Characterization of flow emerging from a stenosis using MRI
Author:
Publisher
Wiley
Subject
Radiology, Nuclear Medicine and imaging
Reference37 articles.
1. High-Speed Spiral-Scan Echo Planar NMR Imaging-I
2. Flow measurements by NMR
3. A new nuclear magnetic resonance imaging technique for unambiguous unidirectional measurement of flow velocity
4. Evaluation of steady and pulsatile flow with dynamic MRI using limited flip angles and gradient refocused echoes
5. Echo-planar high-resolution flow velocity mapping
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