Reverberation of Recent Visual Experience in Spontaneous Cortical Waves
暂无分享,去创建一个
[1] B. Nolan. Boosting slow oscillations during sleep potentiates memory , 2008 .
[2] Jian-Young Wu,et al. Compression and Reflection of Visually Evoked Cortical Waves , 2007, Neuron.
[3] Robert A. Frazor,et al. Standing Waves and Traveling Waves Distinguish Two Circuits in Visual Cortex , 2007, Neuron.
[4] Feng Qi Han,et al. Rapid learning in cortical coding of visual scenes , 2007, Nature Neuroscience.
[5] G. Buzsáki,et al. Sequential structure of neocortical spontaneous activity in vivo , 2007, Proceedings of the National Academy of Sciences.
[6] M. Wilson,et al. Coordinated memory replay in the visual cortex and hippocampus during sleep , 2007, Nature Neuroscience.
[7] N. Hatsopoulos,et al. Propagating waves mediate information transfer in the motor cortex , 2006, Nature Neuroscience.
[8] P. Roland,et al. Cortical feedback depolarization waves: A mechanism of top-down influence on early visual areas , 2006, Proceedings of the National Academy of Sciences.
[9] C. Petersen,et al. Visualizing the Cortical Representation of Whisker Touch: Voltage-Sensitive Dye Imaging in Freely Moving Mice , 2006, Neuron.
[10] Randolf Menzel,et al. Sensory Memory for Odors Is Encoded in Spontaneous Correlated Activity Between Olfactory Glomeruli , 2006, Neural Computation.
[11] Randolph Blake,et al. Traveling waves of activity in primary visual cortex during binocular rivalry , 2005, Nature Neuroscience.
[12] Amiram Grinvald,et al. VSDI: a new era in functional imaging of cortical dynamics , 2004, Nature Reviews Neuroscience.
[13] M. Weliky,et al. Small modulation of ongoing cortical dynamics by sensory input during natural vision , 2004, Nature.
[14] Mu-ming Poo,et al. Reversal and consolidation of activity-induced synaptic modifications , 2004, Trends in Neurosciences.
[15] F. Chavane,et al. Imaging cortical correlates of illusion in early visual cortex , 2004, Nature.
[16] M. Lavine,et al. Long-Lasting Novelty-Induced Neuronal Reverberation during Slow-Wave Sleep in Multiple Forebrain Areas , 2004, PLoS biology.
[17] R. Lorente. ANALYSIS OF THE ACTIVITY OF THE CHAINS -OF INTERNUNCIAL NEURONS , 2004 .
[18] D. Linden,et al. The other side of the engram: experience-driven changes in neuronal intrinsic excitability , 2003, Nature Reviews Neuroscience.
[19] A. Grinvald,et al. Interaction of sensory responses with spontaneous depolarization in layer 2/3 barrel cortex , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[20] A. Grinvald,et al. Spontaneously emerging cortical representations of visual attributes , 2003, Nature.
[21] W. Regehr,et al. Short-term synaptic plasticity. , 2002, Annual review of physiology.
[22] D. Kleinfeld,et al. Traveling Electrical Waves in Cortex Insights from Phase Dynamics and Speculation on a Computational Role , 2001, Neuron.
[23] G. Bi,et al. Synaptic modification by correlated activity: Hebb's postulate revisited. , 2001, Annual review of neuroscience.
[24] M. Wilson,et al. Temporally Structured Replay of Awake Hippocampal Ensemble Activity during Rapid Eye Movement Sleep , 2001, Neuron.
[25] D. Margoliash,et al. Song replay during sleep and computational rules for sensorimotor vocal learning. , 2000, Science.
[26] Maria V. Sanchez-Vives,et al. Cellular and network mechanisms of rhythmic recurrent activity in neocortex , 2000, Nature Neuroscience.
[27] M. Weliky,et al. Correlated Neuronal Activityand Visual Cortical Development , 2000, Neuron.
[28] G. Laurent,et al. Short-term memory in olfactory network dynamics , 1999, Nature.
[29] A. Grinvald,et al. Linking spontaneous activity of single cortical neurons and the underlying functional architecture. , 1999, Science.
[30] J. Csicsvari,et al. Replay and Time Compression of Recurring Spike Sequences in the Hippocampus , 1999, The Journal of Neuroscience.
[31] D. Ruderman,et al. Independent component analysis of natural image sequences yields spatio-temporal filters similar to simple cells in primary visual cortex , 1998, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[32] D. Kleinfeld,et al. Visual stimuli induce waves of electrical activity in turtle cortex. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[33] C. Shatz,et al. Synaptic Activity and the Construction of Cortical Circuits , 1996, Science.
[34] A. Grinvald,et al. Dynamics of Ongoing Activity: Explanation of the Large Variability in Evoked Cortical Responses , 1996, Science.
[35] M. Steriade,et al. Short- and long-range neuronal synchronization of the slow (< 1 Hz) cortical oscillation. , 1995, Journal of neurophysiology.
[36] B. McNaughton,et al. Reactivation of hippocampal ensemble memories during sleep. , 1994, Science.
[37] E Tulving,et al. Priming and human memory systems. , 1990, Science.
[38] G L Gerstein,et al. Detecting spatiotemporal firing patterns among simultaneously recorded single neurons. , 1988, Journal of neurophysiology.
[39] D. O. Hebb,et al. The organization of behavior , 1988 .
[40] W. A. Phillips. On the distinction between sensory storage and short-term visual memory , 1974 .
[41] M. Eden,et al. Note on Short Term Storage of Information in Vision , 1964, Perceptual and motor skills.
[42] N. RafaelLorenteDe,et al. ANALYSIS OF THE ACTIVITY OF THE CHAINS OF INTERNUNCIAL NEURONS , 1938 .