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]

See more from authors: Varela JA · Sen K · Gibson J · Fost J · Abbott LF · Nelson SB

References and models cited by this paper

Betz WJ. (1970). Depression of transmitter release at the neuromuscular junction of the frog. The Journal of physiology. 206 [PubMed]

Bode-Greuel KM, Singer W, Aldenhoff JB. (1987). A current source density analysis of field potentials evoked in slices of visual cortex. Experimental brain research. 69 [PubMed]

Bonds AB. (1991). Temporal dynamics of contrast gain in single cells of the cat striate cortex. Visual neuroscience. 6 [PubMed]

Bookman RJ, Herrington J, Norton KR. (1995). Pulse Control V4 5 Igor Xops For Patch Clamp Data Acquisition And Capacitance Measurements. 4

Castro-Alamancos MA, Connors BW. (1996). Spatiotemporal properties of short-term plasticity sensorimotor thalamocortical pathways of the rat. The Journal of neuroscience : the official journal of the Society for Neuroscience. 16 [PubMed]

DEL CASTILLO J, KATZ B. (1954). Statistical factors involved in neuromuscular facilitation and depression. The Journal of physiology. 124 [PubMed]

Debanne D, Guérineau NC, Gähwiler BH, Thompson SM. (1996). Paired-pulse facilitation and depression at unitary synapses in rat hippocampus: quantal fluctuation affects subsequent release. The Journal of physiology. 491 ( Pt 1) [PubMed]

Deisz RA, Fortin G, Zieglgänsberger W. (1991). Voltage dependence of excitatory postsynaptic potentials of rat neocortical neurons. Journal of neurophysiology. 65 [PubMed]

Deisz RA, Prince DA. (1989). Frequency-dependent depression of inhibition in guinea-pig neocortex in vitro by GABAB receptor feed-back on GABA release. The Journal of physiology. 412 [PubMed]

Domenici L, Harding GW, Burkhalter A. (1995). Patterns of synaptic activity in forward and feedback pathways within rat visual cortex. Journal of neurophysiology. 74 [PubMed]

Ferster D. (1994). Linearity of synaptic interactions in the assembly of receptive fields in cat visual cortex. Current opinion in neurobiology. 4 [PubMed]

Finlayson PG, Cynader MS. (1995). Synaptic depression in visual cortex tissue slices: an in vitro model for cortical neuron adaptation. Experimental brain research. 106 [PubMed]

Fisher SA, Fischer TM, Carew TJ. (1997). Multiple overlapping processes underlying short-term synaptic enhancement. Trends in neurosciences. 20 [PubMed]

Giaschi D, Douglas R, Marlin S, Cynader M. (1993). The time course of direction-selective adaptation in simple and complex cells in cat striate cortex. Journal of neurophysiology. 70 [PubMed]

Grossberg S. (1984). Some psychophysiological and pharmacological correlates of a developmental, cognitive, and motivational theory Brain And Information: Event Related Potentials.

Hawken MJ, Shapley RM, Grosof DH. (1996). Temporal-frequency selectivity in monkey visual cortex. Visual neuroscience. 13 [PubMed]

Hess G, Aizenman CD, Donoghue JP. (1996). Conditions for the induction of long-term potentiation in layer II/III horizontal connections of the rat motor cortex. Journal of neurophysiology. 75 [PubMed]

Hestrin S. (1992). Activation and desensitization of glutamate-activated channels mediating fast excitatory synaptic currents in the visual cortex. Neuron. 9 [PubMed]

Hirsch JA, Gilbert CD. (1991). Synaptic physiology of horizontal connections in the cat's visual cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Ho WA, Berkley MA. (1988). Evoked potential estimates of the time course of adaptation and recovery to counterphase gratings. Vision research. 28 [PubMed]

Jagadeesh B, Wheat HS, Ferster D. (1993). Linearity of summation of synaptic potentials underlying direction selectivity in simple cells of the cat visual cortex. Science (New York, N.Y.). 262 [PubMed]

Kirkwood A, Bear MF. (1994). Hebbian synapses in visual cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 14 [PubMed]

Kulikowski JJ, Bishop PO, Kato H. (1979). Sustained and transient responses by cat striate cells to stationary flashing light and dark bars. Brain research. 170 [PubMed]

Kusano K, Landau EM. (1975). Depression and recovery of transmission at the squid giant synapse. The Journal of physiology. 245 [PubMed]

Langdon RB, Sur M. (1990). Components of field potentials evoked by white matter stimulation in isolated slices of primary visual cortex: spatial distributions and synaptic order. Journal of neurophysiology. 64 [PubMed]

Liley AW, North KAK. (1952). An electrical investigation of effects of repetitive stimulation on mammalian neuromuscular junction J Neurophysiol. 16

Liu G, Tsien RW. (1995). Properties of synaptic transmission at single hippocampal synaptic boutons. Nature. 375 [PubMed]

Maddess T, McCourt ME, Blakeslee B, Cunningham RB. (1988). Factors governing the adaptation of cells in area-17 of the cat visual cortex. Biological cybernetics. 59 [PubMed]

Magleby KL. (1987). Short term changes in synaptic efficacy Synaptic Function.

