Solution-based single-molecule fluorescence spectroscopy is a powerful new experimental approach with applications in all fields of natural sciences. The basic concept of this technique is to excite and collect light from a very small volume (typically femtoliter) and work in a concentration regime resulting in rare burst-like events corresponding to the transit of a single-molecule. Those events are accumulated over time to achieve proper statistical accuracy. Therefore the advantage of extreme sensitivity is somewhat counterbalanced by a very long acquisition time. One way to speed up data acquisition is parallelization. Here we will discuss a general approach to address this issue, using a multispot excitation and detection geometry that...
The past few years we have witnessed a tremendous surge of interest in so-called array-based miniatu...
Fluorescence-based assays using single-molecule techniques are evolving into a very important tool i...
Single-molecule Förster resonance energy transfer (smFRET) is a powerful tool for extracting distanc...
Solution-based single-molecule fluorescence spectroscopy is a powerful new experimental approach wit...
Solution-based single-molecule fluorescence spectroscopy is a powerful new experimental approach wit...
Solution-based single-molecule spectroscopy and fluorescence correlation spectroscopy (FCS) are powe...
Two optical configurations are commonly used in single-molecule fluorescence microscopy: point-like ...
Single-molecule fluorescence spectroscopy (SMFS), based on the detection of individual molecules fre...
In this review a short introduction to the concept and experimental realization of single molecule m...
Single-molecule fluorescence spectroscopy (SMFS), based on the detection of individual molecules fre...
We present parallel single molecule detection (SMD) and fluorescence correlation spectroscopy (FCS) ...
Recent advances in nanophotonics open the way for promising applications towards efficient single mo...
The past few years we have witnessed a tremendous surge of interest in so-called array-based miniatu...
Fluorescence-based assays using single-molecule techniques are evolving into a very important tool i...
Single-molecule Förster resonance energy transfer (smFRET) is a powerful tool for extracting distanc...
Solution-based single-molecule fluorescence spectroscopy is a powerful new experimental approach wit...
Solution-based single-molecule fluorescence spectroscopy is a powerful new experimental approach wit...
Solution-based single-molecule spectroscopy and fluorescence correlation spectroscopy (FCS) are powe...
Two optical configurations are commonly used in single-molecule fluorescence microscopy: point-like ...
Single-molecule fluorescence spectroscopy (SMFS), based on the detection of individual molecules fre...
In this review a short introduction to the concept and experimental realization of single molecule m...
Single-molecule fluorescence spectroscopy (SMFS), based on the detection of individual molecules fre...
We present parallel single molecule detection (SMD) and fluorescence correlation spectroscopy (FCS) ...
Recent advances in nanophotonics open the way for promising applications towards efficient single mo...
The past few years we have witnessed a tremendous surge of interest in so-called array-based miniatu...
Fluorescence-based assays using single-molecule techniques are evolving into a very important tool i...
Single-molecule Förster resonance energy transfer (smFRET) is a powerful tool for extracting distanc...