Tailored speckle illumination microscopy with enhanced sectioning and image quality

Optical speckle patterns have been widely used for illumination in computational imaging, optical sectioning microscopy, and superresolution imaging. However, commonly used speckles satisfy Rayleigh statistics, which are not ideal for diverse imaging applications. Here we tailor three-dimensional speckle intensity statistics for dynamic speckle illumination microscopy based on linear fluorescence. Optical sectioning is enhanced by axially varying speckle contrast, and image reconstruction noise is minimized with in-focus speckles of binary intensities. The customized speckle statistics are shown to tolerate sample-induced aberration and scattering. We apply tailored speckle illumination to mouse brain vascular imaging and demonstrate much improved image quality than optical-sectioning structured illumination. These results establish customization of speckle intensity statistics as a promising strategy for robust, high-throughput fluorescence imaging in thick, scattering biological specimens.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-10-06
DOI
https://doi.org/10.1073/pnas.2617763123
Primary Topic
Advanced Fluorescence Microscopy Techniques
Type
article
Field-Weighted Citation Impact
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article

Tailored speckle illumination microscopy with enhanced sectioning and image quality

Taeyun Ku, Nicholas Bender, Kabish Wisal, SeungYun Han et al.
Proceedings of the National Academy of Sciences
Advanced Fluorescence Microscopy Techniques
article

Tailored speckle illumination microscopy with enhanced sectioning and image quality

Taeyun Ku, Nicholas Bender, Kabish Wisal, SeungYun Han, Jerome Mertz, Young Wan Kim, Chuan Li, KyeoReh Lee, Hui Cao
article en

Abstract

Optical speckle patterns have been widely used for illumination in computational imaging, optical sectioning microscopy, and superresolution imaging. However, commonly used speckles satisfy Rayleigh statistics, which are not ideal for diverse imaging applications. Here we tailor three-dimensional speckle intensity statistics for dynamic speckle illumination microscopy based on linear fluorescence. Optical sectioning is enhanced by axially varying speckle contrast, and image reconstruction noise is minimized with in-focus speckles of binary intensities. The customized speckle statistics are shown to tolerate sample-induced aberration and scattering. We apply tailored speckle illumination to mouse brain vascular imaging and demonstrate much improved image quality than optical-sectioning structured illumination. These results establish customization of speckle intensity statistics as a promising strategy for robust, high-throughput fluorescence imaging in thick, scattering biological specimens.

Proceedings of the National Academy of SciencesVol. 123(41)
Boston University (US), Korea Advanced Institute of Science and Technology (KR), Cornell University (US), Yale University (US)
Openalex Percentile: Top 74%
Advanced Fluorescence Microscopy Techniques
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