Podosomes are cellular adhesion structures involved in matrix degradation and invasion that comprise an actin core and a ring of cytoskeletal adaptor proteins. They are most often identified by staining with phalloidin, which binds F-actin and therefore visualizes the core. However, not only podosomes, but also many other cytoskeletal structures contain actin, which makes podosome segmentation by automated image processing difficult. Here, we have developed a quantitative image analysis algorithm that is optimized to identify podosome cores within a typical sample stained with phalloidin. By sequential local and global thresholding, our analysis identifies up to 76% of podosome cores excluding other F-actin-based structures. Based on the ov...
International audiencePodosomes, small actin-based adhesion structures, differ from focal adhesions ...
International audiencePodosomes are ubiquitous cellular structures important to diverse processes in...
International audienceDetermining how cells generate and transduce mechanical forces at the nanoscal...
Podosomes are cellular adhesion structures involved in matrix degradation and invasion that comprise...
Item does not contain fulltextPodosomes are micrometer-sized, circular adhesions formed by cells suc...
Actin stress fibers are abundant in cultured cells, but little is known about them in vivo. In podoc...
Contains fulltext : 165763.pdf (publisher's version ) (Open Access)Podosomes are c...
International audiencePodosomes are unique cellular entities specifically found in macrophages and i...
Podosomes are dynamic adhesion structures formed constitutively by macrophages, dendritic cells and ...
Cells use various actin-based motile structures to allow them to move across and through matrix of v...
Podosomes are multimolecular cytoskeletal structures that coordinate the migration of tissue-residen...
Podosomes are multimolecular cytoskeletal structures that coordinate the migration of tissue-residen...
Contains fulltext : 118675.pdf (publisher's version ) (Open Access)Tissue-resident...
<p>(A) Confocal imaging of the actin cytoskeleton and focal adhesions. Actin was visualized by phall...
<p>Visualization of F-actin ring and podosome structures in permeabilized (Triton<sup>™</sup> X-100)...
International audiencePodosomes, small actin-based adhesion structures, differ from focal adhesions ...
International audiencePodosomes are ubiquitous cellular structures important to diverse processes in...
International audienceDetermining how cells generate and transduce mechanical forces at the nanoscal...
Podosomes are cellular adhesion structures involved in matrix degradation and invasion that comprise...
Item does not contain fulltextPodosomes are micrometer-sized, circular adhesions formed by cells suc...
Actin stress fibers are abundant in cultured cells, but little is known about them in vivo. In podoc...
Contains fulltext : 165763.pdf (publisher's version ) (Open Access)Podosomes are c...
International audiencePodosomes are unique cellular entities specifically found in macrophages and i...
Podosomes are dynamic adhesion structures formed constitutively by macrophages, dendritic cells and ...
Cells use various actin-based motile structures to allow them to move across and through matrix of v...
Podosomes are multimolecular cytoskeletal structures that coordinate the migration of tissue-residen...
Podosomes are multimolecular cytoskeletal structures that coordinate the migration of tissue-residen...
Contains fulltext : 118675.pdf (publisher's version ) (Open Access)Tissue-resident...
<p>(A) Confocal imaging of the actin cytoskeleton and focal adhesions. Actin was visualized by phall...
<p>Visualization of F-actin ring and podosome structures in permeabilized (Triton<sup>™</sup> X-100)...
International audiencePodosomes, small actin-based adhesion structures, differ from focal adhesions ...
International audiencePodosomes are ubiquitous cellular structures important to diverse processes in...
International audienceDetermining how cells generate and transduce mechanical forces at the nanoscal...