Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in numerous biological contexts. While many aspects of this process are well investigated, the large cell-to-cell variability in the motile characteristics of an otherwise uniform population remains an open question that was largely ignored by previous models. In this article, we present a mathematical model of amoeboid motility that combines noisy bistable kinetics with a dynamic phase field for the cell shape. To capture cell-to-cell variability, we introduce a single parameter for tuning the balance between polarity formation and intracellular noise. We compare numerical simulations of our model to experiments with the social amoeba Dictyostelium...
Observed pulsatile aggregation of cellular slime mould amoebae is simulated on a computer. One spati...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in nume...
Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in nume...
Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in num...
The coupling of the internal mechanisms of cell polarization to cell shape deformations and subseque...
The coupling of the internal mechanisms of cell polarization to cell shape deformations and subseque...
The process of polarization determines the head and tail of single cells. A mechanism of this kind f...
Chemotaxis is a ubiquitous biological phenomenon in which cells detect a spatial gradient of chemoat...
Chemotaxis, the movement of an organism in response to a chemical stimulus, is a typical feature of ...
Chemotaxis is a ubiquitous biological phenomenon in which cells detect a spatial gradient of chemoat...
Chemotaxis, the movement of an organism in response to a chemical stimulus, is a typical feature of ...
Cells employing amoeboid motility exhibit repetitive cycles of rapid expansion and contraction and a...
The behaviour of an organism often reflects a strategy for coping with its environment. Such behavio...
Observed pulsatile aggregation of cellular slime mould amoebae is simulated on a computer. One spati...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in nume...
Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in nume...
Amoeboid movement is one of the most widespread forms of cell motility that plays a key role in num...
The coupling of the internal mechanisms of cell polarization to cell shape deformations and subseque...
The coupling of the internal mechanisms of cell polarization to cell shape deformations and subseque...
The process of polarization determines the head and tail of single cells. A mechanism of this kind f...
Chemotaxis is a ubiquitous biological phenomenon in which cells detect a spatial gradient of chemoat...
Chemotaxis, the movement of an organism in response to a chemical stimulus, is a typical feature of ...
Chemotaxis is a ubiquitous biological phenomenon in which cells detect a spatial gradient of chemoat...
Chemotaxis, the movement of an organism in response to a chemical stimulus, is a typical feature of ...
Cells employing amoeboid motility exhibit repetitive cycles of rapid expansion and contraction and a...
The behaviour of an organism often reflects a strategy for coping with its environment. Such behavio...
Observed pulsatile aggregation of cellular slime mould amoebae is simulated on a computer. One spati...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...