Rodrigo Laje, Dean V Buonomano. Nat Neurosci 2013
Times Cited: 196
Times Cited: 196
Times Cited
Times Co-cited
Similarity
Generating coherent patterns of activity from chaotic neural networks.
David Sussillo, L F Abbott. Neuron 2009
David Sussillo, L F Abbott. Neuron 2009
51
Context-dependent computation by recurrent dynamics in prefrontal cortex.
Valerio Mante, David Sussillo, Krishna V Shenoy, William T Newsome. Nature 2013
Valerio Mante, David Sussillo, Krishna V Shenoy, William T Newsome. Nature 2013
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Real-time computing without stable states: a new framework for neural computation based on perturbations.
Wolfgang Maass, Thomas Natschläger, Henry Markram. Neural Comput 2002
Wolfgang Maass, Thomas Natschläger, Henry Markram. Neural Comput 2002
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Recurrent Network Models of Sequence Generation and Memory.
Kanaka Rajan, Christopher D Harvey, David W Tank. Neuron 2016
Kanaka Rajan, Christopher D Harvey, David W Tank. Neuron 2016
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Harnessing nonlinearity: predicting chaotic systems and saving energy in wireless communication.
Herbert Jaeger, Harald Haas. Science 2004
Herbert Jaeger, Harald Haas. Science 2004
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Flexible timing by temporal scaling of cortical responses.
Jing Wang, Devika Narain, Eghbal A Hosseini, Mehrdad Jazayeri. Nat Neurosci 2018
Jing Wang, Devika Narain, Eghbal A Hosseini, Mehrdad Jazayeri. Nat Neurosci 2018
21
State-dependent computations: spatiotemporal processing in cortical networks.
Dean V Buonomano, Wolfgang Maass. Nat Rev Neurosci 2009
Dean V Buonomano, Wolfgang Maass. Nat Rev Neurosci 2009
20
full-FORCE: A target-based method for training recurrent networks.
Brian DePasquale, Christopher J Cueva, Kanaka Rajan, G Sean Escola, L F Abbott. PLoS One 2018
Brian DePasquale, Christopher J Cueva, Kanaka Rajan, G Sean Escola, L F Abbott. PLoS One 2018
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Neural networks and physical systems with emergent collective computational abilities.
J J Hopfield. Proc Natl Acad Sci U S A 1982
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A scalable population code for time in the striatum.
Gustavo B M Mello, Sofia Soares, Joseph J Paton. Curr Biol 2015
Gustavo B M Mello, Sofia Soares, Joseph J Paton. Curr Biol 2015
14
A neural network that finds a naturalistic solution for the production of muscle activity.
David Sussillo, Mark M Churchland, Matthew T Kaufman, Krishna V Shenoy. Nat Neurosci 2015
David Sussillo, Mark M Churchland, Matthew T Kaufman, Krishna V Shenoy. Nat Neurosci 2015
14
Supervised learning in spiking neural networks with FORCE training.
Wilten Nicola, Claudia Clopath. Nat Commun 2017
Wilten Nicola, Claudia Clopath. Nat Commun 2017
28
An ultra-sparse code underlies the generation of neural sequences in a songbird.
Richard H R Hahnloser, Alexay A Kozhevnikov, Michale S Fee. Nature 2002
Richard H R Hahnloser, Alexay A Kozhevnikov, Michale S Fee. Nature 2002
13
What makes us tick? Functional and neural mechanisms of interval timing.
Catalin V Buhusi, Warren H Meck. Nat Rev Neurosci 2005
Catalin V Buhusi, Warren H Meck. Nat Rev Neurosci 2005
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The importance of mixed selectivity in complex cognitive tasks.
Mattia Rigotti, Omri Barak, Melissa R Warden, Xiao-Jing Wang, Nathaniel D Daw, Earl K Miller, Stefano Fusi. Nature 2013
Mattia Rigotti, Omri Barak, Melissa R Warden, Xiao-Jing Wang, Nathaniel D Daw, Earl K Miller, Stefano Fusi. Nature 2013
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Learning multiple variable-speed sequences in striatum via cortical tutoring.
