SummaryIn response to changes in the environment, dendrites from certain neurons change their shape, yet the mechanism remains largely unknown. Here we show that dendritic arbors of adult Drosophila sensory neurons are rapidly reshaped from a radial shape to a lattice-like shape within 24 hr after eclosion. This radial-to-lattice reshaping arises from rearrangement of the existing radial branches into the lattice-like pattern, rather than extensive dendrite pruning followed by regrowth of the lattice-shaped arbors over the period. We also find that the dendrite reshaping is completely blocked in mutants for the matrix metalloproteinase (Mmp) 2. Further genetic analysis indicates that Mmp2 promotes the dendrite reshaping through local degrad...
Dendrites of the same neuron usually avoid each other. Some neurons also repel similar neurons throu...
Spatial arrangement of different neuron types within a territory is essential to neuronal developmen...
<p>Dendrite shape is a defining component of neuronal function. Yet, the mechanisms specifying diver...
SummaryIn response to changes in the environment, dendrites from certain neurons change their shape,...
Dendrites possess distinct structural and functional properties that enable neurons to receive infor...
Dendrites possess distinct structural and functional properties that enable neurons to receive infor...
Despite their key role in neuronal function, current understanding of dendrite development and regen...
<p>Dendrites are the primary sites of information input into neurons. Proper establishment and maint...
SummaryDendrites often exhibit structural changes in response to local inputs. Although mechanisms t...
Dendrites often exhibit structural changes in response to local inputs. Although mechanisms that pat...
[Background]For the establishment of functional neural circuits that support a wide range of animal ...
Developmental neuronal remodeling has gained increasing research interest in recent years. In-depth ...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Spatial arrangement of different neuron types within a territory is essential to neuronal developmen...
Dendrites of the same neuron usually avoid each other. Some neurons also repel similar neurons throu...
Spatial arrangement of different neuron types within a territory is essential to neuronal developmen...
<p>Dendrite shape is a defining component of neuronal function. Yet, the mechanisms specifying diver...
SummaryIn response to changes in the environment, dendrites from certain neurons change their shape,...
Dendrites possess distinct structural and functional properties that enable neurons to receive infor...
Dendrites possess distinct structural and functional properties that enable neurons to receive infor...
Despite their key role in neuronal function, current understanding of dendrite development and regen...
<p>Dendrites are the primary sites of information input into neurons. Proper establishment and maint...
SummaryDendrites often exhibit structural changes in response to local inputs. Although mechanisms t...
Dendrites often exhibit structural changes in response to local inputs. Although mechanisms that pat...
[Background]For the establishment of functional neural circuits that support a wide range of animal ...
Developmental neuronal remodeling has gained increasing research interest in recent years. In-depth ...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Spatial arrangement of different neuron types within a territory is essential to neuronal developmen...
Dendrites of the same neuron usually avoid each other. Some neurons also repel similar neurons throu...
Spatial arrangement of different neuron types within a territory is essential to neuronal developmen...
<p>Dendrite shape is a defining component of neuronal function. Yet, the mechanisms specifying diver...