2014 |
Chemistry |
Belov, V. N., et al. |
Masked rhodamine dyes of five principal colors revealed by photolysis of a 2-diazo-1-indanone caging group: synthesis, photophysics, and light microscopy applications |
|
2014 |
Biophysical journal |
Bosch, P. J., et al. |
Evaluation of fluorophores to label SNAP-tag fused proteins for multicolor single-molecule tracking microscopy in live cells |
|
2014 |
Microscopy research and technique |
Wang, Y., et al. |
A 3D aligning method for stimulated emission depletion microscopy using fluorescence lifetime distribution |
|
2014 |
Molecular biology of the cell |
Lavieu, G., et al. |
The Golgi ribbon structure facilitates anterograde transport of large cargoes |
|
2014 |
Nature communications |
Saka, S. K., et al. |
Multi-protein assemblies underlie the mesoscale organization of the plasma membrane |
|
2014 |
Journal of Modern Optics |
Rong, Z., et al. |
Real-time super-resolution imaging by high-speed fluorescence emission difference microscopy |
|
2014 |
Methods in cell biology |
Engel, U., et al. |
Structured illumination superresolution imaging of the cytoskeleton |
|
2014 |
Journal of Neuroscience |
Li, L., et al. |
Drosophila Syd-1, liprin-α, and protein phosphatase 2A B′ subunit Wrd function in a linear pathway to prevent ectopic accumulation of synaptic materials in distal axons |
|
2014 |
Progress In Electromagnetics Research |
Görlitz, F., et al. |
A STED microscope designed for routine biomedical applications |
|
2014 |
PloS one |
Koch, N., et al. |
Terminal axonal arborization and synaptic bouton formation critically rely on abp1 and the arp2/3 complex |
|
2014 |
BMC neuroscience |
Westin, L., et al. |
Nanoscopic spine localization of Norbin, an mGluR5 accessory protein |
|
2014 |
In Journal of Physics: Conference Series |
Vedyaykin, A. D., et al. |
Localization microscopy study of FtsZ structures in E. coli cells during SOS-response |
|
2014 |
Elife |
Honigmann, A., et al. |
A lipid bound actin meshwork organizes liquid phase separation in model membranes |
|
2014 |
Scientific reports |
Eggert, D., et al. |
Nanoscale glucan polymer network causes pathogen resistance |
|
2014 |
eLife |
Wilfling, F., et al. |
Arf1/COPI machinery acts directly on lipid droplets and enables their connection to the ER for protein targeting |
|
2014 |
PloS one |
Hughes, L. D., et al. |
Choose your label wisely: water-soluble fluorophores often interact with lipid bilayers |
|
2014 |
PloS one |
Tobin, S. J., et al. |
Nanoscale effects of ethanol and naltrexone on protein organization in the plasma membrane studied by photoactivated localization microscopy (PALM) |
|
2014 |
In Fundamentals of Fluorescence Microscopy. Springer, Dordrecht. |
Mondal, P. P., et al. |
Super-resolution fluorescence microscopy |
|
2013 |
Chemistry |
Kolmakov, K., et al. |
Polar red-emitting rhodamine dyes with reactive groups: synthesis, photophysical properties, and two-color STED nanoscopy applications |
|
2013 |
Nature methods |
Marx, V., et al. |
Is super-resolution microscopy right for you? |
|
2013 |
Chemistry |
Schill, H., et al. |
4-Trifluoromethyl-substituted coumarins with large Stokes shifts: synthesis, bioconjugates, and their use in super-resolution fluorescence microscopy |
|
2013 |
Cell host & microbe |
Wang, I. H., et al. |
Tracking viral genomes in host cells at single-molecule resolution |
|
2013 |
NanoBioImaging |
Clausen, M. P., et al. |
