Abstract: Proper wiring of neural circuits during development depends on both molecular cues that guide connectivity and activity-dependent mechanisms that use patterned activation to adjust the strength and number of synaptic connections. In this chapter, we discuss some of the plasticity mechanisms underlying the experience-dependent rewiring of visual cortical microcircuits focusing on layer 4 of rat primary visual cortex. The microcircuit in layer 4 has the ability to regulate its excitability by shifting the balance between excitatory and inhibitory synaptic transmission in an experience-dependent manner. Early in postnatal development (shortly after eye opening), visual deprivation activates several forms of homeostatic plasticity tha...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Brief monocular deprivation (MD) shifts ocular dominance and reduces the density of thalamic synapse...
Experience-dependent development of visual cortex depends on the balance between excitatory and inhi...
The cerebral cortex encodes sensory information with astonishing precision, but it is also confronte...
The developmental increase in the strength of inhibitory synaptic circuits defines the time window o...
It is well established that sensory cortices of animals can bemodified by sensory experience, especi...
AbstractThe recent decade testified a tremendous increase in our knowledge on how cell-type-specific...
The cerebral cortex continuously adapts through learning and changes in sensory experience. A major ...
Sensory cortical circuits are shaped by experience during sensitive periods in development. In the p...
Monocular deprivation (MD) during development leads to a dramatic loss of responsiveness through the...
Disrupting binocular vision during a developmental critical period can yield enduring changes to ocu...
Sensory deprivation during a critical period reduces spine motility and disrupts receptive field str...
Disrupting binocular vision during a developmental critical period can yield enduring changes to ocu...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Brief monocular deprivation (MD) shifts ocular dominance and reduces the density of thalamic synapse...
Experience-dependent development of visual cortex depends on the balance between excitatory and inhi...
The cerebral cortex encodes sensory information with astonishing precision, but it is also confronte...
The developmental increase in the strength of inhibitory synaptic circuits defines the time window o...
It is well established that sensory cortices of animals can bemodified by sensory experience, especi...
AbstractThe recent decade testified a tremendous increase in our knowledge on how cell-type-specific...
The cerebral cortex continuously adapts through learning and changes in sensory experience. A major ...
Sensory cortical circuits are shaped by experience during sensitive periods in development. In the p...
Monocular deprivation (MD) during development leads to a dramatic loss of responsiveness through the...
Disrupting binocular vision during a developmental critical period can yield enduring changes to ocu...
Sensory deprivation during a critical period reduces spine motility and disrupts receptive field str...
Disrupting binocular vision during a developmental critical period can yield enduring changes to ocu...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Functional plasticity in rodent visual cortex has been intensively studied since the pioneering expe...
Brief monocular deprivation (MD) shifts ocular dominance and reduces the density of thalamic synapse...
Experience-dependent development of visual cortex depends on the balance between excitatory and inhi...