AbstractTo understand the microscopic mechanical properties of actin networks, we monitor the motion of embedded particles with controlled surface properties. The highly resolved Brownian motions of these particles reveal the viscoelastic character of the microenvironments around them. In both non-cross-linked and highly cross-linked actin networks, particles that bind F-actin report viscoelastic moduli comparable to those determined by macroscopic rheology experiments. By contrast, particles modified to prevent actin binding have weak microenvironments that are surprisingly insensitive to the introduction of filament cross-links. Even when adjacent in the same cross-linked gel, actin-binding and nonbinding particles report viscoelastic mod...
AbstractCells make use of semiflexible biopolymers such as actin or intermediate filaments to contro...
There have been various attempts to investigate the mechanical properties of the actin cortex in cel...
AbstractCharacterization of the properties of complex biomaterials using microrheological techniques...
AbstractTo understand the microscopic mechanical properties of actin networks, we monitor the motion...
AbstractCell morphology is controlled by the actin cytoskeleton organization and mechanical properti...
Actin filament (F-actin) is one of the dominant structural constituents in the cytoskeleton. Orchest...
AbstractOne of the central functions of actin cytoskeleton is to provide the mechanical support requ...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
AbstractFilamentous actin (F-actin), one of the constituents of the cytoskeleton, is believed to be ...
AbstractCharacterization of the properties of complex biomaterials using microrheological techniques...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
Actin filaments are thought to be the major structural components of most eukaryotic cells, but reco...
Einstein's original description of Brownian motion established a direct relationship between thermal...
Essential physiological processes, such as cell motility, adhesion, growth and differentiation are d...
There have been various attempts to investigate the mechanical properties of the actin cortex in cel...
AbstractCells make use of semiflexible biopolymers such as actin or intermediate filaments to contro...
There have been various attempts to investigate the mechanical properties of the actin cortex in cel...
AbstractCharacterization of the properties of complex biomaterials using microrheological techniques...
AbstractTo understand the microscopic mechanical properties of actin networks, we monitor the motion...
AbstractCell morphology is controlled by the actin cytoskeleton organization and mechanical properti...
Actin filament (F-actin) is one of the dominant structural constituents in the cytoskeleton. Orchest...
AbstractOne of the central functions of actin cytoskeleton is to provide the mechanical support requ...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
AbstractFilamentous actin (F-actin), one of the constituents of the cytoskeleton, is believed to be ...
AbstractCharacterization of the properties of complex biomaterials using microrheological techniques...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
Actin filaments are thought to be the major structural components of most eukaryotic cells, but reco...
Einstein's original description of Brownian motion established a direct relationship between thermal...
Essential physiological processes, such as cell motility, adhesion, growth and differentiation are d...
There have been various attempts to investigate the mechanical properties of the actin cortex in cel...
AbstractCells make use of semiflexible biopolymers such as actin or intermediate filaments to contro...
There have been various attempts to investigate the mechanical properties of the actin cortex in cel...
AbstractCharacterization of the properties of complex biomaterials using microrheological techniques...