Cells and tissues are mechanical as well as biochemical machines, and cellular response to mechanical cues can have as large an influence on structure and function as chemical signals. The mechanical properties of cells are largely determined by networks of semiflexible polymers forming the cytoskeleton, which has viscoelastic properties that differ in important ways from the viscoelasticity of common synthetic materials. Two such features are the high resistance to deformation achieved by a remarkably low volume fraction of protein, and the increase in stiffness that occurs when the cytoskeletal network is deformed. The actin filaments, microtubules and intermediate filaments that comprise the cytoskeleton of most cell types are linear pol...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
Changes in the biophysical and biomechanical properties of cells and sub-cellular structures are ear...
The viscoelasticity of the crosslinked semiflexible polymer networks—such as the internal cytoskelet...
[[abstract]]Cells and tissues are mechanical as well as biochemical machines, and cellular response ...
Cells and tissues are mechanical as well as biochemical machines, and cellular response to mechanica...
Cells and tissues are mechanical as well as biochemical machines, and cellular response to mechanica...
Restricted Access.The mechanical properties of cells are dominated by the cytoskeleton, a crosslinke...
Our cells, muscles, and connective tissue owe their remarkable mechanical properties to biopolymer n...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Presented on April 16, 2012 from 3:00 pm to 4:00 pm in Room 1116 of the Marcus Nanotechnology buildi...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
We have previously learned about the mechanics of biopolymers. We now have the proper foundation to ...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
Changes in the biophysical and biomechanical properties of cells and sub-cellular structures are ear...
The viscoelasticity of the crosslinked semiflexible polymer networks—such as the internal cytoskelet...
[[abstract]]Cells and tissues are mechanical as well as biochemical machines, and cellular response ...
Cells and tissues are mechanical as well as biochemical machines, and cellular response to mechanica...
Cells and tissues are mechanical as well as biochemical machines, and cellular response to mechanica...
Restricted Access.The mechanical properties of cells are dominated by the cytoskeleton, a crosslinke...
Our cells, muscles, and connective tissue owe their remarkable mechanical properties to biopolymer n...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Presented on April 16, 2012 from 3:00 pm to 4:00 pm in Room 1116 of the Marcus Nanotechnology buildi...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
We have previously learned about the mechanics of biopolymers. We now have the proper foundation to ...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
Changes in the biophysical and biomechanical properties of cells and sub-cellular structures are ear...
The viscoelasticity of the crosslinked semiflexible polymer networks—such as the internal cytoskelet...