medical imaging

CORTET: Robust generation of simulation-ready tetrahedral meshes of the fetal cerebral cortex

arXiv:2607.12157

summary

The paper introduces CORTET, an automated method that converts cortical surface models from fetal MRI into high‑quality tetrahedral meshes suitable for physics‑based brain folding simulations without manual repair.

Abstract

Every human brain folds differently, and such natural variation confounds the search for imaging biomarkers of neurodevelopmental disorders. Physics-based simulation can help determine the causal mechanisms that underpin this variability. Yet every simulation must be initiated from a volumetric mesh of the brain's interior, tetrahedral or hexahedral, and it is the worst element in that mesh, not the average, that decides whether the simulation runs at all. Building that mesh from fetal MRI currently requires labour-intensive manual intervention. We therefore present CORTET (CORtical TETrahedral meshing): a fully automated pipeline that converts a triangulated cortical surface into a solver-ready tetrahedral mesh whose worst-element quality meets a strict quality target with no manual repair. By benchmarking against a general-purpose tetrahedral mesher on the same input surfaces, we isolate the pipeline's contribution from that of the input geometry, and we validate quality across a cohort of nearly 200 fetal subjects spanning the folding period. A mesh taken straight from the pipeline sustains a numerically stable morphoelastic folding simulation of a real fetal subject.

Topics & keywords

#cortical mesh generation#tetrahedral meshing#fetal MRI#simulation pipelines#morphoelastic foldingtetrahedral meshcortical surfaceautomated meshingmesh qualitymorphoelastic simulationfetal brain
CORTET: Robust generation of simulation-ready tetrahedral meshes of the fetal cerebral cortex · wovepaper