English

NC-Reg : Neural Cortical Maps for Rigid Registration

Computer Vision and Pattern Recognition 2026-01-28 v1

Abstract

We introduce neural cortical maps, a continuous and compact neural representation for cortical feature maps, as an alternative to traditional discrete structures such as grids and meshes. It can learn from meshes of arbitrary size and provide learnt features at any resolution. Neural cortical maps enable efficient optimization on the sphere and achieve runtimes up to 30 times faster than classic barycentric interpolation (for the same number of iterations). As a proof of concept, we investigate rigid registration of cortical surfaces and propose NC-Reg, a novel iterative algorithm that involves the use of neural cortical feature maps, gradient descent optimization and a simulated annealing strategy. Through ablation studies and subject-to-template experiments, our method demonstrates sub-degree accuracy (<1<1^\circ from the global optimum), and serves as a promising robust pre-alignment strategy, which is critical in clinical settings.

Keywords

Cite

@article{arxiv.2601.19042,
  title  = {NC-Reg : Neural Cortical Maps for Rigid Registration},
  author = {Ines Vati and Pierrick Bourgeat and Rodrigo Santa Cruz and Vincent Dore and Olivier Salvado and Clinton Fookes and Léo Lebrat},
  journal= {arXiv preprint arXiv:2601.19042},
  year   = {2026}
}

Comments

ISBI 2026

R2 v1 2026-07-01T09:21:23.353Z