Couey JJ et al. (2013). Recurrent inhibitory circuitry as a mechanism for grid formation. Nature neuroscience. 16 [PubMed]

See more from authors: Couey JJ · Witoelar A · Zhang SJ · Zheng K · Ye J · Dunn B · Czajkowski R · Moser MB · Moser EI · Roudi Y · Witter MP

References and models cited by this paper
References and models that cite this paper

Aussel A, Buhry L, Tyvaert L, Ranta R. (2018). A detailed anatomical and mathematical model of the hippocampal formation for the generation of sharp-wave ripples and theta-nested gamma oscillations. Journal of computational neuroscience. 45 [PubMed]

Bush D, Burgess N. (2014). A hybrid oscillatory interference/continuous attractor network model of grid cell firing. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34 [PubMed]

Castro L, Aguiar P. (2014). A feedforward model for the formation of a grid field where spatial information is provided solely from place cells. Biological cybernetics. 108 [PubMed]

D'Albis T, Kempter R. (2017). A single-cell spiking model for the origin of grid-cell patterns. PLoS computational biology. 13 [PubMed]

Rennó-Costa C, Tort ABL. (2017). Place and Grid Cells in a Loop: Implications for Memory Function and Spatial Coding. The Journal of neuroscience : the official journal of the Society for Neuroscience. 37 [PubMed]

Schmidt-Hieber C, Häusser M. (2013). Cellular mechanisms of spatial navigation in the medial entorhinal cortex. Nature neuroscience. 16 [PubMed]

Solanka L, van Rossum MC, Nolan MF. (2015). Noise promotes independent control of gamma oscillations and grid firing within recurrent attractor networks. eLife. 4 [PubMed]

Wernle T et al. (2018). Integration of grid maps in merged environments. Nature neuroscience. 21 [PubMed]

This website requires cookies and limited processing of your personal data in order to function. By continuing to browse or otherwise use this site, you are agreeing to this use. See our Privacy policy and how to cite and terms of use.