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Times Cited: 618
Times Cited: 618
Times Cited
Times Co-cited
Similarity
Rate, timing, and cooperativity jointly determine cortical synaptic plasticity.
P J Sjöström, G G Turrigiano, S B Nelson. Neuron 2001
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Regulation of synaptic efficacy by coincidence of postsynaptic APs and EPSPs.
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Synaptic modifications in cultured hippocampal neurons: dependence on spike timing, synaptic strength, and postsynaptic cell type.
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Long-term depression of excitatory synaptic transmission and its relationship to long-term potentiation.
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A unified model of NMDA receptor-dependent bidirectional synaptic plasticity.
Harel Z Shouval, Mark F Bear, Leon N Cooper. Proc Natl Acad Sci U S A 2002
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Connectivity reflects coding: a model of voltage-based STDP with homeostasis.
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Long-lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant path.
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Synaptic activity modulates the induction of bidirectional synaptic changes in adult mouse hippocampus.
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Triplets of spikes in a model of spike timing-dependent plasticity.
Jean-Pascal Pfister, Wulfram Gerstner. J Neurosci 2006
Jean-Pascal Pfister, Wulfram Gerstner. J Neurosci 2006
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Calcium-based plasticity model explains sensitivity of synaptic changes to spike pattern, rate, and dendritic location.
Michael Graupner, Nicolas Brunel. Proc Natl Acad Sci U S A 2012
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Metaplasticity: the plasticity of synaptic plasticity.
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A mechanism for the Hebb and the anti-Hebb processes underlying learning and memory.
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Voltage and Spike Timing Interact in STDP - A Unified Model.
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A synaptic model of memory: long-term potentiation in the hippocampus.
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Selective induction of LTP and LTD by postsynaptic [Ca2+]i elevation.
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Theta burst stimulation of the human motor cortex.
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A cooperative switch determines the sign of synaptic plasticity in distal dendrites of neocortical pyramidal neurons.
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Competitive Hebbian learning through spike-timing-dependent synaptic plasticity.
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Dendritic spikes as a mechanism for cooperative long-term potentiation.
Nace L Golding, Nathan P Staff, Nelson Spruston. Nature 2002
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10
Postsynaptic depolarization requirements for LTP and LTD: a critique of spike timing-dependent plasticity.
John Lisman, Nelson Spruston. Nat Neurosci 2005
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Inhibitory plasticity balances excitation and inhibition in sensory pathways and memory networks.
T P Vogels, H Sprekeler, F Zenke, C Clopath, W Gerstner. Science 2011
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Spike-timing-dependent synaptic modification induced by natural spike trains.
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Coactivation and timing-dependent integration of synaptic potentiation and depression.
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Learning rules for spike timing-dependent plasticity depend on dendritic synapse location.
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9
Spine Ca2+ signaling in spike-timing-dependent plasticity.
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The role of interneuron networks in driving human motor cortical plasticity.
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8
Malleability of spike-timing-dependent plasticity at the CA3-CA1 synapse.
Gayle M Wittenberg, Samuel S-H Wang. J Neurosci 2006
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Contribution of individual spikes in burst-induced long-term synaptic modification.
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Dendritic excitability and synaptic plasticity.
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Consensus: Motor cortex plasticity protocols.
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8
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Homosynaptic long-term depression in area CA1 of hippocampus and effects of N-methyl-D-aspartate receptor blockade.
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7
Learning modifies subsequent induction of long-term potentiation-like and long-term depression-like plasticity in human motor cortex.
Ulf Ziemann, Tihomir V Ilić, Christian Pauli, Frank Meintzschel, Diane Ruge. J Neurosci 2004
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Stable Hebbian learning from spike timing-dependent plasticity.
M C van Rossum, G Q Bi, G G Turrigiano. J Neurosci 2000
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Optimal spike-timing-dependent plasticity for precise action potential firing in supervised learning.
Jean-Pascal Pfister, Taro Toyoizumi, David Barber, Wulfram Gerstner. Neural Comput 2006
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7
Timing-based LTP and LTD at vertical inputs to layer II/III pyramidal cells in rat barrel cortex.
D E Feldman. Neuron 2000
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7
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.