Yoram Burak, Ila R Fiete. PLoS Comput Biol 2009
Times Cited: 307
Times Cited: 307
Times Cited
Times Co-cited
Similarity
Microstructure of a spatial map in the entorhinal cortex.
Torkel Hafting, Marianne Fyhn, Sturla Molden, May-Britt Moser, Edvard I Moser. Nature 2005
Torkel Hafting, Marianne Fyhn, Sturla Molden, May-Britt Moser, Edvard I Moser. Nature 2005
80
Path integration and the neural basis of the 'cognitive map'.
Bruce L McNaughton, Francesco P Battaglia, Ole Jensen, Edvard I Moser, May-Britt Moser. Nat Rev Neurosci 2006
Bruce L McNaughton, Francesco P Battaglia, Ole Jensen, Edvard I Moser, May-Britt Moser. Nat Rev Neurosci 2006
60
A spin glass model of path integration in rat medial entorhinal cortex.
Mark C Fuhs, David S Touretzky. J Neurosci 2006
Mark C Fuhs, David S Touretzky. J Neurosci 2006
52
Conjunctive representation of position, direction, and velocity in entorhinal cortex.
Francesca Sargolini, Marianne Fyhn, Torkel Hafting, Bruce L McNaughton, Menno P Witter, May-Britt Moser, Edvard I Moser. Science 2006
Francesca Sargolini, Marianne Fyhn, Torkel Hafting, Bruce L McNaughton, Menno P Witter, May-Britt Moser, Edvard I Moser. Science 2006
47
The entorhinal grid map is discretized.
Hanne Stensola, Tor Stensola, Trygve Solstad, Kristian Frøland, May-Britt Moser, Edvard I Moser. Nature 2012
Hanne Stensola, Tor Stensola, Trygve Solstad, Kristian Frøland, May-Britt Moser, Edvard I Moser. Nature 2012
45
An oscillatory interference model of grid cell firing.
Neil Burgess, Caswell Barry, John O'Keefe. Hippocampus 2007
Neil Burgess, Caswell Barry, John O'Keefe. Hippocampus 2007
37
Representation of geometric borders in the entorhinal cortex.
Trygve Solstad, Charlotte N Boccara, Emilio Kropff, May-Britt Moser, Edvard I Moser. Science 2008
Trygve Solstad, Charlotte N Boccara, Emilio Kropff, May-Britt Moser, Edvard I Moser. Science 2008
37
Speed cells in the medial entorhinal cortex.
Emilio Kropff, James E Carmichael, May-Britt Moser, Edvard I Moser. Nature 2015
Emilio Kropff, James E Carmichael, May-Britt Moser, Edvard I Moser. Nature 2015
36
The hippocampus as a spatial map. Preliminary evidence from unit activity in the freely-moving rat.
J O'Keefe, J Dostrovsky. Brain Res 1971
J O'Keefe, J Dostrovsky. Brain Res 1971
36
Recurrent inhibitory circuitry as a mechanism for grid formation.
Jonathan J Couey, Aree Witoelar, Sheng-Jia Zhang, Kang Zheng, Jing Ye, Benjamin Dunn, Rafal Czajkowski, May-Britt Moser, Edvard I Moser, Yasser Roudi,[...]. Nat Neurosci 2013
Jonathan J Couey, Aree Witoelar, Sheng-Jia Zhang, Kang Zheng, Jing Ye, Benjamin Dunn, Rafal Czajkowski, May-Britt Moser, Edvard I Moser, Yasser Roudi,[...]. Nat Neurosci 2013
32
Experience-dependent rescaling of entorhinal grids.
Caswell Barry, Robin Hayman, Neil Burgess, Kathryn J Jeffery. Nat Neurosci 2007
Caswell Barry, Robin Hayman, Neil Burgess, Kathryn J Jeffery. Nat Neurosci 2007
32
Specific evidence of low-dimensional continuous attractor dynamics in grid cells.
