We.1.5.3
A BAYESIAN FRAMEWORK FOR PHYSIOLOGICALLY-BASED MODELING OF FLUTTER-INDUCED ANEURYSM PROGRESSION
Kiran Bhattacharyya, SKA Labs, LLC.
Session:
We.1.5: Cardiovascular Modeling I Oral
Track:
Cardiopulmonary Systems and Physiology-based Engineering
Location:
Room 803AB
Presentation Time:
Wednesday, 29 July, 09:00 - 09:15
Session Co-Chairs:
Cederick Landry and Joseph Palladino
Presentation
Discussion
Resources
No resources available.
Session We.1.5
We.1.5.1: Machine-Learning based Identification of Arrhythmia-Driving Regions in Ventricular Tachycardia Using Neighborhood-Aggregated Features from 3-D Electroanatomical Mapping
Mustafa Masjedi, Helmut Schmidt University; Julius Obergassel, University Medical Center Hamburg–Eppendorf; Maria Maleshkova, Helmut Schmidt University
We.1.5.2: MODEL-BASED ANALYSIS OF MYOCARDIAL STRAINS DURING STRESS-TEST ECHOCARDIOGRAPHY
Arthur Ben-Tolila, Adrien Al Wazzan, Joan Duprez, Francesca Menna, Lotfi Senhadji, Erwan Donal, Alfredo Hernández, Virginie Le Rolle, Univ Rennes, CHU Rennes, INSERM, LTSI - UMR 1099
We.1.5.3: A BAYESIAN FRAMEWORK FOR PHYSIOLOGICALLY-BASED MODELING OF FLUTTER-INDUCED ANEURYSM PROGRESSION
Kiran Bhattacharyya, SKA Labs, LLC.
We.1.5.4: PRESSURE SCALING FOR LATTICE BOLTZMANN CARDIOVASCULAR DIGITAL TWINS VIA 1D-3D COUPLING
Guinevere Ferreira, Amanda Randles, Duke University
We.1.5.5: REALISTIC SIMULATION OF PERSONALIZED PULMONARY ARTERIES PHANTOMS IN TETRALOGY OF FALLOT USIND 3D PRINTING AND BLOOD MIMICKING FLUID
Anna-Luisa Poetzsch, Mathilde Bove, Charlotte Pomeyrol, Agnés Volant, École de technologie supérieure; Francisco Gonzalez, Joaquim Miró, CHU Sainte-Justine; Luc Duong, École de technologie supérieure
We.1.5.6: MODELING LEFT VENTRICULAR ISOVOLUMIC HEART RATE CHARACTERISTICS
Joseph Palladino, Trinity College
Resources
No resources available.