AbstractActomyosin-based cortical contractility is a common feature of eukaryotic cells and is involved in cell motility, cell division, and apoptosis. In nonmuscle cells, oscillations in contractility are induced by microtubule depolymerization during cell spreading. We developed an ordinary differential equation model to describe this behavior. The computational model includes 36 parameters. The values for all but two of the model parameters were taken from experimental measurements found in the literature. Using these values, we demonstrate that the model generates oscillatory behavior consistent with current experimental observations. The rhythmic behavior occurs because of the antagonistic effects of calcium-induced contractility and s...
D. discoideum shares many common features of actin dynamics and essential responses with eukaryotic ...
We propose a mechanism for the cytoplasmic Ca++ oscillator which is thought to power shuttle streami...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
Actomyosin-based cortical contractility is a common feature of eukaryotic cells and is involved in c...
AbstractActomyosin-based cortical contractility is a common feature of eukaryotic cells and is invol...
AbstractWhen microtubules are depolymerized in spreading cells, they experience morphological oscill...
When microtubules are depolymerized in spreading cells, they experience morphological oscillations c...
Restricted Access.We demonstrate that 3T3 fibroblast cells can exhibit periodic shape oscillations f...
Actomyosin contractility regulates various biological processes including cell migration, muscle con...
AbstractWe present a model of cell motility generated by actomyosin contraction of the cell cortex. ...
As cells decrease their area of attachment, as occurs in 3D migration, F-actin is remodeled from int...
AbstractCell shape and movements rely on complex biochemical pathways that regulate actin, microtubu...
We investigate the dynamics of cell shape and analyze the actin and myosin distributions of cells ex...
Calcium (Ca2+) signalling is one of the most important mechanisms of information propagation in the ...
The surface of animal cells is a thin layer composed of a lipid bilayer and a cytoskeleton. Cells co...
D. discoideum shares many common features of actin dynamics and essential responses with eukaryotic ...
We propose a mechanism for the cytoplasmic Ca++ oscillator which is thought to power shuttle streami...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
Actomyosin-based cortical contractility is a common feature of eukaryotic cells and is involved in c...
AbstractActomyosin-based cortical contractility is a common feature of eukaryotic cells and is invol...
AbstractWhen microtubules are depolymerized in spreading cells, they experience morphological oscill...
When microtubules are depolymerized in spreading cells, they experience morphological oscillations c...
Restricted Access.We demonstrate that 3T3 fibroblast cells can exhibit periodic shape oscillations f...
Actomyosin contractility regulates various biological processes including cell migration, muscle con...
AbstractWe present a model of cell motility generated by actomyosin contraction of the cell cortex. ...
As cells decrease their area of attachment, as occurs in 3D migration, F-actin is remodeled from int...
AbstractCell shape and movements rely on complex biochemical pathways that regulate actin, microtubu...
We investigate the dynamics of cell shape and analyze the actin and myosin distributions of cells ex...
Calcium (Ca2+) signalling is one of the most important mechanisms of information propagation in the ...
The surface of animal cells is a thin layer composed of a lipid bilayer and a cytoskeleton. Cells co...
D. discoideum shares many common features of actin dynamics and essential responses with eukaryotic ...
We propose a mechanism for the cytoplasmic Ca++ oscillator which is thought to power shuttle streami...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...