0000000000591771

AUTHOR

Hilmar Strickfaden

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Superresolution imaging of biological nanostructures by spectral precision distance microscopy

2011

For the improved understanding of biological systems on the nanoscale, it is necessary to enhance the resolution of light microscopy in the visible wavelength range beyond the limits of conventional epifluorescence microscopy (optical resolution of about 200 nm laterally, 600 nm axially). Recently, various far-field methods have been developed allowing a substantial increase of resolution ("superresolution microscopy", or "lightoptical nanoscopy"). This opens an avenue to 'nano-image' intact and even living cells, as well as other biostructures like viruses, down to the molecular detail. Thus, it is possible to combine light optical spatial nanoscale information with ultrastructure analyses…

MicroscopyNanostructureMaterials scienceSuper-resolution microscopybusiness.industryResolution (electron density)NanotechnologyGeneral MedicineApplied Microbiology and BiotechnologyFluorescenceNanostructuresWavelengthOpticsMicroscopy FluorescenceMicroscopyFluorescence microscopeMolecular MedicinebusinessNanoscopic scale
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