James M Murray, G Sean Escola. Elife 2017
James M Murray, G Sean Escola. Elife 2017
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Spike-time-dependent plasticity and heterosynaptic competition organize networks to produce long scale-free sequences of neural activity.
Ila R Fiete, Walter Senn, Claude Z H Wang, Richard H R Hahnloser. Neuron 2010
Ila R Fiete, Walter Senn, Claude Z H Wang, Richard H R Hahnloser. Neuron 2010
12
Dynamic Control of Response Criterion in Premotor Cortex during Perceptual Detection under Temporal Uncertainty.
Federico Carnevale, Victor de Lafuente, Ranulfo Romo, Omri Barak, Néstor Parga. Neuron 2015
Federico Carnevale, Victor de Lafuente, Ranulfo Romo, Omri Barak, Néstor Parga. Neuron 2015
21
Internally generated cell assembly sequences in the rat hippocampus.
Eva Pastalkova, Vladimir Itskov, Asohan Amarasingham, György Buzsáki. Science 2008
Eva Pastalkova, Vladimir Itskov, Asohan Amarasingham, György Buzsáki. Science 2008
12
Neural population dynamics during reaching.
Mark M Churchland, John P Cunningham, Matthew T Kaufman, Justin D Foster, Paul Nuyujukian, Stephen I Ryu, Krishna V Shenoy. Nature 2012
Mark M Churchland, John P Cunningham, Matthew T Kaufman, Justin D Foster, Paul Nuyujukian, Stephen I Ryu, Krishna V Shenoy. Nature 2012
12
Stimulus-dependent suppression of chaos in recurrent neural networks.
Kanaka Rajan, L F Abbott, Haim Sompolinsky. Phys Rev E Stat Nonlin Soft Matter Phys 2010
Kanaka Rajan, L F Abbott, Haim Sompolinsky. Phys Rev E Stat Nonlin Soft Matter Phys 2010
12
14
Temporal context calibrates interval timing.
Mehrdad Jazayeri, Michael N Shadlen. Nat Neurosci 2010
Mehrdad Jazayeri, Michael N Shadlen. Nat Neurosci 2010
12
Dynamics of sparsely connected networks of excitatory and inhibitory spiking neurons.
N Brunel. J Comput Neurosci 2000
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12
Optimal control of transient dynamics in balanced networks supports generation of complex movements.
Guillaume Hennequin, Tim P Vogels, Wulfram Gerstner. Neuron 2014
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12
Training Excitatory-Inhibitory Recurrent Neural Networks for Cognitive Tasks: A Simple and Flexible Framework.
H Francis Song, Guangyu R Yang, Xiao-Jing Wang. PLoS Comput Biol 2016
H Francis Song, Guangyu R Yang, Xiao-Jing Wang. PLoS Comput Biol 2016
17
Computing by Robust Transience: How the Fronto-Parietal Network Performs Sequential, Category-Based Decisions.
Warasinee Chaisangmongkon, Sruthi K Swaminathan, David J Freedman, Xiao-Jing Wang. Neuron 2017
Warasinee Chaisangmongkon, Sruthi K Swaminathan, David J Freedman, Xiao-Jing Wang. Neuron 2017
20
Chaos in neuronal networks with balanced excitatory and inhibitory activity.
C van Vreeswijk, H Sompolinsky. Science 1996
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12
The Neural Basis of Timing: Distributed Mechanisms for Diverse Functions.
Joseph J Paton, Dean V Buonomano. Neuron 2018
Joseph J Paton, Dean V Buonomano. Neuron 2018
12
A model of interval timing by neural integration.
Patrick Simen, Fuat Balci, Laura de Souza, Jonathan D Cohen, Philip Holmes. J Neurosci 2011
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11
Neural basis of the perception and estimation of time.
Hugo Merchant, Deborah L Harrington, Warren H Meck. Annu Rev Neurosci 2013
Hugo Merchant, Deborah L Harrington, Warren H Meck. Annu Rev Neurosci 2013
11
From fixed points to chaos: three models of delayed discrimination.
