Puccini GD, Sanchez-Vives MV, Compte A. (2006). Selective detection of abrupt input changes by integration of spike-frequency adaptation and synaptic depression in a computational network model. Journal of physiology, Paris. 100 [PubMed]

See more from authors: Puccini GD · Sanchez-Vives MV · Compte A

References and models cited by this paper

Abbott LF, Regehr WG. (2004). Synaptic computation. Nature. 431 [PubMed]

Bair W, Zohary E, Newsome WT. (2001). Correlated firing in macaque visual area MT: time scales and relationship to behavior. The Journal of neuroscience : the official journal of the Society for Neuroscience. 21 [PubMed]

Bischoff U, Vogel W, Safronov BV. (1998). Na+-activated K+ channels in small dorsal root ganglion neurones of rat. The Journal of physiology. 510 ( Pt 3) [PubMed]

Carandini M, Heeger DJ, Senn W. (2002). A synaptic explanation of suppression in visual cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Chance FS, Nelson SB, Abbott LF. (1998). Synaptic depression and the temporal response characteristics of V1 cells. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

Chung S, Li X, Nelson SB. (2002). Short-term depression at thalamocortical synapses contributes to rapid adaptation of cortical sensory responses in vivo. Neuron. 34 [PubMed]

Constantinidis C, Goldman-Rakic PS. (2002). Correlated discharges among putative pyramidal neurons and interneurons in the primate prefrontal cortex. Journal of neurophysiology. 88 [PubMed]

Descalzo VF, Nowak LG, Brumberg JC, McCormick DA, Sanchez-Vives MV. (2005). Slow adaptation in fast-spiking neurons of visual cortex. Journal of neurophysiology. 93 [PubMed]

Douglas RJ, Martin KA. (2004). Neuronal circuits of the neocortex. Annual review of neuroscience. 27 [PubMed]

Felleman DJ, Van Essen DC. (1991). Distributed hierarchical processing in the primate cerebral cortex. Cerebral cortex (New York, N.Y. : 1991). 1 [PubMed]

Fries P, Reynolds JH, Rorie AE, Desimone R. (2001). Modulation of oscillatory neuronal synchronization by selective visual attention. Science (New York, N.Y.). 291 [PubMed]

Fuhrmann G, Markram H, Tsodyks M. (2002). Spike frequency adaptation and neocortical rhythms. Journal of neurophysiology. 88 [PubMed]

Goldman MS, Maldonado P, Abbott LF. (2002). Redundancy reduction and sustained firing with stochastic depressing synapses. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Hériché JK et al. (1997). Regulation of protein phosphatase 2A by direct interaction with casein kinase 2alpha. Science (New York, N.Y.). 276 [PubMed]

Kawaguchi Y, Kubota Y. (1997). GABAergic cell subtypes and their synaptic connections in rat frontal cortex. Cerebral cortex (New York, N.Y. : 1991). 7 [PubMed]

Kepecs A, Wang XJ, Lisman J. (2002). Bursting neurons signal input slope. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Kondo T et al. (1997). Circadian rhythms in rapidly dividing cyanobacteria. Science (New York, N.Y.). 275 [PubMed]

Li YX, Bertram R, Rinzel J. (1996). Modeling N-methyl-D-aspartate-induced bursting in dopamine neurons. Neuroscience. 71 [PubMed]

Markram H, Wang Y, Tsodyks M. (1998). Differential signaling via the same axon of neocortical pyramidal neurons. Proceedings of the National Academy of Sciences of the United States of America. 95 [PubMed]

McCormick DA, Connors BW, Lighthall JW, Prince DA. (1985). Comparative electrophysiology of pyramidal and sparsely spiny stellate neurons of the neocortex. Journal of neurophysiology. 54 [PubMed]

Reyes A et al. (1998). Target-cell-specific facilitation and depression in neocortical circuits. Nature neuroscience. 1 [PubMed]

Rose CR, Kovalchuk Y, Eilers J, Konnerth A. (1999). Two-photon Na+ imaging in spines and fine dendrites of central neurons. Pflugers Archiv : European journal of physiology. 439 [PubMed]

Rudnick RL, Barth M, Horn I, McDonough WF. (2000). Rutile-bearing refractory eclogites: missing link between continents and depleted mantle Science (New York, N.Y.). 287 [PubMed]

Sanchez-Vives MV, Nowak LG, McCormick DA. (2000). Membrane mechanisms underlying contrast adaptation in cat area 17 in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Sanchez-Vives MV, Nowak LG, McCormick DA. (2000). Cellular mechanisms of long-lasting adaptation in visual cortical neurons in vitro. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Stratford KJ, Tarczy-Hornoch K, Martin KA, Bannister NJ, Jack JJ. (1996). Excitatory synaptic inputs to spiny stellate cells in cat visual cortex. Nature. 382 [PubMed]

Thomson AM. (1997). Activity-dependent properties of synaptic transmission at two classes of connections made by rat neocortical pyramidal axons in vitro. The Journal of physiology. 502 ( Pt 1) [PubMed]

Thomson AM, Deuchars J, West DC. (1993). Large, deep layer pyramid-pyramid single axon EPSPs in slices of rat motor cortex display paired pulse and frequency-dependent depression, mediated presynaptically and self-facilitation, mediated postsynaptically. Journal of neurophysiology. 70 [PubMed]

Tsodyks MV, Markram H. (1997). The neural code between neocortical pyramidal neurons depends on neurotransmitter release probability. Proceedings of the National Academy of Sciences of the United States of America. 94 [PubMed]

Varela JA et al. (1997). A quantitative description of short-term plasticity at excitatory synapses in layer 2/3 of rat primary visual cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 17 [PubMed]

Wang XJ. (1998). Calcium coding and adaptive temporal computation in cortical pyramidal neurons. Journal of neurophysiology. 79 [PubMed]

Wang XJ, Liu Y, Sanchez-Vives MV, McCormick DA. (2003). Adaptation and temporal decorrelation by single neurons in the primary visual cortex. Journal of neurophysiology. 89 [PubMed]

References and models that cite this paper
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.