Abstract
A multimodality approach was applied using four-dimensional flow magnetic resonance imaging (4D flow MRI), time-of-flight magnetic resonance angiography (TOF-MRA) signal intensity gradient (SIG), and computational fluid dynamics (CFD) to investigate the 3D blood flow characteristics and wall shear stress (WSS) of the cerebral arteries. TOF-MRA and 4D flow MRI were performed on the major cerebral arteries in 16 healthy volunteers (mean age 34.7 ± 7.6 years). The flow rate measured with 4D flow MRI in the internal carotid artery, middle cerebral artery, and anterior cerebral artery were 3.8, 2.5, and 1.2 mL/s, respectively. The 3D blood flow pattern obtained through CFD and 4D flow MRI on the cerebral arteries showed reasonable consensus. CFD delivered much greater resolution than 4D flow MRI. TOF-MRA SIG and CFD WSS of the major cerebral arteries showed reasonable consensus with the locations where the WSS was relatively high. However, the visualizations were very different between TOF-MRA SIG and CFD WSS at the internal carotid artery bifurcations, the anterior cerebral arteries, and the anterior communicating arteries. 4D flow MRI, TOF-MRA SIG, and CFD are complementary methods that can provide additional insight into the hemodynamics of the human cerebral artery.
| Original language | Korean |
|---|---|
| Article number | 253 |
| Journal | Journal of Personalized Medicine |
| Volume | 11 |
| Issue number | 4 |
| DOIs | |
| State | Published - 2021.03.30 |
Keywords
- Cerebral arteries
- Computational fluid dynamics (CFD)
- Four-dimensional flow magnetic resonance imaging (4D flow MRI)
- Hemodynamics visualization
- Signal intensity gradient from time-of-flight magnetic resonance angiography (TOF-MRA SIG)
Quacquarelli Symonds(QS) Subject Topics
- Medicine
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