (2000). Site independence of EPSP time course is mediated by dendritic I(h) in neocortical pyramidal neurons. Journal of neurophysiology. 83 [PubMed]

Williams SR, Stuart GJ. (2002). Dependence of EPSP efficacy on synapse location in neocortical pyramidal neurons. Science (New York, N.Y.). 295 [PubMed]

van Rossum MC, Turrigiano GG, Nelson SB. (2002). Fast propagation of firing rates through layered networks of noisy neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

van Vreeswijk C, Sompolinsky H. (1996). Chaos in neuronal networks with balanced excitatory and inhibitory activity. Science (New York, N.Y.). 274 [PubMed]

van Vreeswijk C, Sompolinsky H. (1998). Chaotic balanced state in a model of cortical circuits. Neural computation. 10 [PubMed]

References and models that cite this paper

Cavallari S, Panzeri S, Mazzoni A. (2014). Comparison of the dynamics of neural interactions between current-based and conductance-based integrate-and-fire recurrent networks. Frontiers in neural circuits. 8 [PubMed]

Câteau H, Reyes AD. (2006). Relation between single neuron and population spiking statistics and effects on network activity. Physical review letters. 96 [PubMed]

Kumar A, Schrader S, Aertsen A, Rotter S. (2008). The high-conductance state of cortical networks. Neural computation. 20 [PubMed]

Muller E, Buesing L, Schemmel J, Meier K. (2007). Spike-frequency adapting neural ensembles: beyond mean adaptation and renewal theories. Neural computation. 19 [PubMed]

Richardson MJ, Gerstner W. (2005). Synaptic shot noise and conductance fluctuations affect the membrane voltage with equal significance. Neural computation. 17 [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.