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56. Toward Replacing Late Gadolinium Enhancement With Artificial Intelligence Virtual Native Enhancement for Gadolinium-Free Cardiovascular Magnetic Resonance Tissue Characterization in Hypertrophic Cardiomyopathy

58. Combined T1-mapping and tissue tracking analysis predicts severity of ischemic injury following acute STEMI—an Oxford Acute Myocardial Infarction (OxAMI) study

59. Association between subclinical atherosclerosis and cardiac structure and function—results from the UK Biobank Study

60. Misclassification of females and males in cardiovascular magnetic resonance parametric mapping: the importance of sex-specific normal ranges for diagnosis of health vs. disease.

65. Fully-automated left ventricular mass and volume MRI analysis in the UK Biobank population cohort: evaluation of initial results

68. Characterizing the hypertensive cardiovascular phenotype in the UK Biobank

74. Automatic Measurement of the Myocardial Interstitium: Synthetic Extracellular Volume Quantification Without Hematocrit Sampling

76. Characterizing the hypertensive cardiovascular phenotype in the UK Biobank

78. Genome-Wide Analysis of Left Ventricular Image-Derived Phenotypes Identifies Fourteen Loci Associated With Cardiac Morphogenesis and Heart Failure Development

79. Changes in Cardiac Morphology and Function in Individuals With Diabetes Mellitus: The UK Biobank Cardiovascular Magnetic Resonance Substudy

84. Real-Time Prediction of Segmentation Quality

86. Automated quality control in image segmentation: application to the UK Biobank cardiovascular magnetic resonance imaging study

88. 3-Dimensional Strain Analysis of Hypertrophic Cardiomyopathy

89. Left ventricular anatomy in obstructive hypertrophic cardiomyopathy: beyond basal septal hypertrophy

90. Native T1 Mapping in Transthyretin Amyloidosis

94. Automated cardiovascular magnetic resonance image analysis with fully convolutional networks

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