Neural pathways projecting from sensory organs to higher brain centers form topographic maps in which neighbor relationships are preserved from a sending to a receiving neural population. Sensory input can generate compartmentalized electrical and biochemical activity in the dendrites of a receiving neuron. Here, we show that in the developing retinotectal projection of young Xenopus tadpoles, visually driven Ca2+ signals are topographically organized at the subcellular, dendritic scale. Functional in vivo two-photon Ca2+ imaging revealed that the sensitivity of dendritic Ca2+ signals to stimulus location in visual space is correlated with their anatomical position within the dendritic tree of individual neurons. This topographic distributi...
Patterned neural activity during development is critical for proper wiring of sensory circuits. Prev...
Much is known about the functions and properties of neuronal dendrites, but rarely has dendritic act...
Summary: Dendrites in many neurons actively compute information. In retinal starburst amacrine cells...
Neural pathways projecting from sensory organs to higher brain centers form topographic maps in whic...
SummaryNeural pathways projecting from sensory organs to higher brain centers form topographic maps ...
Neural pathways projecting from sensory organs to higher brain centers form topographic maps in whic...
Dendritic integration is a fundamental element of neuronal information processing. So far, few studi...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Newly formed neurons must locate their appropriate target cells and then form synaptic connections w...
Previous studies suggest that neuronal activity may guide the development of synaptic connections in...
The development of functional topography in the developing brain follows a progression from initiall...
The detection of image motion is fundamental to vision. In many species, unique classes of retinal g...
Dürr V, Egelhaaf M. In vivo calcium accumulation in presynaptic and postsynaptic dendrites of visual...
The superior colliculus in mammals and its analog in amphibians – the optic tectum – is an important...
The starburst amacrine cell in the mouse retina presents an opportunity to examine the precise role ...
Patterned neural activity during development is critical for proper wiring of sensory circuits. Prev...
Much is known about the functions and properties of neuronal dendrites, but rarely has dendritic act...
Summary: Dendrites in many neurons actively compute information. In retinal starburst amacrine cells...
Neural pathways projecting from sensory organs to higher brain centers form topographic maps in whic...
SummaryNeural pathways projecting from sensory organs to higher brain centers form topographic maps ...
Neural pathways projecting from sensory organs to higher brain centers form topographic maps in whic...
Dendritic integration is a fundamental element of neuronal information processing. So far, few studi...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Newly formed neurons must locate their appropriate target cells and then form synaptic connections w...
Previous studies suggest that neuronal activity may guide the development of synaptic connections in...
The development of functional topography in the developing brain follows a progression from initiall...
The detection of image motion is fundamental to vision. In many species, unique classes of retinal g...
Dürr V, Egelhaaf M. In vivo calcium accumulation in presynaptic and postsynaptic dendrites of visual...
The superior colliculus in mammals and its analog in amphibians – the optic tectum – is an important...
The starburst amacrine cell in the mouse retina presents an opportunity to examine the precise role ...
Patterned neural activity during development is critical for proper wiring of sensory circuits. Prev...
Much is known about the functions and properties of neuronal dendrites, but rarely has dendritic act...
Summary: Dendrites in many neurons actively compute information. In retinal starburst amacrine cells...