scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1017211634 |
P356 | DOI | 10.1038/NATURE03132 |
P698 | PubMed publication ID | 15592414 |
P50 | author | Yehezkel Ben-Ari | Q3572081 |
György Buzsáki | Q20478352 | ||
Roustem Khazipov | Q43278756 | ||
Xavier Leinekugel | Q47701908 | ||
P2093 | author name string | Gregory L Holmes | |
Anton Sirota | |||
P2860 | cites work | Neuronal domains in developing neocortex: mechanisms of coactivation. | Q51614893 |
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The blocking of the rolandic wicket rhythm and some central changes related to movement | Q28185080 | ||
Synaptic activity and the construction of cortical circuits | Q29617401 | ||
Thalamocortical oscillations in the sleeping and aroused brain | Q29619146 | ||
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Precise development of functional and anatomical columns in the neocortex. | Q31073393 | ||
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Developing networks play a similar melody | Q34253274 | ||
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GABAA, NMDA and AMPA receptors: a developmentally regulated 'ménage à trois'. | Q34445759 | ||
Development of cortical circuits: lessons from ocular dominance columns | Q34514468 | ||
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Hippocampal theta in the newborn rat is revealed under conditions that promote REM sleep. | Q48382491 | ||
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P433 | issue | 7018 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 758-761 | |
P577 | publication date | 2004-12-01 | |
P1433 | published in | Nature | Q180445 |
P1476 | title | Early motor activity drives spindle bursts in the developing somatosensory cortex | |
P478 | volume | 432 |
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Q40375713 | Circadian regulation of sleep and the sleep EEG under constant sleep pressure in the rat |
Q37410032 | Comparison of sleep spindles and theta oscillations in the hippocampus. |
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Q48640054 | Delayed development of adult-generated granule cells in dentate gyrus. |
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Q30454954 | Development and critical period plasticity of the barrel cortex |
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Q30471896 | Development of Fetal Movement between 26 and 36-Weeks' Gestation in Response to Vibro-Acoustic Stimulation |
Q89123771 | Development of tactile sensory circuits in the CNS |
Q27316429 | Development of twitching in sleeping infant mice depends on sensory experience. |
Q36484664 | Developmental Changes in Electrophysiological Properties and a Transition from Electrical to Chemical Coupling between Excitatory Layer 4 Neurons in the Rat Barrel Cortex |
Q33767094 | Developmental appearance and disappearance of cortical events and oscillations in infant rats |
Q102053762 | Developmental divergence of sensory stimulus representation in cortical interneurons |
Q34161080 | Developmental profiles of infant EEG: overlap with transient cortical circuits. |
Q30492955 | Developmental regulation of spontaneous activity in the Mammalian cochlea |
Q59799437 | Developmental trajectory of movement-related cortical oscillations during active sleep in a cross-sectional cohort of pre-term and full-term human infants |
Q47661298 | Direct Current Coupled Recordings of Cortical Spreading Depression Using Silicone Probes |
Q36215195 | Do interictal spikes drive epileptogenesis? |
Q90156490 | Dynamic postnatal development of the cellular and circuit properties of striatal D1 and D2 spiny projection neurons |
Q39936827 | EEG spike activity precedes epilepsy after kainate-induced status epilepticus |
Q47233691 | Early Development of Network Oscillations in the Ferret Visual Cortex. |
Q47762484 | Early Electroencephalography Suppression and Postnatal Morbidities Correlate with Cerebral Volume at Term-Equivalent Age in Very Preterm Infants |
Q37633778 | Early NMDA receptor-driven waves of activity in the developing neocortex: physiological or pathological network oscillations? |
Q43298115 | Early development of the thalamic inhibitory feedback loop in the primary somatosensory system of the newborn mice |
Q27311527 | Early hyperactivity and precocious maturation of corticostriatal circuits in Shank3B(-/-) mice |
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Q36145495 | Effects of oral temazepam on sleep spindles during non-rapid eye movement sleep: A high-density EEG investigation |
Q36655600 | Effects of seizures on developmental processes in the immature brain |
