Cells employing amoeboid motility exhibit repetitive cycles of rapid expansion and contraction and apply coordinated traction forces to their environment. Although aspects of this process are well studied, it is unclear how the cell controls the coordination of cell length changes with adhesion to the surface. Here, we develop a simple model to mechanistically explain the emergence of periodic changes in length and spatiotemporal dynamics of traction forces measured in chemotaxing unicellular amoeba, Dictyostelium discoideum. In contrast to the biochemical mechanisms that have been implicated in the coordination of some cellular processes, we show that many features of amoeboid locomotion emerge from a simple mechanochemical model. The mech...
A virtually universal feature of adherent cells is their ability to exert traction forces. To measur...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
This work examines the relationship between spatio-temporal coordination of intracellular flow and t...
<div><p>During cell migration, cell-substrate binding is required for pseudopod anchoring to move th...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
Streams of migratory cells are initiated by the formation of tandem pairs of cells connected head to...
The effective migration of amoeboid cells requires a fine regulation of cell-substratum adhesion. Th...
AbstractFast amoeboid migration requires cells to apply mechanical forces on their surroundings via ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
A virtually universal feature of adherent cells is their ability to exert traction forces. To measur...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
This work examines the relationship between spatio-temporal coordination of intracellular flow and t...
<div><p>During cell migration, cell-substrate binding is required for pseudopod anchoring to move th...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
Streams of migratory cells are initiated by the formation of tandem pairs of cells connected head to...
The effective migration of amoeboid cells requires a fine regulation of cell-substratum adhesion. Th...
AbstractFast amoeboid migration requires cells to apply mechanical forces on their surroundings via ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
A virtually universal feature of adherent cells is their ability to exert traction forces. To measur...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...