Magleby KL, Zengel JE. (1975). A quantitative description of tetanic and post-tetanic potentiation of transmitter release at the frog neuromuscular junction. The Journal of physiology. 245 [PubMed]

Marlin SG, Douglas RM, Cynader MS. (1991). Position-specific adaptation in simple cell receptive fields of the cat striate cortex. Journal of neurophysiology. 66 [PubMed]

McLean J, Palmer LA. (1996). Contrast adaptation and excitatory amino acid receptors in cat striate cortex. Visual neuroscience. 13 [PubMed]

Metherate R, Ashe JH. (1994). Facilitation of an NMDA receptor-mediated EPSP by paired-pulse stimulation in rat neocortex via depression of GABAergic IPSPs. The Journal of physiology. 481 ( Pt 2) [PubMed]

Mitzdorf U, Singer W. (1978). Prominent excitatory pathways in the cat visual cortex (A 17 and A 18): a current source density analysis of electrically evoked potentials. Experimental brain research. 33 [PubMed]

Movshon JA, Lennie P. (1979). Pattern-selective adaptation in visual cortical neurones. Nature. 278 [PubMed]

Movshon JA, Thompson ID, Tolhurst DJ. (1978). Spatial and temporal contrast sensitivity of neurones in areas 17 and 18 of the cat's visual cortex. The Journal of physiology. 283 [PubMed]

Nelson SB. (1991). Temporal interactions in the cat visual system. III. Pharmacological studies of cortical suppression suggest a presynaptic mechanism. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Nelson SB. (1991). Temporal interactions in the cat visual system. I. Orientation-selective suppression in the visual cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Nelson SB, Somers D, Todorov E, Siapas A. (1996). Contrast adaptation effects modeled as thalamocortical and intracortical synaptic transmission changes Soc Neurosci Abstr. 22

Ohzawa I, Sclar G, Freeman RD. (1982). Contrast gain control in the cat visual cortex. Nature. 298 [PubMed]

Orban GA, Hoffmann KP, Duysens J. (1985). Velocity selectivity in the cat visual system. I. Responses of LGN cells to moving bar stimuli: a comparison with cortical areas 17 and 18. Journal of neurophysiology. 54 [PubMed]

Pinco M, Lev-Tov A. (1993). Modulation of monosynaptic excitation in the neonatal rat spinal cord. Journal of neurophysiology. 70 [PubMed]

Prince DA, Stevens CF. (1992). Adenosine decreases neurotransmitter release at central synapses. Proceedings of the National Academy of Sciences of the United States of America. 89 [PubMed]

Regehr WG, Delaney KR, Tank DW. (1994). The role of presynaptic calcium in short-term enhancement at the hippocampal mossy fiber synapse. The Journal of neuroscience : the official journal of the Society for Neuroscience. 14 [PubMed]

Reid RC, Soodak RE, Shapley RM. (1991). Directional selectivity and spatiotemporal structure of receptive fields of simple cells in cat striate cortex. Journal of neurophysiology. 66 [PubMed]

Rosenmund C, Stevens CF. (1996). Definition of the readily releasable pool of vesicles at hippocampal synapses. Neuron. 16 [PubMed]

Rutecki PA, Lebeda FJ, Johnston D. (1987). 4-Aminopyridine produces epileptiform activity in hippocampus and enhances synaptic excitation and inhibition. Journal of neurophysiology. 57 [PubMed]

Ryan TA, Smith SJ. (1995). Vesicle pool mobilization during action potential firing at hippocampal synapses. Neuron. 14 [PubMed]

Sen K, Abbott LF, Nelson SB, Variela JA. (1997). Functional significance of synaptic depression between cortical neurons Computational Neuroscience: Trends in Research.

