Amoeboid cell migration is characterized by frequent changes of the direction of motion and resembles a persistent random walk on long time scales. Although it is well known that cell migration is typically driven by the actin cytoskeleton, the cause of this migratory behavior remains poorly understood. We analyze the spontaneous dynamics of actin assembly due to nucleation promoting factors, where actin filaments lead to an inactivation of these factors. We show that this system exhibits excitable dynamics and can spontaneously generate waves, which we analyze in detail. By using a phase-field approach, we show that these waves can generate cellular random walks. We explore how the characteristics of these persistent random walks depend on...
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...
Cell movement has essential functions in development, immunity, and cancer. Various cell migration p...
A cell's ability to move allows it to efficiently follow nutrient gradients and enables complex proc...
Actin networks in certain single-celled organisms exhibit a complex pattern-forming dynamics that st...
In crawling cells, the polymerisation of actin into a filamentaus network generates lamellar protru...
Based on experimental observations it is :known that various biological cells exhibit a persistent r...
Cell migration is an essential process, both in unicellular organisms such as amoeba and as individu...
Dendritic cells "patrol" the human body to detect pathogens. In their search, dendritic cells perfor...
Abstract Spontaneous locomotion is a common feature of most metazoan cells, generally attributed to ...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
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...
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...
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...
Cell movement has essential functions in development, immunity, and cancer. Various cell migration p...
A cell's ability to move allows it to efficiently follow nutrient gradients and enables complex proc...
Actin networks in certain single-celled organisms exhibit a complex pattern-forming dynamics that st...
In crawling cells, the polymerisation of actin into a filamentaus network generates lamellar protru...
Based on experimental observations it is :known that various biological cells exhibit a persistent r...
Cell migration is an essential process, both in unicellular organisms such as amoeba and as individu...
Dendritic cells "patrol" the human body to detect pathogens. In their search, dendritic cells perfor...
Abstract Spontaneous locomotion is a common feature of most metazoan cells, generally attributed to ...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
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...
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...
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...
Cell movement has essential functions in development, immunity, and cancer. Various cell migration p...