Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain function. Recent studies suggest that functional plasticity is mediated by alterations of the strengths of existing synapses or dynamics of dendritic spines. Alterations of cortical axons could also contribute to functional changes, but little is known about the effects of experience at the level of individual corticocortical axons. We reconstructed individual layer (L) 2/3 pyramidal neurons filled in vivo in developing barrel cortex of control and partially sensory-deprived rats. L2 axons had larger field spans than L3 axons but were otherwise equivalently affected by deprivation. Whisker trimming over similar to 2 weeks markedly reduced overall...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
Cortical synaptic circuitry develops rapidly in the second postnatal week, simultaneous with experie...
Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain func...
Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain func...
Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain func...
Do changes in neuronal structure underlie cortical plasticity(1,2)? Here we used time-lapse two-phot...
Most sensory systems are active, in the sense that the animal performs specific motor actions in ord...
Neocortical representations of sensory information are commonly arranged in topographic maps that ca...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
The cerebral cortex encodes sensory information with astonishing precision, but it is also confronte...
Cortical topography can be remapped as a consequence of sensory deprivation, suggesting that cortica...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
Cortical synaptic circuitry develops rapidly in the second postnatal week, simultaneous with experie...
Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain func...
Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain func...
Sensory experience can, over the course of days to weeks, produce long-lasting changes in brain func...
Do changes in neuronal structure underlie cortical plasticity(1,2)? Here we used time-lapse two-phot...
Most sensory systems are active, in the sense that the animal performs specific motor actions in ord...
Neocortical representations of sensory information are commonly arranged in topographic maps that ca...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
The cerebral cortex encodes sensory information with astonishing precision, but it is also confronte...
Cortical topography can be remapped as a consequence of sensory deprivation, suggesting that cortica...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
We examined the effect of whisker trimming during early postnatal development on the morphology of a...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
Cortical synaptic circuitry develops rapidly in the second postnatal week, simultaneous with experie...