Abstract
Time-resolved three-dimensional flow MRI (4D flow MRI) provides a unique non-invasive solution to visualize and quantify hemodynamics in blood vessels such as the aortic arch. However, most current analysis methods for arterial 4D flow MRI use static artery walls because of the difficulty in obtaining a full cycle segmentation. To overcome this limitation, we propose a neural fields-based method that directly estimates continuous periodic wall deformations throughout the cardiac cycle. For a 3D + time imaging dataset, we optimize an implicit neural representation (INR) that represents a time-dependent velocity vector field (VVF). An ODE solver is used to integrate the VVF into a deformation vector field (DVF), that can deform images, segmentation masks, or meshes over time, thereby visualizing and quantifying local wall motion patterns. To properly reflect the periodic nature of 3D + time cardiovascular data, we impose periodicity in two ways. First, by periodically encoding the time input to the INR, and hence VVF. Second, by regularizing the DVF. We demonstrate the effectiveness of this approach on synthetic data with different periodic patterns, ECG-gated CT, and 4D flow MRI data. The obtained method could be used to improve 4D flow MRI analysis.
| Original language | English |
|---|---|
| Publisher | ArXiv.org |
| Number of pages | 12 |
| DOIs | |
| Publication status | Published - 30 Jul 2024 |
Keywords
- cs.CV
- neural fields
- deformation vector fields
- 4D flow MRI
- diffeomorphism
- periodic motion estimation
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Neural Fields for Continuous Periodic Motion Estimation in 4D Cardiovascular Imaging
Garzia, S., Rygiel, P., Dummer, S., Cademartiri, F., Celi, S. & Wolterink, J. M., 29 Apr 2025, (E-pub ahead of print/First online) Statistical Atlases and Computational Models of the Heart. Workshop, CMRxRecon and MBAS Challenge Papers. - 15th International Workshop, STACOM 2024, Held in Conjunction with MICCAI 2024, Revised Selected Papers: 15th International Workshop, STACOM 2024, Held in Conjunction with MICCAI 2024, Marrakesh, Morocco, October 10, 2024, Revised Selected Papers. Camara, O., Puyol-Antón, E., Sermesant, M., Suinesiaputra, A., Zhao, J., Wang, C., Tao, Q. & Young, A. (eds.). 1 ed. Cham: Springer, p. 378-389 12 p. (Lecture Notes in Computer Science; vol. 15448 LNCS).Research output: Chapter in Book/Report/Conference proceeding › Conference contribution › Academic › peer-review
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