Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymerization ratchet model predicts that growing and writhing actin filaments generate forces and movements, while macroscopic elastic propulsion model suggests that deformation and stress of growing actin gel are responsible for the propulsion. We examine both experimentally and computationally the 2D movement of ellipsoidal beads propelled by actin tails and show that neither of the two models can explain the observed bistability of the orientation of the beads. To explain the data, we develop a 2D hybrid mesoscopic model by reconciling these two models such that individual actin filaments undergoing nucleation, elongation, attachment, detachmen...
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
We present a simple and generic theoretical description of actin based motility, where polymerizatio...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. S...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
Eukaryotic cells assemble viscoelastic networks of crosslinked actin filaments to control their shap...
We present 3D dynamic Monte-Carlo simulations of the growth of an actin network close to an obstacle...
AbstractThe motion of many intracellular pathogens is driven by the polymerization of actin filament...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
We present a simple and generic theoretical description of actin-based motility, where polymerizatio...
Recent experiments have reported fascinating geometrical trajectories for actin-based motility of ba...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...
We present here a mechanics model for the force generation by actin polymerization. The possible adh...
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
We present a simple and generic theoretical description of actin based motility, where polymerizatio...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. S...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
Eukaryotic cells assemble viscoelastic networks of crosslinked actin filaments to control their shap...
We present 3D dynamic Monte-Carlo simulations of the growth of an actin network close to an obstacle...
AbstractThe motion of many intracellular pathogens is driven by the polymerization of actin filament...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
We present a simple and generic theoretical description of actin-based motility, where polymerizatio...
Recent experiments have reported fascinating geometrical trajectories for actin-based motility of ba...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...
We present here a mechanics model for the force generation by actin polymerization. The possible adh...
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
We present a simple and generic theoretical description of actin based motility, where polymerizatio...