Kijung Yoon, Michael A Buice, Caswell Barry, Robin Hayman, Neil Burgess, Ila R Fiete. Nat Neurosci 2013
Kijung Yoon, Michael A Buice, Caswell Barry, Robin Hayman, Neil Burgess, Ila R Fiete. Nat Neurosci 2013
32
Head-direction cells recorded from the postsubiculum in freely moving rats. I. Description and quantitative analysis.
J S Taube, R U Muller, J B Ranck. J Neurosci 1990
J S Taube, R U Muller, J B Ranck. J Neurosci 1990
27
The emergence of grid cells: Intelligent design or just adaptation?
Emilio Kropff, Alessandro Treves. Hippocampus 2008
Emilio Kropff, Alessandro Treves. Hippocampus 2008
27
Environmental boundaries as an error correction mechanism for grid cells.
Kiah Hardcastle, Surya Ganguli, Lisa M Giocomo. Neuron 2015
Kiah Hardcastle, Surya Ganguli, Lisa M Giocomo. Neuron 2015
26
Hippocampal remapping and grid realignment in entorhinal cortex.
Marianne Fyhn, Torkel Hafting, Alessandro Treves, May-Britt Moser, Edvard I Moser. Nature 2007
Marianne Fyhn, Torkel Hafting, Alessandro Treves, May-Britt Moser, Edvard I Moser. Nature 2007
25
Extracting grid cell characteristics from place cell inputs using non-negative principal component analysis.
Yedidyah Dordek, Daniel Soudry, Ron Meir, Dori Derdikman. Elife 2016
Yedidyah Dordek, Daniel Soudry, Ron Meir, Dori Derdikman. Elife 2016
42
A Multiplexed, Heterogeneous, and Adaptive Code for Navigation in Medial Entorhinal Cortex.
Kiah Hardcastle, Niru Maheswaranathan, Surya Ganguli, Lisa M Giocomo. Neuron 2017
Kiah Hardcastle, Niru Maheswaranathan, Surya Ganguli, Lisa M Giocomo. Neuron 2017
24
Grid cell symmetry is shaped by environmental geometry.
Julija Krupic, Marius Bauza, Stephen Burton, Caswell Barry, John O'Keefe. Nature 2015
Julija Krupic, Marius Bauza, Stephen Burton, Caswell Barry, John O'Keefe. Nature 2015
24
Spatial representation in the entorhinal cortex.
Marianne Fyhn, Sturla Molden, Menno P Witter, Edvard I Moser, May-Britt Moser. Science 2004
Marianne Fyhn, Sturla Molden, Menno P Witter, Edvard I Moser, May-Britt Moser. Science 2004
24
What grid cells convey about rat location.
Ila R Fiete, Yoram Burak, Ted Brookings. J Neurosci 2008
Ila R Fiete, Yoram Burak, Ted Brookings. J Neurosci 2008
23
Multiple Running Speed Signals in Medial Entorhinal Cortex.
James R Hinman, Mark P Brandon, Jason R Climer, G William Chapman, Michael E Hasselmo. Neuron 2016
James R Hinman, Mark P Brandon, Jason R Climer, G William Chapman, Michael E Hasselmo. Neuron 2016
27
A Map-like Micro-Organization of Grid Cells in the Medial Entorhinal Cortex.
Yi Gu, Sam Lewallen, Amina A Kinkhabwala, Cristina Domnisoru, Kijung Yoon, Jeffrey L Gauthier, Ila R Fiete, David W Tank. Cell 2018
Yi Gu, Sam Lewallen, Amina A Kinkhabwala, Cristina Domnisoru, Kijung Yoon, Jeffrey L Gauthier, Ila R Fiete, David W Tank. Cell 2018
67
A model of grid cells based on a twisted torus topology.
Alexis Guanella, Daniel Kiper, Paul Verschure. Int J Neural Syst 2007
Alexis Guanella, Daniel Kiper, Paul Verschure. Int J Neural Syst 2007
22
The spatial periodicity of grid cells is not sustained during reduced theta oscillations.
