The corpus callosum modulates spindle-burst activity within homotopic regions of somatosensory cortex in newborn rats
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Spindle Activity Orchestrates Plasticity during Development and SleepSpindle Bursts in Neonatal Rat Cerebral CortexThe Case of the Disappearing Spindle BurstPostnatal Development of Subcallosal Zone Following Suppression of Programmed Cell Death in Bax-deficient Mice.Auditory stimuli mimicking ambient sounds drive temporal "delta-brushes" in premature infants.A conserved switch in sensory processing prepares developing neocortex for vision.Beyond dreams: do sleep-related movements contribute to brain development?Developmental appearance and disappearance of cortical events and oscillations in infant rats.Neocortical activation of the hippocampus during sleep in infant ratsSensory feedback synchronizes motor and sensory neuronal networks in the neonatal rat spinal cordAn abrupt developmental shift in callosal modulation of sleep-related spindle bursts coincides with the emergence of excitatory-inhibitory balance and a reduction of somatosensory cortical plasticityREM sleep twitches rouse nascent cerebellar circuits: Implications for sensorimotor developmentSpatiotemporal properties of neuron response suppression in owl monkey primary somatosensory cortex when stimuli are presented to both handsSubplate neurons promote spindle bursts and thalamocortical patterning in the neonatal rat somatosensory cortex.Rapid Postnatal Expansion of Neural Networks Occurs in an Environment of Altered Neurovascular and Neurometabolic CouplingTranscallosal transfer of information and functional asymmetry of the human brain.Activity-dependent callosal axon projections in neonatal mouse cerebral cortex.A valuable and promising method for recording brain activity in behaving newborn rodents.A shift in sensory processing that enables the developing human brain to discriminate touch from pain.Large Scale Cortical Functional Networks Associated with Slow-Wave and Spindle-Burst-Related Spontaneous Activity."Slow activity transients" in infant rat visual cortex: a spreading synchronous oscillation patterned by retinal waves.Convergence of Cortical, Thalamocortical, and Callosal Pathways during Human Fetal Development Revealed by Diffusion MRI Tractography.Intelligence-related differences in the asymmetry of spontaneous cerebral activity.
P2860
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P2860
The corpus callosum modulates spindle-burst activity within homotopic regions of somatosensory cortex in newborn rats
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on October 2008
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
The corpus callosum modulates ...... sensory cortex in newborn rats
@en
The corpus callosum modulates ...... ensory cortex in newborn rats.
@nl
type
label
The corpus callosum modulates ...... sensory cortex in newborn rats
@en
The corpus callosum modulates ...... ensory cortex in newborn rats.
@nl
prefLabel
The corpus callosum modulates ...... sensory cortex in newborn rats
@en
The corpus callosum modulates ...... ensory cortex in newborn rats.
@nl
P2860
P1476
The corpus callosum modulates ...... sensory cortex in newborn rats
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P2093
Amy Jo Marcano-Reik
P2860
P304
P356
10.1111/J.1460-9568.2008.06461.X
P407
P577
2008-10-01T00:00:00Z