This work examines the relationship between spatio-temporal coordination of intracellular flow and traction stress and the speed of amoeboid locomotion of microplasmodia of Physarum polycephalum. We simultaneously perform particle image velocimetry and traction stress microscopy to measure the velocity of cytoplasmic flow and the stresses applied to the substrate by migrating Physarum microamoebae. In parallel, we develop a mathematical model of a motile cell which includes forces from the viscous cytosol, a poro-elastic, contractile cytoskeleton and adhesive interactions with the substrate. Our experiments show that flow and traction stress exhibit back-to-front-directed waves with a distinct phase difference. The model demonstrates that t...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The motility of amoeboid cells of the plasmodial slime mould Physarum polycephalum was studied exper...
Myxococcus xanthus is a model organism for studying bacterial social behaviors due to its ability to...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
The aim of this work is to quantify the spatio-temporal dynamics of flow-driven amoeboid locomotion ...
The aim of this work is to quantify the spatio-temporal dynamics of flow-driven amoeboid locomotion ...
Cells employing amoeboid motility exhibit repetitive cycles of rapid expansion and contraction and a...
Fast amoeboid migration requires cells to apply mechanical forces on their surroundings via transien...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
AbstractFast amoeboid migration requires cells to apply mechanical forces on their surroundings via ...
The true slime mold Physarum polycephalum exhibits a vast array of sophisticated manipulations of it...
The true slime mold Physarum polycephalum exhibits a vast array of sophisticated manipulations of it...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The motility of amoeboid cells of the plasmodial slime mould Physarum polycephalum was studied exper...
Myxococcus xanthus is a model organism for studying bacterial social behaviors due to its ability to...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
The aim of this work is to quantify the spatio-temporal dynamics of flow-driven amoeboid locomotion ...
The aim of this work is to quantify the spatio-temporal dynamics of flow-driven amoeboid locomotion ...
Cells employing amoeboid motility exhibit repetitive cycles of rapid expansion and contraction and a...
Fast amoeboid migration requires cells to apply mechanical forces on their surroundings via transien...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
AbstractFast amoeboid migration requires cells to apply mechanical forces on their surroundings via ...
The true slime mold Physarum polycephalum exhibits a vast array of sophisticated manipulations of it...
The true slime mold Physarum polycephalum exhibits a vast array of sophisticated manipulations of it...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The plasmodial slime mold Physarum polycephalum exhibits strong, periodic flow of cytoplasm through ...
The motility of amoeboid cells of the plasmodial slime mould Physarum polycephalum was studied exper...
Myxococcus xanthus is a model organism for studying bacterial social behaviors due to its ability to...