How cells orchestrate their cellular functions remains a crucial question to unravel how they organize in different patterns. We present a framework based on artificial intelligence to advance the understanding of how cell functions are coordinated spatially and temporally in biological systems. It consists of a hybrid physics-based model that integrates both mechanical interactions and cell functions with a data-driven model that regulates the cellular decision-making process through a deep learning algorithm trained on image data metrics. To illustrate our approach, we used data from 3D cultures of murine pancreatic ductal adenocarcinoma cells (PDAC) grown in Matrigel as tumor organoids. Our approach allowed us to find the underlying prin...
Multicellularity and cellular cooperation confer novel functions on organs following a structure–fun...
Motivation: The simulation of morphogenetic problems requires the simultaneous and coupled simulatio...
International audienceIn biology, recent techniques in confocal mi- croscopy have produced experimen...
Embryonic development depends on the precise coordination of cell fate specification, patterning and...
Biological systems that contain multiple living cells exhibit complex self-organization during devel...
Quantitative microscopy is becoming increasingly crucial in efforts to disentangle the complexity of...
From a systems biology perspective, the cell is the principal element of information integration. Th...
Plants, fungi, humans and all other multicellular organisms go through the same process of growing s...
The study of multicellular development is grounded in two complementary domains: cell biomechanics, ...
Morphogenesis is the process that underpins the self-organised development and regeneration of biolo...
International audienceThis paper presents a new model for the development of artificial creatures fr...
Pluripotent embryonic stem cells (ESCs) can differentiate into all somatic cell types, making them a...
Cell-based, mathematical models help make sense of morphogenesis—i.e. cells organizing into shape an...
This thesis introduces a model of multicellular development. The model combines elements of the chem...
Understanding the mechanism by which cells coordinate their differentiation and migration is critica...
Multicellularity and cellular cooperation confer novel functions on organs following a structure–fun...
Motivation: The simulation of morphogenetic problems requires the simultaneous and coupled simulatio...
International audienceIn biology, recent techniques in confocal mi- croscopy have produced experimen...
Embryonic development depends on the precise coordination of cell fate specification, patterning and...
Biological systems that contain multiple living cells exhibit complex self-organization during devel...
Quantitative microscopy is becoming increasingly crucial in efforts to disentangle the complexity of...
From a systems biology perspective, the cell is the principal element of information integration. Th...
Plants, fungi, humans and all other multicellular organisms go through the same process of growing s...
The study of multicellular development is grounded in two complementary domains: cell biomechanics, ...
Morphogenesis is the process that underpins the self-organised development and regeneration of biolo...
International audienceThis paper presents a new model for the development of artificial creatures fr...
Pluripotent embryonic stem cells (ESCs) can differentiate into all somatic cell types, making them a...
Cell-based, mathematical models help make sense of morphogenesis—i.e. cells organizing into shape an...
This thesis introduces a model of multicellular development. The model combines elements of the chem...
Understanding the mechanism by which cells coordinate their differentiation and migration is critica...
Multicellularity and cellular cooperation confer novel functions on organs following a structure–fun...
Motivation: The simulation of morphogenetic problems requires the simultaneous and coupled simulatio...
International audienceIn biology, recent techniques in confocal mi- croscopy have produced experimen...