A fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs. It is well established that the functional synaptic changes underlying this adaptation are reflected by structural modifications in excitatory neurons. In contrast, the degree to which structural plasticity in inhibitory neurons accompanies functional changes is less clear. Here, we use two-photon imaging to monitor the fine structure of inhibitory neurons in mouse visual cortex after deprivation induced by retinal lesions. We find that a subset of inhibitory neurons carry dendritic spines, which form glutamatergic synapses. Removal of visual input correlates with a rapid and lasting reduction in the number of inhibitory cell spines. Similar to th...
The impact of activity on neuronal circuitry is complex, involving both functional and structural ch...
The developing brain can respond quickly to altered sensory experience by circuit reorganization. Du...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
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...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
The cerebral cortex has the ability to adapt to altered sensory inputs. In the visual cortex, a smal...
SummaryDuring development, cortical plasticity is associated with the rearrangement of excitatory co...
It is well established that visual deprivation has a profound impact on the responsiveness of neuron...
The impact of activity on neuronal circuitry is complex, involving both functional and structural ch...
The developing brain can respond quickly to altered sensory experience by circuit reorganization. Du...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...
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...
SummaryA fundamental property of neuronal circuits is the ability to adapt to altered sensory inputs...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
Older concepts of a hard-wired adult brain have been overturned in recent years by in vivo imaging s...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
During development, cortical plasticity is associated with the rearrangement of excitatory connectio...
The cerebral cortex has the ability to adapt to altered sensory inputs. In the visual cortex, a smal...
SummaryDuring development, cortical plasticity is associated with the rearrangement of excitatory co...
It is well established that visual deprivation has a profound impact on the responsiveness of neuron...
The impact of activity on neuronal circuitry is complex, involving both functional and structural ch...
The developing brain can respond quickly to altered sensory experience by circuit reorganization. Du...
Sensory experiences exert a powerful influence on the function and future performance of neuronal ci...