Publications by authors named "Isra Valverde"

Retrograde systolic flow in the main pulmonary artery (PA) is a hallmark echocardiographic sign of patent ductus arteriosus. We describe a case of PA aneurysm mimicking patent ductus arteriosus flow. Using 4-dimensional flow cardiac magnetic resonance imaging, this echocardiographic feature is explained and altered flow dynamics in the aneurysmal PA are visualized.

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Analysis of the cardiovascular system represents a classical problem in which the solid and fluid phases interact intimately, and so is a rich field of application for state-of-the-art fluid-solid interaction (FSI) analyses. In this paper, we focus on the human aorta. Solution of the full FSI problem requires knowledge of the material properties of the wall and information on vessel support.

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State of the art simulations of aortic haemodynamics feature full fluid-structure interaction (FSI) and coupled 0D boundary conditions. Such analyses require not only significant computational resource but also weeks to months of run time, which compromises the effectiveness of their translation to a clinical workflow. This article employs three computational fluid methodologies, of varying levels of complexity with coupled 0D boundary conditions, to simulate the haemodynamics within a patient-specific aorta.

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