Functional maps in the cerebral cortex reorganize in response to changes in experience, but the synaptic underpinnings remain uncertain. Here, we demonstrate that layer (L) 2/3 pyramidal cell synapses in mouse barrel cortex can be potentiated upon pairing of whisker-evoked postsynaptic potentials (PSPs) with action potentials (APs). This spike-timing-dependent long-term potentiation (STD-LTP) was only effective for PSPs evoked by deflections of a whisker in the neuron's receptive field center, and not its surround. Trimming of all except two whiskers rapidly opened the possibility to drive STD-LTP by the spared surround whisker. This facilitated STD-LTP was associated with a strong decrease in the surrounding whisker-evoked inhibitory condu...
How homeostatic processes contribute to map plasticity and stability in sensory cortex is not well-u...
The timing of stimulus-evoked spikes encodes information about sensory stimuli. Here we studied the ...
Mice actively explore their environment by rhythmically sweeping their whiskers. As a consequence, n...
SummaryFunctional maps in the cerebral cortex reorganize in response to changes in experience, but t...
SummaryFunctional maps in the cerebral cortex reorganize in response to changes in experience, but t...
Deprivation-induced plasticity of sensory cortical maps involves long-term potentiation (LTP) and de...
Long-term synaptic potentiation (LTP) is thought to be a key process in cortical synaptic network pl...
Deprivation-induced plasticity of sensory cortical maps involves long-term potentiation (LTP) and de...
Sensory experience and perceptual learning changes receptive field properties of cortical pyramidal ...
The cerebral cortex continuously adapts through learning and changes in sensory experience. A major ...
Deprivation−induced plasticity of sensory cortical maps involves long−term potentiation (LTP) and de...
Rapid plasticity of layer (L) 2/3 inhibitory circuits is an early step in sensory cortical map plast...
Local recurrent networks in neocortex are critical nodes for sensory processing, but their regulatio...
SummarySensory experience drives robust plasticity of sensory maps in cerebral cortex, but the role ...
SummaryLocal recurrent networks in neocortex are critical nodes for sensory processing, but their re...
How homeostatic processes contribute to map plasticity and stability in sensory cortex is not well-u...
The timing of stimulus-evoked spikes encodes information about sensory stimuli. Here we studied the ...
Mice actively explore their environment by rhythmically sweeping their whiskers. As a consequence, n...
SummaryFunctional maps in the cerebral cortex reorganize in response to changes in experience, but t...
SummaryFunctional maps in the cerebral cortex reorganize in response to changes in experience, but t...
Deprivation-induced plasticity of sensory cortical maps involves long-term potentiation (LTP) and de...
Long-term synaptic potentiation (LTP) is thought to be a key process in cortical synaptic network pl...
Deprivation-induced plasticity of sensory cortical maps involves long-term potentiation (LTP) and de...
Sensory experience and perceptual learning changes receptive field properties of cortical pyramidal ...
The cerebral cortex continuously adapts through learning and changes in sensory experience. A major ...
Deprivation−induced plasticity of sensory cortical maps involves long−term potentiation (LTP) and de...
Rapid plasticity of layer (L) 2/3 inhibitory circuits is an early step in sensory cortical map plast...
Local recurrent networks in neocortex are critical nodes for sensory processing, but their regulatio...
SummarySensory experience drives robust plasticity of sensory maps in cerebral cortex, but the role ...
SummaryLocal recurrent networks in neocortex are critical nodes for sensory processing, but their re...
How homeostatic processes contribute to map plasticity and stability in sensory cortex is not well-u...
The timing of stimulus-evoked spikes encodes information about sensory stimuli. Here we studied the ...
Mice actively explore their environment by rhythmically sweeping their whiskers. As a consequence, n...