Q38615905 | Electrical activity controls area-specific expression of neuronal apoptosis in the developing mouse cerebral cortex. |
Q90721990 | Electrographic seizures and ictal-interictal continuum (IIC) patterns in critically ill patients |
Q36975968 | Emergence of Cognition from Action |
Q60908835 | Emergence of Coordinated Activity in the Developing Entorhinal-Hippocampal Network |
Q37160202 | Epilepsies and neuronal plasticity: for better or for worse? |
Q48909764 | Epilepsy in young Tsc1(+/-) mice exhibits age-dependent expression that mimics that of human tuberous sclerosis complex. |
Q39350624 | Ethanol and the Developing Brain: Inhibition of Neuronal Activity and Neuroapoptosis |
Q33642424 | Evolution, immunity and the emergence of brain superautoantigens |
Q46581239 | Excitatory GABA in rodent developing neocortex in vitro |
Q34270616 | Excitatory GABA: How a Correct Observation May Turn Out to be an Experimental Artifact |
Q46308734 | Exposure to unpredictable maternal sensory signals influences cognitive development across species |
Q37167979 | Extraocular muscle activity, rapid eye movements and the development of active and quiet sleep. |
Q26748715 | Form and Function of Sleep Spindles across the Lifespan |
Q30823919 | Fragmentation and high entropy of neonatal experience predict adolescent emotional outcome |
Q36353533 | Fragmentation and unpredictability of early-life experience in mental disorders |
Q27322361 | From spontaneous motor activity to coordinated behaviour: a developmental model |
Q49111612 | Functional development of large-scale sensorimotor cortical networks in the brain |
Q39221214 | GABAergic Transmission during Brain Development: Multiple Effects at Multiple Stages |
Q26825288 | GABAergic interneurons shape the functional maturation of the cortex |
Q37198007 | Gating of reafference in the external cuneate nucleus during self-generated movements in wake but not sleep |
Q42418441 | Hippocampal network activity is transiently altered by induction of long-term potentiation in the dentate gyrus of freely behaving rats |
Q28083958 | Hippocampal sharp wave-ripple: A cognitive biomarker for episodic memory and planning |
Q50197406 | Horizontal Synchronization of Neuronal Activity in the Barrel Cortex of the Neonatal Rat by Spindle-Burst Oscillations. |
Q35077888 | Hypoxia-ischemia disrupts directed interactions within neonatal prefrontal-hippocampal networks |
Q52145167 | Inhibition of Cortical Activity and Apoptosis Caused by Ethanol in Neonatal Rats In Vivo. |
Q42926935 | Interaction between neocortical and hippocampal networks via slow oscillations. |
Q30491382 | Internally mediated developmental desynchronization of neocortical network activity |
Q47294405 | Intracortical augmenting responses in networks of reduced compartmental models of tufted layer 5 cells |
Q34393896 | Isoflurane suppresses early cortical activity. |
Q47423032 | Ketamine-Midazolam Anesthesia Induces Total Inhibition of Cortical Activity in the Brain of Newborn Rats. |
Q46236215 | LPS-induced microglial secretion of TNFα increases activity-dependent neuronal apoptosis in the neonatal cerebral cortex |
Q39075743 | Large Scale Cortical Functional Networks Associated with Slow-Wave and Spindle-Burst-Related Spontaneous Activity |
Q89223874 | Layer I Interneurons Sharpen Sensory Maps during Neonatal Development |
Q48207587 | Layer III neurons control synchronized waves in the immature cerebral cortex. |
Q37660582 | Layer-specific optogenetic activation of pyramidal neurons causes beta-gamma entrainment of neonatal networks. |
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Q34171067 | Long-range temporal correlations in the EEG bursts of human preterm babies |
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Q27302810 | Maturation of Sensori-Motor Functional Responses in the Preterm Brain |
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Q37351119 | Medroxyprogesterone acetate is associated with increased sleep spindles during non-rapid eye movement sleep in women referred for polysomnography |
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Q38364229 | Myoclonic Twitching and Sleep-Dependent Plasticity in the Developing Sensorimotor System |
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Q64885044 | Neural Correlates of Anesthesia in Newborn Mice and Humans. |
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Q36677167 | Neuronal avalanches organize as nested theta- and beta/gamma-oscillations during development of cortical layer 2/3 |
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