activity
20192021
collaborators

5 papers

physics.bio-ph2021

Non invasive live imaging of a novel retinal pigment epithelium stress model with Dynamic Full-Field Optical Coherence Tomography

Kassandra Groux, Anna Verschueren, Céline Nanteau +7

Retinal degenerative diseases lead to the blindness of millions of people around the world. In case of age-related macular degeneration (AMD), the atrophy of retinal pigment epithe…

physics.optics2021

Manifestation of aberrations in full-field optical coherence tomography

Victor Barolle, Jules Scholler, Pedro Mecê +5

We report on a theoretical model for image formation in full-field optical coherence tomography (FFOCT). Because the spatial incoherence of the illumination acts as a virtual confo…

physics.med-ph2020

Adaptive-glasses wavefront sensorless full-field OCT for high-resolution retinal imaging over a wide field-of-view

Jules Scholler, Kassandra Groux, Kate Grieve +2

The highest three-dimensional (3D) resolution possible in in-vivo retinal imaging is achieved by combining optical coherence tomography (OCT) and adaptive optics (AO). However, thi…

physics.med-ph2020

Curved-Full-Field OCT for high-resolution imaging of living human retina over a large field-of-view

Pedro Mecê, Kassandra Groux, Jules Scholler +4

Allying high-resolution with a large field-of-view (FOV) is of great importance in the fields of biology and medicine, but particularly challenging when imaging non-flat living sam…

physics.bio-ph2019

Dynamic full-field optical coherence tomography: 3D live-imaging of retinal organoids

Jules Scholler, Kassandra Groux, Olivier Goureau +5

Optical coherence tomography offers astounding opportunities to image the complex structure of living tissue, but lacks functional information. We present dynamic full-field optica…