Glass fibers are miniature optical components that serve as ultra-narrow endoscopy probes. Ideally, one would want to perform imaging through a fiber at the highest achievable resolution and speed. State-of-the-art super-resolution techniques have shattered the diffraction limit, but more than twofold improvement requires fluorescent labeling and a long acquisition time. Moreover, it is challenging to implement super-resolution microscopy in a fiber format. Here we present fiber-based label-free video-rate imaging at more than 2-fold higher resolution than the diffraction limit. Our work paves the way to rapid, sub-wavelength endo-microscopy in unlabeled live specimens
Super-resolved structured illumination microscopy (SR-SIM) is among the most flexible, fast, and lea...
Acknowledgements: We acknowledge helpful discussions with Y. Liu, X. Yuan, J. Zhang, Y. Ma, C. Kuang...
Currently, endoscopic surgery uses single-mode fiber-bundles to obtain in vivo image information ins...
Endoscopy is a key technology for minimally-invasive optical access to deep tissues in humans and li...
For several centuries, far-field optical microscopy has remained a key instrument in many scientific...
We propose and experimentally demonstrate a new concept of endo-microscopy: compressive multimode (M...
Fiber-based endoscopic compressive imaging is a promising field for minimal invasive, in vivo imagin...
In modern endoscopy, wide field of view and full color are considered necessary for navigating insid...
Far-field optical microscopy typically suffers from limited resolution, speed and imaging depth. End...
Far-field optical microscopy typically suffers from limited resolution, speed and imaging depth. End...
Acquiring high-contrast optical images deep inside biological tissues is still a challenging problem...
International audienceFluorescence imaging through ultrathin fibers is a promising approach to obtai...
Fiber optics provides a compact endoscopy probe, which can look deep inside the tissue [1]. However,...
In this Letter, we propose a compact multimode fiber endoscope which employs wavefront shaping with ...
Fiber endoscopy plays an important role in the clinical diagnosis and treatment processes involved i...
Super-resolved structured illumination microscopy (SR-SIM) is among the most flexible, fast, and lea...
Acknowledgements: We acknowledge helpful discussions with Y. Liu, X. Yuan, J. Zhang, Y. Ma, C. Kuang...
Currently, endoscopic surgery uses single-mode fiber-bundles to obtain in vivo image information ins...
Endoscopy is a key technology for minimally-invasive optical access to deep tissues in humans and li...
For several centuries, far-field optical microscopy has remained a key instrument in many scientific...
We propose and experimentally demonstrate a new concept of endo-microscopy: compressive multimode (M...
Fiber-based endoscopic compressive imaging is a promising field for minimal invasive, in vivo imagin...
In modern endoscopy, wide field of view and full color are considered necessary for navigating insid...
Far-field optical microscopy typically suffers from limited resolution, speed and imaging depth. End...
Far-field optical microscopy typically suffers from limited resolution, speed and imaging depth. End...
Acquiring high-contrast optical images deep inside biological tissues is still a challenging problem...
International audienceFluorescence imaging through ultrathin fibers is a promising approach to obtai...
Fiber optics provides a compact endoscopy probe, which can look deep inside the tissue [1]. However,...
In this Letter, we propose a compact multimode fiber endoscope which employs wavefront shaping with ...
Fiber endoscopy plays an important role in the clinical diagnosis and treatment processes involved i...
Super-resolved structured illumination microscopy (SR-SIM) is among the most flexible, fast, and lea...
Acknowledgements: We acknowledge helpful discussions with Y. Liu, X. Yuan, J. Zhang, Y. Ma, C. Kuang...
Currently, endoscopic surgery uses single-mode fiber-bundles to obtain in vivo image information ins...