Pre- and postsynaptically expressed spike-timing-dependent plasticity contribute differentially to neuronal learning
暂无分享,去创建一个
[1] T. Bliss,et al. Long‐lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant path , 1973, The Journal of physiology.
[2] E. Bienenstock,et al. Theory for the development of neuron selectivity: orientation specificity and binocular interaction in visual cortex , 1982, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[3] Ralph Linsker,et al. Self-organization in a perceptual network , 1988, Computer.
[4] D. O. Hebb,et al. The organization of behavior , 1988 .
[5] M. Bear,et al. Synaptic plasticity: LTP and LTD , 1994, Current Opinion in Neurobiology.
[6] K. Miller,et al. Synaptic Economics: Competition and Cooperation in Synaptic Plasticity , 1996, Neuron.
[7] Wulfram Gerstner,et al. A neuronal learning rule for sub-millisecond temporal coding , 1996, Nature.
[8] B. Richmond,et al. Latency: another potential code for feature binding in striate cortex. , 1996, Journal of neurophysiology.
[9] H. Markram,et al. Redistribution of synaptic efficacy between neocortical pyramidal neurons , 1996, Nature.
[10] L. Abbott,et al. Synaptic Depression and Cortical Gain Control , 1997, Science.
[11] H. Markram,et al. The neural code between neocortical pyramidal neurons depends on neurotransmitter release probability. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[12] J. Lisman. Bursts as a unit of neural information: making unreliable synapses reliable , 1997, Trends in Neurosciences.
[13] C. Stevens,et al. A Million Dollar Question: Does LTP = Memory? , 1998, Neuron.
[14] H. Markram,et al. Differential signaling via the same axon of neocortical pyramidal neurons. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[15] Wolfgang Maass,et al. Dynamic Stochastic Synapses as Computational Units , 1997, Neural Computation.
[16] Mark C. W. van Rossum,et al. Stable Hebbian Learning from Spike Timing-Dependent Plasticity , 2000, The Journal of Neuroscience.
[17] L. Abbott,et al. Competitive Hebbian learning through spike-timing-dependent synaptic plasticity , 2000, Nature Neuroscience.
[18] X. Wang,et al. Differential short-term synaptic plasticity and transmission of complex spike trains: to depress or to facilitate? , 2000, Cerebral cortex.
[19] Anatol C. Kreitzer,et al. Interplay between Facilitation, Depression, and Residual Calcium at Three Presynaptic Terminals , 2000, The Journal of Neuroscience.
[20] Henry Markram,et al. An Algorithm for Modifying Neurotransmitter Release Probability Based on Pre- and Postsynaptic Spike Timing , 2001, Neural Computation.
[21] L. Abbott,et al. Cortical Development and Remapping through Spike Timing-Dependent Plasticity , 2001, Neuron.
[22] P. J. Sjöström,et al. Rate, Timing, and Cooperativity Jointly Determine Cortical Synaptic Plasticity , 2001, Neuron.
[23] E. Fortune,et al. Short-term synaptic plasticity as a temporal filter , 2001, Trends in Neurosciences.
[24] W. Regehr,et al. Short-term synaptic plasticity. , 2002, Annual review of physiology.
[25] Henry Markram,et al. Coding of temporal information by activity-dependent synapses. , 2002, Journal of neurophysiology.
[26] P. J. Sjöström,et al. Neocortical LTD via Coincident Activation of Presynaptic NMDA and Cannabinoid Receptors , 2003, Neuron.
[27] H. Seung,et al. Learning in Spiking Neural Networks by Reinforcement of Stochastic Synaptic Transmission , 2003, Neuron.
[28] Haim Sompolinsky,et al. Learning Input Correlations through Nonlinear Temporally Asymmetric Hebbian Plasticity , 2003, The Journal of Neuroscience.
[29] M. Bear,et al. LTP and LTD An Embarrassment of Riches , 2004, Neuron.
[30] L. Abbott,et al. Synaptic computation , 2004, Nature.
[31] C. Malsburg. Self-organization of orientation sensitive cells in the striate cortex , 2004, Kybernetik.
[32] T. Bliss. Long-lasting potentiation of synaptic transmission , 2005 .
[33] Wulfram Gerstner,et al. Adaptive exponential integrate-and-fire model as an effective description of neuronal activity. , 2005, Journal of neurophysiology.
[34] Richard F. Thompson. In search of memory traces. , 2005, Annual review of psychology.
[35] W. Gerstner,et al. Triplets of Spikes in a Model of Spike Timing-Dependent Plasticity , 2006, The Journal of Neuroscience.
[36] Y. Dan,et al. Contribution of individual spikes in burst-induced long-term synaptic modification. , 2006, Journal of neurophysiology.
