In dealing with systems as complex as the cytoskeleton, we need organizing principles or, short of that, an empirical framework into which these systems fit. We report here unexpected invariants of cytoskeletal behavior that comprise such an empirical framework. We measured elastic and frictional moduli of a variety of cell types over a wide range of time scales and using a variety of biological interventions. In all instances elastic stresses dominated at frequencies below 300 Hz, increased only weakly with frequency, and followed a power law; no characteristic time scale was evident. Frictional stresses paralleled the elastic behavior at frequencies below 10 Hz but approached a Newtonian viscous behavior at higher frequencies. Surprisingl...
The cytoskeleton (CSK) is a crowded network of structural proteins that stabilizes cell shape and dr...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
In dealing with systems as complex as the cytoskeleton, we need organizing principles or, short of t...
We report a scaling law that governs both the elastic and frictional properties of a wide variety of...
AbstractA living cell deforms or flows in response to mechanical stresses. A recent report shows tha...
This dissertation explores the mechanics of living cells, integrating the role of intracellular acti...
The glassy wormlike chain model is a highly successful phenomenological model recently introduced to...
Cells physical properties and functions like adhesion, migration and division are all regulated by a...
Restricted Access.The mechanical properties of cells are dominated by the cytoskeleton, a crosslinke...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
AbstractThe intracellular cytoskeleton is an active dynamic network of filaments and associated bind...
Abstract—Rheological properties of living cells play a key role in the control of cell shape, growth...
Abstract-Rheological properties of living cells play a key role in the control of cell shape, growth...
AbstractA living cell deforms or flows in response to mechanical stresses. A recent report shows tha...
The cytoskeleton (CSK) is a crowded network of structural proteins that stabilizes cell shape and dr...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
In dealing with systems as complex as the cytoskeleton, we need organizing principles or, short of t...
We report a scaling law that governs both the elastic and frictional properties of a wide variety of...
AbstractA living cell deforms or flows in response to mechanical stresses. A recent report shows tha...
This dissertation explores the mechanics of living cells, integrating the role of intracellular acti...
The glassy wormlike chain model is a highly successful phenomenological model recently introduced to...
Cells physical properties and functions like adhesion, migration and division are all regulated by a...
Restricted Access.The mechanical properties of cells are dominated by the cytoskeleton, a crosslinke...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
AbstractThe intracellular cytoskeleton is an active dynamic network of filaments and associated bind...
Abstract—Rheological properties of living cells play a key role in the control of cell shape, growth...
Abstract-Rheological properties of living cells play a key role in the control of cell shape, growth...
AbstractA living cell deforms or flows in response to mechanical stresses. A recent report shows tha...
The cytoskeleton (CSK) is a crowded network of structural proteins that stabilizes cell shape and dr...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...
While understanding cells\u27 responses to mechanical stimuli is seen as increasingly important for ...