: Neuronal circuitries in the mammalian visual system change as a function of experience. Sensory experience modifies neuronal networks connectivity via the activation of different physiological processes such as excitatory/inhibitory synaptic transmission, neurotrophins, and signaling of extracellular matrix molecules. Long-lasting phenomena of plasticity occur when intracellular signal transduction pathways promote epigenetic alterations of chromatin structure that regulate the induction of transcription factors that in turn drive the expression of downstream targets, the products of which then work via the activation of structural and functional mechanisms that modify synaptic connectivity. Here, we review recent findings in the field of...
Experience-dependent changes in synaptic composition and function (synaptic plasticity) underlie man...
Background: The capacity for plasticity in the adult brain is limited by the anatomical traces laid ...
The nervous system is highly sensitive to experience during early postnatal life, but this phase of ...
Neuronal circuitries in the mammalian visual system change as a function of experience. Sensory expe...
The central nervous system architecture is highly dynamic and continuously modified by sensory exper...
ABSTR ACT: Neuronal circuitries in the mammalian visual system change as a function of experience. S...
SummaryThe action of visual experience on visual cortical circuits is maximal during a critical peri...
Visual cortical plasticity can be either rapid, occurring in response to abrupt changes in neural ac...
The nervous system acts at the interface between an organism and its surrounding environment: the in...
The capability of the brain to change functionally in response to sensory experience is most active ...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Hubel and Wiesel began the modern study of development and plasticity of primary visual cortex (V1),...
During early postnatal development, the brain receives tremendous input from developing sensory orga...
During brain development there are periods, called critical or sensitive period, in which specific r...
Sensory experience during early development helps the brain wire its connections as well as maintain...
Experience-dependent changes in synaptic composition and function (synaptic plasticity) underlie man...
Background: The capacity for plasticity in the adult brain is limited by the anatomical traces laid ...
The nervous system is highly sensitive to experience during early postnatal life, but this phase of ...
Neuronal circuitries in the mammalian visual system change as a function of experience. Sensory expe...
The central nervous system architecture is highly dynamic and continuously modified by sensory exper...
ABSTR ACT: Neuronal circuitries in the mammalian visual system change as a function of experience. S...
SummaryThe action of visual experience on visual cortical circuits is maximal during a critical peri...
Visual cortical plasticity can be either rapid, occurring in response to abrupt changes in neural ac...
The nervous system acts at the interface between an organism and its surrounding environment: the in...
The capability of the brain to change functionally in response to sensory experience is most active ...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Hubel and Wiesel began the modern study of development and plasticity of primary visual cortex (V1),...
During early postnatal development, the brain receives tremendous input from developing sensory orga...
During brain development there are periods, called critical or sensitive period, in which specific r...
Sensory experience during early development helps the brain wire its connections as well as maintain...
Experience-dependent changes in synaptic composition and function (synaptic plasticity) underlie man...
Background: The capacity for plasticity in the adult brain is limited by the anatomical traces laid ...
The nervous system is highly sensitive to experience during early postnatal life, but this phase of ...