Julie Koenig, Ashley N Linder, Jill K Leutgeb, Stefan Leutgeb. Science 2011
Julie Koenig, Ashley N Linder, Jill K Leutgeb, Stefan Leutgeb. Science 2011
20
A hybrid oscillatory interference/continuous attractor network model of grid cell firing.
Daniel Bush, Neil Burgess. J Neurosci 2014
Daniel Bush, Neil Burgess. J Neurosci 2014
28
Vector-based navigation using grid-like representations in artificial agents.
Andrea Banino, Caswell Barry, Benigno Uria, Charles Blundell, Timothy Lillicrap, Piotr Mirowski, Alexander Pritzel, Martin J Chadwick, Thomas Degris, Joseph Modayil,[...]. Nature 2018
Andrea Banino, Caswell Barry, Benigno Uria, Charles Blundell, Timothy Lillicrap, Piotr Mirowski, Alexander Pritzel, Martin J Chadwick, Thomas Degris, Joseph Modayil,[...]. Nature 2018
20
Path integration and cognitive mapping in a continuous attractor neural network model.
A Samsonovich, B L McNaughton. J Neurosci 1997
A Samsonovich, B L McNaughton. J Neurosci 1997
20
Development of the spatial representation system in the rat.
Rosamund F Langston, James A Ainge, Jonathan J Couey, Cathrin B Canto, Tale L Bjerknes, Menno P Witter, Edvard I Moser, May-Britt Moser. Science 2010
Rosamund F Langston, James A Ainge, Jonathan J Couey, Cathrin B Canto, Tale L Bjerknes, Menno P Witter, Edvard I Moser, May-Britt Moser. Science 2010
20
Hippocampus-independent phase precession in entorhinal grid cells.
Torkel Hafting, Marianne Fyhn, Tora Bonnevie, May-Britt Moser, Edvard I Moser. Nature 2008
Torkel Hafting, Marianne Fyhn, Tora Bonnevie, May-Britt Moser, Edvard I Moser. Nature 2008
19
Boundary vector cells in the subiculum of the hippocampal formation.
Colin Lever, Stephen Burton, Ali Jeewajee, John O'Keefe, Neil Burgess. J Neurosci 2009
Colin Lever, Stephen Burton, Ali Jeewajee, John O'Keefe, Neil Burgess. J Neurosci 2009
19
Grid cells generate an analog error-correcting code for singularly precise neural computation.
Sameet Sreenivasan, Ila Fiete. Nat Neurosci 2011
Sameet Sreenivasan, Ila Fiete. Nat Neurosci 2011
20
Evidence for grid cells in a human memory network.
Christian F Doeller, Caswell Barry, Neil Burgess. Nature 2010
Christian F Doeller, Caswell Barry, Neil Burgess. Nature 2010
19
Organizing conceptual knowledge in humans with a gridlike code.
Alexandra O Constantinescu, Jill X O'Reilly, Timothy E J Behrens. Science 2016
Alexandra O Constantinescu, Jill X O'Reilly, Timothy E J Behrens. Science 2016
19
Principles governing the integration of landmark and self-motion cues in entorhinal cortical codes for navigation.
Malcolm G Campbell, Samuel A Ocko, Caitlin S Mallory, Isabel I C Low, Surya Ganguli, Lisa M Giocomo. Nat Neurosci 2018
Malcolm G Campbell, Samuel A Ocko, Caitlin S Mallory, Isabel I C Low, Surya Ganguli, Lisa M Giocomo. Nat Neurosci 2018
32
Connecting multiple spatial scales to decode the population activity of grid cells.
Martin Stemmler, Alexander Mathis, Andreas V M Herz. Sci Adv 2015
Martin Stemmler, Alexander Mathis, Andreas V M Herz. Sci Adv 2015
28
The hippocampus as a predictive map.
Kimberly L Stachenfeld, Matthew M Botvinick, Samuel J Gershman. Nat Neurosci 2017
Kimberly L Stachenfeld, Matthew M Botvinick, Samuel J Gershman. Nat Neurosci 2017
19
Reduction of theta rhythm dissociates grid cell spatial periodicity from directional tuning.
