Axonal branching allows a neuron to connect to several targets, increasing neuronal circuit complexity. While axonal branching is well described, the mechanisms that control it remain largely unknown. We find that in the Drosophila CNS branches develop through a process of excessive growth followed by pruning. In vivo high-resolution live imaging of developing brains as well as loss and gain of function experiments show that activation of Epidermal Growth Factor Receptor (EGFR) is necessary for branch dynamics and the final branching pattern. Live imaging also reveals that intrinsic asymmetry in EGFR localization regulates the balance between dynamic and static filopodia. Elimination of signaling asymmetry by either loss or gain of EGFR fun...
SummaryAxonal branching contributes substantially to neuronal circuit complexity. Studies in Drosoph...
The ability of neurons to form a single axon and multiple dendrites underlies the directional flow o...
SummaryBackgroundThe molecular mechanisms that determine axonal growth potential are poorly understo...
Axonal branching allows a neuron to connect to several targets, increasing neuronal circuit complexi...
The integration of a neuron in a functional circuit relies on the controlled formation of neurites. ...
Axonal branching is an essential mechanism in nervous system function, as it allows a single neuron ...
How do growing axons in the central nervous system navigate through the dense jungle of cells and pr...
How do growing axons in the central nervous system navigate through the dense jungle of cells and pr...
How do growing axons in the central nervous system navigate through the dense jungle of cells and pr...
AbstractThe embryonic nervous system is refined over the course of development as a result of the tw...
In developing brain, axons and dendrites are capable of connecting to each other with high precision...
During brain development, axons of neighbouring neurons navigate long distances in a complex and con...
Axon branching is crucial for proper formation of neuronal networks. Although originally identified ...
Identification of the molecular mechanisms underlying axonal branching in vivo has begun in several ...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
SummaryAxonal branching contributes substantially to neuronal circuit complexity. Studies in Drosoph...
The ability of neurons to form a single axon and multiple dendrites underlies the directional flow o...
SummaryBackgroundThe molecular mechanisms that determine axonal growth potential are poorly understo...
Axonal branching allows a neuron to connect to several targets, increasing neuronal circuit complexi...
The integration of a neuron in a functional circuit relies on the controlled formation of neurites. ...
Axonal branching is an essential mechanism in nervous system function, as it allows a single neuron ...
How do growing axons in the central nervous system navigate through the dense jungle of cells and pr...
How do growing axons in the central nervous system navigate through the dense jungle of cells and pr...
How do growing axons in the central nervous system navigate through the dense jungle of cells and pr...
AbstractThe embryonic nervous system is refined over the course of development as a result of the tw...
In developing brain, axons and dendrites are capable of connecting to each other with high precision...
During brain development, axons of neighbouring neurons navigate long distances in a complex and con...
Axon branching is crucial for proper formation of neuronal networks. Although originally identified ...
Identification of the molecular mechanisms underlying axonal branching in vivo has begun in several ...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
SummaryAxonal branching contributes substantially to neuronal circuit complexity. Studies in Drosoph...
The ability of neurons to form a single axon and multiple dendrites underlies the directional flow o...
SummaryBackgroundThe molecular mechanisms that determine axonal growth potential are poorly understo...