Somatostatin-Expressing Interneurons Enable and Maintain Learning-Dependent Sequential Activation of Pyramidal Neurons
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Ryohei Yasuda | Ruohe Zhao | Avital Adler | W. Gan | R. Yasuda | Avital Adler | Wen-Biao Gan | Myung Eun Shin | M. Shin | Ruohe Zhao
[1] Tim Gollisch,et al. Rapid Neural Coding in the Retina with Relative Spike Latencies , 2008, Science.
[2] Arnaud Delorme,et al. Spike-based strategies for rapid processing , 2001, Neural Networks.
[3] Shun-ichi Amari,et al. Learning Patterns and Pattern Sequences by Self-Organizing Nets of Threshold Elements , 1972, IEEE Transactions on Computers.
[4] J. Lisman,et al. The molecular basis of CaMKII function in synaptic and behavioural memory , 2002, Nature Reviews Neuroscience.
[5] W. Gan,et al. Branch-specific dendritic Ca2+ spikes cause persistent synaptic plasticity , 2015, Nature.
[6] Stefan R. Pulver,et al. Ultra-sensitive fluorescent proteins for imaging neuronal activity , 2013, Nature.
[7] Nathan R. Wilson,et al. Division and subtraction by distinct cortical inhibitory networks in vivo , 2012, Nature.
[8] G. Bi,et al. Synaptic Modifications in Cultured Hippocampal Neurons: Dependence on Spike Timing, Synaptic Strength, and Postsynaptic Cell Type , 1998, The Journal of Neuroscience.
[9] D. Restrepo,et al. Cell-type-specific control of basolateral amygdala neuronal circuits via entorhinal cortex-driven feedforward inhibition , 2020, eLife.
[10] James J Knierim,et al. A biophysical model of synaptic plasticity and metaplasticity can account for the dynamics of the backward shift of hippocampal place fields. , 2008, Journal of neurophysiology.
[11] A. Zador,et al. Balanced inhibition underlies tuning and sharpens spike timing in auditory cortex , 2003, Nature.
[12] Frances S. Chance,et al. Erratum: Orthogonal micro-organization of orientation and spatial frequency in primate primary visual cortex , 2013, Nature Neuroscience.
[13] J. Knierim,et al. Backward Shift of Head Direction Tuning Curves of the Anterior Thalamus: Comparison with CA1 Place Fields , 2006, Neuron.
[14] Gilles Laurent,et al. Transient Dynamics for Neural Processing , 2008, Science.
[15] Thomas Hainmueller,et al. Parallel emergence of stable and dynamic memory engrams in the hippocampus , 2018, Nature.
[16] M. Scanziani,et al. Inhibition of Inhibition in Visual Cortex: The Logic of Connections Between Molecularly Distinct Interneurons , 2013, Nature Neuroscience.
[17] Tatsuo S. Okubo,et al. Growth and splitting of neural sequences in songbird vocal development , 2015, Nature.
[18] Ryohei Yasuda,et al. Kinetics of Endogenous CaMKII Required for Synaptic Plasticity Revealed by Optogenetic Kinase Inhibitor , 2017, Neuron.
[19] Thomas M. Morse,et al. Compartmentalization of GABAergic Inhibition by Dendritic Spines , 2013, Science.
[20] H Sompolinsky,et al. Associative neural network model for the generation of temporal patterns. Theory and application to central pattern generators. , 1988, Biophysical journal.
[21] M. Carandini,et al. Inhibition dominates sensory responses in awake cortex , 2012, Nature.
[22] Asohan Amarasingham,et al. Internally Generated Cell Assembly Sequences in the Rat Hippocampus , 2008, Science.
[23] M. Bartos,et al. Presynaptic GABAB receptors functionally uncouple somatostatin interneurons from the active hippocampal network , 2020, eLife.
[24] E. Bizzi,et al. Motor Learning with Unstable Neural Representations , 2007, Neuron.
[25] W. Senn,et al. Dendritic encoding of sensory stimuli controlled by deep cortical interneurons , 2009, Nature.
[26] E. Neher,et al. Highly nonlinear photodamage in two-photon fluorescence microscopy. , 2001, Biophysical journal.
[27] K K Baldridge,et al. The structure of the chromophore within DsRed, a red fluorescent protein from coral. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[28] F. Skinner,et al. Common Principles in Functional Organization of VIP/Calretinin Cell-Driven Disinhibitory Circuits Across Cortical Areas , 2020, Frontiers in Neural Circuits.
[29] Brad E. Pfeiffer,et al. Hippocampal place cell sequences depict future paths to remembered goals , 2013, Nature.
[30] Timothy Q Gentner,et al. Inhibition and recurrent excitation in a computational model of sparse bursting in song nucleus HVC. , 2009, Journal of neurophysiology.
[31] B L McNaughton,et al. Coordinated Reactivation of Distributed Memory Traces in Primate Neocortex , 2002, Science.
[32] Lacey J. Kitch,et al. Long-term dynamics of CA1 hippocampal place codes , 2013, Nature Neuroscience.
[33] W. Gan,et al. Sleep promotes branch-specific formation of dendritic spines after learning , 2014, Science.
