Fluorescence correlation spectroscopy in combination with super-resolution stimulated emission depletion microscopy (STED-FCS) is a powerful tool to investigate molecular diffusion with sub-diffraction resolution. It has been of particular use for investigations of two dimensional systems like cell membranes, but has so far seen very limited applications to studies of three-dimensional diffusion. One reason for this is the extreme sensitivity of the axial (z) STED depletion pattern to optical aberrations. We present here an adaptive optics-based correction method that compensates for these aberrations and allows STED-FCS measurements in the cytoplasm of living cells
Fluorescence correlation spectroscopy (FCS) is a valuable tool to study the molecular dynamics in li...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Fluorescence correlation spectroscopy in combination with super-resolution stimulated emission deple...
Fluorescence correlation spectroscopy in combination with super-resolution stimulated emission deple...
Fluorescence correlation spectroscopy (FCS) is a valuable tool to study the molecular dynamics in li...
Super-resolution microscopy has significantly expanded the scope of application of biological micros...
Super-resolution microscopy techniques enable optical imaging in live cells with unprecedented spati...
Super-resolution microscopy techniques enable optical imaging in live cells with unprecedented spati...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
Combining stimulated emission depletion and fluorescence correlation spectroscopy (STED-FCS) provide...
Fluorescence correlation spectroscopy (FCS) is a valuable tool to study the molecular dynamics in li...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Fluorescence correlation spectroscopy in combination with super-resolution stimulated emission deple...
Fluorescence correlation spectroscopy in combination with super-resolution stimulated emission deple...
Fluorescence correlation spectroscopy (FCS) is a valuable tool to study the molecular dynamics in li...
Super-resolution microscopy has significantly expanded the scope of application of biological micros...
Super-resolution microscopy techniques enable optical imaging in live cells with unprecedented spati...
Super-resolution microscopy techniques enable optical imaging in live cells with unprecedented spati...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
The observation of molecular diffusion at different spatial scales, and in particular below the opti...
Combining stimulated emission depletion and fluorescence correlation spectroscopy (STED-FCS) provide...
Fluorescence correlation spectroscopy (FCS) is a valuable tool to study the molecular dynamics in li...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...