Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy SW Hell, J Wichmann Optics letters 19 (11), 780-782, 1994 | 5497 | 1994 |
Far-field optical nanoscopy SW Hell science 316 (5828), 1153-1158, 2007 | 2961 | 2007 |
Fluorescence microscopy with diffraction resolution barrier broken by stimulated emission TA Klar, S Jakobs, M Dyba, A Egner, SW Hell Proceedings of the National Academy of Sciences 97 (15), 8206-8210, 2000 | 1756 | 2000 |
Direct observation of the nanoscale dynamics of membrane lipids in a living cell C Eggeling, C Ringemann, R Medda, G Schwarzmann, K Sandhoff, ... Nature 457 (7233), 1159, 2009 | 1465 | 2009 |
Toward fluorescence nanoscopy SW Hell Nature biotechnology 21 (11), 1347, 2003 | 1180 | 2003 |
STED microscopy reveals that synaptotagmin remains clustered after synaptic vesicle exocytosis KI Willig, SO Rizzoli, V Westphal, R Jahn, SW Hell Nature 440 (7086), 935, 2006 | 1100 | 2006 |
Microscopy and its focal switch SW Hell Nature methods 6 (1), 24, 2009 | 1076 | 2009 |
STED microscopy reveals crystal colour centres with nanometric resolution E Rittweger, KY Han, SE Irvine, C Eggeling, SW Hell Nature Photonics 3 (3), 144, 2009 | 858 | 2009 |
Subdiffraction resolution in far-field fluorescence microscopy TA Klar, SW Hell Optics letters 24 (14), 954-956, 1999 | 853 | 1999 |
Video-rate far-field optical nanoscopy dissects synaptic vesicle movement V Westphal, SO Rizzoli, MA Lauterbach, D Kamin, R Jahn, SW Hell Science 320 (5873), 246-249, 2008 | 814 | 2008 |
Breaking the diffraction barrier in fluorescence microscopy at low light intensities by using reversibly photoswitchable proteins M Hofmann, C Eggeling, S Jakobs, SW Hell Proceedings of the National Academy of Sciences 102 (49), 17565-17569, 2005 | 803 | 2005 |
Fluorescence nanoscopy by ground-state depletion and single-molecule return J Fölling, M Bossi, H Bock, R Medda, CA Wurm, B Hein, S Jakobs, ... Nature methods 5 (11), 943, 2008 | 787 | 2008 |
Bruchpilot promotes active zone assembly, Ca2+ channel clustering, and vesicle release RJ Kittel, C Wichmann, TM Rasse, W Fouquet, M Schmidt, A Schmid, ... Science 312 (5776), 1051-1054, 2006 | 733 | 2006 |
Aberrations in confocal fluorescence microscopy induced by mismatches in refractive index S Hell, G Reiner, C Cremer, EHK Stelzer Journal of microscopy 169 (3), 391-405, 1993 | 725 | 1993 |
Ground-state-depletion fluorscence microscopy: A concept for breaking the diffraction resolution limit SW Hell, M Kroug Applied Physics B 60 (5), 495-497, 1995 | 669 | 1995 |
Properties of a 4Pi confocal fluorescence microscope S Hell, EHK Stelzer JOSA A 9 (12), 2159-2166, 1992 | 663 | 1992 |
Nanoscale resolution in the focal plane of an optical microscope V Westphal, SW Hell Physical review letters 94 (14), 143903, 2005 | 611 | 2005 |
Macromolecular-scale resolution in biological fluorescence microscopy G Donnert, J Keller, R Medda, MA Andrei, SO Rizzoli, R Lührmann, ... Proceedings of the National Academy of Sciences 103 (31), 11440-11445, 2006 | 587 | 2006 |
Fluorogenic probes for live-cell imaging of the cytoskeleton G Lukinavičius, L Reymond, E D'este, A Masharina, F Göttfert, H Ta, ... Nature methods 11 (7), 731, 2014 | 559 | 2014 |
Multifocal multiphoton microscopy J Bewersdorf, R Pick, SW Hell Optics letters 23 (9), 655-657, 1998 | 535 | 1998 |