Resolution doubling in light-sheet microscopy via oblique plane structured illumination

被引:0
|
作者
Bingying Chen
Bo-Jui Chang
Philippe Roudot
Felix Zhou
Etai Sapoznik
Madeleine Marlar-Pavey
James B. Hayes
Peter T. Brown
Chih-Wei Zeng
Talley Lambert
Jonathan R. Friedman
Chun-Li Zhang
Dylan T. Burnette
Douglas P. Shepherd
Kevin M. Dean
Reto P. Fiolka
机构
[1] University of Texas Southwestern Medical Center,Lyda Hill Department of Bioinformatics
[2] University of Texas Southwestern Medical Center,Cecil H. and Ida Green Center for Systems Biology
[3] University of Texas Southwestern Medical Center,Department of Cell Biology
[4] Aix-Marseille University,Department of Cell and Developmental Biology, Vanderbilt Medical Center
[5] CNRS,Center for Biological Physics and Department of Physics
[6] Centrale Marseille,Department of Molecular Biology
[7] I2M,Department of Cell Biology
[8] Turing Centre for Living Systems,Department of Systems Biology
[9] University of Vanderbilt,undefined
[10] Arizona State University,undefined
[11] University of Texas Southwestern Medical Center,undefined
[12] Harvard Medical School,undefined
[13] Harvard Medical School,undefined
[14] Genentech,undefined
来源
Nature Methods | 2022年 / 19卷
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摘要
Structured illumination microscopy (SIM) doubles the spatial resolution of a fluorescence microscope without requiring high laser powers or specialized fluorophores. However, the excitation of out-of-focus fluorescence can accelerate photobleaching and phototoxicity. In contrast, light-sheet fluorescence microscopy (LSFM) largely avoids exciting out-of-focus fluorescence, thereby enabling volumetric imaging with low photobleaching and intrinsic optical sectioning. Combining SIM with LSFM would enable gentle three-dimensional (3D) imaging at doubled resolution. However, multiple orientations of the illumination pattern, which are needed for isotropic resolution doubling in SIM, are challenging to implement in a light-sheet format. Here we show that multidirectional structured illumination can be implemented in oblique plane microscopy, an LSFM technique that uses a single objective for excitation and detection, in a straightforward manner. We demonstrate isotropic lateral resolution below 150 nm, combined with lower phototoxicity compared to traditional SIM systems and volumetric acquisition speed exceeding 1 Hz.
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页码:1419 / 1426
页数:7
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