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17 results on '"MISTRETTA C."'

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1. Time-of-Arrival Parametric Maps and Virtual Bolus Images Derived From Contrast-Enhanced Time-Resolved Radial Magnetic Resonance Angiography Improve the Display of Brain Arteriovenous Malformation Vascular Anatomy.

2. Accelerated Time-Resolved Contrast-Enhanced Magnetic Resonance Angiography of Dural Arteriovenous Fistulas Using Highly Constrained Reconstruction of Sparse Cerebrovascular Data Sets.

3. 3D time-resolved contrast-enhanced cerebrovascular MR angiography with subsecond frame update times using radial k-space trajectories and highly constrained projection reconstruction.

4. Physiologic and anatomic assessment of a canine carotid artery stenosis model utilizing phase contrast with vastly undersampled isotropic projection imaging.

5. The value of T2 relaxation times to characterize lumbar intervertebral disks: preliminary results.

6. Highly constrained backprojection for time-resolved MRI.

7. SNR improvement for multiinjection time-resolved high-resolution CE-MRA of the peripheral vasculature.

8. Time-resolved, undersampled projection reconstruction imaging for high-resolution CE-MRA of the distal runoff vessels.

9. Method for rapidly determining and reconstructing the peak arterial frame from a time-resolved CE-MRA exam.

10. Undersampled projection reconstruction applied to MR angiography.

11. 3D time-resolved contrast-enhanced MR DSA: advantages and tradeoffs.

12. X-ray digital subtraction angiography to magnetic resonance-digital subtraction angiography using three-dimensional TRICKS. Historical perspective and computer simulations: a review.

13. Contrast-enhanced 3D MR DSA of the carotid artery bifurcation: preliminary study of comparison with unenhanced 2D and 3D time-of-flight MR angiography.

14. Frequency response of multi-phase segmented k-space phase-contrast.

15. A data adaptive reprojection technique for MR angiography.

16. ECG-optimized phase contrast line-scanned MR angiography.

17. The Value of T2 Relaxation Times to Characterize Lumbar Intervertebral Disks: Preliminary Results

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