Pastoll H, Solanka L, van Rossum MC, Nolan MF. (2013). Feedback inhibition enables theta-nested gamma oscillations and grid firing fields. Neuron. 77 [PubMed]

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References and models cited by this paper

Arenkiel BR et al. (2007). In vivo light-induced activation of neural circuitry in transgenic mice expressing channelrhodopsin-2. Neuron. 54 [PubMed]

Beed P et al. (2010). Analysis of excitatory microcircuitry in the medial entorhinal cortex reveals cell-type-specific differences. Neuron. 68 [PubMed]

Brandon MP et al. (2011). Reduction of theta rhythm dissociates grid cell spatial periodicity from directional tuning. Science (New York, N.Y.). 332 [PubMed]

Burak Y, Fiete IR. (2009). Accurate path integration in continuous attractor network models of grid cells. PLoS computational biology. 5 [PubMed]

Burgalossi A et al. (2011). Microcircuits of functionally identified neurons in the rat medial entorhinal cortex. Neuron. 70 [PubMed]

Buzsáki G. (2002). Theta oscillations in the hippocampus. Neuron. 33 [PubMed]

Buzsáki G, Draguhn A. (2004). Neuronal oscillations in cortical networks. Science (New York, N.Y.). 304 [PubMed]

Buzsáki G, Wang XJ. (2012). Mechanisms of gamma oscillations. Annual review of neuroscience. 35 [PubMed]

Canolty RT, Knight RT. (2010). The functional role of cross-frequency coupling. Trends in cognitive sciences. 14 [PubMed]

Canto CB, Wouterlood FG, Witter MP. (2008). What does the anatomical organization of the entorhinal cortex tell us? Neural plasticity. 2008 [PubMed]

Chrobak JJ, Buzsáki G. (1998). Gamma oscillations in the entorhinal cortex of the freely behaving rat. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

Colgin LL et al. (2009). Frequency of gamma oscillations routes flow of information in the hippocampus. Nature. 462 [PubMed]

Cunningham MO, Davies CH, Buhl EH, Kopell N, Whittington MA. (2003). Gamma oscillations induced by kainate receptor activation in the entorhinal cortex in vitro. The Journal of neuroscience : the official journal of the Society for Neuroscience. 23 [PubMed]

Deuchars J, West DC, Thomson AM. (1994). Relationships between morphology and physiology of pyramid-pyramid single axon connections in rat neocortex in vitro. The Journal of physiology. 478 Pt 3 [PubMed]

Dhillon A, Jones RS. (2000). Laminar differences in recurrent excitatory transmission in the rat entorhinal cortex in vitro. Neuroscience. 99 [PubMed]

Dickson CT, Biella G, de Curtis M. (2000). Evidence for spatial modules mediated by temporal synchronization of carbachol-induced gamma rhythm in medial entorhinal cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Fourcaud-Trocmé N, Hansel D, van Vreeswijk C, Brunel N. (2003). How spike generation mechanisms determine the neuronal response to fluctuating inputs. The Journal of neuroscience : the official journal of the Society for Neuroscience. 23 [PubMed]

Fries P. (2009). Neuronal gamma-band synchronization as a fundamental process in cortical computation. Annual review of neuroscience. 32 [PubMed]

Fuhs MC, Touretzky DS. (2006). A spin glass model of path integration in rat medial entorhinal cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 26 [PubMed]

Fyhn M, Molden S, Witter MP, Moser EI, Moser MB. (2004). Spatial representation in the entorhinal cortex. Science (New York, N.Y.). 305 [PubMed]

Garden DL, Dodson PD, O'Donnell C, White MD, Nolan MF. (2008). Tuning of synaptic integration in the medial entorhinal cortex to the organization of grid cell firing fields. Neuron. 60 [PubMed]

Goodman D, Brette R. (2008). Brian: a simulator for spiking neural networks in python. Frontiers in neuroinformatics. 2 [PubMed]

Guanella A, Kiper D, Verschure P. (2007). A model of grid cells based on a twisted torus topology. International journal of neural systems. 17 [PubMed]

Hafting T, Fyhn M, Bonnevie T, Moser MB, Moser EI. (2008). Hippocampus-independent phase precession in entorhinal grid cells. Nature. 453 [PubMed]

Hafting T, Fyhn M, Molden S, Moser MB, Moser EI. (2005). Microstructure of a spatial map in the entorhinal cortex. Nature. 436 [PubMed]

Huxter J, Burgess N, O'Keefe J. (2003). Independent rate and temporal coding in hippocampal pyramidal cells. Nature. 425 [PubMed]

Klausberger T, Somogyi P. (2008). Neuronal diversity and temporal dynamics: the unity of hippocampal circuit operations. Science (New York, N.Y.). 321 [PubMed]

