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NIH Researchers Speed Image Processing for Fluorescence Microscopy

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Advances in image processing techniques could reduce post-processing time for highly complex microscopic images up to several thousandfold, based on work done by a research team at the National Institutes of Health (NIH) and their collaborators at the University of Chicago and Zhejiang University. The team led by Hari Shroff, chief of laboratory on High Resolution Optical Imaging at the National Institute of Biomedical Imaging and Bioengineering (NIBIB), took a three-step approach to improving processing time. First, it modified the classic deconvolution algorithm that is used to reduce...Read full article

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    Published: July 2020
    Glossary
    fluorescence microscopy
    Fluorescence microscopy is a specialized optical imaging technique used in biology, chemistry, and materials science to visualize and study specimens that exhibit fluorescence. Fluorescence is the phenomenon where a substance absorbs light at one wavelength and emits light at a longer wavelength. In fluorescence microscopy, fluorescent dyes or proteins are used to label specific structures or molecules within a sample. The basic principles of fluorescence microscopy involve illuminating the...
    superresolution
    Superresolution refers to the enhancement or improvement of the spatial resolution beyond the conventional limits imposed by the diffraction of light. In the context of imaging, it is a set of techniques and algorithms that aim to achieve higher resolution images than what is traditionally possible using standard imaging systems. In conventional optical microscopy, the resolution is limited by the diffraction of light, a phenomenon described by Ernst Abbe's diffraction limit. This limit sets a...
    Research & TechnologyeducationAmericasNational Institutes of HealthNational Institute of Biomedical Imaging and BioengineeringMarine Biological LaboratoryUniversity of ChicagoImagingLight SourcesMicroscopylight-sheet microscopyfluorescence microscopyOpticssuperresolution3D imagingmedicalBiophotonicsenvironmentHari Shrofffluorescence imagingTech PulseBioScan

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