Enhancement of dendritic persistent Na+ currents by mGluR5 leads to an advancement of spike timing with an increase in temporal precision
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W. Ho | Suk-Ho Lee | Sooyun Kim | Jong-Woo Sohn | Weonjin Yu | Jaehan Kwon | Jong‐Woo Sohn
[1] N. Spruston,et al. Persistent Sodium Current Mediates the Steep Voltage Dependence of Spatial Coding in Hippocampal Pyramidal Neurons , 2018, Neuron.
[2] W. Ho,et al. mGluR5‐dependent modulation of dendritic excitability in CA1 pyramidal neurons mediated by enhancement of persistent Na+ currents , 2018, The Journal of physiology.
[3] Matthew F Nolan,et al. Synaptic integrative mechanisms for spatial cognition , 2017, Nature Neuroscience.
[4] Daniel A. Dombeck,et al. Increased Prevalence of Calcium Transients across the Dendritic Arbor during Place Field Formation , 2017, Neuron.
[5] Jeremy D. Cohen,et al. Experience-dependent shaping of hippocampal CA1 intracellular activity in novel and familiar environments , 2017, eLife.
[6] Doyun Lee,et al. Hippocampal Place Fields Emerge upon Single-Cell Manipulation of Excitability During Behavior , 2012, Science.
[7] David L. Hunt,et al. Synaptic plasticity of NMDA receptors: mechanisms and functional implications , 2012, Current Opinion in Neurobiology.
[8] M. Yeckel,et al. Metabotropic glutamate receptors regulate hippocampal CA1 pyramidal neuron excitability via Ca2+ wave‐dependent activation of SK and TRPC channels , 2011, The Journal of physiology.
[9] N. Spruston,et al. A Post-Burst Afterdepolarization Is Mediated by Group I Metabotropic Glutamate Receptor-Dependent Upregulation of Cav2.3 R-Type Calcium Channels in CA1 Pyramidal Neurons , 2010, PLoS biology.
[10] Z. Nusser,et al. Molecular Identity of Dendritic Voltage-Gated Sodium Channels , 2010, Science.
[11] Lyle J. Graham,et al. Complementary Theta Resonance Filtering by Two Spatially Segregated Mechanisms in CA1 Hippocampal Pyramidal Neurons , 2009, The Journal of Neuroscience.
[12] T. Fellin,et al. Activation of mGluR5 induces spike afterdepolarization and enhanced excitability in medium spiny neurons of the nucleus accumbens by modulating persistent Na+ currents , 2009, The Journal of physiology.
[13] Rui Xiao,et al. Dopamine modulates an intrinsic mGluR5-mediated depolarization underlying prefrontal persistent activity , 2009, Nature Neuroscience.
[14] Marie-Therese Horstmann,et al. Role of axonal NaV1.6 sodium channels in action potential initiation of CA1 pyramidal neurons. , 2008, Journal of neurophysiology.
[15] Lyle J. Graham,et al. Contrasting Effects of the Persistent Na+ Current on Neuronal Excitability and Spike Timing , 2006, Neuron.
[16] Dominique Debanne,et al. Long-Term Enhancement of Neuronal Excitability and Temporal Fidelity Mediated by Metabotropic Glutamate Receptor Subtype 5 , 2003, The Journal of Neuroscience.
[17] J. Magee. Dendritic mechanisms of phase precession in hippocampal CA1 pyramidal neurons. , 2001, Journal of neurophysiology.
[18] J. Csicsvari,et al. Ensemble Patterns of Hippocampal CA3-CA1 Neurons during Sharp Wave–Associated Population Events , 2000, Neuron.
[19] A. Urbani,et al. Riluzole inhibits the persistent sodium current in mammalian CNS neurons , 2000, The European journal of neuroscience.
[20] Y. Yarom,et al. Resonance, oscillation and the intrinsic frequency preferences of neurons , 2000, Trends in Neurosciences.
[21] J. Lisman,et al. Position reconstruction from an ensemble of hippocampal place cells: contribution of theta phase coding. , 2000, Journal of neurophysiology.
[22] R. Anwyl. Metabotropic glutamate receptors: electrophysiological properties and role in plasticity , 1999, Brain Research Reviews.
[23] B. McNaughton,et al. Population dynamics and theta rhythm phase precession of hippocampal place cell firing: A spiking neuron model , 1998, Hippocampus.
[24] B. Sakmann,et al. Amplification of EPSPs by axosomatic sodium channels in neocortical pyramidal neurons , 1995, Neuron.
[25] Shigetada Nakanishi,et al. Metabotropic glutamate receptors: Synaptic transmission, modulation, and plasticity , 1994, Neuron.
[26] J. O’Keefe,et al. Phase relationship between hippocampal place units and the EEG theta rhythm , 1993, Hippocampus.
[27] J. O'Keefe,et al. The hippocampus as a spatial map. Preliminary evidence from unit activity in the freely-moving rat. , 1971, Brain research.
[28] J. Pin,et al. Pharmacology and functions of metabotropic glutamate receptors. , 1997, Annual review of pharmacology and toxicology.
[29] W. Crill,et al. Persistent sodium current in mammalian central neurons. , 1996, Annual review of physiology.
[30] B. McNaughton,et al. Theta phase precession in hippocampal neuronal populations and the compression of temporal sequences , 1996, Hippocampus.
[31] B. Gähwiler,et al. Reduction of resting K+ current by metabotropic glutamate and muscarinic receptors in rat CA3 cells: mediation by G‐proteins. , 1994, The Journal of physiology.
[32] L. Squire. Memory and Brain , 1987 .