Melnikov, SM, Bergamini, G, Herrmann, A, ...
Defocused wide-field fluorescence microscopy was used to follow the 3D molecular rotational diffusion of a fluorescent probe molecule in a polymer thin film. The technique allows for visualizing the...
Defocused orientation and position imaging (DOPI) of myosin V (2006)
Toprak, E., Enderlein, J., Syed, S., McKinney, S. A., Petschek, R. G., Ha, T., ...
This version is available at http://www.pnas.org, http://dx.doi.org/10.1073/pnas.0507134103
Defocused imaging of quantum dot angular distribution of radiation (2005)
Patra, D., Gregor, I., Enderlein, J., Sauer, M.
This version is available at the following URL: http://dx.doi.org/10.1063/1.2037194
Breaking the diffraction limit with dynamic saturation optical microscopy (2005)
This version is available at the following URL: http://dx.doi.org/10.1063/1.2034116
This version is available at the following URL: http://dx.doi.org/10.1063/1.1863399
Wrobel, G., Seifert, R., Ingebrandt, S., Enderlein, J., Ecken, H., Baumann, A., ...
This version is available at the following Publisher URL: http://www.biophysj.org/
Patra, D, ...
Schroeyers,W., Vallee,R., Patra,D., Hofkens,J., Habuchi,S., Vosch,T., ...
Implementation of neural networks for the identification of single molecules (2004)
Bowen, B. P., Scruggs, A., Enderlein, J., Sauer, M., Woodbury, N.
Theoretical study of single molecule fluorescence in a metallic nanocavity (2002)
This version is available at the following URL: http://apl.aip.org/
A theoretical investigation of single-molecule fluorescence detection on thin metallic layers.
In the present paper, the excitation and detection of single-molecule fluorescence over thin metallic films is studied theoretically within the framework of classical electrodynamics. The model takes...
A theoretical investigation of single-molecule fluorescence detection on thin metallic layers.
In the present paper, the excitation and detection of single-molecule fluorescence over thin metallic films is studied theoretically within the framework of classical electrodynamics. The model takes...