[37] D. Kullmann,et al. Long-term synaptic plasticity in hippocampal interneurons , 2007, Nature Reviews Neuroscience.
[38] P. J. Sjöström,et al. Multiple forms of long-term plasticity at unitary neocortical layer 5 synapses , 2007, Neuropharmacology.
[39] Tim Gollisch,et al. Rapid Neural Coding in the Retina with Relative Spike Latencies , 2008, Science.
[40] Wulfram Gerstner,et al. Adaptive exponential integrate-and-fire model , 2009, Scholarpedia.
[41] M. Woodin,et al. Spike-Timing Dependent Plasticity in Inhibitory Circuits , 2010, Front. Syn. Neurosci..
[42] M. Migliore,et al. Control of GABA Release at Mossy Fiber-CA3 Connections in the Developing Hippocampus , 2010, Front. Syn. Neurosci..
[43] Wulfram Gerstner,et al. Spike-timing dependent plasticity , 2010, Scholarpedia.
[44] W. Gerstner,et al. Connectivity reflects coding: a model of voltage-based STDP with homeostasis , 2010, Nature Neuroscience.
[45] L. Abbott. Stability and competition in multi-spike models of spike-timing dependent plasticity , 2010 .
[46] V. Klyachko,et al. The diverse functions of short-term plasticity components in synaptic computations , 2011, Communicative & integrative biology.
[47] Ryan M. Smith,et al. Synaptic Signaling and Aberrant RNA Splicing in Autism Spectrum Disorders , 2011, Front. Syn. Neurosci..
[48] Pan-Yue Deng,et al. The diverse functions of short-term plasticity components in synaptic computations , 2011 .
[49] Wulfram Gerstner,et al. A History of Spike-Timing-Dependent Plasticity , 2011, Front. Syn. Neurosci..
[50] D. Buonomano,et al. A Novel Learning Rule for Long-Term Plasticity of Short-Term Synaptic Plasticity Enhances Temporal Processing , 2011, Front. Integr. Neurosci..
[51] D. Kullmann. The Mother of All Battles 20 years on: is LTP expressed pre‐ or postsynaptically? , 2012, The Journal of physiology.
[52] Brent Doiron,et al. Short Term Synaptic Depression Imposes a Frequency Dependent Filter on Synaptic Information Transfer , 2012, PLoS Comput. Biol..
[53] Mark C. W. van Rossum,et al. Probabilistic inference of short-term synaptic plasticity in neocortical microcircuits , 2013, Front. Comput. Neurosci..
[54] Arne V. Blackman,et al. Target-cell-specific short-term plasticity in local circuits , 2013, Front. Synaptic Neurosci..
[55] A. Fine,et al. The expression of long-term potentiation: reconciling the preists and the postivists , 2014, Philosophical Transactions of the Royal Society B: Biological Sciences.
[56] Andrew S. Cassidy,et al. A million spiking-neuron integrated circuit with a scalable communication network and interface , 2014, Science.
[57] Sadegh Nabavi,et al. Engineering a memory with LTD and LTP , 2014, Nature.
[58] N. Emptage,et al. Two sides to long-term potentiation: a view towards reconciliation , 2014, Philosophical Transactions of the Royal Society B: Biological Sciences.
[59] Rui Ponte Costa,et al. Unified pre- and postsynaptic long-term plasticity enables reliable and flexible learning , 2015, eLife.
[60] James G. King,et al. Reconstruction and Simulation of Neocortical Microcircuitry , 2015, Cell.
[61] P. J. Sjöström,et al. Synapse-type-specific plasticity in local circuits , 2015, Current Opinion in Neurobiology.
[62] Baktash Babadi,et al. Stability and Competition in Multi-spike Models of Spike-Timing Dependent Plasticity , 2016, PLoS Comput. Biol..
[63] Hugues Berry,et al. Endocannabinoid dynamics gate spike-timing dependent depression and potentiation , 2016, eLife.
[64] P. J. Sjöström,et al. Functional plasticity at dendritic synapses , 2016 .
[65] Functional consequences of pre- and postsynaptic expression of synaptic plasticity , 2017, Philosophical Transactions of the Royal Society B: Biological Sciences.
[66] T. Vogels,et al. Synaptic Transmission Optimization Predicts Expression Loci of Long-Term Plasticity , 2017, Neuron.
[67] P. Castillo,et al. Closing the gap: long-term presynaptic plasticity in brain function and disease , 2017, Current Opinion in Neurobiology.
[68] Jennifer A. Brock,et al. Differential Regulation of Evoked and Spontaneous Release by Presynaptic NMDA Receptors , 2017, Neuron.