Mark P Brandon, Andrew R Bogaard, Christopher P Libby, Michael A Connerney, Kishan Gupta, Michael E Hasselmo. Science 2011
Mark P Brandon, Andrew R Bogaard, Christopher P Libby, Michael A Connerney, Kishan Gupta, Michael E Hasselmo. Science 2011
18
Grid cells require excitatory drive from the hippocampus.
Tora Bonnevie, Benjamin Dunn, Marianne Fyhn, Torkel Hafting, Dori Derdikman, John L Kubie, Yasser Roudi, Edvard I Moser, May-Britt Moser. Nat Neurosci 2013
Tora Bonnevie, Benjamin Dunn, Marianne Fyhn, Torkel Hafting, Dori Derdikman, John L Kubie, Yasser Roudi, Edvard I Moser, May-Britt Moser. Nat Neurosci 2013
18
Impaired path integration in mice with disrupted grid cell firing.
Mariana Gil, Mihai Ancau, Magdalene I Schlesiger, Angela Neitz, Kevin Allen, Rodrigo J De Marco, Hannah Monyer. Nat Neurosci 2018
Mariana Gil, Mihai Ancau, Magdalene I Schlesiger, Angela Neitz, Kevin Allen, Rodrigo J De Marco, Hannah Monyer. Nat Neurosci 2018
32
Using Grid Cells for Navigation.
Daniel Bush, Caswell Barry, Daniel Manson, Neil Burgess. Neuron 2015
Daniel Bush, Caswell Barry, Daniel Manson, Neil Burgess. Neuron 2015
19
Influence of boundary removal on the spatial representations of the medial entorhinal cortex.
Francesco Savelli, D Yoganarasimha, James J Knierim. Hippocampus 2008
Francesco Savelli, D Yoganarasimha, James J Knierim. Hippocampus 2008
16
Phase relationship between hippocampal place units and the EEG theta rhythm.
J O'Keefe, M L Recce. Hippocampus 1993
J O'Keefe, M L Recce. Hippocampus 1993
16
Grid cells without theta oscillations in the entorhinal cortex of bats.
Michael M Yartsev, Menno P Witter, Nachum Ulanovsky. Nature 2011
Michael M Yartsev, Menno P Witter, Nachum Ulanovsky. Nature 2011
16
A model of the neural basis of the rat's sense of direction.
W E Skaggs, J J Knierim, H S Kudrimoti, B L McNaughton. Adv Neural Inf Process Syst 1995
W E Skaggs, J J Knierim, H S Kudrimoti, B L McNaughton. Adv Neural Inf Process Syst 1995
16
Representation of spatial orientation by the intrinsic dynamics of the head-direction cell ensemble: a theory.
K Zhang. J Neurosci 1996
K Zhang. J Neurosci 1996
16
The head direction signal: origins and sensory-motor integration.
Jeffrey S Taube. Annu Rev Neurosci 2007
Jeffrey S Taube. Annu Rev Neurosci 2007
15
Grid cell firing may arise from interference of theta frequency membrane potential oscillations in single neurons.
Michael E Hasselmo, Lisa M Giocomo, Eric A Zilli. Hippocampus 2007
Michael E Hasselmo, Lisa M Giocomo, Eric A Zilli. Hippocampus 2007
15
Membrane potential dynamics of grid cells.
Cristina Domnisoru, Amina A Kinkhabwala, David W Tank. Nature 2013
Cristina Domnisoru, Amina A Kinkhabwala, David W Tank. Nature 2013
15
Temporal frequency of subthreshold oscillations scales with entorhinal grid cell field spacing.
Lisa M Giocomo, Eric A Zilli, Erik Fransén, Michael E Hasselmo. Science 2007
Lisa M Giocomo, Eric A Zilli, Erik Fransén, Michael E Hasselmo. Science 2007
15
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.