AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. Specifically, we use a Brownian dynamics formulation of the dendritic nucleation model of actin-driven propulsion. We show that the model leads to a self-assembled network that exerts forces on a disk and pushes it with an average speed. This simulation approach is the first to observe a speed that varies nonmonotonically with the concentration of branching proteins (Arp2/3), capping protein, and depolymerization rate, in accord with experimental observations. Our results suggest a new interpretation of the origin of motility. When we estimate the speed that this mechanism would produce in a system with realistic rate constants and concentrati...
AbstractWe developed a transient model for actin-based motility. Diffusion of actin monomers was inc...
We present 3D dynamic Monte-Carlo simulations of the growth of an actin network close to an obstacle...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. S...
AbstractWe report numerical simulation results for the force-velocity relation for actin-polymerizat...
We present a simple and generic theoretical description of actin-based motility, where polymerizatio...
We present a simple and generic theoretical description of actin based motility, where polymerizatio...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
Polymerization of dendritic actin networks underlies important mechanical processes in cell biology ...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
We present here a mechanics model for the force generation by actin polymerization. The possible adh...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
AbstractWe developed a transient model for actin-based motility. Diffusion of actin monomers was inc...
We present 3D dynamic Monte-Carlo simulations of the growth of an actin network close to an obstacle...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. S...
AbstractWe report numerical simulation results for the force-velocity relation for actin-polymerizat...
We present a simple and generic theoretical description of actin-based motility, where polymerizatio...
We present a simple and generic theoretical description of actin based motility, where polymerizatio...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
Polymerization of dendritic actin networks underlies important mechanical processes in cell biology ...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
We present here a mechanics model for the force generation by actin polymerization. The possible adh...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
AbstractWe developed a transient model for actin-based motility. Diffusion of actin monomers was inc...
We present 3D dynamic Monte-Carlo simulations of the growth of an actin network close to an obstacle...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...