Pathways to optical STED microscopy |
|
2013 |
Optical Engineering |
Wang, Y., et al. |
Time-gated stimulated emission depletion nanoscopy |
|
2013 |
Cytoskeleton |
Chacko, J. V., et al. |
Probing cytoskeletal structures by coupling optical superresolution and AFM techniques for a correlative approach |
|
2013 |
PloS one |
Blom, H., et al. |
Spatial distribution of DARPP-32 in dendritic spines |
|
2013 |
In International Symposium on Photoelectronic Detection and Imaging 2013: Micro/Nano Optical Imaging Technologies and Applications |
Li, S., et al. |
High speed optical nanoscopy by stimulated emission depletion (STED) with galvo mirrors |
|
2013 |
Biophysical journal |
Göttfert, F., et al. |
Coaligned dual-channel STED nanoscopy and molecular diffusion analysis at 20 nm resolution |
|
2013 |
Proceedings of the National Academy of Sciences |
Jans, D. C., et al. |
STED super-resolution microscopy reveals an array of MINOS clusters along human mitochondria |
|
2013 |
Biomedical optics express |
Olivier, N., et al. |
Simple buffers for 3D STORM microscopy |
|
2013 |
Nature structural & molecular biology |
Honigmann, A., et al. |
Phosphatidylinositol 4, 5-bisphosphate clusters act as molecular beacons for vesicle recruitment |
|
2013 |
Israel Journal of Chemistry |
Belov, V. N., et al. |
Photoswitching Emission with Rhodamine Spiroamides for Super‐resolution Fluorescence nanoscopies |
|
2013 |
Bioconjugate chemistry |
Sednev, M. V., et al. |
Carborhodol: a new hybrid fluorophore obtained by combination of fluorescein and carbopyronine dye cores |
|
2013 |
JOSA A |
Xie, H., et al. |
Analytical description of high-aperture STED resolution with 0–2π vortex phase modulation |
|
2012 |
Elife |
Grotjohann, T., et al. |
rsEGFP2 enables fast RESOLFT nanoscopy of living cells |
|
2013 |
Journal of molecular and cellular cardiology |
Kohl, T., et al. |
Superresolution microscopy in heart—Cardiac nanoscopy |
|
2012 |
Chemistry |
Nizamov, S., et al. |
Phosphorylated 3-heteroarylcoumarins and their use in fluorescence microscopy and nanoscopy |
|
2012 |
Science |
Chojnacki, J., et al. |
Maturation-dependent HIV-1 surface protein redistribution revealed by fluorescence nanoscopy |
|
2012 |
Development |
Giese, A. P., et al. |
Gipc1 has a dual role in Vangl2 trafficking and hair bundle integrity in the inner ear |
|
2012 |
PloS Pathogens |
Karlsson, T., et al. |
The Pseudomonas aeruginosa N-acylhomoserine lactone quorum sensing molecules target IQGAP1 and modulate epithelial cell migration |
|
2012 |
Optical Nanoscopy |
Wurm, C. A., et al. |
Novel red fluorophores with superior performance in STED microscopy |
|
2012 |
Chemistry |
Kolmakov, K., et al. |
Red-emitting rhodamines with hydroxylated, sulfonated, and phosphorylated dye residues and their use in fluorescence nanoscopy |
|
2012 |
The Journal of Physical Chemistry Letters |
Zhu, X., et al. |
Molecular-switch-mediated multiphoton fluorescence microscopy with high-order nonlinearity |
|
2012 |
Biochimica et Biophysica Acta (BBA)-Biomembranes |
Sezgin, E., et al. |
Partitioning, diffusion, and ligand binding of raft lipid analogs in model and cellular plasma membranes |
|
2012 |
ACS nano |
Balzarotti, F., et al. |
Plasmonics meets far-field optical nanoscopy |
|
2013 |
Faraday Discussions |
Honigmann, A., et al. |
STED microscopy detects and quantifies liquid phase separation in lipid membranes using a new far-red emitting fluorescent phosphoglycerolipid analogue |
