Propulsion by actin polymerization is widely used in cell motility. Here, we investigate a model of the brush range of an actin gel close to a propelled object, describing the force generation and the dynamics of the propagation velocity. We find transitions between stable steady states and relaxation oscillations when the attachment rate of actin filaments to the obstacle is varied. The oscillations set in at small values of the attachment rate via a homoclinic bifurcation. A second transition from a stable steady state to relaxation oscillations, found for higher values of the attachment rate, occurs via a supercritical Hopf bifurcation. The behavior of the model near the second transition is similar that of a system undergoing a canard e...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
AbstractMany processes in eukaryotic cells, including the crawling motion of the whole cell, rely on...
Many processes in eukaryotic cells, including the crawling motion of the whole cell, rely on the gro...
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 ...
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...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
The forces experienced by filaments in actin based propulsion in reconstituted systems and cell moti...
AbstractWe developed a transient model for actin-based motility. Diffusion of actin monomers was inc...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. S...
The dynamic behavior of bundles of actin filaments growing against a loaded obstacle is investigated...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
AbstractMany processes in eukaryotic cells, including the crawling motion of the whole cell, rely on...
Many processes in eukaryotic cells, including the crawling motion of the whole cell, rely on the gro...
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 ...
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...
AbstractCells move by a dynamical reorganization of their cytoskeleton, orchestrated by a cascade of...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
The forces experienced by filaments in actin based propulsion in reconstituted systems and cell moti...
AbstractWe developed a transient model for actin-based motility. Diffusion of actin monomers was inc...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
AbstractWe present the first numerical simulation of actin-driven propulsion by elastic filaments. S...
The dynamic behavior of bundles of actin filaments growing against a loaded obstacle is investigated...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
ABSTRACT We present the first numerical simulation of actin-driven propulsion by elastic filaments. ...
AbstractMany processes in eukaryotic cells, including the crawling motion of the whole cell, rely on...
Many processes in eukaryotic cells, including the crawling motion of the whole cell, rely on the gro...