Lensless illumination single-pixel imaging with a multicore fiber (MCF) is a computational imaging technique that enables potential endoscopic observations of biological samples at cellular scale. In this work, we show that this technique is tantamount to collecting multiple symmetric rank-one projections (SROP) of a Hermitian \emph{interferometric} matrix -- a matrix encoding the spectral content of the sample image. In this model, each SROP is induced by the complex \emph{sketching} vector shaping the incident light wavefront with a spatial light modulator (SLM), while the projected interferometric matrix collects up to $O(Q^2)$ image frequencies for a $Q$-core MCF. While this scheme subsumes previous sensing modalities, such as raster sc...
Acknowledgements: We acknowledge helpful discussions with Y. Liu, X. Yuan, J. Zhang, Y. Ma, C. Kuang...
Quantitative phase imaging (QPI) is a label-free technique providing both morphology and quantitativ...
Single Pixel (SP) imaging is now a reality in many applications, eg, biomedical ultrathin endoscope ...
Lensless illumination single-pixel imaging with a multicore fiber (MCF) is a computational imaging t...
Lensless endoscopy (LE) with multicore fibers (MCF) enables fluorescent imaging of biological sample...
Imaging through optical fibres has recently emerged as a promising method of micro-scale optical ima...
Imaging by a multimode optical fiber (MMF) has attracted much attention because single MMF could be ...
International audienceFluorescence imaging through ultrathin fibers is a promising approach to obtai...
In this paper a novel single-pixel method for coherent imaging through an endoscopic fiber bundle is...
Optical imaging in biomedicine provides pathophysiological information with high resolution, high sp...
Different from imaging an object through a multimode optical fiber (MMF) directly, it is much more c...
A novel imaging technique that produces accurate amplitude and phase images of an optical fiber face...
In this paper, a novel single-pixel method for coherent imaging through an endoscopic fiber bundle i...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Single-Pixel (SP) imaging is now a reality in many applications, e.g., biomedical ultrathin endoscop...
Acknowledgements: We acknowledge helpful discussions with Y. Liu, X. Yuan, J. Zhang, Y. Ma, C. Kuang...
Quantitative phase imaging (QPI) is a label-free technique providing both morphology and quantitativ...
Single Pixel (SP) imaging is now a reality in many applications, eg, biomedical ultrathin endoscope ...
Lensless illumination single-pixel imaging with a multicore fiber (MCF) is a computational imaging t...
Lensless endoscopy (LE) with multicore fibers (MCF) enables fluorescent imaging of biological sample...
Imaging through optical fibres has recently emerged as a promising method of micro-scale optical ima...
Imaging by a multimode optical fiber (MMF) has attracted much attention because single MMF could be ...
International audienceFluorescence imaging through ultrathin fibers is a promising approach to obtai...
In this paper a novel single-pixel method for coherent imaging through an endoscopic fiber bundle is...
Optical imaging in biomedicine provides pathophysiological information with high resolution, high sp...
Different from imaging an object through a multimode optical fiber (MMF) directly, it is much more c...
A novel imaging technique that produces accurate amplitude and phase images of an optical fiber face...
In this paper, a novel single-pixel method for coherent imaging through an endoscopic fiber bundle i...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Single-Pixel (SP) imaging is now a reality in many applications, e.g., biomedical ultrathin endoscop...
Acknowledgements: We acknowledge helpful discussions with Y. Liu, X. Yuan, J. Zhang, Y. Ma, C. Kuang...
Quantitative phase imaging (QPI) is a label-free technique providing both morphology and quantitativ...
Single Pixel (SP) imaging is now a reality in many applications, eg, biomedical ultrathin endoscope ...