|
2012 |
ChemPhysChem |
Müller, T., et al. |
STED microscopy and its applications: new insights into cellular processes on the nanoscale |
|
2012 |
Science |
Berning, S., et al. |
Nanoscopy in a living mouse brain |
|
2011 |
Proceedings of the National Academy of Sciences |
Kukat, C., et al. |
Super-resolution microscopy reveals that mammalian mitochondrial nucleoids have a uniform size and frequently contain a single copy of mtDNA |
|
2011 |
Proceedings of the National Academy of Sciences |
Wurm, C. A., et al. |
Nanoscale distribution of mitochondrial import receptor Tom20 is adjusted to cellular conditions and exhibits an inner-cellular gradient |
|
2011 |
Nature methods |
Vicidomini, G., et al. |
Sharper low-power STED nanoscopy by time gating |
|
2011 |
Journal of Neuroscience |
Reisinger, E., et al. |
Probing the functional equivalence of otoferlin and synaptotagmin 1 in exocytosis |
|
2010 |
Angewandte Chemie International Edition |
Belov, V. N., et al. |
Rhodamines NN: a novel class of caged fluorescent dyes |
|
2010 |
Chemistry |
Mitronova, G. Y., et al. |
New fluorinated rhodamines for optical microscopy and nanoscopy |
|
2010 |
PMC biophysics |
Neumann, D., et al. |
Two-color STED microscopy reveals different degrees of colocalization between hexokinase-I and the three human VDAC isoforms |
|
2010 |
Chemistry |
Kolmakov, K., et al. |
Red-emitting rhodamine dyes for fluorescence microscopy and nanoscopy |
|
2009 |
Chemistry |
Belov, V. N., et al. |
Rhodamine Spiroamides for Multicolor Single‐Molecule Switching Fluorescent Nanoscopy |
|
2009 |
European Journal of Organic Chemistry |
Polyakova, S., et al. |
New GM1 ganglioside derivatives for selective single and double labelling of the natural glycosphingolipid skeleton |
|
2009 |
Nano letters |
Schmidt, R., et al. |
Mitochondrial cristae revealed with focused light |
|
2009 |
Nature |
Eggeling, C., et al. |
Direct observation of the nanoscale dynamics of membrane lipids in a living cell |
|
2008 |
Nano letters |
Bossi, M., et al. |
Multicolor far-field fluorescence nanoscopy through isolated detection of distinct molecular species |
|
2008 |
ChemPhysChem |
Fölling, J., et al. |
Fluorescence nanoscopy with optical sectioning by two‐photon induced molecular switching using continuous‐wave lasers |
|
2018 |
In Neurotrophic Factors (pp. 295-314). Humana Press |
Gobbo, F., et al. |
Site-specific direct labeling of neurotrophins and their receptors: From biochemistry to advanced imaging applications |
|
2007 |
Angewandte Chemie International Edition |
Fölling, J., et al. |
Photochromic rhodamines provide nanoscopy with optical sectioning |
|
2007 |
Science |
Hell, S. W., et al. |
Far-field optical nanoscopy |
|
2003 |
Nature biotechnology |
Dyba, M., et al. |
Immunofluorescence stimulated emission depletion microscopy |
|
2022 |
Cellular and Molecular Life Sciences |
Saha, K., et al. |
Pharmacological chaperone-rescued cystic fibrosis CFTR-F508del mutant overcomes |
|
2023 |
Food Hydrocolloids |
Foroutanparsa, S. , et al. |
Spatial distribution of αs1-caseins and β-caseins in milk gels acidified with glucono-δ-lactone |
|
2023 |
Cell |
Déjosez, M., et al. |
Bat pluripotent stem cells reveal unusual entanglement between host and viruses |
|
2023 |
Science Direct |
Li, R., et al. |
Discriminating between different proteins in the microstructure of acidified milk gels by super-resolution microscopy |
|