During development, cortical plasticity is associated with the rearrangement of excitatory connections. While these connections become more stable with age, plasticity can still be induced in the adult cortex. Here we provide evidence that structural plasticity of inhibitory synapses onto pyramidal neurons is a major component of plasticity in the adult neocortex. In vivo two-photon imaging was used to monitor the formation and elimination of fluorescently labeled inhibitory structures on pyramidal neurons. We find that ocular dominance plasticity in the adult visual cortex is associated with rapid inhibitory synapse loss, especially of those present on dendritic spines. This occurs not only with monocular deprivation but also with subseque...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
SummaryDuring development, cortical plasticity is associated with the rearrangement of excitatory co...
Ocular dominance plasticity is a well-documented phenomenon allowing us to study properties of corti...
Ocular dominance plasticity is a well-documented phenomenon allowing us to study properties of corti...
A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is...
A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...
A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is...
Sensory experience profoundly shapes neural circuitry of juvenile brain. Although the visual cortex ...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
SummaryNeuroplasticity is a fundamental property of the developing mammalian visual system, with res...
<p>Early sensory experience instructs the maturation of neural circuitry in the cortex. This has bee...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
SummaryDuring development, cortical plasticity is associated with the rearrangement of excitatory co...
Ocular dominance plasticity is a well-documented phenomenon allowing us to study properties of corti...
Ocular dominance plasticity is a well-documented phenomenon allowing us to study properties of corti...
A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is...
A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...
A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is...
Sensory experience profoundly shapes neural circuitry of juvenile brain. Although the visual cortex ...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
SummaryNeuroplasticity is a fundamental property of the developing mammalian visual system, with res...
<p>Early sensory experience instructs the maturation of neural circuitry in the cortex. This has bee...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...