We demonstrate 3D phase and absorption recovery from partially coherent intensity images captured with a programmable LED array source. Images are captured through-focus with four different illumination patterns. Using first Born and weak object approximations (WOA), a linear 3D differential phase contrast (DPC) model is derived. The partially coherent transfer functions relate the sample's complex refractive index distribution to intensity measurements at varying defocus. Volumetric reconstruction is achieved by a global FFT-based method, without an intermediate 2D phase retrieval step. Because the illumination is spatially partially coherent, the transverse resolution of the reconstructed field achieves twice the NA of coherent systems an...
Conventional optical microscopes, such as brightfield, darkfield, phase contrast or differential int...
Partially coherent optical diffraction tomography (PC-ODT) is a labelfree quantitative 3D imaging te...
We demonstrate a motion-free intensity diffraction tomography technique that enables direct inversio...
We demonstrate 3D phase and absorption recovery from partially coherent intensity images captured wi...
We demonstrate 3D phase and absorption recovery from partially coherent intensity images captured wi...
Illumination-based differential phase contrast (DPC) is a phase imaging method that uses a pair of i...
3D phase imaging recovers an object's volumetric refractive index from intensity and/or holographic ...
Crucial benefits provided by partially coherent light microscopy such as improved spatial resolution...
The main research objective of this work is to develop and implement a fast and high resolution tech...
We demonstrate 3D differential phase-contrast (DPC) microscopy, based on computational illumination ...
Differential phase contrast (DPC) is a non-interferometric quantitative phase imaging method achieve...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
Realizing high resolution across large volumes is challenging for 3D imaging techniques with high-sp...
Differential phase contrast microscopy (DPC) provides high-resolution quantitative phase distributio...
Conventional optical microscopes, such as brightfield, darkfield, phase contrast or differential int...
Partially coherent optical diffraction tomography (PC-ODT) is a labelfree quantitative 3D imaging te...
We demonstrate a motion-free intensity diffraction tomography technique that enables direct inversio...
We demonstrate 3D phase and absorption recovery from partially coherent intensity images captured wi...
We demonstrate 3D phase and absorption recovery from partially coherent intensity images captured wi...
Illumination-based differential phase contrast (DPC) is a phase imaging method that uses a pair of i...
3D phase imaging recovers an object's volumetric refractive index from intensity and/or holographic ...
Crucial benefits provided by partially coherent light microscopy such as improved spatial resolution...
The main research objective of this work is to develop and implement a fast and high resolution tech...
We demonstrate 3D differential phase-contrast (DPC) microscopy, based on computational illumination ...
Differential phase contrast (DPC) is a non-interferometric quantitative phase imaging method achieve...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
Realizing high resolution across large volumes is challenging for 3D imaging techniques with high-sp...
Differential phase contrast microscopy (DPC) provides high-resolution quantitative phase distributio...
Conventional optical microscopes, such as brightfield, darkfield, phase contrast or differential int...
Partially coherent optical diffraction tomography (PC-ODT) is a labelfree quantitative 3D imaging te...
We demonstrate a motion-free intensity diffraction tomography technique that enables direct inversio...