English

Free-Running Time-Resolved First-Pass Myocardial Perfusion Using a Multi-Scale Dynamics Decomposition: CMR-MOTUS

Medical Physics 2024-10-29 v1

Abstract

We present a novel approach for the reconstruction of time-resolved free-running first-pass myocardial perfusion MRI, named CMR-MOTUS. This method builds upon the MR-MOTUS framework and addresses the challenges of a contrast varying reference image. By integrating a low-rank plus sparse (L+S) decomposition, CMR-MOTUS efficiently captures both motion fields and contrast variations. This innovative technique eliminates the need for acquiring a motion-static reference image prior to the examination, thereby reducing examination time and complexity for cardiac MRI examinations. Our results demonstrate that CMR-MOTUS can successfully disentangle different dynamic components, offering high-quality motion fields and motion correct a myocardial first-pass perfusion image series.

Keywords

Cite

@article{arxiv.2410.21011,
  title  = {Free-Running Time-Resolved First-Pass Myocardial Perfusion Using a Multi-Scale Dynamics Decomposition: CMR-MOTUS},
  author = {Thomas E. Olausson and Maarten L. Terpstra and Niek R. F. Huttinga and Casper Beijst and Niels Blanken and Teresa Correia and Dominika Suchá and Birgitta K. Velthuis and Cornelis A. T. van den Berg and Alessandro Sbrizzi},
  journal= {arXiv preprint arXiv:2410.21011},
  year   = {2024}
}
R2 v1 2026-06-28T19:38:00.615Z