Background The dorsal lateral geniculate nucleus (dLGN) of the mouse has been an important experimental model for understanding thalamic circuit development. The developmental remodeling of retinal projections has been the primary focus, however much less is known about the maturation of their synaptic targets, the relay cells of the dLGN. Here we examined the growth and maturation of relay cells during the first few weeks of life and addressed whether early retinal innervation affects their development. To accomplish this we utilized themath5 null (math5−/−) mouse, a mutant lacking retinal ganglion cells and central projections. Results The absence of retinogeniculate axon innervation led to an overall shrinkage of dLGN and disrupted the ...
AbstractJames A. ShanksCortical-Thalamic Axons are Required for Retinal Ganglion Cell Targeting to t...
Sensory experience refines neuronal structure and functionality. The visual system has proved to be ...
In advanced retinal degeneration loss of rods and cones leaves melanopsin-expressing intrinsically p...
Background The dorsal lateral geniculate nucleus (dLGN) of the mouse thalamus has emerged as a power...
Abstract Background The dorsal lateral geniculate nucleus (dLGN) of the mouse has become a model sys...
The dorsal lateral geniculate nucleus (dLGN) of the mouse has emerged as a model system in the study...
SummaryActivity-dependent refinement of neural circuits is a fundamental principle of neural develop...
AbstractSpontaneous activity patterns in the developing retina appear important for the functional o...
Activity-dependent refinement of neural circuits is a fundamental principle of neural development. T...
The thalamic reticular nucleus (TRN) is an interface between thalamus and cortex that regulates thal...
AbstractThis is a brief review of data obtained by analyzing the morphology and the physiology of th...
AbstractON and OFF pathways separately relay increment and decrement luminance signals from retinal ...
AbstractThe retinal synaptic network continues its maturational refinement after eye opening in mamm...
SummaryThe vertebrate retina develops from an amorphous sheet of dividing retinal progenitor cells (...
A hallmark of mammalian neural circuit development is the refinement of initially imprecise connecti...
AbstractJames A. ShanksCortical-Thalamic Axons are Required for Retinal Ganglion Cell Targeting to t...
Sensory experience refines neuronal structure and functionality. The visual system has proved to be ...
In advanced retinal degeneration loss of rods and cones leaves melanopsin-expressing intrinsically p...
Background The dorsal lateral geniculate nucleus (dLGN) of the mouse thalamus has emerged as a power...
Abstract Background The dorsal lateral geniculate nucleus (dLGN) of the mouse has become a model sys...
The dorsal lateral geniculate nucleus (dLGN) of the mouse has emerged as a model system in the study...
SummaryActivity-dependent refinement of neural circuits is a fundamental principle of neural develop...
AbstractSpontaneous activity patterns in the developing retina appear important for the functional o...
Activity-dependent refinement of neural circuits is a fundamental principle of neural development. T...
The thalamic reticular nucleus (TRN) is an interface between thalamus and cortex that regulates thal...
AbstractThis is a brief review of data obtained by analyzing the morphology and the physiology of th...
AbstractON and OFF pathways separately relay increment and decrement luminance signals from retinal ...
AbstractThe retinal synaptic network continues its maturational refinement after eye opening in mamm...
SummaryThe vertebrate retina develops from an amorphous sheet of dividing retinal progenitor cells (...
A hallmark of mammalian neural circuit development is the refinement of initially imprecise connecti...
AbstractJames A. ShanksCortical-Thalamic Axons are Required for Retinal Ganglion Cell Targeting to t...
Sensory experience refines neuronal structure and functionality. The visual system has proved to be ...
In advanced retinal degeneration loss of rods and cones leaves melanopsin-expressing intrinsically p...