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Targeted vessel reconstruction in non‐contrast‐enhanced steady‐state free precession angiography

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Ünal, Gözde
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Wiley

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Abstract

Image quality in non‐contrast‐enhanced (NCE) angiograms is often limited by scan time constraints. An effective solution is to undersample angiographic acquisitions and to recover vessel images with penalized reconstructions. However, conventional methods leverage penalty terms with uniform spatial weighting, which typically yield insufficient suppression of aliasing interference and suboptimal blood/background contrast. Here we propose a two‐stage strategy where a tractographic segmentation is employed to auto‐extract vasculature maps from undersampled data. These maps are then used to incur spatially adaptive sparsity penalties on vascular and background regions. In vivo steady‐state free precession angiograms were acquired in the hand, lower leg and foot. Compared with regular non‐adaptive compressed sensing (CS) reconstructions (CSlow), the proposed strategy improves blood/background contrast by 71.3 ± 28.9% in the hand (mean ± s.d. across acceleration factors 1–8), 30.6 ± 11.3% in the lower leg and 28.1 ± 7.0% in the foot (signed‐rank test, P < 0.05 at each acceleration). The proposed targeted reconstruction can relax trade‐offs between image contrast, resolution and scan efficiency without compromising vessel depiction. Copyright © 2016 John Wiley & Sons, Ltd.

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NMR in Biomedicine

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0952-3480

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OPEN

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leg, Vessel reconstruction, tractography, Contrast Media, Computer-Assisted, Segmentation, Regularization, Signal reconstruction, imaging phantom, Image segmentation, Economic and social effects, Phantoms, Imaging, Angiography, Conventional methods, lower leg, Blood, priority journal, Interference suppression, Compressed sensing, Vasculature, Sparsity, chemistry, Article, Steady state free precessions, contrast medium, Image processing, vascularization, blood vessel, Image Interpretation, Computer-Assisted, computer simulation, Humans, steady state, Computer Simulation, human, procedures, Image Interpretation, Leg, magnetic resonance angiography, noncontrast enhanced steady state free precession angiography, computer assisted diagnosis, Acceleration factors, Compressive sensing, foot, Blood Vessels, hand, Repair, Magnetic Resonance Angiography, anatomy and histology

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