Sen K, Jorge-Rivera JC, Marder E, Abbott LF. (1996). Decoding synapses. The Journal of neuroscience : the official journal of the Society for Neuroscience. 16 [PubMed]

Shapley R, Lennie P. (1985). Spatial frequency analysis in the visual system. Annual review of neuroscience. 8 [PubMed]

Smetters DK, Nelson SB. (1993). Short term plasticity of minimal synaptic currents in visual cortical neurons Soc Neurosci Abstr. 19

Stevens CF, Wang Y. (1995). Facilitation and depression at single central synapses. Neuron. 14 [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]

Sutor B, Hablitz JJ. (1989). EPSPs in rat neocortical neurons in vitro. I. Electrophysiological evidence for two distinct EPSPs. Journal of neurophysiology. 61 [PubMed]

Swandulla D, Hans M, Zipser K, Augustine GJ. (1991). Role of residual calcium in synaptic depression and posttetanic potentiation: fast and slow calcium signaling in nerve terminals. Neuron. 7 [PubMed]

Thomson AM, Deuchars J. (1994). Temporal and spatial properties of local circuits in neocortex. Trends in neurosciences. 17 [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]

Thomson AM, West DC. (1993). Fluctuations in pyramid-pyramid excitatory postsynaptic potentials modified by presynaptic firing pattern and postsynaptic membrane potential using paired intracellular recordings in rat neocortex. Neuroscience. 54 [PubMed]

Tolhurst DJ, Walker NS, Thompson ID, Dean AF. (1980). Non-linearities of temporal summation in neurones in area 17 of the cat. Experimental brain research. 38 [PubMed]

Trussell LO, Zhang S, Raman IM. (1993). Desensitization of AMPA receptors upon multiquantal neurotransmitter release. Neuron. 10 [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, Abbott LF, Nelson SB, Song S, Turrigiano G. (1997). The dynamics of synaptic depression at monosynaptic inhibitory inputs to visual cortical pyramidal neurons Cns 97.

Varela JA, Nelson SB, Richards K. (1995). Modulation of synaptic inputs to visual cortical neurons by adenosine and 5-HT Soc Neurosci Abstr. 21

Zucker RS. (1989). Short-term synaptic plasticity. Annual review of neuroscience. 12 [PubMed]

References and models that cite this paper

Aristizabal F, Glavinovic MI. (2004). Simulation and parameter estimation of dynamics of synaptic depression. Biological cybernetics. 90 [PubMed]

Banitt Y, Martin KA, Segev I. (2005). Depressed responses of facilitatory synapses. Journal of neurophysiology. 94 [PubMed]

Banitt Y, Martin KA, Segev I. (2007). A biologically realistic model of contrast invariant orientation tuning by thalamocortical synaptic depression. The Journal of neuroscience : the official journal of the Society for Neuroscience. 27 [PubMed]

Barros-Zulaica N et al. (2019). Estimating the Readily-Releasable Vesicle Pool Size at Synaptic Connections in the Neocortex Frontiers in Synaptic Neuroscience. 11

Baxter DA, Byrne JH. (2006). Short-term plasticity in a computational model of the tail-withdrawal circuit in Aplysia Neurocomputing. 70(10-12)

Beverlin B, Kakalios J, Nykamp D, Netoff TI. (2012). Dynamical changes in neurons during seizures determine tonic to clonic shift. Journal of computational neuroscience. 33 [PubMed]

Burkitt AN, Meffin H, Grayden DB. (2004). Spike-timing-dependent plasticity: the relationship to rate-based learning for models with weight dynamics determined by a stable fixed point. Neural computation. 16 [PubMed]

Cai Y, Gavornik JP, Cooper LN, Yeung LC, Shouval HZ. (2007). Effect of stochastic synaptic and dendritic dynamics on synaptic plasticity in visual cortex and hippocampus. Journal of neurophysiology. 97 [PubMed]

Clark PT, van Rossum MCW. (2005). The Optimal Synapse for Sparse, Binary Signals in the Rod Pathway Neural Comput. 18

Costa RP, Sjöström PJ, van Rossum MC. (2013). Probabilistic inference of short-term synaptic plasticity in neocortical microcircuits. Frontiers in computational neuroscience. 7 [PubMed]

Domanski APF, Booker SA, Wyllie DJA, Isaac JTR, Kind PC. (2019). Cellular and synaptic phenotypes lead to disrupted information processing in Fmr1-KO mouse layer 4 barrel cortex. Nature communications. 10 [PubMed]

Ermentrout GB, Terman DH. (2010). Mathematical Foundations of Neuroscience Interdisciplinary Applied Mathematics. 35

