Zeitschriftenartikel (119)
100.
Zeitschriftenartikel
5 (11), S. 943 - 945 (2008)
Fluorescence nanoscopy by ground-state depletion and single-molecule return. Nature Methods 101.
Zeitschriftenartikel
26 (9), S. 1035 - 1040 (2008)
Photoswitchable fluorescent proteins enable monochromatic multilabel imaging and dual color fluorescence nanoscopy. Nature Biotechnology 102.
Zeitschriftenartikel
95, S. 2989 - 2997 (2008)
Generation of monomeric reversibly switchable red fluorescent proteins for far-field fluorescence nanoscopy. Biophysical Journal 103.
Zeitschriftenartikel
181 (1), S. 119 - 130 (2008)
The class V myosin motor protein, Myo2, plays a major role in mitochondrial motility in Saccharomyces cerevisiae. The Journal of Cell Biology 104.
Zeitschriftenartikel
70 (12), S. 1003 - 1009 (2007)
Reversible photoswitching enables single-molecule fluorescence fluctuation spectroscopy at high molecular concentration. Microscopy Research and Technique 105.
Zeitschriftenartikel
232 (1-2), S. 1 - 9 (2007)
An integrated physiological and genetic approach to the dynamics of FtsZ targeting and organisation in a moss, Physcomitrella patens. Protoplasma 106.
Zeitschriftenartikel
104 (32), S. 13005 - 13009 (2007)
Structural basis for reversible photoswitching in Dronpa. Proceedings of the National Academy of Sciences of the United States of America 107.
Zeitschriftenartikel
88 (2), S. 161 - 165 (2007)
Two-color far-field fluorescence nanoscopy based on photoswitchable emitters. Applied Physics B-Lasers and Optics 108.
Zeitschriftenartikel
14 (4), S. 651 - 661 (2007)
Cyclin-dependent kinase 5 is an upstream regulator of mitochondrial fission during neuronal apoptosis. Cell Death and Differentiation 109.
Zeitschriftenartikel
402, S. 35 - 42 (2007)
1.8 Å bright-state structure of the reversibly switchable fluorescent protein Dronpa guides the generation of fast switching variants. Biochemical Journal 110.
Zeitschriftenartikel
70 (3), S. 269 - 280 (2007)
Wide-field subdiffraction RESOLFT microscopy using fluorescent protein photoswitching. Microscopy Research and Technique 111.
Zeitschriftenartikel
156 (3), S. 517 - 523 (2006)
4Pi microscopy of quantum dot-labeled cellular structures. Journal of Structural Biology 112.
Zeitschriftenartikel
3 (9), S. 721 - 723 (2006)
Nanoscale resolution in GFP-based microscopy. Nature Methods 113.
Zeitschriftenartikel
3 (9), S. 721 - 723 (2006)
Nanoscale resolution in GFP-based microscopy. Nature Methods 114.
Zeitschriftenartikel
1763 (5-6), S. 561 - 575 (2006)
High resolution imaging of live mitochondria. BBA- Molecular Cell Research 115.
Zeitschriftenartikel
119, S. 3098 - 3106 (2006)
Fis1p and Caf4p, but not Mdv1p are required for a polar localization of Dnm1p clusters on the mitochondrial surface. Journal of Cell Science 116.
Zeitschriftenartikel
102 (49), S. 17565 - 17569 (2005)
Breaking the diffraction barrier in fluorescence microscopy at low light intensities by using reversibly photoswitchable proteins. Proceedings of the National Academy of Sciences of the United States of America 117.
Zeitschriftenartikel
102 (37), S. 13070 - 13074 (2005)
Structure and mechanism of the reversible photoswitch of a fluorescent protein. Proceedings of the National Academy of Sciences of the United States of America 118.
Zeitschriftenartikel
168 (1), S. 103 - 115 (2005)
Mdm31 and Mdm32 are inner membrane proteins required for maintenance of mitochondrial shape and stability of mitochondrial DNA nucleoids in yeast. Journal of Cell Biology 119.
Zeitschriftenartikel
11 (12), S. 1 - 4 (2005)
Insight into the structure and mechanism of the reversible photoswitch of a fl uorescent protein. MPIBPC News Buchkapitel (6)
120.
Buchkapitel
STED super-resolution microscopy of mitochondrial translocases. In: Mitochondrial Translocases Part B, S. 299 - 327 (Hg. Wiedemann, N.). Elsevier, Amsterdam (2024)
121.
Buchkapitel
Reversibly switchable fluorescent Proteins for RESOLFT nanoscopy. In: Nanoscale Photonic Imaging, S. 241 - 261 (Hg. Salditt, T.; Egner, A.; Luke, D. R.). Springer, Cham (2020)
122.
Buchkapitel
124, S. 1 - 19 (Hg. Müller, S.). Springer, Berlin (2011)
Light microscopic analysis of mitochondrial heterogeneity in cell populations and within single cells. In: High resolution microbial single cell analytics. (Advances in biochemical engineering-biotechnology; 124), Bd. 123.
Buchkapitel
Sample preparation for STED microscopy. In: Live cell imaging: methods and protocols, S. 185 - 199 (Hg. Papkovsky, D. B.). Humana Press, New York (2010)
124.
Buchkapitel
'FlAsH' protein labeling. In: Probes and tags to study biomolecular function: for proteins, RNA, and membranes, S. 73 - 88 (Hg. Miller, L. W.). Wiley-VCH, Weinheim, Germany (2008)
125.
Buchkapitel
Nanoscale resolution with focused light: STED and other RESOLFT microscopy concepts. In: Handbook of biological confocal microscopy, S. 571 - 579 (Hg. Pawley, J.B.). Springer, New York (2006)