Use-dependent modifications of synapses have been well described in the developing visual cortex, but the ability for experience to modify synapses in the adult visual cortex is poorly understood. We found that 10 d of late-onset visual deprivation modifies both presynaptic and postsynaptic elements at the layer 4-->2/3 connection in the visual cortex of adult mice, and these changes differ from those observed in juveniles. Although visual deprivation in juvenile mice modifies the subunit composition and increases the current duration of synaptic NMDA receptors (NMDARs), no such effect is observed at synapses between layer 4 and layer 2/3 pyramidal neurons in adult mice. Surprisingly, visual deprivation in adult mice enhances the temporal s...
Light deprivation lowers the threshold for long-term depression (LTD) and long-term potentiation (LT...
NMDA receptor (NMDAR) activation is required for many forms of learning and memory as well as sensor...
Experience-dependent development of visual cortex depends on the balance between excitatory and inhi...
Use-dependent modifications of synapses have been well described in the developing visual cortex, bu...
AbstractThe receptive fields of visual cortical neurons are bidirectionally modified by sensory depr...
Bidirectional synaptic plasticity during development ensures that appropriate synapses in the brain ...
Sensory experience orchestrates the development of cortical circuitry by adaptively modifying neuro-...
The brain has an essential ability to modify and reorganize synaptic connections according to experi...
Experience-dependent changes in synaptic composition and function (synaptic plasticity) underlie man...
© 2020 Oxford University Press. All rights reserved. Primary visual cortex (V1) is the locus of nume...
AbstractThe binocular region of mouse visual cortex is strongly dominated by inputs from the contral...
Summary: Plasticity of thalamocortical (TC) synapses is robust during early development and becomes ...
Sensory experience orchestrates the development of cortical circuitry by adaptively modifying n...
SummarySensory experience orchestrates the development of cortical circuitry by adaptively modifying...
Recent evidence suggests that presynaptic-acting NMDA receptors (preNMDARs) are important for neocor...
Light deprivation lowers the threshold for long-term depression (LTD) and long-term potentiation (LT...
NMDA receptor (NMDAR) activation is required for many forms of learning and memory as well as sensor...
Experience-dependent development of visual cortex depends on the balance between excitatory and inhi...
Use-dependent modifications of synapses have been well described in the developing visual cortex, bu...
AbstractThe receptive fields of visual cortical neurons are bidirectionally modified by sensory depr...
Bidirectional synaptic plasticity during development ensures that appropriate synapses in the brain ...
Sensory experience orchestrates the development of cortical circuitry by adaptively modifying neuro-...
The brain has an essential ability to modify and reorganize synaptic connections according to experi...
Experience-dependent changes in synaptic composition and function (synaptic plasticity) underlie man...
© 2020 Oxford University Press. All rights reserved. Primary visual cortex (V1) is the locus of nume...
AbstractThe binocular region of mouse visual cortex is strongly dominated by inputs from the contral...
Summary: Plasticity of thalamocortical (TC) synapses is robust during early development and becomes ...
Sensory experience orchestrates the development of cortical circuitry by adaptively modifying n...
SummarySensory experience orchestrates the development of cortical circuitry by adaptively modifying...
Recent evidence suggests that presynaptic-acting NMDA receptors (preNMDARs) are important for neocor...
Light deprivation lowers the threshold for long-term depression (LTD) and long-term potentiation (LT...
NMDA receptor (NMDAR) activation is required for many forms of learning and memory as well as sensor...
Experience-dependent development of visual cortex depends on the balance between excitatory and inhi...