SummaryLens-based fluorescence microscopy, which has long been limited in resolution to about 200 nanometers by diffraction, is rapidly evolving into a nanoscale imaging technique. Here, we show that the superresolution fluorescence microscopy called RESOLFT enables comparatively fast and continuous imaging of sensitive, nanosized features in living brain tissue. Using low-intensity illumination to switch photochromic fluorescent proteins reversibly between a fluorescent and a nonfluorescent state, we increased the resolution more than 3-fold over that of confocal microscopy in all dimensions. Dendritic spines located 10–50 μm deep inside living organotypic hippocampal brain slices were recorded for hours without signs of degradation. Using...
Light sheet fluorescence microscopy offers considerable potential to the cellular neuroscience commu...
Cells in the brain act as components of extended networks. Therefore, to understand neurobiological ...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
Lens-based fluorescence microscopy, which has long been limited in resolution to about 200 nanometer...
SummaryLens-based fluorescence microscopy, which has long been limited in resolution to about 200 na...
Super-resolution fluorescence microscopy holds tremendous potential for discovery in neuroscience. M...
In order to understand how memory is processed and stored in the brain, it would be helpful to obser...
AbstractIt is difficult to investigate the mechanisms that mediate long-term changes in synapse func...
Super-resolution fluorescence microscopy has entered most biological laboratories worldwide and its ...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
AbstractWe demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions ...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
We demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions in a mam...
Cells, the functional units of life, are beststudied in vivo. This is particularly truefor neurons, ...
Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals ar...
Light sheet fluorescence microscopy offers considerable potential to the cellular neuroscience commu...
Cells in the brain act as components of extended networks. Therefore, to understand neurobiological ...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
Lens-based fluorescence microscopy, which has long been limited in resolution to about 200 nanometer...
SummaryLens-based fluorescence microscopy, which has long been limited in resolution to about 200 na...
Super-resolution fluorescence microscopy holds tremendous potential for discovery in neuroscience. M...
In order to understand how memory is processed and stored in the brain, it would be helpful to obser...
AbstractIt is difficult to investigate the mechanisms that mediate long-term changes in synapse func...
Super-resolution fluorescence microscopy has entered most biological laboratories worldwide and its ...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
AbstractWe demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions ...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
We demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions in a mam...
Cells, the functional units of life, are beststudied in vivo. This is particularly truefor neurons, ...
Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals ar...
Light sheet fluorescence microscopy offers considerable potential to the cellular neuroscience commu...
Cells in the brain act as components of extended networks. Therefore, to understand neurobiological ...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...