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A novel role for p75NTR in subplate growth cone complexity and visual thalamocortical innervation.
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A novel p75NTR signaling pathway promotes survival, not death, of immunopurified neocortical subplate neurons.
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p75 neurotrophin receptor signaling regulates growth cone filopodial dynamics through modulating RhoA activity.
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TRK and p75 neurotrophin receptor systems in the developing human brain.
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Pathfinding and target selection by developing geniculocortical axons.
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Requirement for subplate neurons in the formation of thalamocortical connections.
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Subplate neurons and the patterning of thalamocortial connections.
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A role for subplate neurons in the patterning of connections from thalamus to neocortex.
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The Superior Function of the Subplate in Early Neocortical Development.
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Molecular guidance cues in the development of visual pathway.
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Unbiased Quantification of Subplate Neuron Loss following Neonatal Hypoxia-Ischemia in a Rat Model.
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Neuronal survival in the brain: neuron type-specific mechanisms.
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Plasticity in the Neonatal Brain following Hypoxic-Ischaemic Injury.
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Developmental synergy between thalamic structure and interhemispheric connectivity in the visual system of preterm infants.
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Pathophysiology and neuroprotection of global and focal perinatal brain injury: lessons from animal models.
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The role of p75NTR in cholinergic basal forebrain structure and function.
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Brain injury in premature neonates: A primary cerebral dysmaturation disorder?
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本文引用的文献

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A novel p75NTR signaling pathway promotes survival, not death, of immunopurified neocortical subplate neurons.
J Neurosci. 2001 Jul 15;21(14):5121-9. doi: 10.1523/JNEUROSCI.21-14-05121.2001.
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Defining brain wiring patterns and mechanisms through gene trapping in mice.
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Tbr1 regulates differentiation of the preplate and layer 6.
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Cholinergic innervation in adult rat cerebral cortex: a quantitative immunocytochemical description.
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p75 is important for axon growth and schwann cell migration during development.
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Neurotrophin signal transduction in the nervous system.
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Dynamic regulation of BDNF and NT-3 expression during visual system development.
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Neurotrophins: neurotrophic modulation of neurite growth.
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The early development of thalamocortical and corticothalamic projections in the mouse.
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