Background: High directional persistence is often assumed to enhance the efficiency of chemotactic migration. Yet, cells in vivo usually display meandering trajectories with relatively low directional persistence, and the control and function of directional persistence during cell migration in three-dimensional environments are poorly understood. Results: Here, we use mesendoderm progenitors migrating during zebrafish gastrulation as a model system to investigate the control of directional persistence during migration in vivo. We show that progenitor cells alternate persistent run phases with tumble phases that result in cell reorientation. Runs are characterized by the formation of directed actin-rich protrusions and tumbles by enhanced bl...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Background: High directional persistence is often assumed to enhance the efficiency of chemotactic m...
BACKGROUND: High directional persistence is often assumed to enhance the efficiency of chemotactic m...
Background High directional persistence is often assumed to enhance the efficiency of chemotactic m...
Background: High directional persistence is often assumed to enhance the efficiency of chemotactic m...
High directional persistence is often assumed to enhance the efficiency of chemotactic migration. Ye...
SummaryCollective cell migration, the simultaneous movement of multiple cells that are connected by ...
Collective cell migration, the simultaneous movement of multiple cells that are connected by cell-ce...
Collective cell migration, the simultaneous movement of multiple cells that are connected by cell-ce...
The migration of many cell types relies on the formation of actomyosin-dependent protrusions called ...
Summary3D amoeboid cell migration is central to many developmental and disease-related processes suc...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Background: High directional persistence is often assumed to enhance the efficiency of chemotactic m...
BACKGROUND: High directional persistence is often assumed to enhance the efficiency of chemotactic m...
Background High directional persistence is often assumed to enhance the efficiency of chemotactic m...
Background: High directional persistence is often assumed to enhance the efficiency of chemotactic m...
High directional persistence is often assumed to enhance the efficiency of chemotactic migration. Ye...
SummaryCollective cell migration, the simultaneous movement of multiple cells that are connected by ...
Collective cell migration, the simultaneous movement of multiple cells that are connected by cell-ce...
Collective cell migration, the simultaneous movement of multiple cells that are connected by cell-ce...
The migration of many cell types relies on the formation of actomyosin-dependent protrusions called ...
Summary3D amoeboid cell migration is central to many developmental and disease-related processes suc...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...
Cell shape and motility are primarily controlled by cellular mechanics. The attachment of the plasma...