In the developing nervous system, axons are guided to their synaptic targets by motile structures at the axon tip called growth cones, which reorganize their cytoskeleton in order to steer in response to chemotactic cues. Growth cone motility is mediated by an actin-adhesion “clutch” mechanism, in which mechanical attachment to a substrate, coupled with polarized actin growth, produces leading-edge protrusion. Several studies suggest that dynamic microtubules (MTs) in the growth cone periphery play an essential role in growth cone steering. It is not yet well-understood how the MT cytoskeleton and the dynamic actin-adhesion clutch system are coordinated to promote growth cone navigation. I introduce an experimentally motivated stochastic mo...
SummaryAlthough much evidence suggests that axon growth and guidance depend on well-coordinated cyto...
AbstractNeuronal growth cones are the most sensitive among eukaryotic cells in responding to directi...
A nerve growth cone is a mechanical structure that responds to chemical signals in order to guide ax...
Neuroplasticity, the ability for neurons to reorganize and form new connections, has major implicati...
Axon outgrowth and guidance to the proper target requires the coordination of filamentous (F)-actin ...
During nervous system development, growing axons need to be directed to an appropriate target area i...
AbstractRecent studies indicate the actin and microtubule cytoskeletons are a final common target of...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
AbstractIn a previous study, F-actin appeared to play a key role in guiding microtubules during grow...
To establish functional networks, neurons must migrate to their appropriate destinations and then ex...
Interactions between dynamic microtubules and actin filaments are essential to a wide range of cell ...
Neurite outgrowth underlies the wiring of the nervous system during development and regeneration. De...
AbstractDynamic microtubules explore the peripheral (P) growth cone domain using F actin bundles as ...
AbstractA growth cone is a motile structure at the tips of axons that is driven by the actin network...
Axon outgrowth and guidance to the proper target requires the coordination of filamentous (F)-actin ...
SummaryAlthough much evidence suggests that axon growth and guidance depend on well-coordinated cyto...
AbstractNeuronal growth cones are the most sensitive among eukaryotic cells in responding to directi...
A nerve growth cone is a mechanical structure that responds to chemical signals in order to guide ax...
Neuroplasticity, the ability for neurons to reorganize and form new connections, has major implicati...
Axon outgrowth and guidance to the proper target requires the coordination of filamentous (F)-actin ...
During nervous system development, growing axons need to be directed to an appropriate target area i...
AbstractRecent studies indicate the actin and microtubule cytoskeletons are a final common target of...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
AbstractIn a previous study, F-actin appeared to play a key role in guiding microtubules during grow...
To establish functional networks, neurons must migrate to their appropriate destinations and then ex...
Interactions between dynamic microtubules and actin filaments are essential to a wide range of cell ...
Neurite outgrowth underlies the wiring of the nervous system during development and regeneration. De...
AbstractDynamic microtubules explore the peripheral (P) growth cone domain using F actin bundles as ...
AbstractA growth cone is a motile structure at the tips of axons that is driven by the actin network...
Axon outgrowth and guidance to the proper target requires the coordination of filamentous (F)-actin ...
SummaryAlthough much evidence suggests that axon growth and guidance depend on well-coordinated cyto...
AbstractNeuronal growth cones are the most sensitive among eukaryotic cells in responding to directi...
A nerve growth cone is a mechanical structure that responds to chemical signals in order to guide ax...