most citedEvaluating Synthetic Data Generation for Domain Generalization in Fetal Brain MRI Segmentation

1 citations · 1 across the 2 of their papers we have counts for

collaborators

12 papers

physics.med-ph2026

PRIME-SVR: Physics-infoRmed Implicit Multi-Echo Slice-to-Volume Reconstruction for Fetal T2 mapping

Busra Bulut, Maik Dannecker, Thomas Sanchez +14

Slice-to-volume reconstruction (SVR) is the standard method for obtaining high-resolution (HR) 3D fetal brain volumes from motion-corrupted 2D MRI slice stacks acquired in multiple…

eess.IV20261 cited

Evaluating Synthetic Data Generation for Domain Generalization in Fetal Brain MRI Segmentation

Vladyslav Zalevskyi, Thomas Sanchez, Margaux Roulet +10

Fetal brain tissue segmentation from magnetic resonance imaging (MRI) is crucial for studying neurodevelopment, but remains challenging due to data heterogeneity and limited annota…

eess.IV2026

Fetpype: An Open-Source Pipeline for Reproducible Fetal Brain MRI Analysis

Thomas Sanchez, Gerard Martí-Juan, David Meunier +6

Fetal brain magnetic resonance imaging (MRI) is crucial for assessing neurodevelopment in utero. However, fetal MRI analysis remains technically challenging due to fetal motion, lo…

eess.IV2025

Causal Attribution of Model Performance Gaps in Medical Imaging Under Distribution Shifts

Pedro M. Gordaliza, Nataliia Molchanova, Jaume Banus +2

Deep learning models for medical image segmentation suffer significant performance drops due to distribution shifts, but the causal mechanisms behind these drops remain poorly unde…

cs.LG2025

Accounting for Underspecification in Statistical Claims of Model Superiority

Thomas Sanchez, Pedro M. Gordaliza, Meritxell Bach Cuadra

Machine learning methods are increasingly applied in medical imaging, yet many reported improvements lack statistical robustness: recent works have highlighted that small but signi…

physics.app-ph2025

T2 mapping at 0.55 T using Ultra-Fast Spin Echo MRI

Margaux Roulet, Hamza Kebiri, Busra Bulut +9

Low-field T2 mapping MRI can democratize neuropediatric imaging by improving accessibility and providing quantitative biomarkers of brain development. \textbf{Purpose:} To evaluate…