We present a simple and generic theoretical description of actin-based motility, where polymerization of filaments maintains propulsion. The dynamics is driven by polymerization kinetics at the filaments' free ends, crosslinking of the actin network, attachment and detachment of filaments to the obstacle interface and entropic forces. We show that spontaneous oscillations in the velocity emerge due to a push-pull mechanism in a broad range of parameter values, and compare our findings with experiments
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...
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...
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...
Propulsion by actin polymerization is widely used in cell motility. Here, we investigate a model of ...
Propulsion by actin polymerization is widely used in cell motility. Here, we investigate a model of ...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
The forces experienced by filaments in actin based propulsion in reconstituted systems and cell moti...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
The propulsion of bacteria under the action of an actin gel network is examined in terms of gel conc...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...
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...
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...
Propulsion by actin polymerization is widely used in cell motility. Here, we investigate a model of ...
Propulsion by actin polymerization is widely used in cell motility. Here, we investigate a model of ...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
The forces experienced by filaments in actin based propulsion in reconstituted systems and cell moti...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
The propulsion of bacteria under the action of an actin gel network is examined in terms of gel conc...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include ...