English

Motion-compensated cardiac MRI using low-rank diffeomorphic flow (DMoCo)

Computer Vision and Pattern Recognition 2025-06-03 v3 Artificial Intelligence

Abstract

We introduce an unsupervised motion-compensated image reconstruction algorithm for free-breathing and ungated 3D cardiac magnetic resonance imaging (MRI). We express the image volume corresponding to each specific motion phase as the deformation of a single static image template. The main contribution of the work is the low-rank model for the compact joint representation of the family of diffeomorphisms, parameterized by the motion phases. The diffeomorphism at a specific motion phase is obtained by integrating a parametric velocity field along a path connecting the reference template phase to the motion phase. The velocity field at different phases is represented using a low-rank model. The static template and the low-rank motion model parameters are learned directly from the k-space data in an unsupervised fashion. The more constrained motion model is observed to offer improved recovery compared to current motion-resolved and motion-compensated algorithms for free-breathing 3D cine MRI.

Keywords

Cite

@article{arxiv.2505.03149,
  title  = {Motion-compensated cardiac MRI using low-rank diffeomorphic flow (DMoCo)},
  author = {Joseph Kettelkamp and Ludovica Romanin and Sarv Priya and Mathews Jacob},
  journal= {arXiv preprint arXiv:2505.03149},
  year   = {2025}
}
R2 v1 2026-06-28T23:22:22.991Z