32 results on '"Chen Enn-Ling"'
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2. Virtual chemical inversion - a novel fat suppression technique for T1-weighted cardiac imaging with improved delineation of the fat-myocardium interface
3. Phase sensitive inversion recovery with simultaneous dark fat rendering by virtual chemical inversion
4. Time course of the effect of ferumoxytol on T1-relaxation times of blood, liver, myocardium, and acute infarction
5. A new method to suppress ghosting artifacts arising from long-T1 species in segmented inversion recovery (IR) sequences
6. Adiabatic T2-preparation modules optimized for robustness toward cardiac motion and flow - a comparison with existing techniques at 3 Tesla
7. 1139 Elimination of ghosting artifacts originating from body fluids with long T1 values in segmented ECG-gated IR-prepared sequences
8. Native T1 Mapping for the Diagnosis of Myocardial Fibrosis in Patients With Chronic Myocardial Infarction
9. Prognostic value of fatty metaplasia detected by out-of-phase cine imaging in patients with chronic myocardial infarction
10. Diagnostic performance of black-blood versus gray-blood delayed enhancement imaging for the detection of myocardial infarction
11. Dark-Blood Delayed Enhancement Cardiac Magnetic Resonance of Myocardial Infarction
12. Suppression of ghost artifacts arising from long T1 species in segmented inversion‐recovery imaging
13. Assessment of myocardial lipomatous metaplasia using an optimized out‐of‐phase cine steady‐state free‐precession sequence: Validation and clinical implementation.
14. Noninvasive cineangiography by magnetic resonance global coherent free precession
15. Motion and flow insensitive adiabatic T2-preparation module for cardiac MR imaging at 3 tesla
16. Combining spin echoes with gradient echoes in the context of the global coherent free precession pulse sequence
17. The Use of Contrast-Enhanced Magnetic Resonance Imaging to Identify Reversible Myocardial Dysfunction
18. Double spectral attenuated inversion recovery (DSPAIR)—an efficient fat suppression technique for late gadolinium enhancement at 3 tesla.
19. Comparison of magnetization transfer‐preparation and T2‐preparation for dark‐blood delayed‐enhancement imaging.
20. A Motion and Flow Insensitive Adiabatic T2-Preparation Module for Cardiac MR Imaging at 3 Tesla
21. Suppression of ghost artifacts arising from long T1 species in segmented inversion-recovery imaging.
22. Motion and flow insensitive adiabatic T2-preparation module for cardiac MR imaging at 3 tesla.
23. Myocardial magnetic resonance imaging contrast agent concentrations after reversible and irreversible ischemic injury.
24. Microvascular Integrity and the Time Course of Myocardial Sodium Accumulation After Acute Infarction.
25. A simplified sequence for observing deoxymyoglobin signals in vivo: Myoglobin excitation with dynamic unexcitation and saturation of water and fat (MEDUSA).
26. Contrast-enhanced magnetic resonance imaging of myocardium at risk Distinction between reversible and irreversible injury throughout infarct healing
27. Design of an adiabatic T2-preparation method optimized for cardiac motion and flow insensitivity at 3T
28. Assessment of Papillary Muscle Infarction with Dark-Blood Delayed Enhancement Cardiac MRI in Canines and Humans.
29. Suppression of ghost artifacts arising from long T 1 species in segmented inversion-recovery imaging.
30. Relationship of T2-Weighted MRI Myocardial Hyperintensity and the Ischemic Area-At-Risk.
31. Magnetic resonance water proton relaxation in protein solutions and tissue: T(1rho) dispersion characterization.
32. Noninvasive assessment of blood flow based on magnetic resonance global coherent free precession.
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