Experience-dependent plasticity in the mature visual system is widely considered to be cortical. Using chronic two-photon Ca2+ imaging of thalamic afferents in layer 1 of binocular visual cortex, we provide evidence against this tenet: the respective dorsal lateral geniculate nucleus (dLGN) cells showed pronounced ocular dominance (OD) shifts after monocular deprivation in adult mice. Most (86%), but not all, of dLGN cell boutons were monocular during normal visual experience. Following deprivation, initially deprived-eye-dominated boutons reduced or lost their visual responsiveness to that eye and frequently became responsive to the non-deprived eye. This cannot be explained by eye-specific cortical changes propagating to dLGN via cortico-...
During critical periods of development, experience shapes cortical circuits, resulting in the acquis...
There is convincing evidence that the deprivation of one sense can lead to adaptive neuronal changes...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
AbstractThe binocular region of mouse visual cortex is strongly dominated by inputs from the contral...
Sensory experience profoundly shapes neural circuitry of juvenile brain. Although the visual cortex ...
It was previously shown that a small lesion in the primary somatosensory cortex (S1) prevented both ...
Experience-dependent plasticity in the visual system is traditionally thought to be exclusively cort...
Experience-dependent plasticity is crucial for the precise formation of neuronal connections during ...
AbstractIn the primary visual cortex (V1), monocular deprivation (MD) induces a shift in the ocular ...
Monocular visual deprivation (MD) produces profound changes in the ocular dominance (OD) of neurons ...
<p>Understanding plasticity and learning has been a fundamental question of neuroscience for decades...
Activity of cortical inhibitory interneurons is rapidly reduced in response to monocular deprivation...
Manipulations of activity in one retina can profoundly affect binocular connections in the visual co...
During critical periods of development, experience shapes cortical circuits, resulting in the acquis...
Ocular dominance plasticity has long served as a successful model for examining how cortical circuit...
During critical periods of development, experience shapes cortical circuits, resulting in the acquis...
There is convincing evidence that the deprivation of one sense can lead to adaptive neuronal changes...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...
AbstractThe binocular region of mouse visual cortex is strongly dominated by inputs from the contral...
Sensory experience profoundly shapes neural circuitry of juvenile brain. Although the visual cortex ...
It was previously shown that a small lesion in the primary somatosensory cortex (S1) prevented both ...
Experience-dependent plasticity in the visual system is traditionally thought to be exclusively cort...
Experience-dependent plasticity is crucial for the precise formation of neuronal connections during ...
AbstractIn the primary visual cortex (V1), monocular deprivation (MD) induces a shift in the ocular ...
Monocular visual deprivation (MD) produces profound changes in the ocular dominance (OD) of neurons ...
<p>Understanding plasticity and learning has been a fundamental question of neuroscience for decades...
Activity of cortical inhibitory interneurons is rapidly reduced in response to monocular deprivation...
Manipulations of activity in one retina can profoundly affect binocular connections in the visual co...
During critical periods of development, experience shapes cortical circuits, resulting in the acquis...
Ocular dominance plasticity has long served as a successful model for examining how cortical circuit...
During critical periods of development, experience shapes cortical circuits, resulting in the acquis...
There is convincing evidence that the deprivation of one sense can lead to adaptive neuronal changes...
Early sensory experience instructs the maturation of neural circuitry in the cortex. This has been s...