Non-invasive super-resolution imaging through dynamic scattering media

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作者
Dong Wang
Sujit K. Sahoo
Xiangwen Zhu
Giorgio Adamo
Cuong Dang
机构
[1] Nanyang Technological University Singapore,Centre for Optoelectronics and Biophotonics (COEB), School of Electrical and Electronic Engineering, The Photonics Institute (TPI)
[2] Taiyuan University of Technology,Key Laboratory of Advanced Transducers and Intelligent Control System, Ministry of Education, and Shanxi Province, College of Physics and Optoelectronics
[3] School of Electrical Sciences,Centre for Disruptive Photonic Technologies, SPMS, TPI
[4] Indian Institute of Technology Goa,undefined
[5] Nanyang Technological University,undefined
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摘要
Super-resolution imaging has been revolutionizing technical analysis in various fields from biological to physical sciences. However, many objects are hidden by strongly scattering media such as biological tissues that scramble light paths, create speckle patterns and hinder object’s visualization, let alone super-resolution imaging. Here, we demonstrate non-invasive super-resolution imaging through scattering media based on a stochastic optical scattering localization imaging (SOSLI) technique. After capturing multiple speckle patterns of photo-switchable point sources, our computational approach utilizes the speckle correlation property of scattering media to retrieve an image with a 100-nm resolution, an eight-fold enhancement compared to the diffraction limit. More importantly, we demonstrate our SOSLI to do non-invasive super-resolution imaging through not only static scattering media, but also dynamic scattering media with strong decorrelation such as biological tissues. Our approach paves the way to non-invasively visualize various samples behind scattering media at nanometer levels of detail.
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