75 results on '"Plein Sven"'
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2. Cardiac magnetic resonance left ventricular filling pressure is linked to symptoms, signs and prognosis in heart failure
3. Myocardial blood flow determination from contrast‐free magnetic resonance imaging quantification of coronary sinus flow
4. Cardiac q‐space trajectory imaging by motion‐compensated tensor‐valued diffusion encoding in human heart in vivo
5. Subclinical Systemic Sclerosis Primary Heart Involvement by Cardiovascular Magnetic Resonance Shows No Significant Interval Change
6. No differences in myocardial perfusion between treatment‐naive, early rheumatoid arthritis patients and healthy controls
7. Longitudinal Changes in Left Ventricular Blood Flow Kinetic Energy After Myocardial Infarction: Predictive Relevance for Cardiac Remodeling
8. Comprehensive Neonatal Cardiac, Feed and Wrap, Non‐contrast, Non‐sedated, Free‐breathing Compressed Sensing 4D Flow MRI Assessment
9. Coronary microvascular function and visceral adiposity in patients with normal body weight and type 2 diabetes
10. Detection of Intramyocardial Iron in Patients Following ST ‐Elevation Myocardial Infarction Using Cardiac Diffusion Tensor Imaging
11. Longitudinal Changes in Left Ventricular Blood Flow Kinetic Energy After Myocardial Infarction: Predictive Relevance for Cardiac Remodeling
12. Four‐Dimensional Flow Magnetic Resonance Imaging in the Assessment of Blood Flow in the Heart and Great Vessels: A Systematic Review
13. Motion-compensated gradient waveforms for tensor-valued diffusion encoding by constrained numerical optimization
14. SAUN: Stack attention U‐Net for left ventricle segmentation from cardiac cine magnetic resonance imaging
15. Motion‐compensated gradient waveforms for tensor‐valued diffusion encoding by constrained numerical optimization
16. Insight Into Myocardial Microstructure of Athletes and Hypertrophic Cardiomyopathy Patients Using Diffusion Tensor Imaging
17. Automated detection of left ventricle in arterial input function images for inline perfusion mapping using deep learning: A study of 15,000 patients
18. Motion‐compensated b‐tensor encoding for in vivo cardiac diffusion‐weighted imaging
19. Automatic in‐line quantitative myocardial perfusion mapping: Processing algorithm and implementation
20. Quantitative myocardial perfusion in coronary artery disease: A perfusion mapping study
21. Clinical evaluation of two dark blood methods of late gadolinium quantification of ischemic scar
22. Feasibility study of a single breath‐hold, 3D mDIXON pulse sequence for late gadolinium enhancement imaging of ischemic scar
23. Left atrial size and function in a South Asian population and their potential influence on the risk of atrial fibrillation
24. Cardiovascular magnetic resonance assessment of 1st generation CoreValve and 2nd generation Lotus valves
25. Comparison of fast acquisition strategies in whole-heart four-dimensional flow cardiac MR: Two-center, 1.5 Tesla, phantom and in vivo validation study
26. Current perspectives in coronary microvascular dysfunction
27. Sensitivity of quantitative myocardial dynamic contrast‐enhanced MRI to saturation pulse efficiency, noise and t 1 measurement error: Comparison of nonlinearity correction methods
28. Factors associated with false-negative cardiovascular magnetic resonance perfusion studies: A Clinical evaluation of magnetic resonance imaging in coronary artery disease (CE-MARC) substudy
29. Patient adaptive maximal resolution magnetic resonance myocardial stress perfusion imaging
30. 3.0T, time-resolved, 3D flow-sensitive MR in the thoracic aorta: Impact ofk-tBLAST acceleration using 8- versus 32-channel coil arrays
31. Predictive power of late gadolinium enhancement for myocardial recovery in chronic ischaemic heart failure: a HEART sub‐study
32. Robust myocardial T2and T2* mapping at 3T using image-based shimming
33. Reproducibility of myocardial strain and left ventricular twist measured using complementary spatial modulation of magnetization
34. Myocardial blood flow at rest and stress measured with dynamic contrast-enhanced MRI: Comparison of a distributed parameter model with a fermi function model
35. Reproducibility of first‐pass cardiovascular magnetic resonance myocardial perfusion
36. Perfusion phantom: An efficient and reproducible method to simulate myocardial first‐pass perfusion measurements with cardiovascular magnetic resonance
37. First-pass contrast-enhanced myocardial perfusion MRI in mice on a 3-T clinical MR scanner
38. Estimates of systolic and diastolic myocardial blood flow by dynamic contrast‐enhanced MRI
39. High resolution three-dimensional cardiac perfusion imaging using compartment-based k-t principal component analysis
40. Effect of improving spatial or temporal resolution on image quality and quantitative perfusion assessment with k‐t SENSE acceleration in first‐pass CMR myocardial perfusion imaging
41. Pharmacokinetic modeling of delayed gadolinium enhancement in the myocardium
42. Accelerated whole-heart 3D CSPAMM for myocardial motion quantification
43. Dynamic contrast‐enhanced myocardial perfusion MRI accelerated with k‐t sense
44. Myocardial T 1 mapping: Application to patients with acute and chronic myocardial infarction
45. Tolerance of MRI vs. SPECT myocardial perfusion studies?A patient survey
46. Comparison of right ventricular volume measurements between axial and short axis orientation using steady‐state free precession magnetic resonance imaging
47. Normal human left and right ventricular dimensions for MRI as assessed by turbo gradient echo and steady-state free precession imaging sequences
48. Comparison of right ventricular volume measurement between segmented k-space gradient-echo and steady-state free precession magnetic resonance imaging
49. Qualitative and quantitative analysis of regional left ventricular wall dynamics using real-time magnetic resonance imaging: Comparison with conventional breath-hold gradient echo acquisition in volunteers and patients
50. Cine MRI using steady state free precession in the radial long axis orientation is a fast accurate method for obtaining volumetric data of the left ventricle
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