Correlated light and electron microscopy (CLEM) has become a popular technique for combining the protein-specific labeling of fluorescence with electron microscopy, both at room and cryogenic temperatures. Fluorescence applications at cryo-temperatures have typically been limited to localization of tagged protein oligomers due to known issues of extended triplet state duration, spectral shifts, and reduced photon capture through cryo-CLEM objectives. Here, we consider fluorophore characteristics and behaviors that could enable more extended applications. We describe how dialkylcarbocanine DiD, and its autoquenching by resonant energy transfer (RET), can be used to distinguish the fusion state of a lipid bilayer at cryo-temperatures. By adap...
Digitally enhanced low-light-level fluorescence video microscopy and immunochemical staining were us...
Membrane fusion is an essential step during entry of enveloped viruses into cells. Conventional fusi...
Sample fixation by vitrification is critical for the optimal structural preservation of biomolecules...
Correlated light and electron microscopy (CLEM) has become a popular technique for combining the pro...
Correlated cryo-fluorescence and cryo-electron microscopy (cryo-CLEM) has become an increasingly pop...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
Cryogenic correlative light and electron microscopy (cryo-CLEM) seeks to leverage orthogonal informa...
We have used intensified video fluorescence microscopy and digital image processing to observe and q...
In cryogenic correlated light and electron microscopy (cryo-CLEM), frozen targets of interest are id...
An analysis of the R(18) fusion assay was made during the fusion of the Sendai virus with erythrocyt...
Correlative light and electron microscopy (CLEM) has become a powerful tool in life sciences. Partic...
Performing fluorescence microscopy and electron microscopy on the same sample allows fluorescent sig...
In cryogenic correlated light and electron microscopy (cryo-CLEM), frozen targets of interest are id...
Correlative light and electron microscopy is an increasingly popular technique to study complex biol...
Digitally enhanced low-light-level fluorescence video microscopy and immunochemical staining were us...
Membrane fusion is an essential step during entry of enveloped viruses into cells. Conventional fusi...
Sample fixation by vitrification is critical for the optimal structural preservation of biomolecules...
Correlated light and electron microscopy (CLEM) has become a popular technique for combining the pro...
Correlated cryo-fluorescence and cryo-electron microscopy (cryo-CLEM) has become an increasingly pop...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
Cryogenic correlative light and electron microscopy (cryo-CLEM) seeks to leverage orthogonal informa...
We have used intensified video fluorescence microscopy and digital image processing to observe and q...
In cryogenic correlated light and electron microscopy (cryo-CLEM), frozen targets of interest are id...
An analysis of the R(18) fusion assay was made during the fusion of the Sendai virus with erythrocyt...
Correlative light and electron microscopy (CLEM) has become a powerful tool in life sciences. Partic...
Performing fluorescence microscopy and electron microscopy on the same sample allows fluorescent sig...
In cryogenic correlated light and electron microscopy (cryo-CLEM), frozen targets of interest are id...
Correlative light and electron microscopy is an increasingly popular technique to study complex biol...
Digitally enhanced low-light-level fluorescence video microscopy and immunochemical staining were us...
Membrane fusion is an essential step during entry of enveloped viruses into cells. Conventional fusi...
Sample fixation by vitrification is critical for the optimal structural preservation of biomolecules...