Esposito U, Giugliano M, Vasilaki E. (2014). Adaptation of short-term plasticity parameters via error-driven learning may explain the correlation between activity-dependent synaptic properties, connectivity motifs and target specificity. Frontiers in computational neuroscience. 8 [PubMed]

Fransen E, Zilberter Y, Lansner A, Eriksson D. (2003). Effects of short-term synaptic plasticity in a local microcircuit on cell firing. Neurocomputing. 52-54

Fuhrmann G, Segev I, Markram H, Tsodyks M. (2002). Coding of temporal information by activity-dependent synapses. Journal of neurophysiology. 87 [PubMed]

Goldman MS. (2004). Enhancement of information transmission efficiency by synaptic failures. Neural computation. 16 [PubMed]

Hennig MH, Postlethwaite M, Forsythe ID, Graham BP. (2008). Interactions between multiple sources of short-term plasticity during evoked and spontaneous activity at the rat calyx of Held. The Journal of physiology. 586 [PubMed]

Hines ML, Carnevale NT. (2004). Discrete event simulation in the NEURON environment. Neurocomputing. 58-60

Houweling AR et al. (2002). Frequency-selective augmenting responses by short-term synaptic depression in cat neocortex. The Journal of physiology. 542 [PubMed]

Hummos A, Franklin CC, Nair SS. (2014). Intrinsic mechanisms stabilize encoding and retrieval circuits differentially in a hippocampal network model. Hippocampus. 24 [PubMed]

Hummos A, Nair SS. (2017). An integrative model of the intrinsic hippocampal theta rhythm. PloS one. 12 [PubMed]

Kim D, Paré D, Nair SS. (2013). Mechanisms contributing to the induction and storage of Pavlovian fear memories in the lateral amygdala. Learning & memory (Cold Spring Harbor, N.Y.). 20 [PubMed]

Laing CR. (2006). On the application of "equation-free modelling" to neural systems. Journal of computational neuroscience. 20 [PubMed]

Large EW, Crawford JD. (2002). Auditory temporal computation: interval selectivity based on post-inhibitory rebound. Journal of computational neuroscience. 13 [PubMed]

Luthman J et al. (2011). STD-dependent and independent encoding of input irregularity as spike rate in a computational model of a cerebellar nucleus neuron. Cerebellum (London, England). 10 [PubMed]

MacLeod KM, Horiuchi TK, Carr CE. (2007). A role for short-term synaptic facilitation and depression in the processing of intensity information in the auditory brain stem. Journal of neurophysiology. 97 [PubMed]

Migliore M, Lansky P. (1999). Long-term potentiation and depression induced by a stochastic conditioning of a model synapse. Biophysical journal. 77 [PubMed]

Mikula S, Niebur E. (2003). Synaptic depression leads to nonmonotonic frequency dependence in the coincidence detector. Neural computation. 15 [PubMed]

Moradi K et al. (2013). A fast model of voltage-dependent NMDA receptors. Journal of computational neuroscience. 34 [PubMed]

Morse TM. (2008). ModelDB in computational neuroscience education - a research tool as interactive educational media. Brains, minds & media : journal of new media in neural and cognitive science and education. 3 [PubMed]

Nadim F, Manor Y, Kopell N, Marder E. (1999). Synaptic depression creates a switch that controls the frequency of an oscillatory circuit. Proceedings of the National Academy of Sciences of the United States of America. 96 [PubMed]

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]

Rothman JS, Silver RA. (2018). NeuroMatic: An Integrated Open-Source Software Toolkit for Acquisition, Analysis and Simulation of Electrophysiological Data. Frontiers in neuroinformatics. 12 [PubMed]

Schmidt M et al. (2018). A multi-scale layer-resolved spiking network model of resting-state dynamics in macaque visual cortical areas. PLoS computational biology. 14 [PubMed]

Steuber V, Jaeger D. (2013). Modeling the generation of output by the cerebellar nuclei. Neural networks : the official journal of the International Neural Network Society. 47 [PubMed]

Sussillo D, Toyoizumi T, Maass W. (2007). Self-tuning of neural circuits through short-term synaptic plasticity. Journal of neurophysiology. 97 [PubMed]

Vasilaki E, Giugliano M. (2014). Emergence of connectivity motifs in networks of model neurons with short- and long-term plastic synapses. PloS one. 9 [PubMed]

Vierling-Claassen D, Cardin JA, Moore CI, Jones SR. (2010). Computational modeling of distinct neocortical oscillations driven by cell-type selective optogenetic drive: separable resonant circuits controlled by low-threshold spiking and fast-spiking interneurons. Frontiers in human neuroscience. 4 [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]

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