There are two datasets of hyperspectral reflection matrices (complex-valued): > 'data_TiO2' is for 1 millimeter deep inside a dense TiO2 nanoparticle colloid; > 'data_usaf' is for USAF target under 1-millimeter mouse brain tissue. With these datasets, one can reconstruct high-resolution deep images using scattering matrix tomography (SMT). The SMT reconstruction code and more information can be found on GitHub
This study investigates the hypothesis that structured light reflectance imaging with high spatial f...
Abstract Fabricated tissue phantoms are instrumental in optical in-vitro investigations concerning c...
We demonstrate the use of deep learning for fast spectral deconstruction of speckle patterns. The ar...
Multiple light scattering in biomedical tissue limits the penetration depth of optical imaging syste...
International audienceMultiple scattering of waves in disordered media is a nightmare whether it be ...
14 pages, 5 figuresWe present a physically intuitive matrix approach for wave imaging and characteri...
Multiple light scattering is considered as the major limitation for deep imaging and focusing in tur...
We present a physically intuitive matrix approach for wave imaging and characterization in scatterin...
Nonlinear optical microscopy has enabled in vivo deep tissue imaging on the millimeter scale. A key ...
International audienceThe measurement of the Transmission Matrix (TM) of a scattering medium is of g...
Nonlinear optical microscopy has enabled in vivo deep tissue imaging on the millimeter scale. A key ...
In this paper, we propose an interpretable deep learning approach to solve the inverse scattering pr...
Optical microscopy suffers from a loss of resolving power when imaging targets are embedded in thick...
Light in heavily scattering media such as tissue can be modeled with a diffusion equation. A diffusi...
© 2020, Springer Nature Limited.Optical imaging has had a central role in elucidating the underlying...
This study investigates the hypothesis that structured light reflectance imaging with high spatial f...
Abstract Fabricated tissue phantoms are instrumental in optical in-vitro investigations concerning c...
We demonstrate the use of deep learning for fast spectral deconstruction of speckle patterns. The ar...
Multiple light scattering in biomedical tissue limits the penetration depth of optical imaging syste...
International audienceMultiple scattering of waves in disordered media is a nightmare whether it be ...
14 pages, 5 figuresWe present a physically intuitive matrix approach for wave imaging and characteri...
Multiple light scattering is considered as the major limitation for deep imaging and focusing in tur...
We present a physically intuitive matrix approach for wave imaging and characterization in scatterin...
Nonlinear optical microscopy has enabled in vivo deep tissue imaging on the millimeter scale. A key ...
International audienceThe measurement of the Transmission Matrix (TM) of a scattering medium is of g...
Nonlinear optical microscopy has enabled in vivo deep tissue imaging on the millimeter scale. A key ...
In this paper, we propose an interpretable deep learning approach to solve the inverse scattering pr...
Optical microscopy suffers from a loss of resolving power when imaging targets are embedded in thick...
Light in heavily scattering media such as tissue can be modeled with a diffusion equation. A diffusi...
© 2020, Springer Nature Limited.Optical imaging has had a central role in elucidating the underlying...
This study investigates the hypothesis that structured light reflectance imaging with high spatial f...
Abstract Fabricated tissue phantoms are instrumental in optical in-vitro investigations concerning c...
We demonstrate the use of deep learning for fast spectral deconstruction of speckle patterns. The ar...