Stimulated emission depletion (STED) microscopy provides a new opportunity to study fine sub-cellular structures and highly dynamic cellular processes, which are challenging to observe using conventional optical microscopy. Using actin as an example, we explored the feasibility of using a continuous wave (CW)-STED microscope to study the fine structure and dynamics in fixed and live cells. Actin plays an important role in cellular processes, whose functioning involves dynamic formation and reorganization of fine structures of actin filaments. Frequently used confocal fluorescence and STED microscopy dyes were employed to image fixed PC-12 cells (dyed with phalloidin- fluorescein isothiocyante) and live rat chondrosarcoma cells (RCS) transfe...
We present three novel reproducible methodologies for the quantification of changes in actin organiz...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
Fluorescence microscopy has become an essential tool to study biological molecules, pathways and eve...
We introduce far-red, fluorogenic probes that combine minimal cytotoxicity with excellent brightness...
We introduce far-red, fluorogenic probes that combine minimal cytotoxicity with excellent brightness...
Fluorescence microscopy, especially confocal microscopy, has revolutionized the field of biological ...
Fluorescence microscopy, especially confocal microscopy, has revolutionized the field of biological ...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
In the emerging field of super-resolution microscopy, the branch of live-cell imaging is still in it...
In the emerging field of super-resolution microscopy, the branch of live-cell imaging is still in it...
Stimulated emission depletion (STED) microscopy is a typical laser-scanning super-resolution imaging...
We report the application of an optical microscope equipped with a high-resolution dark-field conden...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
We present three novel reproducible methodologies for the quantification of changes in actin organiz...
We present three novel reproducible methodologies for the quantification of changes in actin organiz...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
Fluorescence microscopy has become an essential tool to study biological molecules, pathways and eve...
We introduce far-red, fluorogenic probes that combine minimal cytotoxicity with excellent brightness...
We introduce far-red, fluorogenic probes that combine minimal cytotoxicity with excellent brightness...
Fluorescence microscopy, especially confocal microscopy, has revolutionized the field of biological ...
Fluorescence microscopy, especially confocal microscopy, has revolutionized the field of biological ...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
In the emerging field of super-resolution microscopy, the branch of live-cell imaging is still in it...
In the emerging field of super-resolution microscopy, the branch of live-cell imaging is still in it...
Stimulated emission depletion (STED) microscopy is a typical laser-scanning super-resolution imaging...
We report the application of an optical microscope equipped with a high-resolution dark-field conden...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
We present three novel reproducible methodologies for the quantification of changes in actin organiz...
We present three novel reproducible methodologies for the quantification of changes in actin organiz...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
Fluorescence microscopy has become an essential tool to study biological molecules, pathways and eve...