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I5S: wide-field light microscopy with 100-nm-scale resolution in three dimensions.


ABSTRACT: A new type of wide-field fluorescence microscopy is described, which produces 100-nm-scale spatial resolution in all three dimensions, by using structured illumination in a microscope that has two opposing objective lenses. Illumination light is split by a grating and a beam splitter into six mutually coherent beams, three of which enter the specimen through each objective lens. The resulting illumination intensity pattern contains high spatial frequency components both axially and laterally. In addition, the emission is collected by both objective lenses coherently, and combined interferometrically on a single camera, resulting in a detection transfer function with axially extended support. These two effects combine to produce near-isotropic resolution. Experimental images of test samples and biological specimens confirm the theoretical predictions.

SUBMITTER: Shao L 

PROVIDER: S-EPMC2397336 | biostudies-literature | 2008 Jun

REPOSITORIES: biostudies-literature

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I5S: wide-field light microscopy with 100-nm-scale resolution in three dimensions.

Shao Lin L   Isaac Berith B   Uzawa Satoru S   Agard David A DA   Sedat John W JW   Gustafsson Mats G L MG  

Biophysical journal 20080307 12


A new type of wide-field fluorescence microscopy is described, which produces 100-nm-scale spatial resolution in all three dimensions, by using structured illumination in a microscope that has two opposing objective lenses. Illumination light is split by a grating and a beam splitter into six mutually coherent beams, three of which enter the specimen through each objective lens. The resulting illumination intensity pattern contains high spatial frequency components both axially and laterally. In  ...[more]

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