Conference Agenda
Overview and session details of the ESB2024 congress.
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Session Overview |
Session | ||||||||||||||
9.5: Cardiovascular biomechanics III: Heart
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Presentations | ||||||||||||||
11:00am - 11:20am
ID: 127 Clinically Relevant Fetal Heart Biomechanics Modelling Imperial College London, United Kingdom
11:20am - 11:30am
ID: 956 GROWTH AND REMODELLING IN RAT HEART UNDER PAH 1University of Glasgow, United Kingdom; 2Shandong University, China
11:30am - 11:40am
ID: 662 PALLIATION OF PULMONARY ARTERIAL HYPERTENSION WITH A PULMONARY-TO-SYSTEMIC SHUNT: A MULTISCALE STUDY 1Inria, Research Center Saclay Ile-de-France, France; 2Lynkeus Srl
11:40am - 11:50am
ID: 688 RIGHT VENTRICULAR MYOCARDIUM REMODELING IN PULMONARY ARTERIAL HYPERTENSION IS SEX DEPENDENT University of California San Diego, United States of America
11:50am - 12:00pm
ID: 764 GENERATION OF ARTERIOVENOUS FISTULA SOUNDS THROUGH FLUID-STRUCTURE INTERACTION SIMULATIONS 1University of Bergamo, Italy; 2Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Italy; 3University of Toronto, Canada; 4Simula Research Laboratory, Norway
12:00pm - 12:10pm
ID: 778 NOVEL PATIENT-SPECIFIC BIVENTRICULAR HEART MODEL INTEGRATING ACTIVE CONTRACTILITY AND PSEUDO-FLUID DOMAINS Discipline of Biomedical Engineering, University of Galway, Ireland
12:10pm - 12:20pm
ID: 1090 ARE THE IN VITRO PROPERTIES SUITABLE FOR IN VIVO MODELLING? A STUDY FOR PASSIVE VENTRICULAR RESPONSE IN PORCINE HEART 1Aragon Institute of Engineering Research (I3A), University of Zaragoza, Spain; 2Biomedical Research Networking Center in Bioengineering, Biomaterials and Nanomedicine (CIBERBBN), Spain; 3Department of Cardiovascular Sciences, University of Leuven, Belgium
12:20pm - 12:30pm
ID: 298 STUDYING THE CONCOMITANT EFFECTS OF ATRIAL FIBRILLATION ON BLOOD STASIS: A NUMERICAL APPROACH 1Universidad Politécnica de Madrid, Spain; 2Universidad de Extremadura, Spain; 3Universidad de Valladolid, Spain
12:30pm - 12:40pm
ID: 259 AN UNSUPERVISED DEEP LEARNING FRAMEWORK FOR FULL CYCLE CARDIAC MOTION TRACKING IN CROSS-MODALITY IMAGES Imperial College London, United Kingdom
12:40pm - 12:50pm
ID: 864 CARDIORESPIRATORY MODELLING SUGGESTS RESPIRATORY SINUS ARRHYTHMIA ENHANCES CARDIAC FUNTION DURING EXERCISE 1Dept of Mechanical Engineering, University of Bath, United Kingdom; 2Dept of Physics, University of Bath, United Kingdom
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