20 results on '"Werys, Konrad"'
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2. Deep learning with attention supervision for automated motion artefact detection in quality control of cardiac T1-mapping
3. Characterization of subclinical diastolic dysfunction by cardiac magnetic resonance feature-tracking in adult survivors of non-Hodgkin lymphoma treated with anthracyclines
4. Endogenous T1ρ cardiovascular magnetic resonance in hypertrophic cardiomyopathy
5. Toward Replacing Late Gadolinium Enhancement With Artificial Intelligence Virtual Native Enhancement for Gadolinium-Free Cardiovascular Magnetic Resonance Tissue Characterization in Hypertrophic Cardiomyopathy
6. Kiosk 11R-TB-01 - Strain Calculation Validation Using Realistic Phantoms
7. Use of natural language processing to improve predictive models for imaging utilization in children presenting to the emergency department
8. 3.2 First Genome-Wide Association Study of Cardiovascular Magnetic Resonance Derived Aortic Distensibility Reveals 7 Loci
9. MOCOnet: Robust Motion Correction of Cardiovascular Magnetic Resonance T1 Mapping Using Convolutional Neural Networks
10. CINE-MRI to study the progress of disease in a chronic atrial fibrillation goat model
11. Poor Bone Quality is Associated With Greater Arterial Stiffness: Insights From the UK Biobank
12. 3.2 First Genome-Wide Association Study of Cardiovascular Magnetic Resonance Derived Aortic Distensibility Reveals 7 Loci
13. Total Mapping Toolbox (TOMATO): An open source library for cardiac magnetic resonance parametric mapping
14. MOESM1 of Use of natural language processing to improve predictive models for imaging utilization in children presenting to the emergency department
15. Automated localization and quality control of the aorta in cine CMR can significantly accelerate processing of the UK Biobank population data
16. Poor Bone Quality is Associated With Greater Arterial Stiffness: Insights From the UK Biobank.
17. Additional file 3: Table S2. of Quantification of mitral regurgitation in patients with hypertrophic cardiomyopathy using aortic and pulmonary flow data: impacts of left ventricular outflow tract obstruction and different left ventricular segmentation methods
18. Additional file 1: Figure S1. of Quantification of mitral regurgitation in patients with hypertrophic cardiomyopathy using aortic and pulmonary flow data: impacts of left ventricular outflow tract obstruction and different left ventricular segmentation methods
19. Additional file 2: Table S1. of Quantification of mitral regurgitation in patients with hypertrophic cardiomyopathy using aortic and pulmonary flow data: impacts of left ventricular outflow tract obstruction and different left ventricular segmentation methods
20. Quantification of mitral regurgitation in patients with hypertrophic cardiomyopathy using aortic and pulmonary flow data: impacts of left ventricular outflow tract obstruction and different left ventricular segmentation methods
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