[34] Alison L. Barth,et al. Somatostatin-expressing neurons in cortical networks , 2016, Nature Reviews Neuroscience.
[35] H. Markram,et al. Regulation of Synaptic Efficacy by Coincidence of Postsynaptic APs and EPSPs , 1997, Science.
[36] Mauricio Barahona,et al. Learning spatiotemporal signals using a recurrent spiking network that discretizes time , 2019, bioRxiv.
[37] M. Stryker,et al. A Cortical Circuit for Gain Control by Behavioral State , 2014, Cell.
[38] G. Fishell,et al. Interneuron cell types are fit to function , 2014, Nature.
[39] R. Nicoll,et al. Calcium/calmodulin-dependent kinase II and long-term potentiation enhance synaptic transmission by the same mechanism. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[40] G. Fishell,et al. A disinhibitory circuit mediates motor integration in the somatosensory cortex , 2013, Nature Neuroscience.
[41] L. Looger,et al. Chemical and Genetic Engineering of Selective Ion Channel–Ligand Interactions , 2011, Science.
[42] W. Gan,et al. Transcranial two-photon imaging of synaptic structures in the cortex of awake head-restrained mice. , 2013, Methods in molecular biology.
[43] Shuyun Dong,et al. Directed molecular evolution of DREADDs: a generic approach to creating next-generation RASSLs , 2010, Nature Protocols.
[44] M. Sahani,et al. Cortical control of arm movements: a dynamical systems perspective. , 2013, Annual review of neuroscience.
[45] R. Lemon. Descending pathways in motor control. , 2008, Annual review of neuroscience.
[46] Sten Grillner,et al. Biological Pattern Generation: The Cellular and Computational Logic of Networks in Motion , 2006, Neuron.
[47] Christopher D. Harvey,et al. Recurrent Network Models of Sequence Generation and Memory , 2016, Neuron.
[48] H. Schulman,et al. CaMKII inhibitors: from research tools to therapeutic agents , 2014, Front. Pharmacol..
[49] Simon X. Chen,et al. Emergence of reproducible spatiotemporal activity during motor learning , 2014, Nature.
[50] Michael Unser,et al. A pyramid approach to subpixel registration based on intensity , 1998, IEEE Trans. Image Process..
[51] Marc W Howard,et al. Gradual Changes in Hippocampal Activity Support Remembering the Order of Events , 2007, Neuron.
[52] Joshua I. Sanders,et al. Cortical interneurons that specialize in disinhibitory control , 2013, Nature.
[53] L. F. Abbott,et al. A Model of Spatial Map Formation in the Hippocampus of the Rat , 1999, Neural Computation.
[54] Christopher D. Harvey,et al. Choice-specific sequences in parietal cortex during a virtual-navigation decision task , 2012, Nature.
[55] Joseph K Jun,et al. Development of Neural Circuitry for Precise Temporal Sequences through Spontaneous Activity, Axon Remodeling, and Synaptic Plasticity , 2007, PloS one.
[56] J. Kleim,et al. The organization of the forelimb representation of the C57BL/6 mouse motor cortex as defined by intracortical microstimulation and cytoarchitecture. , 2011, Cerebral cortex.
[57] Jochen F Staiger,et al. Unique functional properties of somatostatin-expressing GABAergic neurons in mouse barrel cortex , 2012, Nature Neuroscience.
[58] Richard Hans Robert Hahnloser,et al. Spike-Time-Dependent Plasticity and Heterosynaptic Competition Organize Networks to Produce Long Scale-Free Sequences of Neural Activity , 2010, Neuron.
[59] P. Somogyi,et al. Neuronal Diversity and Temporal Dynamics: The Unity of Hippocampal Circuit Operations , 2008, Science.
[60] Tifei Yuan,et al. Commentary: Activation of Cortical Somatostatin Interneurons Rescues Synapse Loss and Motor Deficits After Acute MPTP Infusion , 2019, Front. Cell. Neurosci..
[61] H. Markram,et al. Anatomical, physiological and molecular properties of Martinotti cells in the somatosensory cortex of the juvenile rat , 2004, The Journal of physiology.
[62] G. Laurent,et al. Odour encoding by temporal sequences of firing in oscillating neural assemblies , 1996, Nature.
[63] A. C. Yu,et al. Temporal Hierarchical Control of Singing in Birds , 1996, Science.
[64] Selmaan N. Chettih,et al. Dynamic Reorganization of Neuronal Activity Patterns in Parietal Cortex , 2017, Cell.
[65] M. Scanziani,et al. Enforcement of Temporal Fidelity in Pyramidal Cells by Somatic Feed-Forward Inhibition , 2001, Science.
[66] M. Quirk,et al. Experience-Dependent Asymmetric Shape of Hippocampal Receptive Fields , 2000, Neuron.
[67] K. Bolding,et al. Recurrent cortical circuits implement concentration-invariant odor coding , 2018, Science.
[68] Ashesh K Dhawale,et al. Motor Cortex Is Required for Learning but Not for Executing a Motor Skill , 2015, Neuron.
[69] S. Rossignol,et al. A comparison of treadmill locomotion in adult cats before and after spinal transection. , 1996, Journal of neurophysiology.