Functional Diversity of Subicular Principal Cells during Hippocampal Ripples
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Yangfan Peng | Dietmar Schmitz | Claudia Böhm | Jochen Winterer | J. Poulet | D. Schmitz | N. Maier | Claudia Böhm | J. Winterer | Nikolaus Maier | James F A Poulet | Jörg R P Geiger | Yangfan Peng | J. Geiger | Jochen Winterer | Nikolaus Maier | Jörg R. P. Geiger
[1] L. Frank,et al. Awake Hippocampal Sharp-Wave Ripples Support Spatial Memory , 2012, Science.
[2] Menno P. Witter,et al. Connections of the subiculum of the rat: Topography in relation to columnar and laminar organization , 2006, Behavioural Brain Research.
[3] G. Buzsáki,et al. Preconfigured, skewed distribution of firing rates in the hippocampus and entorhinal cortex. , 2013, Cell reports.
[4] G. Buzsáki,et al. Hippocampal CA1 pyramidal cells form functionally distinct sublayers , 2011, Nature Neuroscience.
[5] H. Markram,et al. Regulation of Synaptic Efficacy by Coincidence of Postsynaptic APs and EPSPs , 1997, Science.
[6] M. Witter,et al. Heterogeneity in the Dorsal Subiculum of the Rat. Distinct Neuronal Zones Project to Different Cortical and Subcortical Targets , 1990, The European journal of neuroscience.
[7] S. Bressler,et al. Reversal of theta rhythm flow through intact hippocampal circuits , 2014, Nature Neuroscience.
[8] Y. Kubota,et al. Highly Differentiated Projection-Specific Cortical Subnetworks , 2011, The Journal of Neuroscience.
[9] D. Amaral,et al. Organization of CA1 projections to the subiculum: A PHA‐L analysis in the rat , 1991, Hippocampus.
[10] Anatol C. Kreitzer,et al. Distinct Roles of GABAergic Interneurons in the Regulation of Striatal Output Pathways , 2010, The Journal of Neuroscience.
[11] G. Buzsáki,et al. Selective activation of deep layer (V-VI) retrohippocampal cortical neurons during hippocampal sharp waves in the behaving rat , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[12] J. Born,et al. Sleep for preserving and transforming episodic memory. , 2013, Annual review of neuroscience.
[13] Mattias P. Karlsson,et al. Awake replay of remote experiences in the hippocampus , 2009, Nature Neuroscience.
[14] P. Somogyi,et al. Sleep and Movement Differentiates Actions of Two Types of Somatostatin-Expressing GABAergic Interneuron in Rat Hippocampus , 2016, Neuron.
[15] Dietmar Schmitz,et al. An Approach for Reliably Investigating Hippocampal Sharp Wave-Ripples In Vitro , 2009, PloS one.
[16] Albert K. Lee,et al. Memory of Sequential Experience in the Hippocampus during Slow Wave Sleep , 2002, Neuron.
[17] N. Spruston,et al. Target‐specific output patterns are predicted by the distribution of regular‐spiking and bursting pyramidal neurons in the subiculum , 2012, Hippocampus.
[18] E. Callaway,et al. Previously Published Works Uc Irvine Title: Cell-type-specific Circuit Connectivity of Hippocampal Ca1 Revealed through Cre-dependent Rabies Tracing Cell-type Specific Circuit Connectivity of Hippocampal Ca1 Revealed through Cre-dependent Rabies Tracing Nih Public Access Author Manuscript , 2022 .
[19] Norio Matsuki,et al. Subicular activation preceding hippocampal ripples in vitro , 2013, Scientific Reports.
[20] G. Buzsáki,et al. Selective suppression of hippocampal ripples impairs spatial memory , 2009, Nature Neuroscience.
[21] J. Taube. Electrophysiological properties of neurons in the rat subiculum in vitro , 2004, Experimental Brain Research.
[22] C. Petersen,et al. Correlating whisker behavior with membrane potential in barrel cortex of awake mice , 2006, Nature Neuroscience.
