Focus scientifiques

Découvrez ici les focus sur des résultats scientifiques ayant mobilisé les ressources de GENCI

Lucie-7B: an open multilingual model centered on French

Developed by the OpenLLM-France community led by LINAGORA, Lucie-1B is a multilingual foundation language model with a focus on French language and culture. This project aims to offer a truly open alternative that complies with ethical and legal rules to the English-dominated generative AI landscape...

AION-1: A multimodal foundation model for astronomy

Faced with the explosion of astronomical data (hundreds of terabytes, hundreds of millions of objects), AION-1 unifies, for the first time, the analysis of heterogeneous observations in a single model of over 3 billion parameters. This foundational model, trained on Jean Zay, allows astrophysicists...

Autonomous Driving from Internet Videos via Generative Models

What if an autonomous car could learn simply by watching freely available driving videos online? Our project explores this radical idea: training a 1.2-billion-parameter model on 1,800 hours of unannotated dashcams, with no calibration or maps. This approach highlights the importance of scale and...

VigogneLLM : a collection of performant SLM for French

The vast majority of small open-source LLMs show significant performance variations depending on the language used. As part of this project, we propose a new version of the Vigogne model family: a series of SLMs specifically optimized for French. Vigogne offers enhanced capabilities for better...

Voltage-dependent ion channels and effects of genetic mutations

Voltage-gated ion channels play a central role in cellular excitability. Mutations can induce pathologies such as cardiac arrhythmias, hypertension, or epilepsy. This project combines artificial intelligence and molecular dynamics simulations to reveal, at the atomic scale, the conformational...

Pleias 1.0: Open Language Models for the Public Good

Pleias 1.0 is the first family of language models trained exclusively on open data under a license that permits redistribution. Using the Jean Zay supercomputer, this project demonstrates that it is possible to reconcile performance, energy efficiency, and open science.

H-optimus-1, development of a foundation model in histology

This project aims to develop a foundation model in histology. This artificial intelligence (AI) tool, trained on millions of images of human tissue, could revolutionize diagnosis and biomedical research. By analyzing complex cellular patterns, it can improve the characterization of diseases such as...

DynaRepo: Capturing the Hidden Motions of Life’s Molecules

Proteins, RNA and DNA are not rigid machines: they bend, twist, and adapt in order to perform life’s essential functions. Yet most research methods capture only static snapshots.Thanks to the Grand Challenge, our team created DynaRepo to capture the molecular motions at large scale. This resource...