IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
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The Current Status of Somatostatin-Interneurons in Inhibitory Control of Brain Function and PlasticityEnvironmental enrichment and the sensory brain: the role of enrichment in remediating brain injury.The neurobiology of the Prader-Willi phenotype of fragile X syndromeFractality of sensations and the brain health: the theory linking neurodegenerative disorder with distortion of spatial and temporal scale-invariance and fractal complexity of the visible world.GABAergic synapses: their plasticity and role in sensory cortexEnvironmental enrichment strengthens corticocortical interactions and reduces amyloid-β oligomers in aged mice.Transcranial direct current stimulation enhances recovery of stereopsis in adults with amblyopia.Refinement but not maintenance of visual receptive fields is independent of visual experience.Enhancement of GluN2B Subunit-Containing NMDA Receptor Underlies Serotonergic Regulation of Long-Term Potentiation after Critical Period in the Rat Visual Cortex.A complementary role of intracortical inhibition in age-related tactile degradation and its remodelling in humansEnvironmental enrichment causes a global potentiation of neuronal responses across stimulus complexity and lamina of sensory cortex.Improvement of Eye Alignment in Adult Strabismic Monkeys by Sustained IGF-1 Treatment.Insulin-Like Growth Factor 1: At the Crossroads of Brain Development and Aging.Visual cortex plasticity: a complex interplay of genetic and environmental influences.Activity-dependent NPAS4 expression and the regulation of gene programs underlying plasticity in the central nervous system.Epigenetics and child abuse: Modern-day Darwinism--The miraculous ability of the human genome to adapt, and then adapt again.Neuronal plasticity and neurotrophic factors in drug responses.Early impoverished environment delays the maturation of cerebral cortex.Experience-dependent expression of NPAS4 regulates plasticity in adult visual cortex.New Role of ATM in Controlling GABAergic Tone During Development.Prenatal and Early Postnatal Environmental Enrichment Reduce Acute Cell Death and Prevent Neurodevelopment and Memory Impairments in Rats Submitted to Neonatal Hypoxia Ischemia.Mitochondrial pathophysiology beyond the retinal ganglion cell: occipital GABA is decreased in autosomal dominant optic neuropathyFluoxetine does not enhance the effect of perceptual learning on visual function in adults with amblyopia
P2860
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P2860
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
description
2012 nî lūn-bûn
@nan
2012年の論文
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2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
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2012年论文
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2012年论文
@zh-cn
name
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@ast
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@en
type
label
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@ast
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@en
prefLabel
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@ast
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@en
P2093
P2860
P50
P356
P1433
P1476
IGF-1 restores visual cortex plasticity in adult life by reducing local GABA levels
@en
P2093
Alessandro Viegi
Ettore Tiraboschi
Lamberto Maffei
P2860
P304
P356
10.1155/2012/250421
P577
2012-06-06T00:00:00Z