The polymerization–depolymerization dynamics of cytoskeletal proteins play essential roles in the self-organization of cytoskeletal structures, in eukaryotic as well as prokaryotic cells. While advances in fluorescence microscopy and in vitro reconstitution experiments have helped to study the dynamic properties of these complex systems, methods that allow to collect and analyze large quantitative datasets of the underlying polymer dynamics are still missing. Here, we present a novel image analysis workflow to study polymerization dynamics of active filaments in a nonbiased, highly automated manner. Using treadmilling filaments of the bacterial tubulin FtsZ as an example, we demonstrate that our method is able to specifically detect, track ...
Regulation of microtubule dynamics is essential for many cell biological processes, and is likely to...
A large part of the mechanical integrity and biological functionality of eukaryotic cells relies on ...
Regulation of microtubule dynamics is essential for many cell biological processes and is likely to ...
F-actin polymers in the cytoskeleton provide mechanical strength and deformability to cells. Thus, u...
Intracellular microtubule polymerization dynamics are spatiotemporally controlled by numerous microt...
Cells can crawl, self-heal, and tune their stiffness due to their remarkably dynamic cytoskeleton. A...
During bacterial cell division, the tubulin-homolog FtsZ forms a ring-like structure at the center o...
AbstractMicroscope images of fluctuating biopolymers contain a wealth of information about their und...
The significant gap between quantitative and qualitative understanding of cytoskeletal function is a...
Microscope images of fluctuating biopolymers contain a wealth of information about their underlying ...
ABSTRACT Fluorescent speckle microscopy (FSM) is a new imaging technique with the potential for simu...
ABSTRACTFluorescent speckle microscopy (FSM) is a new imaging technique with the potential for simul...
AbstractFluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vi...
We present an application of nonlinear image registration to align in microscopy time lapse sequence...
Fluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vivo the d...
Regulation of microtubule dynamics is essential for many cell biological processes, and is likely to...
A large part of the mechanical integrity and biological functionality of eukaryotic cells relies on ...
Regulation of microtubule dynamics is essential for many cell biological processes and is likely to ...
F-actin polymers in the cytoskeleton provide mechanical strength and deformability to cells. Thus, u...
Intracellular microtubule polymerization dynamics are spatiotemporally controlled by numerous microt...
Cells can crawl, self-heal, and tune their stiffness due to their remarkably dynamic cytoskeleton. A...
During bacterial cell division, the tubulin-homolog FtsZ forms a ring-like structure at the center o...
AbstractMicroscope images of fluctuating biopolymers contain a wealth of information about their und...
The significant gap between quantitative and qualitative understanding of cytoskeletal function is a...
Microscope images of fluctuating biopolymers contain a wealth of information about their underlying ...
ABSTRACT Fluorescent speckle microscopy (FSM) is a new imaging technique with the potential for simu...
ABSTRACTFluorescent speckle microscopy (FSM) is a new imaging technique with the potential for simul...
AbstractFluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vi...
We present an application of nonlinear image registration to align in microscopy time lapse sequence...
Fluorescent speckle microscopy (FSM) is becoming the technique of choice for analyzing in vivo the d...
Regulation of microtubule dynamics is essential for many cell biological processes, and is likely to...
A large part of the mechanical integrity and biological functionality of eukaryotic cells relies on ...
Regulation of microtubule dynamics is essential for many cell biological processes and is likely to ...