Synaptic plasticity in adult neural circuits may involve the strengthening or weakening of existing synapses as well as structural plasticity, including synapse formation and elimination. Indeed, long-term in vivo imaging studies are beginning to reveal the structural dynamics of neocortical neurons in the normal and injured adult brain. Although the overall cell-specific morphology of axons and dendrites, as well as of a subpopulation of small synaptic structures, are remarkably stable, there is increasing evidence that experience-dependent plasticity of specific circuits in the somatosensory and visual cortex involves cell type-specific structural plasticity: some boutons and dendritic spines appear and disappear, accompanied by synapse f...
We imaged axons in layer (L) 1 of the mouse barrel cortex in vivo. Axons from thalamus and L2/3/5, o...
SummaryWe imaged axons in layer (L) 1 of the mouse barrel cortex in vivo. Axons from thalamus and L2...
Neural circuits of mammalian cerebral cortex have exhibited amazing abilities of structural and func...
Synaptic plasticity in adult neural circuits may involve the strengthening or weakening of existing ...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
Do new synapses form in the adult cortex to support experience-dependent plasticity? To address this...
Changes in sensory experience modify the function of the adult brain's neuronal circuits. This flexi...
Adult primary sensory cortex is not hard wired, but adapts to sensory experience. The cellular basis...
Neuronal plasticity is both a basic and one of the most fascinating properties of the adult brain. I...
The adult brain has long been viewed as a collection of neuronal networks that maintain a fixed conf...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
SummaryDuring development, cortical plasticity is associated with the rearrangement of excitatory co...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
Functional circuits in the adult neocortex adjust to novel sensory experience, but the underlying sy...
We imaged axons in layer (L) 1 of the mouse barrel cortex in vivo. Axons from thalamus and L2/3/5, o...
SummaryWe imaged axons in layer (L) 1 of the mouse barrel cortex in vivo. Axons from thalamus and L2...
Neural circuits of mammalian cerebral cortex have exhibited amazing abilities of structural and func...
Synaptic plasticity in adult neural circuits may involve the strengthening or weakening of existing ...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
Do new synapses form in the adult cortex to support experience-dependent plasticity? To address this...
Changes in sensory experience modify the function of the adult brain's neuronal circuits. This flexi...
Adult primary sensory cortex is not hard wired, but adapts to sensory experience. The cellular basis...
Neuronal plasticity is both a basic and one of the most fascinating properties of the adult brain. I...
The adult brain has long been viewed as a collection of neuronal networks that maintain a fixed conf...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
SummaryDuring development, cortical plasticity is associated with the rearrangement of excitatory co...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
Functional circuits in the adult neocortex adjust to novel sensory experience, but the underlying sy...
We imaged axons in layer (L) 1 of the mouse barrel cortex in vivo. Axons from thalamus and L2/3/5, o...
SummaryWe imaged axons in layer (L) 1 of the mouse barrel cortex in vivo. Axons from thalamus and L2...
Neural circuits of mammalian cerebral cortex have exhibited amazing abilities of structural and func...