Omri Barak, David Sussillo, Ranulfo Romo, Misha Tsodyks, L F Abbott. Prog Neurobiol 2013
Omri Barak, David Sussillo, Ranulfo Romo, Misha Tsodyks, L F Abbott. Prog Neurobiol 2013
14
Timing in the absence of clocks: encoding time in neural network states.
Uma R Karmarkar, Dean V Buonomano. Neuron 2007
Uma R Karmarkar, Dean V Buonomano. Neuron 2007
11
Encoding sensory and motor patterns as time-invariant trajectories in recurrent neural networks.
Vishwa Goudar, Dean V Buonomano. Elife 2018
Vishwa Goudar, Dean V Buonomano. Elife 2018
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Flexible Sensorimotor Computations through Rapid Reconfiguration of Cortical Dynamics.
Evan D Remington, Devika Narain, Eghbal A Hosseini, Mehrdad Jazayeri. Neuron 2018
Evan D Remington, Devika Narain, Eghbal A Hosseini, Mehrdad Jazayeri. Neuron 2018
13
Differential Encoding of Time by Prefrontal and Striatal Network Dynamics.
Konstantin I Bakhurin, Vishwa Goudar, Justin L Shobe, Leslie D Claar, Dean V Buonomano, Sotiris C Masmanidis. J Neurosci 2017
Konstantin I Bakhurin, Vishwa Goudar, Justin L Shobe, Leslie D Claar, Dean V Buonomano, Sotiris C Masmanidis. J Neurosci 2017
16
Eigenvalue spectra of random matrices for neural networks.
Kanaka Rajan, L F Abbott. Phys Rev Lett 2006
Kanaka Rajan, L F Abbott. Phys Rev Lett 2006
10
Opening the black box: low-dimensional dynamics in high-dimensional recurrent neural networks.
David Sussillo, Omri Barak. Neural Comput 2013
David Sussillo, Omri Barak. Neural Comput 2013
10
Cortico-striatal circuits and interval timing: coincidence detection of oscillatory processes.
Matthew S Matell, Warren H Meck. Brain Res Cogn Brain Res 2004
Matthew S Matell, Warren H Meck. Brain Res Cogn Brain Res 2004
10
Linking Connectivity, Dynamics, and Computations in Low-Rank Recurrent Neural Networks.
Francesca Mastrogiuseppe, Srdjan Ostojic. Neuron 2018
Francesca Mastrogiuseppe, Srdjan Ostojic. Neuron 2018
15
Choice-specific sequences in parietal cortex during a virtual-navigation decision task.
Christopher D Harvey, Philip Coen, David W Tank. Nature 2012
Christopher D Harvey, Philip Coen, David W Tank. Nature 2012
9
Dedicated and intrinsic models of time perception.
Richard B Ivry, John E Schlerf. Trends Cogn Sci 2008
Richard B Ivry, John E Schlerf. Trends Cogn Sci 2008
9
Neural representation of time in cortico-basal ganglia circuits.
Dezhe Z Jin, Naotaka Fujii, Ann M Graybiel. Proc Natl Acad Sci U S A 2009
Dezhe Z Jin, Naotaka Fujii, Ann M Graybiel. Proc Natl Acad Sci U S A 2009
9
Temporal information transformed into a spatial code by a neural network with realistic properties.
D V Buonomano, M M Merzenich. Science 1995
D V Buonomano, M M Merzenich. Science 1995
9
Building functional networks of spiking model neurons.
L F Abbott, Brian DePasquale, Raoul-Martin Memmesheimer. Nat Neurosci 2016
L F Abbott, Brian DePasquale, Raoul-Martin Memmesheimer. Nat Neurosci 2016
13
Emergence of complex computational structures from chaotic neural networks through reward-modulated Hebbian learning.
Gregor M Hoerzer, Robert Legenstein, Wolfgang Maass. Cereb Cortex 2014
Gregor M Hoerzer, Robert Legenstein, Wolfgang Maass. Cereb Cortex 2014
18
Real-time computation at the edge of chaos in recurrent neural networks.
Nils Bertschinger, Thomas Natschläger. Neural Comput 2004
Nils Bertschinger, Thomas Natschläger. Neural Comput 2004
9
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.