Automatic failure mode evaluation using non-linear phase contrast correction to improve flow measurement accuracy in cardiovascular magnetic resonance phase contrast imaging
Ana Beatriz Solana, Savine C.S. Minderhoud, Piotr A. Wielopolski, Juan Antonio Hernandez-Tamames, Ricardo P.J. Budde, Willem A. Helbing, Martin A. Janich, Alexander Hirsch

TL;DR
A new algorithm improves flow measurement accuracy in MRI scans by automatically detecting and correcting errors.
Contribution
A non-linear phase contrast correction algorithm with automatic failure mode classification is validated for improved accuracy in cardiovascular MRI.
Findings
nPCcor improved accuracy by 6% and 17% over uncorrected and linear-corrected methods.
nPCcor correctly identified 70% of cases likely to produce inaccurate flow measurements.
nPCcor showed a 22% improvement in accuracy for scanners with large phase offsets.
Abstract
Phase contrast (PC) cardiovascular magnetic resonance (CMR) is clinically used to quantify flow. The quantification accuracy is diminished by background phase errors. Image-based background phase correction algorithms are commercially available, but their accuracy is still under evaluation. Here, we validate a recently developed non-linear phase contrast correction (nPCcor) algorithm that includes automatic failure mode classification in a large single-vendor multi-scanner retrospective study. Three hundred forty-six through-plane PC images at the aortic valve (AAo) and pulmonary artery (PA) were acquired on three different GE HealthCare 1.5T clinical MRI scanners. Each PC scan was repeated on a static phantom, and the static phantom-corrected PC series was considered as the reference standard. Two image-based static tissue background phase corrections were applied on each PC series: a…
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Taxonomy
TopicsAdvanced MRI Techniques and Applications · Cardiac Imaging and Diagnostics · Cardiac Valve Diseases and Treatments
