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Yohann Benchetrit

4 accepted papers

2026

TRIBE: TRImodal Brain Encoder for whole-brain fMRI response prediction

ICLR 2026poster

Historically, neuroscience has progressed by fragmenting into specialized domains, each focusing on isolated modalities, tasks, or brain regions. While fruitful, this approach hinders the development of a unified model of cognition. Here, we introduce TRIBE, the first deep neural network trained to…

Cited by 0SourcecodeScholar
2025

Boosting Latent Diffusion with Perceptual Objectives

ICLR 2025poster

Latent diffusion models (LDMs) power state-of-the-art high-resolution generative image models. LDMs learn the data distribution in the latent space of an autoencoder (AE) and produce images by mapping the generated latents into RGB image space using the AE decoder. While this approach allows for eff…

Cited by 0SourcePDFScholar
2024

Brain decoding: toward real-time reconstruction of visual perception

ICLR 2024poster

In the past five years, the use of generative and foundational AI systems has greatly improved the decoding of brain activity. Visual perception, in particular, can now be decoded from functional Magnetic Resonance Imaging (fMRI) with remarkable fidelity. This neuroimaging technique, however, suffer…

Cited by 54SourcePDFScholar
2024

On improved Conditioning Mechanisms and Pre-training Strategies for Diffusion Models

NeurIPS 2024poster

Large-scale training of latent diffusion models (LDMs) has enabled unprecedented quality in image generation. However, large-scale end-to-end training of these models is computationally costly, and hence most research focuses either on finetuning pretrained models or experiments at smaller scales…

Cited by 1SourcePDFScholar