[23] Y. Kawaguchi,et al. Recurrent Connection Patterns of Corticostriatal Pyramidal Cells in Frontal Cortex , 2006, The Journal of Neuroscience.
[24] F. H. Lopes da Silva,et al. Networks of the Hippocampal Memory System of the Rat: The Pivotal Role of the Subiculum a , 2000, Annals of the New York Academy of Sciences.
[25] G. Buzsáki,et al. High-Frequency Oscillations in the Output Networks of the Hippocampal–Entorhinal Axis of the Freely Behaving Rat , 1996, The Journal of Neuroscience.
[26] M. Witter,et al. Subicular efferents are organized mostly as parallel projections: A double‐labeling, retrograde‐tracing study in the rat , 1998, The Journal of comparative neurology.
[27] R. Yuste,et al. Dense, Unspecific Connectivity of Neocortical Parvalbumin-Positive Interneurons: A Canonical Microcircuit for Inhibition? , 2011, The Journal of Neuroscience.
[28] Attila Losonczy,et al. Parvalbumin-Positive Basket Cells Differentiate among Hippocampal Pyramidal Cells , 2014, Neuron.
[29] P. Dudchenko. The hippocampus as a cognitive map , 2010 .
[30] M. Wilson,et al. Disruption of ripple‐associated hippocampal activity during rest impairs spatial learning in the rat , 2009, Hippocampus.
[31] F K Skinner,et al. Spontaneous rhythmic field potentials of isolated mouse hippocampal–subicular–entorhinal cortices in vitro , 2006, The Journal of physiology.
[32] George Paxinos,et al. The Mouse Brain in Stereotaxic Coordinates , 2001 .
[33] B. Nolan. Boosting slow oscillations during sleep potentiates memory , 2008 .
[34] Christian Wozny,et al. Synaptic plasticity in the subiculum , 2009, Progress in Neurobiology.
[35] R. Kempter,et al. Coherent Phasic Excitation during Hippocampal Ripples , 2011, Neuron.
[36] Surya Ganguli,et al. Behavioral/systems/cognitive Spatial Information Outflow from the Hippocampal Circuit: Distributed Spatial Coding and Phase Precession in the Subiculum , 2022 .
[37] N. Spruston,et al. Hippocampal Pyramidal Neurons Comprise Two Distinct Cell Types that Are Countermodulated by Metabotropic Receptors , 2012, Neuron.
[38] S. Hestrin,et al. Intracortical circuits of pyramidal neurons reflect their long-range axonal targets , 2009, Nature.
[39] L. Nadel,et al. The Hippocampus as a Cognitive Map , 1978 .
[40] A. Oeltermann,et al. Hippocampal–cortical interaction during periods of subcortical silence , 2012, Nature.
[41] J. Douglas Armstrong,et al. Bioinformatics Applications Note Systems Biology Simple Neurite Tracer: Open Source Software for Reconstruction, Visualization and Analysis of Neuronal Processes , 2022 .
[42] T. Dugladze,et al. Cell Type-Specific Separation of Subicular Principal Neurons during Network Activities , 2015, PloS one.
[43] M. Wilson,et al. Coordinated memory replay in the visual cortex and hippocampus during sleep , 2007, Nature Neuroscience.
[44] Christian Büchel,et al. The sleeping child outplays the adult's capacity to convert implicit into explicit knowledge , 2013, Nature Neuroscience.
[45] Matthew A. Wilson,et al. Hippocampal Replay of Extended Experience , 2009, Neuron.
[46] G. Buzsáki. Hippocampal sharp waves: Their origin and significance , 1986, Brain Research.
[47] I. Soltesz,et al. Target-selective GABAergic control of entorhinal cortex output , 2010, Nature Neuroscience.
[48] J. Born,et al. Boosting slow oscillations during sleep potentiates memory , 2006, Nature.
[49] Rita Zemankovics,et al. Maintaining network activity in submerged hippocampal slices: importance of oxygen supply , 2009, The European journal of neuroscience.