CF202545543
On-line monitoring of bioproduction processes using 3D holographic imaging
D-128
Doctorate Full Doctorate
Disciplines
Electronics
Laboratory
Laboratoire Instrum optique et traitement de l'Info pour l'Imagerie In Vitro Département des Technologies pour l'Innovation en
Host institution
UNIVERSITE GRENOBLE ALPES
Doctoral school
Physics Graduate School of Grenoble - ED 47

Description

The culture of adherent is a promising approach for various bioproduction applications, such as drug manufacturing and delivery, regenerative medicine, and tracking of cellular differentiation. However, the analysis of single cell morphology and behavior without affecting the substrate integrity remains a major challenge. Lens-free holographic imaging is emerging as a promising solution for real-time, non-invasive monitoring of cellular processes. This technique captures wide field of view images without requiring exogenous labeling or sample manipulation, thus preserving the integrity of the cellular environment. This thesis proposes the development of a 3D lens-free imaging system to monitor adherents cells in near real-time. The microscope will be coupled with advanced algorithms for data reconstruction and analysis and tested on different cell models. The use of deep learning techniques will allow for real-time segmentation and analysis of single cells, facilitating the tracking of cellular dynamics. This innovative project paves the way to a non-invasive monitoring of 3D multicellular samples, with potential applications on organ-on-chip and more complex organoids systems.

Funded offer

Funding type
CEA

Dates

Application deadline 31/12/26

Duration36 months

Start date01/11/26

Creation date21/11/25

Languages

Level of french requiredNone

Level of English requiredNone

Opportunity to make his thesis in English

Miscellaneous

Annual tuition fee391 € / year

Website

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