1,364 results on '"Chiribiri Amedeo"'
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102. Accurate Measurement of Myocardial Blood Flow in Atrial Fibrillation Using a High-resolution Stress Perfusion Sequence with Automated Inline Quantified Perfusion Mapping
103. High-resolution quantification of stress perfusion defects by cardiac magnetic resonance
104. Evaluation of Accelerated FBee-breathing Motion Corrected and Averaged Late Gadolinium Enhancement Using Simultaneous Multi-slice Imaging
105. Multiparametric Cardiovascular Magnetic Resonance (CMR) for the Detection of Cardiac Involvement in Eosinophilic Granulomatosis with Polyangiitis (EGPA)
106. Automated Stress Perfusion Prognostic Assessment Using Style Transfer, Segmentation and Hybrid Neural Network for Mortality Prediction
107. Siemens 0.55T Free Max – Our Progress and Comparison Between the Late Gadolinium Breath Hold Imaging and Late Gadolinium Free Breathing Imaging
108. High-resolution Stress Perfusion CMR with Inline Quantitative Mapping to Assess the Relationship Between Left Ventricular Ejection FBaction and Myocardial Blood Flow in the Absence of Coronary Disease
109. Advancing Left Atrial MRI Evaluation: 3D Motion Atlas Characterization Using an Unsupervised Image Registration Network
110. Use of a 0.55T 80cm-wide Bore Scanner for Cardiac Imaging in Bariatric and Claustrophobic Patients: A Preliminary Single Centre Experience
111. Incidental Finding of Congenital Heart Disease During Cardiomyopathy Screening Cardiac MRI
112. Quality-control of Stress Perfusion CMR Segmentations with Weakly Supervised Contrast-enhancement Anomaly Detection
113. Arrhythmic Mitral Valve Prolapse Phenotype: An Unsupervised Machine-learning Analysis Using a Multi-center Registry
114. Quantification of Aortic and Pulmonary 2D Flow Measurements at Low Field Using a 0.55T Scanner. Validation Against 1.5T MRI Scanning
115. Rethinking False Positive Exercise Electrocardiographic Stress Tests by Assessing Coronary Microvascular Function
116. Cine Imaging at Low-field Using a 0.55T Scanner. Validation Against 1.5T Scanning for the Determination of Left Ventricular Myocardial Volumes, Mass and Ejection Fraction
117. Novel Free-breathing 3D Whole-heart Joint T1/T2 Mapping for the Diagnosis of Myocarditis
118. T1 and Extracellular Volume Measurements. Normal Values at 0.55T and Validation in Comparison with 1.5T
119. Acute Marginal Losses: An Interesting Case of Isolated Right Ventricular Myocardial Infarction
120. Corrigendum to <’Machine learning outcome prediction using stress perfusion cardiac magnetic resonance reports and natural language processing of electronic health records’> <[Informatics in Medicine Unlocked (2024) 1-7/101418]>
121. Microvascular Resistance Reserve Predicts Myocardial Ischemia and Response to Therapy in Patients With Angina and Nonobstructive Coronary Arteries.
122. Demographic, multi-morbidity and genetic impact on myocardial involvement and its recovery from COVID-19: protocol design of COVID-HEART—a UK, multicentre, observational study
123. Influence of the arterial input sampling location on the diagnostic accuracy of cardiovascular magnetic resonance stress myocardial perfusion quantification
124. Clinical comparison of sub-mm high-resolution non-contrast coronary CMR angiography against coronary CT angiography in patients with low-intermediate risk of coronary artery disease: a single center trial
125. 3D whole-heart grey-blood late gadolinium enhancement cardiovascular magnetic resonance imaging
126. First-phase ejection fraction by cardiovascular magnetic resonance predicts outcomes in aortic stenosis
127. Dark-blood late gadolinium enhancement cardiovascular magnetic resonance for improved detection of subendocardial scar: a review of current techniques
128. Cardiac Perfusion MRI
129. Coronary Artery Anatomy and Anomalies
130. Distinct Subgroups in Hypertrophic Cardiomyopathy in the NHLBI HCM Registry
131. Mean entropy predicts implantable cardioverter-defibrillator therapy using cardiac magnetic resonance texture analysis of scar heterogeneity
132. Using the Universal Atrial Coordinate System for MRI and Electroanatomic Data Registration in Patient-Specific Left Atrial Model Construction and Simulation
133. Domain-Adversarial Learning for Multi-Centre, Multi-Vendor, and Multi-Disease Cardiac MR Image Segmentation
134. Physics-Informed Self-supervised Deep Learning Reconstruction for Accelerated First-Pass Perfusion Cardiac MRI
135. Temporal changes within mechanical dyssynchrony and rotational mechanics in Takotsubo syndrome: A cardiovascular magnetic resonance imaging study
136. Impact of Field Strength in Clinical Cardiac Magnetic Resonance Imaging
137. Characterising Mechanisms of Ischemia in Patients with Myocardial Bridges
138. Oxygenation Status of Calf and Foot Musculature Predicts Inadequate Revascularisation in Patients with Limb Ischaemia
139. Machine learning outcome prediction using stress perfusion cardiac magnetic resonance reports and natural language processing of electronic health records
140. Role of pulmonary perfusion magnetic resonance imaging for the diagnosis of pulmonary hypertension: A review
141. Doppler Versus Thermodilution-Derived Coronary Microvascular Resistance to Predict Coronary Microvascular Dysfunction in Patients With Acute Myocardial Infarction or Stable Angina Pectoris
142. 3D SASHA myocardial T1 mapping with high accuracy and improved precision
143. Left ventricular myocardial deformation in Takotsubo syndrome: a cardiovascular magnetic resonance myocardial feature tracking study
144. Correlation of Fractional Flow Reserve With Ischemic Burden Measured by Cardiovascular Magnetic Resonance Perfusion Imaging
145. Prognostic Impact of Late Gadolinium Enhancement by Cardiovascular Magnetic Resonance in Myocarditis: A Systematic Review and Meta-Analysis
146. Usefulness of Cardiac Magnetic Resonance Imaging to Measure Left Ventricular Wall Thickness for Determining Risk Scores for Sudden Cardiac Death in Patients With Hypertrophic Cardiomyopathy
147. Feasibility of free-breathing quantitative myocardial perfusion using multi-echo Dixon magnetic resonance imaging
148. Characterizing Mechanisms of Ischemia in Patients With Myocardial Bridges.
149. ECMR 1-28 - T1 and Extracellular Volume Measurements. Normal Values at 0.55T and Validation in Comparison with 1.5T
150. ECMR 1-19 - Use of a 0.55T 80cm-wide Bore Scanner for Cardiac Imaging in Bariatric and Claustrophobic Patients: A Preliminary Single Centre Experience
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