Our new T2oFu tomographic microscopy extends Fourier ptychography for 3D polarimetric tissue imaging, leveraging vectorial light.
Our new variable-angle illumination microscopy extends Fourier ptychography to acquire high-resolution, large field-of-view complex polarimetric data, accounting for light's vectorial nature.
We study the feasibility of implementing Fourier ptychography (FP) with SPAD array cameras to reconstruct an image with higher resolution and larger dynamic range from acquired binary intensity measurements.
Deep Prior Diffraction Tomography (DP-DT) is a novel technique that reconstructs high-resolution 3D refractive index maps of thick biological samples from low-resolution images taken with varying illumination.