The study of proteins in dendritic processes within the living brain is mainly hampered by the diffraction limit of light. STED microscopy is so far the only far-field light microscopy technique to overcome the diffraction limit and resolve dendritic spine plasticity at superresolution (nanoscopy) in the living mouse. After having tested several far-red fluorescent proteins in cell culture we report here STED microscopy of the far-red fluorescent protein mNeptune2, which showed best results for our application to superresolve actin filaments at a resolution of similar to 80 nm, and to observe morphological changes of actin in the cortex of a living mouse. We illustrate in vivo far-red neuronal actin imaging in the living mouse brain with su...
In the axons of cultured hippocampal neurons, actin forms various structures, including bundles, pat...
SummaryIn the axons of cultured hippocampal neurons, actin forms various structures, including bundl...
Morphological changes in dendritic spines represent an important mechanism for synaptic plasticity w...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
AbstractWe demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions ...
We demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions in a mam...
AbstractIt is difficult to investigate the mechanisms that mediate long-term changes in synapse func...
Extending superresolution fluorescence microscopy to living animals has remained a challenging front...
AbstractDendritic spines have been proposed as primary sites of synaptic plasticity in the brain. Co...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
International audienceThe actin cytoskeleton of dendritic spines plays a key role in morphological a...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
The post-synaptic density (PSD) is an electron dense region consisting of ~1000 proteins, found at t...
In the axons of cultured hippocampal neurons, actin forms various structures, including bundles, pat...
SummaryIn the axons of cultured hippocampal neurons, actin forms various structures, including bundl...
Morphological changes in dendritic spines represent an important mechanism for synaptic plasticity w...
The study of proteins in dendritic processes within the living brain is mainly hampered by the diffr...
AbstractWe demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions ...
We demonstrate superresolution fluorescence microscopy (nanoscopy) of protein distributions in a mam...
AbstractIt is difficult to investigate the mechanisms that mediate long-term changes in synapse func...
Extending superresolution fluorescence microscopy to living animals has remained a challenging front...
AbstractDendritic spines have been proposed as primary sites of synaptic plasticity in the brain. Co...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
International audienceThe actin cytoskeleton of dendritic spines plays a key role in morphological a...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
The actin cytoskeleton of dendritic spines plays a key role in morphological aspects of synaptic pla...
The post-synaptic density (PSD) is an electron dense region consisting of ~1000 proteins, found at t...
In the axons of cultured hippocampal neurons, actin forms various structures, including bundles, pat...
SummaryIn the axons of cultured hippocampal neurons, actin forms various structures, including bundl...
Morphological changes in dendritic spines represent an important mechanism for synaptic plasticity w...