Cells can crawl, self-heal, and tune their stiffness due to their remarkably dynamic cytoskeleton. As such, reconstituting networks of cytoskeletal biopolymers may lead to a host of active and adaptable materials. However, engineering such materials with precisely tuned properties requires measuring how the dynamics depend on the network composition and synthesis methods. Quantifying such dynamics is challenged by variations across the time, space, and formulation space of composite networks. The protocol here describes how the Fourier analysis technique, differential dynamic microscopy (DDM), can quantify the dynamics of biopolymer networks and is particularly well suited for studies of cytoskeleton networks. DDM works on time sequences of...
Microscope images of fluctuating biopolymers contain a wealth of information about their underlying ...
Fluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vivo the d...
Background: The dynamic growing and shortening behaviors of microtubules are central to the fundamen...
The significant gap between quantitative and qualitative understanding of cytoskeletal function is a...
A large part of the mechanical integrity and biological functionality of eukaryotic cells relies on ...
The polymerization–depolymerization dynamics of cytoskeletal proteins play essential roles in the se...
Optical microscopy is an excellent tool to investigate the structure and dynamics of soft and biolog...
F-actin polymers in the cytoskeleton provide mechanical strength and deformability to cells. Thus, u...
This review summarizes recent progress in investigating polymer systems by using Differential dynami...
Ru Wang,1,2 Lei Lei,3 Shamira Sridharan,1,3 Yingxiao Wang,3 Alex J Levine,4,5 Gabriel Popescu,1,3,6 ...
AbstractMicroscope images of fluctuating biopolymers contain a wealth of information about their und...
Biopolymer networks perform many essential functions for living cells. Most of these networks show a...
AbstractFluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vi...
International audienceWe have developed a lab work module where we teach undergraduate students how ...
ABSTRACT Fluorescent speckle microscopy (FSM) is a new imaging technique with the potential for simu...
Microscope images of fluctuating biopolymers contain a wealth of information about their underlying ...
Fluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vivo the d...
Background: The dynamic growing and shortening behaviors of microtubules are central to the fundamen...
The significant gap between quantitative and qualitative understanding of cytoskeletal function is a...
A large part of the mechanical integrity and biological functionality of eukaryotic cells relies on ...
The polymerization–depolymerization dynamics of cytoskeletal proteins play essential roles in the se...
Optical microscopy is an excellent tool to investigate the structure and dynamics of soft and biolog...
F-actin polymers in the cytoskeleton provide mechanical strength and deformability to cells. Thus, u...
This review summarizes recent progress in investigating polymer systems by using Differential dynami...
Ru Wang,1,2 Lei Lei,3 Shamira Sridharan,1,3 Yingxiao Wang,3 Alex J Levine,4,5 Gabriel Popescu,1,3,6 ...
AbstractMicroscope images of fluctuating biopolymers contain a wealth of information about their und...
Biopolymer networks perform many essential functions for living cells. Most of these networks show a...
AbstractFluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vi...
International audienceWe have developed a lab work module where we teach undergraduate students how ...
ABSTRACT Fluorescent speckle microscopy (FSM) is a new imaging technique with the potential for simu...
Microscope images of fluctuating biopolymers contain a wealth of information about their underlying ...
Fluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vivo the d...
Background: The dynamic growing and shortening behaviors of microtubules are central to the fundamen...