AbstractNeuronal growth is an extremely complex yet reliable process that is directed by a dynamic lamellipodial structure at the tip of every growing neurite, called the growth cone. Lamellipodial edge fluctuations are controlled by the interplay between actin polymerization pushing the edge forward and molecular motor driven retrograde actin flow retracting the actin network. The leading edge switches randomly between extension and retraction processes. We identify switching of “on/off” states in actin polymerization as the main determinant of lamellipodial advancement. Our analysis of motility statistics allows for a prediction of growth direction. This was used in simulations explaining the amazing signal detection capabilities of neuro...
AbstractMany animal cells initiate crawling by protruding lamellipodia, consisting of a dense networ...
Growth cones are the main motile structures located at the tip of neurites and are composed of a lam...
<p>Migration and pathfinding of neuronal growth cones during neurite extension is critically depende...
AbstractNeuronal growth is an extremely complex yet reliable process that is directed by a dynamic l...
Geometrical cues are known to play a very important role in neuronal growth and the formation of neu...
Geometrical cues are known to play a very important role in neuronal growth and the formation of neu...
AbstractIn a previous study, F-actin appeared to play a key role in guiding microtubules during grow...
AbstractWe examined the dynamics of radial actin bundles based on time-lapse movies of polarized lig...
AbstractActin filaments assembled at the leading edge of neuronal growth cones are centripetally tra...
AbstractA growth cone is a motile structure at the tips of axons that is driven by the actin network...
The balance of actin filament polymerization and depolymerization maintains a steady state network t...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
In the developing nervous system, axons are guided to their synaptic targets by motile structures at...
AbstractWe addressed the mechanical basis for how embryonic chick dorsal root ganglion growth cones ...
AbstractDuring development neurons extend and retract cytoskeletal structures, chiefly microtubules ...
AbstractMany animal cells initiate crawling by protruding lamellipodia, consisting of a dense networ...
Growth cones are the main motile structures located at the tip of neurites and are composed of a lam...
<p>Migration and pathfinding of neuronal growth cones during neurite extension is critically depende...
AbstractNeuronal growth is an extremely complex yet reliable process that is directed by a dynamic l...
Geometrical cues are known to play a very important role in neuronal growth and the formation of neu...
Geometrical cues are known to play a very important role in neuronal growth and the formation of neu...
AbstractIn a previous study, F-actin appeared to play a key role in guiding microtubules during grow...
AbstractWe examined the dynamics of radial actin bundles based on time-lapse movies of polarized lig...
AbstractActin filaments assembled at the leading edge of neuronal growth cones are centripetally tra...
AbstractA growth cone is a motile structure at the tips of axons that is driven by the actin network...
The balance of actin filament polymerization and depolymerization maintains a steady state network t...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
In the developing nervous system, axons are guided to their synaptic targets by motile structures at...
AbstractWe addressed the mechanical basis for how embryonic chick dorsal root ganglion growth cones ...
AbstractDuring development neurons extend and retract cytoskeletal structures, chiefly microtubules ...
AbstractMany animal cells initiate crawling by protruding lamellipodia, consisting of a dense networ...
Growth cones are the main motile structures located at the tip of neurites and are composed of a lam...
<p>Migration and pathfinding of neuronal growth cones during neurite extension is critically depende...