Koenig J, Linder AN, Leutgeb JK, Leutgeb S. (2011). The spatial periodicity of grid cells is not sustained during reduced theta oscillations. Science (New York, N.Y.). 332 [PubMed]

Krupic J, Burgess N, O'Keefe J. (2012). Neural representations of location composed of spatially periodic bands. Science (New York, N.Y.). 337 [PubMed]

Kumar SS, Jin X, Buckmaster PS, Huguenard JR. (2007). Recurrent circuits in layer II of medial entorhinal cortex in a model of temporal lobe epilepsy. The Journal of neuroscience : the official journal of the Society for Neuroscience. 27 [PubMed]

Lisman J. (2005). The theta/gamma discrete phase code occuring during the hippocampal phase precession may be a more general brain coding scheme. Hippocampus. 15 [PubMed]

Mason A, Nicoll A, Stratford K. (1991). Synaptic transmission between individual pyramidal neurons of the rat visual cortex in vitro. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

McNaughton BL, Barnes CA, O'Keefe J. (1983). The contributions of position, direction, and velocity to single unit activity in the hippocampus of freely-moving rats. Experimental brain research. 52 [PubMed]

McNaughton BL, Battaglia FP, Jensen O, Moser EI, Moser MB. (2006). Path integration and the neural basis of the 'cognitive map'. Nature reviews. Neuroscience. 7 [PubMed]

Middleton S et al. (2008). NMDA receptor-dependent switching between different gamma rhythm-generating microcircuits in entorhinal cortex. Proceedings of the National Academy of Sciences of the United States of America. 105 [PubMed]

Mitchell SJ, Rawlins JN, Steward O, Olton DS. (1982). Medial septal area lesions disrupt theta rhythm and cholinergic staining in medial entorhinal cortex and produce impaired radial arm maze behavior in rats. The Journal of neuroscience : the official journal of the Society for Neuroscience. 2 [PubMed]

Mizuseki K, Sirota A, Pastalkova E, Buzsáki G. (2009). Theta oscillations provide temporal windows for local circuit computation in the entorhinal-hippocampal loop. Neuron. 64 [PubMed]

Navratilova Z, Giocomo LM, Fellous JM, Hasselmo ME, McNaughton BL. (2012). Phase precession and variable spatial scaling in a periodic attractor map model of medial entorhinal grid cells with realistic after-spike dynamics. Hippocampus. 22 [PubMed]

O'Keefe J, Recce ML. (1993). Phase relationship between hippocampal place units and the EEG theta rhythm. Hippocampus. 3 [PubMed]

Pastoll H, Ramsden HL, Nolan MF. (2012). Intrinsic electrophysiological properties of entorhinal cortex stellate cells and their contribution to grid cell firing fields. Frontiers in neural circuits. 6 [PubMed]

Pastoll H, White M, Nolan M. (2012). Preparation of parasagittal slices for the investigation of dorsal-ventral organization of the rodent medial entorhinal cortex. Journal of visualized experiments : JoVE. [PubMed]

Quilichini P, Sirota A, Buzsáki G. (2010). Intrinsic circuit organization and theta-gamma oscillation dynamics in the entorhinal cortex of the rat. The Journal of neuroscience : the official journal of the Society for Neuroscience. 30 [PubMed]

Sargolini F et al. (2006). Conjunctive representation of position, direction, and velocity in entorhinal cortex. Science (New York, N.Y.). 312 [PubMed]

Song S, Sjöström PJ, Reigl M, Nelson S, Chklovskii DB. (2005). Highly nonrandom features of synaptic connectivity in local cortical circuits. PLoS biology. 3 [PubMed]

Tiesinga P, Sejnowski TJ. (2009). Cortical enlightenment: are attentional gamma oscillations driven by ING or PING? Neuron. 63 [PubMed]

Welinder PE, Burak Y, Fiete IR. (2008). Grid cells: the position code, neural network models of activity, and the problem of learning. Hippocampus. 18 [PubMed]

Wilent WB, Nitz DA. (2007). Discrete place fields of hippocampal formation interneurons. Journal of neurophysiology. 97 [PubMed]

Yartsev MM, Witter MP, Ulanovsky N. (2011). Grid cells without theta oscillations in the entorhinal cortex of bats. Nature. 479 [PubMed]

van Der Linden S, Panzica F, de Curtis M. (1999). Carbachol induces fast oscillations in the medial but not in the lateral entorhinal cortex of the isolated guinea pig brain. Journal of neurophysiology. 82 [PubMed]

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]

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]

Schmidt-Hieber C et al. (2017). Active dendritic integration as a mechanism for robust and precise grid cell firing. Nature neuroscience. 20 [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]

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