Improving Blood Flow Visualization of Recirculation Regions at Caroti…
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Abstract: Assessment of carotid bulb hemodynamics using four-dimensional (4D) flow magnetic resonance imaging (MRI) requires accurate segmentation of recirculation regions that is frequently
hampered by limited resolution. This study aims to improve the accuracy of 4D flow MRI carotid
bulb segmentation and subsequent recirculation regions analysis. Time-of-flight (TOF) MRI and
4D flowMRIwereperformed on bilateral carotid artery bifurcations in seven healthy volunteers.
TOF-MRIdatawassegmentedinto3Dgeometryforcomputationalfluiddynamics(CFD)simulations.
ITK-SNAP segmentation software was included in the workflow for the semi-automatic generation
of 4D flow MRI angiographic data. This study compared the velocities calculated at the carotid
bifurcations and the 3D blood flow visualization at the carotid bulbs obtained by 4D flow MRI and
CFD. By applying ITK-SNAP segmentation software, an obvious improvement in the 4D flow MRI
visualization of the recirculation regions was observed. The 4D flow MRI images of the recirculation
f
low characteristics of the carotid artery bulbs coincided with the CFD. A reasonable agreement
was found in terms of velocity calculated at the carotid bifurcation between CFD and 4D flow MRI.
However, the dispersion of velocity data points relative to the local errors of measurement in 4D
f
lowMRIremains. Our proposed strategy showed the feasibility of improving recirculation regions
segmentation and the potential for reliable blood flow visualization in 4D flow MRI. However,
quantitative analysis of recirculation regions in 4D flow MRI with ITK-SNAP should be enhanced for
use in clinical situations.
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0회 다운로드 | DATE : 2025-09-04 17:21:47